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Showing posts with label batlas. Show all posts
Showing posts with label batlas. Show all posts

Saturday, April 9, 2016

Stable Orbits or Clear Air Turbulence: Capacity, Scale, and Use Cases in Geospatial Antiquity


I delivered the following talk on 8 April 2016 at the Mapping the Past: GIS Approaches to Ancient History conference at the University of North Carolina at Chapel Hill. Update (19 April 2016): video is now available on YouTube, courtesy of the Ancient World Mapping Center.

How many of you are familiar with Jo Guldi's on-line essay on the "Spatial Turn" in western scholarship? I highly recommend it. It was published in 2011 as a framing narrative for the Spatial Humanities website, a publication of the Scholar's Lab at the University of Virginia. The website was intended partly to serve as a record of the NEH-funded Institute for Enabling Geospatial Scholarship. That Institute, organized in a series of three thematic sessions, was hosted by the Scholars Lab in 2009 and 2010. The essay begins as follows:
“Landscape turns” and “spatial turns” are referred to throughout the academic disciplines, often with reference to GIS and the neogeography revolution ... By “turning” we propose a backwards glance at the reasons why travelers from so many disciplines came to be here, fixated upon landscape, together. For the broader questions of landscape – worldview, palimpsest, the commons and community, panopticism and territoriality — are older than GIS, their stories rooted in the foundations of the modern disciplines. These terms have their origin in a historic conversation about land use and agency.
Professor Guldi's essay takes us on a tour through the halls of the Academy, making stops in a variety of departments, including Anthropology, Literature, Sociology, and History. She traces the intellectual innovations and responses -- prompted in no small part by the study and critique of the modern nation state -- that iteratively gave rise to many of the research questions and methods that concern us at this conference. I don't think it would be a stretch to say that not only this conference but its direct antecedents and siblings -- the Ancient World Mapping Center and its projects, the Barrington Atlas and its inheritors -- are all symptoms of the spatial turn.

So what's the point of my talk this evening? Frankly, I want to ask: to what degree do we know what we're doing? I mean, for example, is spatial practice a subfield? Is it a methodology?  It clearly spans chairs in the Academy. But does it answer -- better or uniquely? -- a particular kind of research question? Is spatial inquiry a standard competency in the humanities, or should it remain the domain of specialists? Does it inform or demand a specialized pedagogy? Within ancient studies in particular, have we placed spatially informed scholarship into a stable orbit that we can describe and maintain, or are we still bumping and bouncing around in an unruly atmosphere, trying to decide whether and where to land?

Some will recognize in this framework questions -- or should we say anxieties -- that are also very much alive for the digital humanities. The two domains are not disjoint. Spatial analysis and visualization are core DH activities. The fact that the Scholar's Lab proposed and the NEH Office of Digital Humanities funded the Geospatial Institute I mentioned earlier underscore this point.

So, when it comes to spatial analysis and visualization, what are our primary objects of interest? "Location" has to be listed as number one, right? Location, and relative location, are important because they are variables in almost every equation we could care about. Humans are physical beings, and almost all of our technology and interaction -- even in the digital age -- are both enabled and constrained by physical factors that vary not only in time, but also in three-dimensional space. If we can locate people, places, and things in space -- absolutely or relatively -- then we can open our spatial toolkit. Our opportunities to explore become even richer when we can access the way ancient people located themselves, each other, places, and things in space: the rhetoric and language they used to describe and depict those locations.

The connections between places and between places and other things are also important. The related things can be of any imaginable type: objects, dates, events, people, themes. We can express and investigate these relationships with a variety of spatial and non-spatial information structures: directed graphs and networks for example. There are digital tools and methods at our disposal for working with these mental constructs too, and we'll touch on a couple of examples in a minute. But I'd like the research questions, rather than the methods, to lead the discussion.

When looking at both built and exploited natural landscapes, we are often interested in the functions humans impart to space and place. These observations apply not only to physical environments, but also to their descriptions in literature and their depictions in art and cartography. And so spatial function is also about spatial rhetoric, performance, audience, and reception.

Allow me a brief example: the sanctuary of Artemis Limnatis at Volimnos in the Tayegetos mountains (cf. Koursoumis 2014; Elliott 2004, 74-79 no. 10). Its location is demonstrated today only by scattered architectural, artistic, and epigraphic remains, but epigraphic and literary testimony make it clear that it was just one of several such sanctuaries that operated at various periods and places in the Peloponnese.  Was this ancient place of worship located in a beautiful spot, evocative of the divine? Surely it was! But it -- and its homonymous siblings -- also existed to claim, mark, guard, consecrate, and celebrate political and economic assertions about the land it overlooked. Consequently, the sanctuary was a locus of civic pride for the Messenians and the Spartans, such that -- from legendary times down to at least the reign of Vespasian -- it occasioned both bloodshed and elite competition for the favor of imperial powers. Given the goddess's epithet (she is Artemis Of The Borders), the sanctuary's location, and its history of contentiousness, I don't think we're surprised that a writer like Tacitus should take notice of delegations from both sides arriving in Rome to argue for and against the most recent outcome in the struggle for control of the sanctuary. I can't help but imagine him smirking as he drops it into the text of his Annals (4.43), entirely in indirect discourse and deliberately ambiguous of course about whether the delegations appeared before the emperor or the Senate. It must have given him a grim sort of satisfaction to be able to record a notable interaction between Greece and Rome during the reign of Tiberius that also served as a metaphor for the estrangement of emperor and senate, of new power and old prerogatives.

Epigraphic and literary analysis can give us insight into issues of spatial function, and so can computational methods. The two approaches are complementary, sometimes informing, supporting, and extending each other, other times filling in gaps the other method leaves open. Let's spend some time looking more closely at the computational aspects of spatial scholarship.

A couple of weeks ago, I got to spend some time talking to Lisa Mignone at Brown about her innovative work on the visibility of temples at Rome with respect to the valley of the Tiber and the approaches to the city. Can anyone doubt that, among the factors at play in the ancient siting and subsequent experience of such major structures, there's a visual expression of power and control at work? Mutatis mutandis, you can feel something like it today if you get the chance to walk the Tiber at length. Or, even if you just go out and contemplate the sight lines to the monuments and buildings of McCorkle Place here on the UNC campus. To be sure, in any such analysis there is a major role for the mind of the researcher ... in interpretation, evaluation, narration, and argument, and that researcher will need to be informed as much as possible by the history, archaeology, and literature of the place. But, depending on scale and the alterations that a landscape has undergone over time, there is also the essential place of viewshed analysis. Viewsheds are determined by assessing the visibility of every point in an area from a particular point of interest. Can I see the University arboretum from the north-facing windows of the Ancient World Mapping Center on the 5th floor of Davis Library? Yes, the arboretum is in the Center's viewshed. Well, certain parts of it anyway. Can I see the Pit from there? No. Mercifully, the Pit is not in the Center's viewshed.

In one methodological respect, Professor Mignone's work is not new. Viewshed analysis has been widely used for years in archaeological and historical study, at levels ranging from the house to the public square to the civic territory and beyond. I doubt anyone could enumerate all the published studies without a massive amount of bibliographical work. Perhaps the most well known -- if you'll permit an excursion outside the domain of ancient studies -- is Anne Kelly Knowles' work (with multiple collaborators) on the Battle of Gettysburg. What could the commanders see and when could they see it? There's a fascinating, interactive treatment of the data and its implications published on the website of Smithsonian Magazine.

Off the top of my head, I can point to a couple of other examples in ancient studies. Though their mention will only scratch the surface of the full body of work, I think they are both useful examples. There's Andrew Sherrat's 2004 treatment of Myceneae, which explores the site's visual and topographical advantages in an accessible, online form. It makes use of cartographic illustration and accessible text to make its points about strategically and economically interesting features of the site.

I also recall a poster by James Newhard and several collaborators that was presented at the 2012 meeting of the Archaeological Institute of America. It reported on the use of viewshed analysis and other methods as part of an integrated approach to identifying Byzantine defensive systems in North Central Anatolia. The idea here was that the presence of a certain kind of viewshed -- one offering an advantage for surveillance of strategically useful landscape elements like passes and valleys -- might lend credance to the identification of ambiguous archaeological remains as fortifications. Viewshed analysis is not just revelatory, but can also be used for predictive and taxonomic tasks.

In our very own conference, we'll hear from Morgan Di Rodi and Maria Kopsachelli about their use of viewshed analysis and other techniques to refine understanding of multiple archaeological sites in northwest Greece. So we'll get to see viewsheds in action!

Like most forms of computational spatial analysis, viewshed work is most rigorously and uniformly accomplished with GIS software, supplied with appropriately scaled location and elevation data. To do it reliably by hand for most interesting cases would be impossible. These dependencies on software and data, and the know-how to use them effectively, should draw our attention to some important facts. First of all, assembling the prerequisites of non-trivial spatial analysis is challenging and time consuming. More than once, I've heard Prof. Knowles say that something like ninety percent of the time and effort in a historical GIS project goes into data collection and preparation.  Just as we depend on the labor of librarians, editors, philologists, Renaissance humanists, medieval copyists, and their allies for our ability to leverage the ancient literary tradition for scholarly work, so too we depend on the labor of mathematicians, geographers, programmers, surveyors, and their allies for the data and computational artifice we need to conduct viewshed analysis. This inescapable debt -- or, if you prefer, this vast interdisciplinary investment in our work -- is a topic to which I'd like to return at the end of the talk.

Before we turn our gaze to other methods, I'd like to talk briefly about other kinds of sheds. Watershed analysis -- the business of calculating the entire area drained and supplied by a particular water system -- is a well established method of physical geography and the inspiration for the name viewshed. It has value for cultural, economic, and historical study too, and so should remain on our spatial RADAR. In fact, Melissa Huber's talk on the Roman water infrastructure under Claudius will showcase this very method.

Among Sarah Bond's current research ideas is a "smells" map of ancient Rome. Where in the streets of ancient Rome would you have encountered the odors of a bakery or a latrine a fullonica. And -- God help you -- what would it have smelled like? Will it be possible at some point to integrate airflow and prevailing wind models with urban topography and location data to calculate "smellsheds" or "nosescapes" for particular installations and industries? I sure hope so! Sound sheds ought to be another interesting possibility; we ought to look for leadership to the work of people like Jeff Veitch who is investigating acoustics and architecture at Ostia, and the Virtual Paul's Cross project at North Carolina State.

Every bit as interesting as what the ancients could see, and from where they could see it, is the question of how they saw things in space and how they described them. Our curiosity about ancient geographic mental models and worldview drives us to ask questions like ones Richard Talbert has been asking: did the people living in a Roman province think of themselves as "of the province" in the way modern Americans think of themselves as being North Carolinians or Michiganders? Were the Roman provinces strictly administrative in nature, or did they contribute to personal or corporate identity in some way? Though not a field that has to be plowed only with computers, questions of ancient worldview do sometimes yield to computational approaches.

Consider, for example, the work of Elton Barker and colleagues under the rubric of the Hestia project. Here's how they describe it:
Using a digital text of Herodotus’s Histories, Hestia uses web-mapping technologies such as GIS, Google Earth and the Narrative TimeMap to investigate the cultural geography of the ancient world through the eyes of one of its first witnesses. 
In Hestia, word collocation -- a mainstay of computational text analysis -- is brought together and integrated with location-based measures to interrogate not only the spatial proximity of places mentioned by Herodotus, but also the textual proximities of those place references. With these keys, the Hestia team opens the door to Herodotus' geomind and that of the culture he lived in: what combinations of actual location, historical events, cultural assumptions, and literary agenda shape the mention of places in his narrative?

Hestia is not alone in exploring this particular frontier. Tomorrow we'll hear from Ryan Horne about his collaborative work on the Big Ancient Mediterranean project. Among its pioneering aspects is the incorporation of data about more than the collocation of placenames in primary sources and the relationships of the referenced places with each other. BAM also scrutinizes personal names and the historical persons to whom they refer. Who is mentioned with whom where? What can we learn from exploring the networks of connection that radiate from such intersections?

The introduction of a temporal axis into geospatial calcuation and visualization is also usually necessary and instructive in spatial ancient studies, even if it still proves to be more challenging in standard GIS software than one might like. Amanda Coles has taken on that challenge, and will be telling us more about what it's helped her learn about the interplay between warfare, colonial foundations, road building, and the Roman elites during the Republic.

Viewsheds, worldviews, and temporality, oh my!

How about spatial economies? How close were sources of production to their markets? How close in terms of distance? How close in terms of travel time? How close in terms of cost to move goods?

Maybe we are interested in urban logistics. How quickly could you empty the colosseum? How much bread could you distribute to how many people in a particular amount of time at a particular place? What were the constraints and capacities for transport of the raw materials? What do the answers to such questions reveal about the practicality, ubiquity, purpose, social reach, and costs of communal activities in the public space? How do these conclusions compare with the experiences and critiques voiced in ancient sources?

How long would it take a legion to move from one place to another in a particular landscape? What happens when we compare the effects of landscape on travel time with the built architecture of the limes or the information we can glean about unit deployment patterns from military documents like the Vindolanda tablets or the ostraca from Bu Njem?

The computational methods involved in these sorts of investigations have wonderful names, and like the others we've discussed, require spatial algorithms realized in specialized software. Consider cost surfaces: for a particular unit of area on the ground, what is the cost in time or effort to pass through it? Consider network cost models: for specific paths between nodal points, what is the cost of transit? Consider least cost path analysis: given a cost surface or network model, what is the cheapest path available between two points?

Many classicists will have used Orbis: The Stanford Geospatial Network Model of the Roman World. The Orbis team, assembled by Walter Scheidel, has produced an online environment in which one can query a network model of travel costs between key nodal points in the Roman world, varying such parameters as time of year and mode of transport. This model, and its digital modes of access, bring us to another vantage point. How close were two places in the Roman world, not as the crow flies, not in terms of miles along the road, but as the boat sailed or the feet walked.

Barbora Weissova is going to talk to us tomorrow about her work in and around Nicaea. Among her results, she will discuss another application of Least Cost Path Analysis: predicting the most likely route for a lost ancient roadway.

It's not just about travel, transport, and cost. Distribution patterns are of interest too, often combined with ceramic analysis, or various forms of isotopic or metallurgical testing, to assess the origin, dissemination, and implications of ancient objects found in the landscape. Inscriptions, coins, portable antiquities, architectural and artistic styles, pottery, all have been used in such studies. Corey Ellithorpe is going to give us a taste of this approach in numismatics by unpacking the relationship between Roman imperial ideology and regional distribution patterns of coins.

I'd like to pause here for just a moment and express my hope that you'll agree with the following assessment. I think we are in for an intellectual feast tomorrow. I think we should congratulate the organizers of the conference for such an interesting, and representative, array of papers and presentations. That there is on offer such a tempting smorgasbord is also, of course, all to the credit of the presenters and their collaborators. And surely it must be a factor as we consider the ubiquity and disciplinarity of spatial applications in ancient studies.

Assiduous students of the conference program will notice that I have neglected yet to mention a couple of the papers. Fear not, for they feature in the next section of my talk, which is -- to borrow a phrase from Meghan Trainor and Kevin Kadish -- all about that data.

So, conference presenters, would you agree with the dictum I've attributed to Anne Knowles? Does data collection and preparation take up a huge chunk of your time?

Spatial data, particularly spatial data for ancient studies, doesn't normally grow on trees, come in a jar, or sit on a shelf. The ingredients have to be gathered and cleaned, combined and cooked. And then you have to take care of it, transport it, keep track of it, and refashion it to fit your software and your questions. Sometimes you have to start over, hunt down additional ingredients, or try a new recipe. This sort of iterative work -- the cyclic remaking of the experimental apparatus and materials -- is absolutely fundamental to spatially informed research in ancient studies.

If you were hoping I'd grind an axe somewhere in this talk, you're in luck. It's axe grinding time.

There is absolutely no question in my mind that the collection and curation of data is part and parcel of research. It is a research activity. It has research outcomes. You can't answer questions without it. If you aren't surfacing your work on data curation in your CV, or if you're discounting someone else's work on data curation in decisions about hiring, tenure, and promotion, then I've got an old Bob Dylan song I'd like to play for you.

  • Archive and publish your datasets. 
  • Treat them as publications in your CV. 
  • Write a review of someone else's published dataset and try to get it published. 
  • Document your data curation process in articles and conference presentations.

Right. Axes down.

So, where does our data come from? Sometimes we can get some of it in prepared form, even if subsequent selection and reformatting is required. For some areas and scales, modern topography and elevation can be had in various raster and vector formats. Some specialized datasets exist that can be used as a springboard for some tasks. It's here that the Pleiades project, which I direct, seeks to contribute. By digitizing not the maps from the Barrington Atlas, but the places and placenames referenced on those maps and in the map-by-map directory, we created a digital dataset with potential for wide reuse. By wrapping it in a software framework that facilitates display, basic cartographic visualization, and collaborative updates, we broke out of the constraints of scale and cartographic economy imposed by the paper atlas format. Pleiades now knows many more places than the Barrington did, most of these outside the cultures with which the Atlas was concerned. More precise coordinates are coming in too, as are more placename variants and bibliography. All of this data is built for reuse. You can collect it piece by piece from the web interface or download it in a number of formats. You can even write programs to talk directly to Pleiades for you, requesting and receiving data in a computationally actionable form. The AWMC has data for reuse too, including historical coastlines and rivers and map base materials. It's all downloadable in GIS-friendly formats.

But Pleiades and the AWMC only help for some things. It's telling that only a couple of the projects represented at this conference made use of Pleiades data. That's not because Pleiades is bad or because the authors didn't know about Pleiades or the Center. It's because the questions they're asking require data that Pleiades is not designed to provide.

It's proof of the point I'd like to underline: usually -- because your research question is unique in some way, otherwise you wouldn't be pursuing it -- you're going to have to get your hands dirty with data collection.

But before we get dirty, I'm obliged to point out that, although Pleiades has received significant, periodic support from the National Endowment for the Humanities since 2006, the views, findings, conclusions, or recommendations expressed in this lecture do not necessarily reflect those of the National Endowment for the Humanities.

We've already touched on the presence of spatial language in literature. For some studies, the placenames, placeful descriptions, and narratives of space found in both primary and secondary sources constitute raw data we'd like to use. Identifying and extracting such data is usually a non-trivial task, and may involve a combination of manual and computational techniques, the latter depending on the size and tractability of the textual corpus in question and drawing on established methods in natural language processing and named entity recognition. It's here we may encounter "geoparsing" as a term of art. Many digital textual projects and collections are doing geoparsing: individual epigraphic and papyrological publications using the Text Encoding Initiative and EpiDoc Guidelines; the Perseus Digital Library; the Pelagios Commons by way of its Recogito platform. The China Historical GIS is built up entirely from textual sources, tracking each placename and each assertion of administrative hierarchy back to its testimony.

For your project, you may be able to find geoparsed digital texts that serve your needs, or you may need to do the work yourself. Either way, some transformation on the results of geoparsing is likely to be necessary to make them useful in the context of your research question and associated apparatus.

Relevant here is Micah Myers's conference paper. He is going to bring together for us the analysis and visualization of travel as narrated in literature. I gather from his abstract that he'll show us not only a case study of the process, but discuss the inner workings of the on-line publication that has been developed to disseminate the work.

Geophysical and archaeological survey may supply your needs. Perhaps you'll have to do fieldwork yourself, or perhaps you can collect the information you need from prior publications or get access to archival records and excavation databases. Maybe you'll get lucky and find a dataset that's been published into OpenContext, the British Archaeology Data Service, or tDAR: the Digital Archaeological Record. But using this data requires constant vigilance, especially when it was collected for some purpose other than you own. What were the sampling criteria? What sorts of material were intentionally ignored? What circumstances attended collection and post-processing?

Sometimes the location data we need comes not from a single survey or excavation, but from a large number of possibly heterogeneous sources. This will be the case for many spatial studies that involve small finds, inscriptions, coins, and the like. Fortunately, many of the major documentary, numismatic, and archaeological databases are working toward the inclusion of uniform geographic information in their database records. This development, which exploits the unique identifying numbers that Pleiades bestows on each ancient place, was first championed by Leif Isaksen, Elton Barker, and Rainer Simon of the Pelagios Commons project. If you get data from a project like the Heidelberg Epigraphic Databank, papyri.info, the Arachne database of the German Archaeological Institute, the Online Coins of the Roman Empire, or the Perseus Digital Library, you can count on being able to join it easily with Pleiades data and that of other Pelagios partners. Hopefully this will save some of us some time in days to come.

Sometimes what's important from a prior survey will come to us primarily through maps and plans. Historical maps may also carry information we'd like to extract and interpret. There's a whole raft of techniques associated with the scanning, georegistration, and georectification (or warping) of maps so that they can be layered and subjected to feature tracing (or extraction) in GIS software. Some historic cartofacts -- one thinks of the Peutinger map and medieval mappae mundi as examples -- are so out of step with our expectations of cartesian uniformity that these techniques don't work. Recourse in such cases may be had to first digitizing features of interest in the cartesian plane of the image itself, assigning spatial locations to features later on the basis of other data. Digitizing and vectorizing plans and maps resulting from multiple excavations in order to build up a comprehensive archaeological map of a region or site also necessitates not only the use of GIS software but the application of careful data management practices for handling and preserving a collection of digital files that can quickly grow huge.

We'll get insight into just such an effort tomorrow when Tim Shea reports on Duke's "Digital Athens Project".

Let's not forget remote sensing! In RS we use sensors -- devices that gather information in various sections of the electro-magnetic spectrum or that detect change in local physical phenomena. We mount these sensors on platforms that let us take whatever point of view is necessary to achieve the resolution, scale, and scope of interest: satellites, airplanes, drones, balloons, wagons, sleds, boats, human hands. The sensors capture emitted and reflected light in the visible, infrared, and ultraviolet wavelengths or magnetic or electrical fields. They emit and detect the return of laser light, radio frequency energy, microwaves, millimeter waves, and, especially underwater, sound waves. Specialized software is used to analyze and convert such data for various purposes, often into rasterized intensity or distance values that can be visualized by assigning brightness and color scales to the values in the raster grid. Multiple images are often mosaicked together to form continuous images of a landscape or 360 degree seamless panoramas.

Remotely sensed data facilitate the detection and interpretation of landforms, vegetation patterns, and physical change over time, revealing or enhancing understanding of built structures and exploited landscapes, as well as their conservation. This is the sort of work that Sarah Parcak has been popularizing, but it too has decades of practice behind it. In 1990, Tom Sever's dissertation reported on a remote-sensing analysis of the Anasazi road system, revealing a component of the built landscape that was not only invisible on the ground, but that demonstrates that the Anasazi were far more willing than even the Romans to create arrow-straight roads in defiance of topographical impediments. More recently, Prof. Sever and his NASA colleague Daniel Irwin have been using RS data for parts of Guatemala, Honduras, and Mexico, to distinguish between vegetation that thrives in alkaline soils and vegetation that doesn't. Because of the Mayan penchant for coating monumental structures with significant quantities of lime plaster, this data has proved remarkably effective in the locating of previously unknown structures beneath forest canopy. The results seem likely to overturn prevailing estimates of the extent of Mayan urbanism, illustrating a landscape far more cleared and built upon than heretofore proposed (cf. Sever 2003).

Given the passion with which I've already spoken about the care and feeding of data, you'll be unsurprised to learn that I'm really looking forward to Nevio Danelon's presentation tomorrow on the capture and curation of remotely sensed data in a digital workflow management system designed to support visualization processes.

I think it's worth noting that both Professor Parcak's recently collaborative work on a possible Viking settlement in Newfoundland, as well as Prof. Sever's dissertation, represent a certain standard in the application of remote sensing to archaeology. RS analysis is tried or adopted for most archaeological survey and excavation undertaken today. The choice of sensors, platforms, and analytical methods will of course vary in response to landscape conditions, expected archaeological remains, and the realities of budget, time, and know-how.

Similarly common, I think, in archaeological projects is the consideration of geophysical, alluvial, and climatic features and changes in the study area. The data supporting such considerations will come from the kinds of sources we've already discussed, and will have to be managed in appropriate ways. But it's in this area -- ancient climate and landscape change -- that I think ancient studies has a major deficit in both procedure and data. Computational, predictive modeling of ancient climate, landscape, and ground cover has made no more than tentative and patchy inroads on the way we think about and map the ancient historical landscape. That's a deficit that needs addressing in an interdisciplinary and more comprehensive way.

I'd be remiss if, before moving on to conclusions, I kept the focus so narrowly on research questions and methods that we miss the opportunity to talk about pedagogy, public engagement, outreach, and cultural heritage preservation. Spatial practice in the humanities is increasingly deeply involved in such areas. The Ancient World Mapping Center's Antiquity a-la Carte website enables users to create and refine custom maps from Pleiades and other data that can then be cited, downloaded, and reused. It facilitates the creation of map tests, student projects, and maps to accompany conference presentations and paper submissions.

Meanwhile, governments, NGOs, and academics alike are brining the full spectrum of spatial methods to bear as they try to prevent damage to cultural heritage sites through assessment, awareness, and intervention. The American Schools of Oriental Research conducts damage assessments and site monitoring with funding in part from the US State Department. The U.S. Committee of the Blue Shield works with academics to prepare geospatial datasets that are offered to the Department of Defense to enhance compliance with the 1954 Hague Convention for the Protection of Cultural Property in the Event of Armed Conflict.

These are critical undertakings as well, and should be considered an integral part of our spatial antiquity practice.

So, how should we gather up the threads of this discussion so we can move on to the more substantive parts of the conference?

I'd like to conclude as I began, by recommending an essay. In this case, I'm thinking of Bethany Nowiskie's recent essay on "capacity and care" in the digital humanities. Bethany is the former director of UVA's Scholars Lab. She now serves as Director of the Digital Library Federation at the Council on Library and Information Resources. I had the great good fortune to hear Bethany deliver a version of this essay as a keynote talk at a project director's meeting hosted by the NEH Office of Digital Humanities in Washington in September of last year. You can find the essay version on her personal website.

Bethany thinks the Humanities must expand its capacity in order not only to survive the 21st century, but to contribute usefully to its grand challenges. To cope with increasing amounts and needs for data of every kind. To move gracefully in analysis and regard from large scales to small ones and to connect analysis at both levels. To address audiences and serve students in an expanding array of modes. To collaborate across disciplines and heal the structurally weakening divisions that exist between faculty and "alternate academics", even as the entire edifice of faculty promotion and tenure threatens to shatter around us.

What is Bethany's prescription? An ethic of care. She defines an ethic of care as "a set of practices", borrowing the following quotation from the political scientist Joan Tronto:
a species of [collective] activity that includes everything we do to maintain, contain, and repair our world, so that we can live in it as well as possible.
I think our practice of spatial humanities in ancient studies is just such a collective activity. We don't have to turn around much to know that we are cradled in the arms and buoyed up on the shoulders of a vast cohort, stretching back through time and out across the globe. Creating data and handing it on. Debugging and optimizing algorithms. Critiquing ideas and sharpening analytical tools.

The vast majority of projects on the conference schedule, or that I could think of to mention in my talk, are explicitly and immediately collaborative.

And we can look around this room and see like-minded colleagues galore. Mentors. Helpers. Friends. Comforters. Makers. Guardians.

And we have been building the community infrastructure we need to carry on caring about each other and about the work we do to explain the human past to the human present and to preserve that understanding for the human future. We have centers and conferences and special interest groups and training sessions. We involve undergraduates in research and work with interested people from outside the academy. We have increasingly useful datasets and increasingly interconnected information systems. Will all these things persist? No, but we get to play a big role in deciding what and when and why.

So if there's a stable orbit to be found, I think it's in continuing to work together and to do so mindfully, acknowledging our debts to each other and repaying them in kind.

I'm reminded of a conversation I had with Scott Madry, back in the early aughts when we were just getting the Mapping Center rolling and Pleiades was just an idea. As many of you know, Scott together with Carole Crumley and numerous other collaborators here at UNC and beyond, have been running a multidimensional research project in Burgundy since the 1970s. At one time or another the Burgundy Historical Landscapes project has conducted most of the kinds of studies I've mentioned tonight, all the while husbanding a vast and growing store of spatial and other data across a daunting array of systems and formats.

I think that the conversation I'm remembering with Scott took place after he'd spent a couple of hours teaching undergraduate students in my seminar on Roman roads and land travel how to do orthophoto analysis the old fashioned way: with stereo prints and stereoscopes. He was having them do the Sarah Parcak thing: looking for crop marks and other indications of potentially buried physical culture. After the students had gone, Scott and I were commiserating about the challenges of maintaining and funding long-running research projects. I was sympathetic, but know now that I really didn't understand those challenges then. Scott did, and I remember what he said. He said: "We were standing on that hill in Burgundy twenty years ago, and as we looked around I said to Carol: 'somehow, we are going to figure out what happened here, no matter how long it takes.'"

That's what I'm talking about.

Monday, September 28, 2015

Updated: Lightning talk on Pleiades at NEH

UPDATED 4 March 2016: Followers of the ISAW News Blog will have seen the recent piece on the award of an NEH grant for new work on the Pleiades gazetteer and the follow-up piece about my intended participation at a meeting of similarly funded project directors. NEH's Office of Digital Humanities intends to has posted video of all the talks online on YouTube. You can drop into my 3 minutes, starting at 16:01:10, but meantime Or, if you'd prefer to read rather than listen, here are words I read and the slides I showed during the 3 minutes allotted to my "lightning talk". 

Slides are at Slideshare.

[SLIDE 1]
I am here today as a representative of the Pleiades community, an international group of volunteers who build and maintain the most comprehensive geospatial dataset for antiquity available today. Like many people in this room, we believe that the study of the past is a fundamental aspect of the Humanities endeavor. It's essential to understanding what it means to be human today, and to envisioning how we might be better humans in the future. Our collective past is geographically entangled: "where" is the stage on which the human drama is played, and it's an important analytical variable in every field of the past-oriented Humanities: history, archaeology, linguistics, text analysis, and so on. We also believe that the places and spaces known to and inhabited by our ancestors are the precious and fragile property of every person alive today, no matter whether we can still see and touch that heritage, or only just imagine it. 
[SLIDE 2]
So, scholars, students, and the public need free and open data about their ancient geography. They need it in order to learn about the past, to advance research, and to inform conservation. They also need it to connect digital images, texts, and other information across the web, regardless of where that information is created or hosted. Unsurprisingly, these same individuals have the collective skill and energy necessary to create and improve geographic information, if only we can put good tools in their hands.
That's what Pleiades does. It combines web-enabled public participation with peer review and editorial oversight in order to identify and describe ancient places and spaces. It continuously enables and draws upon the work of individuals, groups, and their computational agents as a core component of a growing, public scholarly communications network. 
[SLIDE 3]
And now, thanks to the Endowment, its reviewers, and the National Humanities Council, we have the opportunity to supercharge that network. Responding to recent adjustments in the guidelines for the digital humanities implementation grants, we requested funds to retool Pleiades. A decade of growth and diversification has left our web application underpowered and unreliable even as more users and external projects look to Pleiades as a source of information and a venue for publication. We need more power to address the most urgent needs articulated by the community: accelerated content creation and review, faster dissemination and discovery, display support for phones and tablets, expanded spatial and temporal coverage, flexible modeling of spatial relationships, comprehensive and customized access and preservation. 
Thanks to NEH, we can continue going where no daughters of Atlas have gone before!

Friday, November 4, 2011

It's all coming together at PELAGIOS

For years (over a decade in fact) we've been dreaming and talking about linking up ancient world resources on the web along the thematic axis of geography. Pleiades was launched in no small part in pursuit of that vision. And today comes more proof -- to which many can relate -- that hard work, collaboration, and openness bears really tasty fruit.
The Perseus geospatial data now includes annotations of ancient places with Pleiades URIs. Beginning next week, the Places widget in the Perseus interface will include links to download the Pleiades annotations in OAC compliant RDF format. These links will appear for any text with place entity markup which also has places from this dataset. We are also providing a link to search on the top five most frequently mentioned of these places in the Pelagios graph explorer.
(Check out the rest of the story, which provides a screenshot of the interface changes and a step-by-step description of how the work was done).

How did this come to be possible? Here's a very much abridged history:

  • Perseus built a path-breaking, web-based digital library of resources for the study of the ancient world; released a bunch of their code and content under open licenses; and managed the geographic aspects of the content as data
  • Pleiades built on and marshaled the efforts of the Classical Atlas Project, the Digital Atlas of Roman and Medieval Civilization, and other collaborators to publish an ever-improving geographic dataset on the web under a permissive open license
  • Leif Isaksen, on behalf of the Google Ancient Places project, took that dataset, mashed it up with another open geographical dataset (GeoNames) and published the results (Pleiades+) under a public domain declaration (more openness).
  • The PELAGIOS team took Pleiades+ and started matching it with their data. Perseus is just the latest member of that team to do so, and there are more on the way.
The resulting interface enhancements Perseus is announcing today are just the latest visible example of how the web of people benefits from the creation and exploitation of the web of data, and it's all super-charged by openness.

I'm grateful to the hard-working folks, and the array of funding agencies and host institutions, whose commitment and support are making these dreams come true.

Thursday, July 8, 2010

Featured Pleiades Content: Strophades/Plotai Inss. and the "Pont Julien"

Today we've published two updates to the content in Pleiades.

Sean Gillies has contributed updated coordinates and descriptive information for the so-called Pont Julien, a Roman bridge (ancient name, if any, unknown), located to the west of Apta Iulia (mod. Apt) in France. It had been indicated on Barrington Atlas Map 15 E2). The point coordinates Sean provides, as you'll see from the KML if you've got Google Earth, are more precise than the BAtlas map could provide given its scale of 1:500,000 (+/- 930 meters). Their derivation from Google Earth and Geoeye imagery is described in the associated accuracy assessment.

With help from Brian Turner and Richard Talbert, I've remedied an oversight in the Barrington Atlas: the omission of the Στροφάδες/Strophades islands. We'd originally addressed this oversight back in 2003, when I still worked for the Ancient World Mapping Center, having been alerted to the problem by Rick LaFleur. After Sean loaded the legacy information associated with BAtlas Map 1 into Pleiades, I started working on a place resource as well. In so doing, I dug a bit deeper and discovered the ancient tradition of an alternate, earlier name for this peculiar island group: Πλωταί/Plotae. Once again, Google Earth provided us with better coordinates, although not this time without some confusion (see the associated accuracy assessment and the map on the main resource page). I was also able to exploit the greater flexibility provided by Pleiades to enumerate all the attested name variants (including an ethnikon asserted by Stephanus of Byzantium), in their original orthography, and to provide citations of most of the relevant attestations of same in ancient literature.

It's great to see Pleiades moving closer to full-spectrum use. We're no longer just bringing material forward from the Classical Atlas Project, we're also publishing new, more accurate and complete information. I hope that soon you'll be seeing more of this sort of thing, with contributions by a widening community. You can be part of this community, if you're interested: here's how.

Thanks to all, including our editors, who helped get these resources ready to publish.

Friday, June 25, 2010

Ramping up Pleiades 2

Last March, I alerted readers to the great news that NEH had elected to fund a second round of work on the Pleiades project. We're picking up steam.

Sean Gillies, our chief engineer, has been adding more legacy content inherited from the Classical Atlas Project. We're nearly at the half-way point, with features associated with 48 of the 102 Barrington Atlas maps now represented as Pleiades resources (you can keep score on the Pleiades Content wiki page or monitor the Pleiades news feed for announcements as new content appears). Sean's also introduced a number of improvements to the web application and the user interface, and has been blogging about our data model.

Brian Turner (my co-managing editor) and I have been getting ready to start working on adding some new content that wasn't included in the Barrington, including a number of obscure features from the so-called Peutinger map that turned up during Richard Talbert's work to prepare a new scholarly edition of the map (forthcoming from Cambridge UP). Nico Aravecchia, a Visiting Research Scholar at ISAW, has been working on new Pleiades resources for a number of poorly published and recently excavated Coptic sites in Egypt that also did not appear in the Barrington. We'll start publishing these new resources during the next month as they clear editorial review.

Meanwhile, we've been in dialog with Michael McCormick, Guoping Huang and Kelly Gibson at Harvard. They're the driving force behind the Digital Atlas of Roman and Medieval Civilization, with whom we're collaborating under the new grant. Our aim is to collate and share the datasets assembled by both projects and to cross-link our web applications. This will bring more accurate coordinates for many features into Pleiades, as well as a number of new features that will expand our time horizon into the middle ages. You'll get a choice of display and map interaction modes and, eventually, the ability to move back and forth between both resources. We'll keep you posted as the timeline for this portion of the work is refined.

We also aim to make things easier for early adopters to get started. We're starting to script some more screencasts to show you how to suggest changes or additions to content. We've also been planning improvements to our data portability story: our commitment to open access dictates that we make it easy for you to export our complete content for external reuse elsewhere. Making specific plans for that is on the agenda for next month as well.

If you have questions, comments, or suggestions, please feel free to submit them as comments here. If you'd like to give Pleiades a spin, follow the instructions for requesting an account.

Tuesday, June 9, 2009

Determining BAtlas IDs for future Pleiades interoperation

For those who are working with datasets they'd like eventually to link up with Pleiades, we created the Barrington Atlas ID scheme. I've just posted some more tools for helping you determine the BAtlas IDs to go with your existing geographic names or other information.

There's now a draft "Barrington Atlas Index with Identifiers". In PDF (watch out: 7.2 MB) it looks like:


It's also available in a 1.0 MB zip-compressed HTML version, with somewhat semantic class attributes on spans that could be used to parse out different themes ahead of an attempt to match it to a names list:

And of course there is already the home-brewed XML format we distributed the original IDs in (last release tar-gzipped archive):

Share and enjoy!

Friday, January 16, 2009

Digital Projects (ISAW Newsletter January 2008)

Since the ISAW Newsletter is only available online as a monolithic PDF, I thought I'd make the text of my contribution (about our "digital programs") available here in HTML form:
ISAW’s digital programs are fundamental to the Institute’s mission. Convinced that the transformation of the media and information landscape now underway offers scholars unparalleled opportunities to make new discoveries, collaborate with distant colleagues, engage public interests, and tackle previously intractable problems, we have committed ourselves to an ambitious slate of digital initiatives that extend far beyond the walls of the Institute. As the examples below illustrate, we emphasize the creation and delivery of core resources such as primary and secondary texts and images, as well as geographic and archaeological reference information. We seek to serve the entire field of ancient studies by working for the durability of digital publications–and the sustainability of the projects that create and maintain them–through promotion of standards, creation of reusable free software, use of open-access licenses, and decentralization of authorial, editorial, and peer-review activities.

In early 2008, ISAW became a partner in the Pleiades Project. Together with the Ancient World Mapping Center (AWMC), we are digitizing the most comprehensive register of geographical data for the ancient Greek and Roman world, collected by the American Philological Association’s Classical Atlas Project to support the preparation of the Barrington Atlas of the Greek and Roman World (R. Talbert, ed., Princeton 2000). All of the coordinates, historical names, and other information in this rich collection are being placed online so scholars, students, and enthusiasts worldwide can browse, search, and map it, as well as offer suggestions for updates and additions. The Pleiades effort has recently expanded with funding from a Transatlantic Digitization Grant, awarded to ISAW and King’s College London, by the National Endowment for the Humanities (NEH) and the U.K. Joint Information Systems Committee. It supports the prototyping of mechanisms to tie Pleiades into important digital collections of epigraphic and papyrological texts from Egypt and coastal North Africa (see further: the Concordia Project and the Graph of Ancient World Data group). This effort will lay the foundation for extensive, automated cross-linking between Pleiades and other web-based scholarly resources for the entire Greek and Roman world. We are currently seeking funding for a second, two-year development period for Pleiades/Concordia that will accelerate the digitization of content and bring users together for a series of workshops to identify needed improvements to the system and to facilitate more effective collaboration.

Over the past year ISAW has also assumed a leadership role in a group of interrelated digital papyrology projects (see http://idp.atlantides.org). One of these, funded by a grant to Duke University from the Andrew W. Mellon Foundation, has successfully upgraded and effectively integrated two of the key digital resources for study of ancient documents on papyrus: the Duke Databank of Documentary Papyri (DDbDP) and the Heidelberger Gesamtverzeichnis der griechischen Papyrusurkunden Ägyptens (HGV). Both resources will soon be provided to users via a search and display environment prototyped by the digital libraries team at Columbia University. This system, dubbed the Papyrological Navigator, combines DDbDP and HGV content with images and database records drawn from the 22 museum and university papyrus collections that constitute the Advanced Papyrological Information System (APIS). It also links them to the extensive Trismegistos databases in Leuven. Under new funding provided to APIS by the NEH, work on this interface will move to the Digital Libraries team at NYU where, with collaboration from ISAW and APIS team members at Columbia, it will see extensive improvements. ISAW is currently working with partners to secure funding for a second major upgrade to the DDbDP and HGV: a collaborative, online editing environment that will speed the addition and revision of content by granting papyrologists worldwide direct authorial capabilities under a distributed system of editorial oversight.

A number of other exciting projects are in work for 2009 and beyond. We hope to expand the utility of Pleiades by linking it to a number of other systems and digital gazetteers under development at a variety of institutions around the world. Plans are being formulated for a collaborative digital encyclopedia of Coptic archaeology, an extensive database of digital images, an online calendar of museum exhibitions, a major book and journal digitization program, and a multi-institutional publication series comprising open-access primary texts and research data.

Tuesday, November 11, 2008

BAtlas Grids in KML (some of them)

Would you like to have simple polygons of the Barrington Atlas map grid squares? Maybe for munging an existing placenames list up against BAtlas IDs?... We're using them to help keep you updated on Pleiades content digitization status.

We've started putting the grids up on the web in KML 2.2 under a cc-by-sa license. We'll keep you posted as we add more. Meanwhile, get them here: http://atlantides.org/batlas/grids/

Friday, July 18, 2008

BAtlas ID update: add map 55, more fixes

http://atlantides.org/batlas

Readme:

  • Eliminated duplication/collision problems with alias id values. Although the combination of label + map number + grid square is almost perfectly unique across the entire atlas, the same cannot be said for features not appearing on the maps (like "unlocated" and "false" toponyms), nor for alternative aliases, such as those created for individual constituent names in a multi-name label. Where possible, these collisions are eliminated by adding a one-up numbering scheme (postfixed) on the id, or by omitting non-primary alias alternatives where necessary. The one-up postfix numbers are also reflected in matching captions (in parentheses).
  • Corrected initial two-capitals error in geographic names and associated captions generated when a parenthetical variant indication leads the toponym (e.g., (L)Ibida, which should produce the variants "Libida" and "Ibida", not "LIbida" and "Ibida".
  • Captions for "group" features now read like "aqueduct group" instead of "aqueduct-group".
  • Suppress serialization of a few redundant captions

Tuesday, July 15, 2008

BAtlas ID update: add map 37, various fixes

Latest XML in http://atlantides.org/batlas/

I've added a read-me file, as well as text files containing diffs between previous and current versions of the individual xml files. The readme file says:
  • altered citations so that location descriptions for unnamed features are enclosed in parentheses
  • fixed bug in processing of fragmentary, unreconstructable geognames so that lacunae are signaled with parentheses around ellipsis (...) instead of ellipsis alone; also, mark them correctly as completeness="non-reconstructable" instead of type="variant"
  • remove inverted quotes from geogname variants and instead mark them as accuracy="inaccurate"
  • handle group notation in location description for unnamed features like aqueducts and villas so that, e.g., Map-by-Map directory entry in Aqueducts for map 22 C5 with location description "Nicopolis ad Istrum (2)" becomes "aqueduct-group-nicopolis-ad-istrum-22-c5" instead of "aqueduct-nicopolis-ad-istrum-2-22-c5"; this also adds a new element child of indicating the number of features associated with the group.

Sunday, July 13, 2008

BAtlas ID update: add map 73, revise captions for rivers, islands and island groups

I have just updated the XML files providing Barrington Atlas IDs and associated information (background). The following additions and changes were made
  • IDs added for Map 73 (Ammon)
  • All files refreshed so that alternative captions for rivers, islands and island groups with multiple names all carry the appropriate formulaic postfix expression (fl., Ins. Inss.); no alias IDs have been changed; no geogname elements have been changed; no features have been added or removed
Copies of the prior versions are available for reference in an appropriately-dated subdirectory, e.g.: http://atlantides.org/batlas/2007-07-11/

Thursday, July 10, 2008

Barrington Atlas IDs

Update: follow the batlasids tag trail for follow-ups.

Back in February, I blogged about clean URLs and feed aggregation. In March, we learned about the ORE specification for mapping resource aggregations in Atom XML, just as we were gearing up to start work on the Concordia project, with support from the US National Endowment for the Humanities and the UK Joint Information Services Committee.

Our first workshop was held in May. One of the major outcomes was a to-do for me: provide a set of stable identifiers for every citable geographic feature in the Barrington Atlas so collaborators could start publishing resource maps and building interoperation services right away, without waiting for the full build-out of Pleiades content (which will take some time).

The first fruits can be downloaded at: http://atlantides.org/batlas/ . All content under that URL is licensed cc-by. Back versions are in dated subdirectories.

There you'll find XML files for 3 of the Atlas maps (22, 38 and 65). There's only one feature class for which we don't provide IDs: roads. More on why not another time. I'll be adding files for more of the maps as quickly as I can, beginning with Egypt and the north African coast west from the Nile delta to Tripolitania (the Concordia "study area"). Our aim is full coverage for the Atlas within the next few months.

What do you get in the files?


IDs (aka aliases) for every citable geographic feature in the Barrington Atlas. For example:
  • BAtlas 65 G2 Ouasada = ouasada-65-g2
If you combine one of these aliases with the "uribase" also listed in the file (http://atlantides.org/batlas/) you get a Uniform Resource Identifier for that feature (this should answer Sebastian Heath's question).

For features with multiple names, we provide multiple aliases to facilitate ease of use for our collaborators. For example, for BAtlas 65 A2 Aphrodisias/Ninoe, any of the following aliases are valid:
  • aphrodisias-ninoe-65-a2
  • aphrodisias-65-a2
  • ninoe-65-a2
Features labeled in the Atlas with only a number are also handled. For example, BAtlas 38 C1 no. 9 is glossed in the Map-by-Map Directory with the location description (modern names): "Siret el-Giamel/Gasrin di Beida". So, we produce the following aliases, all valid:
  • (9)-38-c1
  • (9)-siret-el-giamel-gasrin-di-beida-38-c1
  • (9)-siret-el-giamel-38-c1
  • (9)-gasrin-di-beida-38-c1
Most unlabeled historical/cultural features also get identifiers. For example:
  • Unnamed aqueduct at Laodicea ad Lycum in BAtlas 65 B2 = aqueduct-laodicea-ad-lycum-65-b2
  • Unnamed bridge at Valerian in BAtlas 22 B5 = bridge-valeriana-22-b5
Unlocated toponyms and false names (appearing only in the Map-by-Map Directory) get treated like this:
  • BAtlas 22 unlocated Acrae = acrae-22-unlocated
  • BAtlas 38 unlocated Ampelos/Ampelontes? = ampelos-ampelontes-38-unlocated = ampelos-38-unlocated = ampelontes-38-unlocated
  • BAtlas 65 false name ‘Itoana’ = itoana-65-false
The XML files also provide associated lists of geographic names, formatted BAtlas citations and other information useful for searching, indexing and correlating these entries with your own existing datasets. What you don't get is coordinates. That's what the Pleiades legacy data conversion work is for, and it's a slower and more expensive process.

Read on to find out how you can start using these identifiers now, and get links to the corresponding Pleiades data automatically as it comes on line over time.

Why do we need these identifiers?


Separate digital projects would like to be able to refer unambiguously to any ancient Greek or Roman geographic feature using a consistent, machine-actionable scheme. The Barrington Atlas is a stable, published resource that can provide this basis if we construct the corresponding IDs.

Even without coordinates, other projects can begin to interoperate with each other immediately, as long as they have a common scheme of identifiers. After using BAtlas URIs to normalize, control or annotate their geographic description, they can publish services or crosswalks that provide links for the relationships within and between their datasets. For example, for each record in a database of coins you might like links to all the other coins minted by the same city, or to digital versions (in other databases) of papyrus documents and inscriptions found at that site.

Moreover, we would like other projects to start using a consistent identifier scheme now, so that as Pleiades adds content we can build more interoperation around it (e.g., dynamic mapping, coordinate lookup, proximity search across multiple collections). To that end, Pleiades will provide redirects (303 see other) from Barrington Atlas URIs (following the scheme described here) as follows:
  • If a corresponding entry exists in Pleiades, the web browser will be redirected to that Pleiades page automatically
  • If there is not yet a corresponding entry in Pleiades, the web browser will be redirected to an HTML page providing a full human-readable citation of the Atlas, as well as information about this service
So, for example:
  • http://atlantides.org/batlas/aphrodisias-ninoe-65-a2 will re-direct to http://pleiades.stoa.org/places/638753
  • http://atlantides.org/batlas/vlahii-22-e4 will re-direct to http://atlantides.org/batlas/vlahii-22-e4.html until there is a corresponding Pleiades record
The HTML landing pages for non-Pleiades redirects are not in place yet, but we're working on it. We'll post again when that's working.

Why URIs for a discretely citable feature in a real-world, printed atlas?

I'll let Bizer, Cyganiak and Heath explain the naming of resources with URI references. In the parlance of "Linked Data on the Web," Barrington Atlas features are "non-information resources"; that is, they are non-digital/real-world discrete entities about which web authors and services may want to make assertions or around which to perform operations. What we are doing is creating a stable system for identifying and citing these resources so that those assertions and operations can be automated using standards-compliant web mechanisms and applications. The HTML pages to which web browsers will be automatically redirected constitute "information resources" that describe the "non-information resources" identified by the original URIs.

How

If I get a comment box full of requests for a blow-by-blow description of the algorithm, I'll post something on that. If you're really curious and energetic, have a look at the code. It's intended mostly for short-term, internal use, so it's not marvelously documented. Yes, it's a hack.

One of the big headaches was deciding how to decompose the complex labels into simple, clean ASCII strings that can be legal URL components. Sean blogged about that, and wrote some code to do it, shortly after the workshop.

Credit where credit is due

Sean and I had a lot of help from the workshop participants (Ben Armintor, Gabriel Bodard, Hugh Cayless, Sebastian Heath, Tim Libert, Sebastian Rahtz and Charlotte Roueché) in sorting out what to do here. Older, substantive conversations that informed this process (with these folks and others; notably Rob Chavez, Greg Crane, Ruth Mostern, Dan Pett, Ross Scaife†, Patrick Sims-Williams, Linda Smith and Neel Smith) go back as far as 2000, shortly after the Atlas was published.

Many thanks to all!

Examples
in the Wild


Sebastian Rahtz has already mocked up an example service for the Lexicon of Greek Personal Names. It takes a BAtlas alias and returns you all the name records in their system that are associated with the corresponding place. So, for example:
  • http://clas-lgpn2.class.ox.ac.uk/batlas/aloros-50-b3
This is just one of several services that LGPN is developing. See the LGPN web services page, as well as the LGPN presentation to the Digital Classicist Seminar in London last month.

Sebastian Heath, for some time, has been incorporating Pleiades identifiers into the database records of the American Numismatic Society. He has blogged about that work in the context of Concordia.

Do you have an application? Let me know!

Monday, February 18, 2008

Roman port "discoveries" in Libya

By way of rogueclassicism I found out about a brief notice from ANSA entitled "Scoperti due antichi porti romani in Libia". A slightly longer piece in La Repubblica repeats the "hitherto unknown" assertion. Sicilia Informazioni provides a longer and clearer report on the same information under the title "Ritrovato un porto romano sulle coste della Libia".

I found the piece a bit odd, since it claimed the "discovery" of a Roman port at Hamama in Libya (kml) that "might be" the Phykous (Greek: Φυκοῦς) mentioned by Strabo (17.3.20) and Ptolemy (4.4.5; Latin: Phycus) ... and yet the Barrington Atlas (and after it, Pleiades) have no hesitation in placing Phykous at that very spot. If there were some significant doubt about the siting of a named, attested place, we would have expected the Atlas to indicate such.

A little digging reveals that this inconsistency is probably an accident of editing in the media reports of recent archaeological work. The press release that seems to be behind these stories is posted on the website of the Soprintendenza del Mare, Regione Siciliana (one of the partners in the expedition). This report acknowledges that the site of Phykous (mod. Hamama) has been well-known for some decades, but notes that it have never previously been subjected to systematic survey. Indeed, BAtlas cites G.D.B. Jones and J.H. Little, “Coastal settlement in Cyrenaica,” JRS 61 (1971) 64‑79 for Phykous (via JSTOR, for those with access), where the identification with Hamama is represented as secure.

The press release goes on to communicate some interesting and hitherto unknown things (with illustrations):
  • The expedition team (just returned) conducted a surface walk of the site, 3D laser mapping and total station survey; the site walk recovered 500 artifacts, which have been cataloged for subsequent analysis.
  • Major structures identified include: a possible lighthouse foundation [previously noted by Jones and Little, p. 74], a large rectangular building, a possible theater, numerous rock-cut tombs and quarry sites, as well as a large "control structure" on the summit and two rock-cut caves in the hillside (one possibly used as a church, the other as a synagogue). [Jones and Little had noted "the remains of low walls extend[ing] over an area of c. 24 hectares" (p. 74).]
  • Surf and wind limited the team's ability to conduct an underwater survey, but they did tentatively identify the remains of a long harbor mole, faced with rectangular blocks and filled with rubble.
  • Analysis of pottery and masonry may indicate a foundation date as early as the 4th century BC (attic pottery), with the most frequent and intensive use occurring in the 3rd and 4th centuries AD. [Jones and Little had noted "pottery ranging from black-glazed ware to Byzantine coarse wares, indicating an occupation from the fourth century B.C. to the sixth century A.D." (p. 74).]
  • Further west, toward Benghazi (ancient Berenice), the team conducted a limited search at modern El-Ougla (I can't locate this place). Although wind and surf inhibited their work, they identified the heavy foundation of a probable tower as well as two circular tanks possibly used for producing garum. Surface materials are reported to be consistent with occupation and activity during the 3rd and 4th centuries AD.
In addition to David Meadows at RC, thanks are due to my employer (NYU) for purchasing a JSTOR subscription that includes JRS, to Patromoniosos.it for posting the text of the press release (a link to the original would have been helpful) and to Brian Turner (UNC-CH) for the Strabo and Ptolemy references (part of his work on enhancing BAtlas content for forthcoming addition to Pleiades). And then of course there's Google's search, without which I wouldn't have been able to hunt down the original.

Wednesday, October 17, 2007

Pleiades data status

Thanks to Sean's code-wizardry, it's now possible for us to provide you with on-going information on what data has been added to Pleiades, and what's slated to come next. You can view the information:
Why "batlas" you ask? The page explains it all. Enjoy!

Or check it out in google maps directly.