Sunday, September 14, 2008

The Wiki: An Environment For Scholarly Conversation and Publishing

The Wiki: An Environment For Scholarly Conversation and Publishing

Gerry McKiernan, Associate Professor and Science and Technology Librarian, Iowa State University Library
Ames Iowa USA
September 09 2008 / 18:00 – 18:20

"The Medium Is The Message ... The Audience Is The Content"

Marshall McLuhan. Understanding Media: The Extensions of Man. New York: McGraw-Hill, 1964.

A "wiki is a ... collaborative space ... because of its total freedom, ease of access, and use, [and] simple and uniform navigational conventions ... ." "[It] ... is also a way to organize and cross-link knowledge ..." Ward Cunningham, Father of The Wiki (Leuf and Cunningham, 2001, 16). Most wikis provide the user with a set of navigation or utility tools such as the ability to create and edit a page, view recently changed pages, and rollback to previous page versions. In addition, many wikis include a discussion forum for proposed page changes.

Among its many perceived benefits are its potential for facilitating a more creative environment and expanding knowledgebase, and a significant ability to harness the power of diverse point-of-views in creating collaborative works.

In this presentation, we will speculate on the Wiki as a digital environment that not only supports current scholarly practices, but more importantly, offers a framework for their enhancement and transformation.

[http://www.public.iastate.edu/~gerrymck/Science21StCentury2008.ppt]

A/V For Presentation Available
Windows Presentation, Windows Video File, Flash Presentation, MP3, PDF

==>I Recommend The Flash Presentation<==

*****

BTW: May I Recommend A Most Excellent Bed & Breakfast

If/When You Visit Waterloo

[It's The Home of Research in Motion / BlackBerry]

Sugar Bush Guest House B&B

[http://www.sugarbushguesthouse.com/]

*****

BTW-2: The Wiki: An Environment for Scholarly Conversation and Publishing is based upon

“Wikis: Disruptive Technologies for Dynamic Possibilities” PowerPoint presentation delivered at Digital Libraries à la Carte: Choices for the Future, Tilburg University, The Netherlands, August 23, 2005

[http://www.public.iastate.edu/~gerrymck/TICER2005.ppt]

(accessed 21 September 2008)

Friday, September 5, 2008

LiveScience: Era of Scientific Secrecy Near End

Era of Scientific Secrecy Near End / By Robin Lloyd, LiveScience Senior Editor / posted: 02 September 2008 11:30 am ET

Secrecy and competition to achieve breakthroughs have been part of scientific culture for centuries, but the latest Internet advances are forcing a tortured openness throughout the halls of science and raising questions about how research will be done in the future.

The openness at the technological and cultural heart of
the Internet is fast becoming an irreplaceable tool for many scientists, especially biologists, chemists and physicists — allowing them to forgo the long wait to publish in a print journal and instead to blog about early findings and even post their data and lab notes online. The result: Science is moving way faster and more people are part of the dialogue.

[snip]

Open Science

The open science approach forces researchers to grapple with the question of whether they can still get sufficient credit for their ideas, said physicist Sabine Hossenfelder, co-organizer of a conference on the topic set to begin Sept. 8 at the Perimeter Institute in Ontario, Canada.


[BTW: I Will Be Attending This Unique Conference
Science in the 21st Century: Science, Society, and Information Technology [http://tinyurl.com/6ll8fb] / Look For Conference-Related Postings on the _Scholarship 2.0_ Blog [http://scholarship20.blogspot.com/] within the next two weeks]

[snip]

Open science is a shorthand for
technological tools, many of which are Web-based, that help scientists communicate about their findings. At its most radical, the ethos could be described as "no insider information." Information available to researchers, as far as possible, is made available to absolutely everyone.

Beyond email, teleconferencing and search engines, there are many examples: blogs where scientists can correspond casually about their work long before it is published in a journal; social networks that are scientist friendly such as Laboratree and Ologeez; GoogleDocs and wikis which make it easy for people to collaborate via the Web on single documents; a site called Connotea that allows scientists to share bookmarks for research papers; sites like Arxiv, where physicists post their "pre-print" research papers before they are published in a print journal; OpenWetWare which allows scientists to post and share new innovations in lab techniques; the Journal of Visualized Experiments, an open-access site where you can see videos of how research teams do their work; GenBank, an online searchable database for DNA sequences; Science Commons, a non-profit project at MIT to make research more efficient via the Web, such as enabling easy online ordering of lab materials referenced in journal articles; virtual conferences; online open-access (and free) journals like Public Library of Science (PLoS); and open-source software that can often be downloaded free off Web sites.

[BTW: Several Of These Innovations Have Been Profiled In My SciTechNet(sm) Blog [http://scitechnet.blogspot.com/] and/or The Scholarship 2.0 Blog [http://scholarship20.blogspot.com/]

The upshot: Science is no longer under lock and key, trickling out as it used to at the discretion of laconic professors and tense PR offices. For some scientists, secrets no longer serve them. But not everyone agrees.

Networked Cyborgs

Just a few decades ago, as a scientist, here is how you did your work: You toiled in obscurity and relative solitude.

[snip]

However, today,
more and more scientists, as well as researchers in the humanities, operate like transparent, networked cyborgs. Background research is mostly done online, not in the library. Some data and preliminary research might be posted online via a blog or open notebook. Early write-ups of the work might be announced to the public, or at least discussed online with peers. And these early write-ups might also be posted to an online publication that is not peer-reviewed in the strict sense.

[snip]

"In areas like my own subfields of theoretical physics," said MIT physicist David Kaiser, "the only constraint [on how rapidly one generates research papers] is, 'Did you have more coffee that day?' We aren't usually held up trying to get an instrument to work, or slogging through complicated data analysis."Most people think faster is better, but there are other issues.

Is It A Good Thing?

There is "no question" that all efforts to make science more open are positive for the progress of science, says open science proponent and chemist Jean-Claude Bradley at Drexel University in Philadelphia, who posts his lab notebook online and started a blog in 2005 called UsefulChemistry where he and his colleagues regularly discuss chemistry problems as well as Web 2.0 tools and the technical and philosophical issues they raise.His online notebook and blog definitely make it easier to communicate with colleagues, he said. Such sharing also makes it easier for others to "replicate" scientists' work — try it themselves and convince themselves that you are right. And this replication issue is one of the principles behind scientific research. Anyone who has written down a recipe for a friend knows that we all tend to spell things out more clearly when sharing them than we would if we were just taking notes for ourselves in our own shorthand.

Open science also has the potential to prevent discrimination in access to information. Arxiv, the site for posting pre-print physics papers, was started in 1991 by Cornell physicist Paul Ginsparg, then at Los Alamos National Laboratory, to help provide equal access to prepublication information to graduate students, postdocs and researchers in developing countries.

[BTW: Paul Ginsparg will be one of several Major Players attending/presenting at The Conference [
http://science21stcentury.org/abstracts.html]]

[snip]

And open science benefits the public, Bradley said. He tries to keep his posts fairly accessible (although this is not the case for all open notebooks and open science blogs).

[snip]

"It's not clear to me that professional scientists or people in academic institutions have a
monopoly on good ideas," he said. "There are very smart people outside of academia, for example hobbyists or people in industry who could contribute, and having more contributors can only help. The same applies to interdisciplinary and cross-disciplinary approaches."

[snip]

Drawbacks of Open Science

One of the biggest fears of nearly all researchers is that someone else hears what you're doing and beats you to publication. That means you wasted a lot of time (and most researchers work extremely long hours, so loss of productivity is especially painful and can also harm one's chances for
getting a job or promotion or funding for the next research project). Once you publicly reveal your thoughts, data or experimental results, some say, you lose control over ownership of that information. This topic is covered by an area of law called intellectual property, as well as patent law, and there can be significant money to be fought over when it comes to patents.

Hossenfelder, the conference organizer, says she knows of several examples in which scientists have had an idea for something, talked about it openly and then somebody else has published the fleshed-out idea first without giving any credit beyond an acknowledgment to the original idea-holder. Acknowledgments don't advance careers.

However there are solutions to this, she said. For instance, the prominent scientific journal Nature encourages authors to include brief summaries of which author contributed what to a project. Some say that online posts provide a time-stamped record of when an experiment was documented. Those stamps can easily be arbitrarily altered after the fact, but it might also be possible to "lock" posts at a certain date after which they could not be changed without some sign-off permission to break the lock, Hossenfelder said. [snip]

Fear of Losing Peer Review

Another drawback of open science can be that results go public before they should. In science, experimental results are frequently proven wrong by subsequent work. Yet even peer review cannot ensure against this, nor can it prevent outright fraud, as proven by
a 2005 case involving a South Korean scientist who claimed to have achieved the first cloning of a human embryo. A later examination of his work showed he had fabricated his results.

[snip]

"The social system of science has become so complicated, unregulated and dispersed in terms of geography and disciplines, so peer review has been elevated to a principle that unifies a fragmented field," Biagioli said.

[snip]

And today, Arxiv, one of the most frequently cited examples of open science, has no peer review for individual papers, but it has begun to add in some constraints on allowable authors. The site used to allow anyone with email addresses associated with academic institutions to post their papers. Now, authors of research papers who post in Arxiv are vetted before they can post for the first time. In some ways, things are tightening up when it comes to openness in physics, Kaiser said. In any case, the function of print journals, in physics at least, is changing.

"Ease of sharing everything prior to peer review is flourishing, and in my opinion very few physicists are reading journals for information these days," Kaiser said. "Journals have largely lost their information function."

[snip]

For The Good Of Truth, Humanity, Economies?

Another argument in favor of open science is sort of a big picture issue for humanity, scientific truth and economies, Neylon said.

"Making things more open leads to more innovation and more economic activity, and so the technology that underlies the Web makes it possible to share in a way that was never really possible before, while at same time it also means that kinds of models and results generated are much more rich," he said.

This is the open source approach to software development, as opposed to commercial closed source approaches, Neylon said. The internals are protected by developers and lawyers, but the platform is available for the public to build on in very creative ways.

"Science was always about mashing up, taking one result and applying it to your [work] in a different way," Neylon said. "The question is 'Can we make that as effective as samples data and analysis as it does for a map and set of addresses for a coffee shop?' That is the vision."

[
http://www.livescience.com/culture/080902-open-science.html]

Thanks to Sabine Hossenfelder For The HeadsUp !

[http://friendfeed.com/rooms/science21]

Sunday, August 31, 2008

NeoNote: User Centered Design Suggestions for a Global Shared Scholarly Annotation System

NeoNote: User Centered Design Suggestions for a Global Shared Scholarly Annotation System (Abstract)

Brad Hemminger, UNC/CH School of Information and Library Science

Information Seeking Support Systems Workshop / An Invitational Workshop Sponsored by the National Science Foundation / June 26-27 2008 / Chapel Hill, NC USA

Introduction

Significant changes are occurring to scholarly communications due to technological innovations, primarily the advent of computers and the internet. Compared to thirty years ago, scholars use computers both to do their work and write their papers. They publish in journals still, but the articles are available and accessed more in digital format than in print format. Scholars increasing share their work with others by putting their work on their websites, in institutional repositories, or emailing to others. They use collaborative tools for writing papers, or creating shared content on wikis. Scholars are beginning to compile large digital collections of research papers instead of print collections. They are beginning to annotate these papers electronically, and to share these annotations. They save citation information digitally in citation managers and automatically incorporate this information when writing their papers. They start their searches more often with search engines that traditional library catalog resources, andthey spend most of their time searching for and looking for information in web browsers.

There has been a proliferation of tools developed to help support scholars in performing this myriad of activities, but in most all cases, the tools are designed for only a specific task or environment. As a result, scholars are forced to utilize many different incompatible tools to perform their scholarly work and communication. This paper looks at the problem from the scholar’s perspective and proposes a user interface well suited to scholarly work practices. It also proposes a paradigm for how scholarly annotations could be captured, stored, searched and re‐used on both a global scale, and at the level of an individual research laboratory or group. It is our hope that the paradigms proposed in this paper will provoke discussions in the digital library community about shared global designs for digital library content, including annotations.

As part of a user centered design process to develop a global shared annotation system, information from surveys [Hemminger ASIST 2007], our interviews with scientists at UNC, and feedback from users of scholarly annotation tools were analyzed to generate a list of features scholarly researchers required. Currently, there are no systems designed to provide a single comprehensive system to address all user’s needs. There are, however, many individual applications that provide excellent support for one or more features needed by the scholarly researcher. This paper describes the desired features of a single comprehensive system, gives examples of current tools that support these features, and then describes the architecture of our resulting design.

[http://www.ils.unc.edu/ISSS/papers/papers/hemminger.pdf]

YouTube

NeoNote: A User Interface for "Memex" (Duration 8:11)

[http://www.youtube.com/watch?v=hm4UNtR0WfI]

Article

NeoNote: Suggestions for a Global Shared Scholarly Annotation System / Bradley Hemminger, University of North Carolina, Chapel Hill / D-Lib Magazine / May/June 2009 / Volume 15 Number 5/6 / doi:10.1045 /may2009-hemminger

[http://www.dlib.org/dlib/may09/hemminger/05hemminger.html]

Friday, August 29, 2008

Mememoir: The Radical Scientific Wiki Engine

Scientific Wiki Solves The 'Who Wrote What' Problem


Next Generation Wiki [Engine] Links Every Word To Its Author

Reporting in Nature Genetics, scientist Robert Hoffmann develops the first Wiki where authorship really matters. Based on a powerful authorship tracking technology, this next generation wiki links every word to its corresponding author. This way readers can always know their sources and authors receive due credit.

The history of a collaborative wiki article can become extremely complex within a few editing cycles. Someone creates a paragraph; someone else deletes a sentence, inserts a word here and there, and so forth. - "How could the reader of such an article know who wrote what," asks Dr. Robert Hoffmann, Society in Science fellow and visiting scientist at the Massachusetts Institute of Technology, MIT.

In first generation wikis, this information could theoretically be found in the archives, but in practice, it is impossible for a reader to reconstruct the authorship of specific texts from hundreds of previous versions. This has been the root cause of a lasting suspicion against wikis in academia and the business world, since the uncertainty as to the source of a single word can decrease the value of a collaborative text in its entirety.

Apart from being an important guidance to the reader, authorship is often key to a successful academic and professional career. Authorship provides an important basis to establish priority of ideas and discoveries and to build a reputation among peers. "It is only fair to duly acknowledge authors, who invest time and knowledge in their contributions," Hoffmann says in his article.

Clear authorship attribution in this next generation wiki makes it also possible that users can rate each other based on their contributions. For the first time, collaborative publishing can therefore be enhanced with the advantages of a reputation system. Hoffmann describes how a self-regulating reputation system can help to settle editing conflicts, which were an important problem in first generation wikis and used to depend on slow and refutable top-down decisions.

The scientific wiki project, introduced in the September issue of Nature Genetics and released online today, is the first of its kind and a milestone in the Mememoir project. "This release is an important proof of principle, but our ambitious aim with the Mememoir project is to revolutionize publishing in all of science," says Dr. Hoffmann, "with a knowledge base that is open access, interdisciplinary and combines the altruistic possibilities of wikis with explicit authorship."

The first scientific wiki system of the Mememoir project has been released online today at WikiGenes.

Source [http://www.mememoir.org/]

Robert Hoffman /A Wiki for the Life Sciences Where Authorship Matters / Nature Genetics / volume 40 / number 9 / 1047 - 1051 /September 2008 / Published online 27 August 2008 / doi:10.1038/ng.f.217

Sample Text

[snip]

WikiGenes

WikiGenes is a collaborative knowledge resource for the life sciences, which is based on the general wiki idea but employs specifically developed technology to serve as a rigorous scientific tool. The rationale behind WikiGenes is to provide a platform for the scientific community to collect, communicate and evaluate knowledge about genes, chemicals, diseases and other biomedical concepts in a bottom-up process.

[snip]

In WikiGenes, authorship tracking technology is used to link every contribution unambiguously to its author, creating the first hybrid of traditional, scientific and collaborative, dynamic publishing ... . This technical innovation in WikiGenes also supports the other central function of authorship as guidance for the reader. Authorship is essential to appraise origin, authority and reliability of information. This is especially important in the wiki model, with its dynamic content and large number of authors.

[snip]

How could the reader of such an article know who wrote what? In first generation wikis, this information can theoretically be found in the archives and attempts have been made to establish reliability measures, but in practice, it is impossible for a user to reconstruct the authorship of specific text passages from hundreds of previous versions.

The uncertainty as to the source of specific texts is therefore an important problem in dynamic publications and decreases the value of articles in their entirety. In WikiGenes, on the contrary, new contributions are identified with every editing step and attributed to their authors. Thus readers can always know the corresponding author of any part of a WikiGenes article.

[snip]

Future prospects

The technological innovation in WikiGenes is central to the attempt to turn the wiki model into a rigorous scientific tool. To this aim it is also important to provide a framework that supports the contribution of novel and original research. Clear authorship attribution facilitates this essentially, but the integrative and harmonizing forces in dynamic publications tend to work against original and novel views. In WikiGenes, authors are therefore provided with the option to create protected articles with a limited number of selected co-authors. These articles cannot be edited by others, but they can still be linked to the encyclopedic core and discussed and rated by everyone. This way, it would be possible in the near future to publish original research and establish priority of discoveries and theories.

[snip]

[http://www.nature.com/ng/journal/v40/n9/full/ng.f.217.html] (Subscriber Access)

[http://www.nature.com/ng/journal/v40/n9/pdf/ng.f.217.pdf] (Subscriber Access)

WikiGenes

[http://www.wikigenes.org/]

WikiGenes Introduction & Tutorial

[http://www.wikigenes.org/app/info/movie.html]

Sample 'Author' Contribution Page

[http://www.wikigenes.org/user/info/4/contributions.html]

Sample 'Author' Contribution

[http://www.wikigenes.org/e/gene/e/6532.html?vs=2&aid=4]

See Also

[http://www.theregister.co.uk/2008/08/29/mememoir_uber_wiki_announced/]

Thanks / Bernie Sloan / Sora Associates / Bloomington, Indiana / For The HeadsUp

Thursday, August 28, 2008

Lowering the Interactive Cost Of Tagging Systems: SparTag.us and Click2Tag:

SparTag.us and Click2Tags: Lowering the Interactive Cost Of Tagging Systems

Tagging systems such as del.icio.us and Diigo have become important ways for users to organize information gathered from the Web. However, despite their popularity among early adopters, tagging still incurs a relatively high interaction cost for the general users.

To understand the costs of tagging, for each of these systems, we performed a GOMS-like analysis of the interface and identified the overall number of steps involved in tagging. We count these steps to get a gross measure of the tagging costs ... [snip]

[snip]

We introduce a new tagging system called SparTag.us, which uses an intuitive Click2Tag technique to provide in situ, low cost tagging of web content. In SparTag.us, we bring the tagging capability into the same browser window displaying the web page being read. When a user loads a web page in his browser, we augment the HTML page with AJAX code to make the paragraphs of the web pages as well as the words of the paragraphs live and clickable.

As users read a paragraph, they can simply click on any words in the paragraph to tag it. SparTag.us also lets users highlight text snippets and automatically collects tagged or highlighted paragraphs into a system-created notebook, which can be later browsed and searched. We're currently conducting an internal PARC beta-testing of this tool, and hope to release it for public use in the near future.

[http://asc-parc.blogspot.com/2008/06/spartagus-and-click2tag-lowering.html]

Augmented Social Cognition / Augmented Social Cognition Research Group at Palo Alto Research Center (PARC).

Cite

Lichan Hong, Ed H. Chi, Raluca Budiu, Peter Pirolli, and Les Nelson. SparTag.us: Low Cost Tagging System for Foraging of Web Content. In Proceedings of the Advanced Visual Interface (AVI2008), pp. 65--72. ACM Press, 2008.

[http://www.parc.com/research/publications/files/6283.pdf]

Video

[http//au.youtube.com/watch?v=XG0SIBZ6_JY]

PARC Forum Webcast

Enhancing the Social Web Through Augmented Social Cognition Research / Ed Chi /PARC Augmented Social Cognition Group

May 1 2008 / 4:00 p.m. / George E. Pake Auditorium / Palo Alto, CA ,USA

[http://asc-parc.blogspot.com/search/label/PARC%20Forum]

New Age Tagging = SharedTags(sm) | TagFont(sm) | TagSort(sm)

Colleagues/

.... Tag Queries for a Thursday Early Afternoon ....

I. Are there implementions/technologies that can display the degree of association / co-occurence of Tags within a corpus (and enable one to navigate in one way or another (e.g., tag cloud and/or other visualization))?

II. Are there implementations/technologies that allow one to designate the relevative importance of a tag for a section and/or corpus of text? Major / Minor Importance Would Be A Good Beginning (e.g. Bold vs. Non-Bold)

BTW: Certainly The Ability To Indicate Relative Importance by Font Size / Style Would Be More Interesting [:-)

[And Lets Not Forget About Color [http://tinyurl.com/53vk36]]

III. Are there implementations/technologies that allow one to sort sub-document tagged text by select criteria? For example: Have the ability (re)sort tagged text sections (e.g. paragraphs) such that the most relevant sorted sections are displayed before those of less relevance (e.g. sections with tags that are more 'associated' or co-occurring)


BTW: Tagging Is Not Limited To 'Text' (Can Also Apply To Photos (Flickr), Videos (YouTube), Other Media .


Please Post Responses / Thoughts As (A) Comment (s) On This Blog Entry

Thanks!

/Gerry

Wednesday, August 27, 2008

Tagging @ Sub-Document Level(s)?

Colleagues/

Are you aware of any current applications/technologies that allows one to Tag a document at the **Paragraph** (or Chapter) level? (and Not Only At The Document Level)?

I am also interested Tag Cloud technologies that allows for the visualization of Tags associated with selected Paragraphs (or Book Chapters or Other Formal Parts Of A Work).

Thanks!

/Gerry

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