Showing posts with label crossref. Show all posts
Showing posts with label crossref. Show all posts

Saturday, September 9, 2017

qr-code of a scientific article, and blogger. An Analytical Solution of The Laplace Equation With Robin Conditions


Use the DOI resolver:
https://chrome.google.com/webstore/detail/doi-resolver/goanbaknlbojfglcepjnankoobfakbpg
 and for example:
http://dx.doi.org/10.5281/zenodo.439037
it generates
this qr-code
(for your smartphone):


In blogger add image :
see this example on the right of this blog.

Cite as

Mottin, Stéphane. (2016). An analytical solution of the Laplace equation with Robin conditions by applying Legendre transform. Integral Transforms and Special Functions, 27(4), 289–306. 

Export

go to
https://zenodo.org/record/439037
export
BibTeX CSL DataCite Dublin Core JSON MARCXML

or inside the pdf :
Refence bibTeX
@article{mottin:hal-01376999,TITLE = {An analytical solution of the Laplace equation with Robin conditionsby applying Legendre transform},AUTHOR = {Mottin, Stéphane},URL = {https://hal.archives-ouvertes.fr/hal-01376999},JOURNAL = {Integral Transforms and Special Functions},PUBLISHER = {Taylor and Francis},VOLUME = { 27},NUMBER = {4},PAGES = {289-306},YEAR = {2016},DOI = {10.1080/10652469.2015.1121255},KEYWORDS = {Robin boundary conditions ; integral transform ; Legendre transform ; inverse problems ; Appell function ; evaluation of definite integrals ; biophotonics ; heat transfer ; mass transport},PDF = {https://hal.archives-ouvertes.fr/hal-01376999/file/mottin_2016_LegendreTransfo.pdf},}



Thursday, July 20, 2017

articles on Open access in Physics Today May 2017. Quantity of all scientific articles = 3 millions articles/year (2020)


The state of open access by Charles Day 

Physics Today 70, 5, 8 (2017); doi: http://dx.doi.org/10.1063/PT.3.3535
On page 24 (see below) you’ll find David Kramer’s in-depth report on the current state of open-access publishing. Open access and its place in the landscape of academic journals have changed since November 2012, when Physics Today last covered the topic. Besides authors, publishers, and policy makers, other actors are now on the open-access stage, among them charitable foundations, scholarly collaboration networks, and, yes, pirates who post unauthorized copies of papers on Russian servers.
My attitude toward open access is conflicted. On the one hand, I agree that the fruits of publicly funded research should be freely available, especially to scientists in poor countries and to scientists employed by companies and colleges that can’t afford journal subscriptions. On the other hand, I’m well aware that Physics Today is funded in part by the profits that AIP’s publishing subsidiary makes from selling subscriptions to its 19 journals. If Physics Today had to rely solely on advertising and subscription revenue, it would have to shrink and change format.
Regardless of where you, I, or anyone else stands on open access, there are forces in play that are hard for publishers to resist. One of those forces arises from the nature of the principal end product of scholarly research, a paper that’s usually in the form of a PDF. The P in PDF stands for portable, which is what PDFs all too easily are. For Physics Today’s August 2009 issue, I wrote a feature article about iron-based superconductors, which had been discovered just two years earlier. Google Scholar lists 16 unauthorized PDFs of the article, 13 of which are on Chinese websites. (I couldn’t find the article on Sci-Hub, the pirate website founded by a Kazakhstani grad student.)
Portability isn’t the only disrupting force at play. University library budgets have not kept up with inflation or with the growth in the number of the world’s scientists and their output. The cash crunch is forcing librarians to scrutinize journals based on price and usage. Subscriptions to those that don’t meet increasingly stringent criteria are not renewed.
Despite those trends, some aspects of scholarly publishing remain the same. It’s just as hard now as it was in the 19th century to conceive of an experiment or theory that is both original and significant enough to be worth publishing in a scientific journal. Reviewing your peers’ papers before publication continues to be an unpaid yet valuable duty. And a paper’s final version of record still needs to be archived, online if not in bound volumes on library shelves.
When I ask physicists and other scientists how they choose where to publish their work, I tend to get the same answers. Scientists want their papers to be read, so they publish in journals that their peers read. A physicist told me once that he regretted publishing in the prestigious Proceedings of the Royal Society because his fellow fluid dynamicists didn’t read that journal. Physics of Fluids, he mused, would have been a better choice.
Some physicists tell me that if they have a hot result, they’ll go for a journal with a high impact factor, such as Physical Review Letters, Nature, or Science. But in the digital age, as George Lozano, Vincent Larivière, and Yves Gingras discovered in an extensive bibliometric study, the correlation between a journal’s impact factor and a paper’s citations is weakening.1
One of the findings in David’s report in this issue is that open-access papers in the physical sciences currently make up just 10–12% of the total. That modest proportion likely reflects the continuing appeal and reputation of traditional journals. But as any marketing guru will tell you, appeal and reputation are intangible components of a brand. The contest for the best papers in physics will likely be won by the publishers who nurture those intangibles, regardless of access model.

REFERENCES

1. G. A. Lozano, V. Larivière, Y. Gingras, J. Am. Soc. Inf. Sci. Tec. 63, 2140 (2012). https://doi.org/10.1002/asi.22731

Steady, strong growth is expected for open-access journals

Publishing models continue evolving to accommodate government mandates. Meanwhile, publishers look to cope with article-sharing sites that affect their business.
David Kramer
Physics Today 70, 5, 24 (2017); doi: http://dx.doi.org/10.1063/PT.3.3550


In the more than 15 years since the advent of open-access (OA) journals, scientific publishers who once viewed them as an existential threat are now operating their own. But despite double-digit growth in OA, scientific societies and commercial publishers alike agree that the vast bulk of their publications will remain wedded to the traditional subscription model for the foreseeable future.
“Open access is much less of a contentious issue now,” says H. Frederick Dylla, retired executive director of the American Institute of Physics, which publishes Physics Today. “It’s happening. It’s a business model.” Of more concern to publishers today is the illicit posting of papers on article-sharing services. By some estimates, such as a 2014 report prepared for the European Commission, more than half of the scientific literature from 2007 to 2012 was accessible for free online. But it’s unclear how much of that content consists of papers that infringe on publishers’ copyrights because they are freely accessible despite licenses that are supposed to keep them behind paywalls.

Academic libraries face rising subscription costs for an ever-growing number of journals. Some libraries also underwrite researchers’ costs for publishing in open-access journals.

Broadly speaking, scientific publishing follows two models. Traditionally, most journals obtain their revenues from institutional subscribers, mainly universities. Outside those licenses, the journal content is located behind an online paywall. So-called gold OA journals provide their entire content for free online immediately upon publication. Their revenues are provided from fees, known as article processing charges, paid by the article authors or their institutional funders.
A second category, known as green OA, consists of nongold OA articles that are freely available in one of the following forms: An article may be made available prior to publication as a preprint. A manuscript version may be provided by the publisher so authors can post it to their websites and institutional archives at the time it is accepted for publication. Or it can be released in its final published form, known as the version of record, after a specified period, most often one year after publication (this is sometimes referred to as delayed gold OA). Most scientific papers today are or will become available in some fashion as green OA.
The extent of fully OA publishing, like that of journal publishing overall, is hard to measure. About 800 of the 11 000 or so journals included in Journal Citation Reports, the Clarivate Analytics (formerly Thomson Reuters) service that calculates the widely used journal impact factors, are gold OA. Of the 21 500 journals tracked by Scopus, an abstract and citation database, around 3500 are gold OA titles. But less exclusive indexes, such as the Directory of Open Access Journals, count more than 9300 journals published in 129 countries. Estimates of the total scientific journal population—subscription and OA—range from a low of 33 000 to a high of 60 000, depending in part on where the line is drawn between scholarly and trade journals.
The International Association of Scientific, Technical, and Medical Publishers, whose 120 members publish two-thirds of all STM journal articles, estimated annual revenues for English-language STM journal publishing at $10 billion in 2015, up from $8 billion in 2009. Delta Think, a scholarly publishing consulting firm, valued the fully OA journal market last year at $374 million, and for 2017 it forecasts growth of 12%, roughly twice the rate of growth in the overall journal market. “Going forward, we think that the open-access market will continue to grow at about 10% to 15% through 2020,” says Delta Think’s Dan Pollock.

MANDATES AND ARCHIVES

The growth of OA is largely driven by dozens of governments around the globe that have mandated free access to the results of publicly funded research. In most cases, including in the US, those mandates require grantees to make their papers free after a one-year embargo. The same applies in the UK, where the government also sets aside funding to pay for gold OA. The European Union requires grantees of its €80 billion Horizon 2020 program to provide free access within six months of publication (see Physics Today, March 2014, page 26).
In the US, the major federal research-funding agencies have chosen several public repositories for their sponsored research. The largest, PubMed Central (PMC), has been operated by the National Institutes of Health since 2000. In addition to NIH-funded research, PMC has been designated by NASA, NIST, the Environmental Protection Agency, the Department of Homeland Security, and other, smaller funding agencies to house their research results.
The Department of Energy, NSF, US Geological Survey, Department of Defense, Smithsonian Institution, and Department of Agriculture have chosen to link their individual repositories to the Clearinghouse for the Open Research of the United States (CHORUS) database, established by a consortium of journal publishers. As of 30 March 2017, the CHORUS repository held 327 000 articles, of which 74 000, just under 25%, were post-embargo and freely accessible.
Unlike PMC, where articles are deposited in their entirety, CHORUS directs users to the participating publishers’ websites. The distinction is important for publishers, who want to attract traffic.
In response to public mandates, the majority of subscription journals now offer the option for authors to pay an article processing charge to make their articles immediately OA. That so-called hybrid model currently accounts for about 4% of published papers (see the figure on page 26). But at some future theoretical tipping point, says Ken Heideman, publications director at the American Meteorological Society (AMS), the amount of free content could outweigh the subscription-only articles and force publishers to lower their subscription rates. “If you think of the whole of your content as a piece of cheese, pretty soon the hole gets bigger and it’s Swiss cheese,” he says.


Numbers of scientific articles published in fully open-access (gold) journals 
and of fully open-access articles in subscription journals (hybrid) 
are increasing at a faster rate than are numbers of articles in subscription-only journals. 
Nearly all articles ultimately become freely available 
in some form (green open access), 
often after an embargo period. (Data provided by Elsevier.)

Some nonprofit research funders, notably the Bill & Melinda Gates Foundation and the Max Planck Society, now require gold OA publication of their sponsored research. Some organizations also may permit publication in hybrid journals.

Some nonprofit research funders, notably the Bill & Melinda Gates Foundation and the Max Planck Society, now require gold OA publication of their sponsored research. Some organizations also may permit publication in hybrid journals.

THE ECONOMICS

It’s clear that the subscription model remains more lucrative. Journal publishers receive, on average, about $5000 per article from subscriptions, according to industry consultant Joseph Esposito in the Scholarly Kitchen blog in December 2016. But article processing charges for OA journals generally are only $1000–$1500 per article.
While they contain as much as 18% of all journal content, gold OA journals and gold articles in hybrids produce just 3–6% of all publishing revenues. A smaller proportion of articles in the physical sciences, some 10–12%, are published in OA journals, Pollock says. The disparities between content and revenue probably reflect the fact that OA is still a relatively young market, with publishers discounting article processing charges, he says.
Two of the 11 AMS journals, including the flagship Bulletin of the American Meteorological Society, are gold OA. Heideman says physical sciences have been “dragged along” to OA by the biomedical community. “We certainly agree that open access is a good thing within the limits of our business model. But it isn’t one size fits all. We’ll continue to do it incrementally.”
AMS decided a year ago to make all content of its nine subscription journals freely available after a one-year embargo, regardless of funding source. It was felt to be unfair to authors not subject to mandates to have their work remain stuck behind a paywall.
But Heideman regards the finite embargo period as an experiment, and its financial impact on AMS is uncertain. “We’re banking on the fact that libraries are still going to see the value in subscribing to our content rather than waiting for a full year to get it free. We feel confident, but there are no guarantees,” he says. “So far we haven’t seen anything that would alarm.”
With more than 200 gold OA journal titles, Elsevier is second to Springer Nature in the number of fully OA journals published. All but 200 of Elsevier’s 2300 subscription journals are hybrid, and roughly 20 000 of the 420 000 articles published in Elsevier journals last year were gold OA. Elsevier policy and communications director Gemma Hersh sees gold OA continuing to grow alongside subscription. In addition, she says, “we’re doing a lot of work with institutions in the US and globally to make green open access more effective and workable.”
Nature Research, a component of Springer Nature and the parent company of Nature and its related journals, declined an interview request. However, a spokesperson said in a statement that the company offers more than 70 journals with OA options, from the multidisciplinary Nature Communications to highly specialized titles such as the 25 Nature partner journals, which are published in association with academic institutions, philanthropies, and membership organizations.
Nature Research believes the subscription model is the best way to provide sustainable and widespread access to journals with low article-acceptance rates, the spokesperson said.
OA is a particular challenge for highly selective journals such as Science and Nature, which publish fewer than 10% of submissions and thus have a considerably higher cost per article published. Jeremy Berg, editor-in-chief of Science, says, “A substantial part of your costs relates to processing, peer reviewing, and so on, for papers you end up not accepting.” A 2013 report in Nature put that magazine’s per-article cost at $30 000 to $40 000. For both flagship publications, advertising and income from other journals offset those high costs. Berg says there have been discussions about adopting hybrid models for Science and the four other Science-branded journals (a fifth, Science Advances, is fully OA).
PLOS, founded by former NIH director Harold Varmus and other prominent scientists in 2001 as one of the original all-OA publishers, in 2007 created PLOS One, a multidisciplinary online platform. As of 30 March, PLOS One had published nearly 18 000 physics articles. Its “megajournal” model differs from nearly every other journal in that research need not be novel, although it still must be sound and is peer reviewed.
After peaking at 31 500 in 2013, annual submissions to PLOS One fell to 22 000 last year. The decline came as other publishers started up copycats such as Nature Research’s Scientific Reports. Some observers, including Phil Davis, a publishing consultant, have questioned PLOS’s continued viability should PLOS One continue to shrink. And David Knutson, PLOS communications manager, acknowledges that PLOS One accounts for the “lion’s share” of parent company revenues, which help to offset costs of PLOS’s four biomedical journals. But Knutson says that the company remains in strong financial shape and that PLOS One today is “at the point where it’s healthy and sustainable.” PLOS’s reported net assets were steady at $30 million from 2014 to 2015.
PLOS considers itself an advocacy organization, and Knutson notes that former CEO Peter Jerram once asserted that should it be put out of business by other OA publishers, it will have accomplished its mission.
Davis is concerned that the Trump administration’s proposed cuts to research could cause a falloff in demand for OA publishing, since authors will have less funding to pay article processing charges. Some university libraries offer support for researchers to pay for publication, even as they claim to have insufficient funds to afford subscriptions to thousands of journals. “Should they be spending $3000 on buying access to a really excellent collection of journals or pay for one paper to be published?” Davis asks.

PHYSICISTS’ VIEWS

Physics-related papers have routinely been shared on the arXiv website since the 1990s. Those preprints typically are posted prior to the peer-review and editing processes that are performed by publishers. University of Maryland physicist Daniel Lathrop says posting to arXiv “satisfies our intent to have open access,” and he notes that the preprint includes both figures and the basic conclusions. “It’s not clear to me why you need open access in the refereed journal as long as it’s the common practice” to post on arXiv, he says.
Still, Lathrop acknowledges that some fellow authors, particularly younger ones, feel strongly about OA, and their views will be considered in deciding where to submit a paper. But a more important consideration, particularly for young researchers, is the reputation and impact factor of the journal.
David Helfand, a Columbia University astrophysicist, sees OA as largely irrelevant to all but “the few people who are ideologically committed to it, who believe it’s just right,” and to those whose sponsors require publishing in OA journals. Helfand, a past president of the American Astronomical Society, says free public access to AAS’s journal content is available through US public libraries. “The number of times this has been used in the past few years can probably be counted on your fingers,” he says.
In AAS’s publishing model, two-thirds of revenues are from article processing charges, with the remainder derived from subscriptions. Should funding for US science drop, Helfand worries that astronomers may submit their work to Monthly Notices of the Royal Astronomical Society, which has no author charges but costs institutions more than $14 000 a year.
“I don’t think if AAS went gold it would change very much, because 98% of the papers are publicly available the day they are accepted, or several weeks before that” in arXiv, he says. A larger problem for public access, he thinks, is scientists’ failure to write in “actual understandable English.”
Helfand’s and Lathrop’s views are supported by author surveys. In a 2015 Nature Publishing survey of its authors, 18 000 respondents ranked an OA option 14th on a list of 17 factors driving the choice of where they submit articles.
Paul Hardaker, chief executive of the UK’s Institute of Physics, which publishes more than six dozen journals, says its 2015 author survey also placed OA well down the list of considerations. “There is quite clearly a small community of strong advocates for open access, but it’s not reflected in the response we’ve had from the broader community.”
However, some view OA as an imperative. Daniel Kammen, a physicist at the University of California, Berkeley, is editor-in-chief of the decade-old OA journal Environmental Research Letters. Kammen says it is “absolutely the case” that all academic research should be open access, whether its funding comes from public or private sources. “The primary mission of a researcher is to be in some sense H. L. Mencken’s public intellectual,” he says, which requires that both the paper and the underlying data be openly accessible. OA, he says, needs to rapidly get research results out “in a world where research is competing with tweets and Instagram and all these rapid things.”

A CITATION ADVANTAGE?

A long-standing debate has surrounded whether research will be cited more frequently in other scientific articles if it is openly available. Several studies have identified a citation advantage for such research articles. The OA advocacy organization Scholarly Publishing and Academic Resources Coalition (SPARC) maintains a scorecard of 70 citation studies, 46 of which find an advantage for OA articles. Seventeen others find no advantage, and 7 are inconclusive.
One of the more recent reviews, released in August 2016 by Science-Metrix and 1science, finds a 50% citation advantage for OA articles compared with subscription ones that aren’t subsequently made open through green OA options. But a September 2016 report by Hersh and coauthor Andrew Plume claims that and other studies’ methodologies are flawed, principally because of selection bias caused by a lack of randomization and control. Authors could be choosing OA journals for their most important research, for example, or researchers from elite institutions may be authoring a disproportionate share of OA articles.
By some accounts, a 2011 review by Davis is the sole randomized and controlled study to date. He concludes that while OA articles received significantly more downloads and reached a broader audience in the first year, they were cited no more frequently, nor any earlier, than subscription-access articles over the three-year study period.

BEYOND OPEN ACCESS

Publishers are trying to accommodate demand for OA while maintaining the subscription model. Last October, Springer Nature launched a content-sharing initiative to encourage “reasonable” free sharing with nonsubscribers by authors of articles in the publisher’s 2300 journals, including Nature titles. Immediately upon publication, authors are provided shareable links to their papers, which can be viewed but not downloaded. The links can be posted anywhere, including the author’s website, article-sharing sites known as scholarly collaboration networks (SCNs), and social media. Notably, an earlier year-long pilot version of the shared links program involving 50 journals resulted in no loss of institutional sales for the subscription-based journals.
Dylla sees figuring out how to deal with the SCNs as the new challenge for publishers. SCNs help scientists collaborate at all stages of their research and raise the visibility of their results, says Hersh of Elsevier, which owns Mendeley, the third largest SCN. Smaller SCNs have been around for decades. But the two largest—Berlin-based ResearchGate claims 10 million members and San Francisco-based Academia.edu boasts 50 million academic users—were founded in 2008 and are funded by venture capital.
Many articles shared on SCNs have been posted contrary to licensing agreements, intentionally or not. “They have a mixture of proper and improper content,” says Dylla. Publishers seem to have reached a consensus to allow articles to be shared privately among collaborators, he says, in the same way that authors would mail reprints of articles to colleagues in the pre-electronic era. But there is a limit to how broadly a paper can be shared, and the particular version that can be shared, without jeopardizing the publishers’ ability to solicit, review, produce, and archive the content, he notes.
The International Association of STM Publishers has developed voluntary principles for article sharing and operates a website, How Can I Share It, to inform researchers about which versions of articles they can properly share. “The aim is not in any way to shut down collaborations but to make sure the ecosystem works effectively,” says Hersh.
To counter unauthorized content sharing, Dylla says publishers should strive to make content accessible with one-click convenience, akin to accessing movies on Netflix. “If you’ve got a single password, it doesn’t matter if you’re on a phone, iPad, or desktop, you can get to it and it comes right back to where you left off,” he says. “Try that with journals.” The music industry too, he adds, managed to avoid extinction from rampant piracy by working with Pandora, YouTube, and other providers to share revenues.

Ref.

© 2017 American Institute of Physics.

Monday, March 13, 2017

dissemin impactstory web service déposer sur des archives ouvertes Zenodo HAL



Dissemin est à comparer à https://impactstory.org/
qui lui ne propose que de relier vos références (qu'il trouve) à des liens URL (No free fulltext anywhere? Consider uploading this work to an open repository like Zenodo or Figshare.)
Dissemin vous aide à trouver et à uploader.
Dissemin http://dissem.in/

C'est un web service encourageant les chercheurs à diffuser leurs publications librement.
Dissemin propose une plateforme web qui récolte des métadonnées à partir de différentes sources et qui détermine la disponibilité du texte intégral des publications des chercheurs. Il a été conçu pour encourager l'usage des dépôts (plutôt que les pages personnelles).

Les chercheurs ont souvent le droit de mettre leurs articles en accès libre sur le Web, pour compléter la version payante proposée par les éditeurs traditionnels. Pourtant, tous ne le font pas.

À cause de cela, les bibliothèques doivent payer à prix d'or des abonnements électroniques aux journaux de recherche, ce qui grève leurs finances et limite leur offre.

C'est déjà bien de mettre vos articles en ligne sur votre page Web, mais ce n'est pas suffisant ! De telles copies sont moins pérennes et plus difficiles à trouver que celles qui sont déposées dans des dépôts bien indexés.

Dissemin cherche des copies de vos articles dans une grande collection de dépôts ouverts en ligne, et vous indique ceux qu'il n'a pas pu trouver de cette façon.

Il propose aussi le service de chercher les références dans wikipedia et de les lier à des documents open access dans des archives ouvertes.

Quand nous l'avons trouvé dans l'un des dépôts que nous parcourons. La liste de ces dépôts est à voir ci-dessous.

Sources primaires


  • CrossRef.org
  • BASE (Bielefeld Academic Search Engine); grâce au moteur de recherche BASE, nous avons accès à plus de 80 millions de ref.
  • SHERPA/RoMEO
  • Zotero

Sources secondaires

Moissonnées avec le protocole OAI-PMH.

  • arXiv
  • HAL
  • PubMed Central
  • OpenAIRE
  • DOAJ
  • Persée
  • Cairn.info
  • Numdam

http://dissem.in/sources

Quelques personnes ont créé une associations 'CAPSH' qui gère certains aspects de dissemin:
CAPSH (Committee for the Accessibility of Publications in Sciences and Humanities) is a French nonprofit association promoting the open access to academic publications. It is in charge of the Dissemin project.

Liste des présentation à des congrès conf:

https://association.dissem.in/index.html.fr

process

On se connecte avec son ORCID id à
http://dissem.in/

Il trouve les fichiers et les classe suivant l'accord avec l'éditeur.
Puis il permet de faire de l'upload vers ZENODO (avec peu de metadata)
(et aussi vers HAL voir ci-dessous).

Le site a aussi une fonction "profile" qui liste vos file et vos dépôt (upload).

FAQ


Documentation

Les dépôts

Quel dépôt utiliser ?
Il y a en gros trois types de dépôts :
Les dépôts thématiques, qui se limitent à certains domaines précis, comme arXiv.
Les dépôts institutionnels, dédiés à l'archivage de la production scientifique d'une institution ou d'un pays.
Les dépôts académiques génériques comme Zenodo, dont le périmètre n'est limité qu'aux données issues de la recherche.
Si votre communauté scientifique préfère un dépôt thématique particulier, il vaut mieux l'utiliser afin d'améliorer votre visibilité. Dans le cas contraire, les dépôts institutionnels ou génériques sont également une option raisonnable.

ZENODO HAL 

Pourquoi ne puis-je pas déposer dans mon dépôt favori pour l'instant ?

Pour l'instant, nous vous proposons seulement de déposer vos articles dans les dépôts suivants :
  • Zenodo, un dépôt innovant soutenu par l'UE.
  • HAL, un dépôt français géré par le CCSD
Pour proposer davantage de dépôts, il faut que nous écrivions du code spécifique à chaque dépôt, mais il faut surtout que ces dépôts nous donnent l'autorisation de déposer des papiers en masse. Nous avons envisagé d'intégrer les dépôts suivants :
arXiv, un dépôt généraliste bien connu. Pour l'instant, arXiv n'autorise pas Dissemin à déposer en utilisant leur API SWORD, et demande aux utilisateurs de déposer dans arXiv manuellement. Si vous voudriez utiliser Dissemin pour déposer vos articles dans arXiv, n'hésitez pas à les contacter.

CCSD HAL

Il permet à chaque chercheur de mesurer l’accessibilité de ses publications et de mettre en ligne en quelques clics celles qui ne sont pas déjà librement disponibles. Plus besoin de saisir manuellement les métadonnées (titre, auteurs ou identifiants variés) : celles-ci sont automatiquement renseignées par Dissemin.
Cette fonctionnalité est rendue possible par l’exploitation de deux sources de données : le Bielefeld Academic Search Engine (BASE) et Crossref, qui couvrent presque 100 millions de publications.

Jusqu’à présent, les documents ainsi rendus librement accessibles étaient hébergés par Zenodo, un dépôt appartenant au CERN. Les chercheurs de toutes disciplines souhaitant déposer dans HAL peuvent désormais aussi utiliser Dissemin comme canal de dépôt depuis début 2017.

Dissemin utilise l’import SWORD pour déposer les publications. Celles-ci suivent le parcours classique de vérification avant d’être mises en ligne.  Les dépôts effectués par Dissemin seront rattachés au compte utilisateur de l’auteur dans HAL à partir de l’identifiant ORCID. Pour cela il faudra juste que l’auteur ait associé son compte HAL avec son ORCID.
Cette réalisation est le fruit d’un partenariat entre le Consortium Couperin, le CCSD, et le CAPSH, qui développe Dissemin.
https://www.ccsd.cnrs.fr/2017/03/deposer-dans-hal-avec-dissemin/

GitHub

Le code source est sur GitHub
python
https://github.com/dissemin/dissemin

Puis-je récolter vos données ?

Oui ! Nous avons même une API. Si vous n'êtes pas satisfait par ce qu'elle propose, n'hésitez pas à nous contacter.
http://dev.dissem.in/#api

Wednesday, March 1, 2017

medra (multilingual European Registration Agency), crossRef and DOI



mEDRA is a DOI Registration Agency (DOI RA) officially appointed by the International DOI Foundation on 1st July 2003 and provides DOI registration services to publishers, academic institutions, research centres and intermediaries in Italy, in the EU market and internationally.

mEDRA
Headquarter: C.so di Porta Romana, 108 - 20122 Milano
Società a responsabilità limitata iscritta presso l'ufficio del registro delle imprese di Milano.
C.F. - P.IVA e REG.IMPR.:04547330961 - R.E.A. 1756009
CAP. SOC. 40000 € I.V.

At mEDRA we want to make things easy for everyone, therefore mEDRA system can be used by small and big organisations, for commercial and open access publications, with or without having technical skills. Moreover, mEDRA team is available to support customers individually and speaks Italian, English, French and German.

mEDRA also collaborates with Crossref to allow DOIs registered with mEDRA to be deposited on Crossref platform.

DOI BracketAnnual FeeDOIs includedPrice per unit
for exceeding DOIs
018030 DOIs included4.50
135075 DOIs included3.80
2600170 DOIs included2.70
3900350 DOIs included2.00
41,350650 DOIs included1.60
52,0001,300 DOIs included1.10


Note:
• The access to DOI registration service through mEDRA is subject to advanced payment of an Annual Fee (plus – for the new contracts – the payment for the months of the current year)
• The DOIs included in the Annual Fee have to be registered within the December 31 of every year.
• In case of a number of registrations exceeding the quantity included in the annual fee, a price per unit,
connected to the chosen bracket, is required. Once the sum of the initial DOI Bracket plus the extra DOIs reaches the fee of the next DOI bracket, customer will be upgraded to the next upwards DOI Bracket without extra cost than the amount of difference of bracket.
• Extra DOIs will be invoiced at the end of the annual contract (31/12 of every year).
In case of termination of the contract, the Registrant has to pay € 0,1 for each registered Doi for the maintenance service.
• At the end of the first year after the termination of the contract, mEDRA will use the registered metadata in order to guarantee DOI Service.

Schema

ONIX for DOI metadata schema defines the XML format of the message requested by mEDRA system to register DOIs, showing the list of metadata concerning the object to be identified.

According to the ONIX for DOI metadata schema, you can register DOIs on Monographs, Monographic Chapters, Serial Articles, Serial Titles and Serial Issues.

The XML schema is encoded according to ONIX syntax. ONIX (Online Information Exchange) is the most authoritative standard communication format for content industry, created and regularly updated by EDItEUR, the international group coordinating the development of the standards for electronic commerce in book and serials industries.

ONIX for DOI metadata schema, jointly developed by mEDRA and EDItEUR in collaboration with Nielsen Book Data (the DOI Registration Agency for UK) has been formally endorsed by EDItEUR as the official ONIX format for DOI registration and it has newly been adopted by OPOCE, the Office for Official Publications of the European Communities.

The latest issue of ONIX for DOI metadata schema, version 2.0., is now available. The new release is fully backwards compatible with the previous one (1.1), but thanks to the inclusion of new metadata elements it allows a richer description of publications and, for Italian customers only, the deposit of the citations list to join CrossRef services via mEDRA. 

http://www.medra.org/en/schema.htm

METADATA for DOI


http://www.medra.org/en/metadata_td.htm

tools

A few utilities addressed to the IT staff of your company:
Automatic upload of XML file for DOI registration
Download a Java program performing the automatic upload of the XLM file via HTTPS POST to the mEDRA registration service
http://www.medra.org/en/utilities.htm

Wednesday, February 15, 2017

Tous les DOI n'offrent pas des services identiques. Le cas de Zenodo et DOI Datacite qui n'est pas un DOI crossRef. Zotero.


Introduction

CrossRef est une structure (consortium Editeur)
qui gère la redirection URL (base d’URL mise à jour) et de metadonnées biblio, la base et les services et la structure de ses serveurs.
Un des services a des fonctions de bibliométrie (qui a cité tel article).

On ne peut que l'interroger via des API js.
Ainsi Zotero peut interroger crossRef via un DOI.

Si on essaie dans Zenodo d'importer avec DOI-zenodo, il y a une erreur d'importation de Zotero car ce n'est pas crossref...

Datacite est fait pour assigner des DOI à des données, des datasets (voir la fin de ce post) alors que CrossRef est pensé pour des publications.

En outre Zotero importe bien certains champs sauf les auteurs via l'import Zenodo ou "embedded metadata!!!
En fait dans le head de la page HTML de Zenodo, les champs <meta> auteur sont vides:
<meta name="citation_author" content=""> 
d'où l'erreur.

Par contre on a le résumé ce que ne donne pas crossref.
Il faut donc fusionner les deux.

Les DOI

Un post de 2014
http://iphylo.blogspot.fr/2014/05/dois-are-not-enough.html
Ce qui a motivé la conversation a été l'article suivant:
Emery, Carlo et al (1899). Formiche di Madagascar raccolte dal Sig. A. Mocquerys nei pressi della Baia di Antongil (1897-1898).. Bullettino della Società Entomologica Italiana: 31 (1899) pp. 263-290. 10.5281/zenodo.9785 http://dx.doi.org/10.5281/zenodo.9785

Tous les Doi ne sont pas égaux 

Les DOI de Zenodo sont attribués par DataCite et les DataCite DOIs n’ont pas toutes les fonctionnalités que CrossRef prévoit pour leur DOI. 

CrossRef fournit certains services clés, l’un des plus importants est la possibilité de lier les biblio. Compte tenu du domaine des références bibliographiques, CrossRef dispose d’outils qui peuvent trouver si elle a un DOI (p. ex., http://search.crossref.org). Vous bénéficiez de ce service chaque fois que vous lisez un article et voir la section biblio citée ornée de doi. Les éditeurs peuvent ainsi convertir et structurer des citations avec des liens et outils de CrossRef. Cette fonction repose sur les CrossRef métadonnées. Lorsque les éditeurs envoient leurs métadonnées d'article lors de l’inscription de leur DOI, ils soutiennent généralement la listes des ouvrages cités (et le DOI). Cela signifie que CrossRef bâtit une base de données de référence, que vous pouvez voir si vous visitez la page web pour un article et un lien « cité par ». 

Il y a des services supplémentaires. Étant donné que CrossRef a une haute qualité bibliographique de métadonnées pour les objets, alors si vous avez un DOI "crossRef" il n'est plus nécessaire de saisir les ref biblio d’un document. Un logiciel bibliographique comme Mendeley et Zotero peut prendre un DOI et les récupérer. Si un DOI ne parvient pas à résoudre ce service, vous pouvez contacter le Support de CrossRef. Viennent ensuite les nouveaux services tels que FundRef et de perspective, qui fournissent des informations sur qui a financé, et quel texte et les droits d’exploration de données disponibles pour un document.

Pourquoi utiliser un DOI ? 

La justification de l’utilisation de DOI pour des articles est qu’ils puissent être identifiés sans ambiguïté, qui à son tour signifie que nous pouvons construire un réseau solide de référence. Mais cela nécessite des infrastructures, et c’est ce que CrossRef fournit grâce à des outils comme référence DOI. D'autres organismes d’enregistrement de DOI ne font pas cela, et CrossRef n’est pas au courant d’autres DOI, donc mettre, disons, un DOI DataCite (tels que ceux utilisés par les Zenodo) sur un article n’atteint pas l’objectif principal d’un DOI (embarquation dans le graphique de référence de la littérature académique).

Donc, je considère que mettre un DOI Zenodo est une opportunité gâchée. S’un article n’a pas un DOI CrossRef, il effectivement invisible. Toute la littérature académique devrait obtenir un DOI de première classe.

Not all DOIs are equal

As Geoffrey Bilder notes in his post DOIs unambiguously and persistently identify published, trustworthy, citable online scholarly literature. Right?
...some have adopted a cargo-cult practice of seeing the mere presence of a DOI on a publication as a putative sign of “citability” or “authority.”
There is a danger that we fall into the trap of thinking that all we need to do is slap a DOI on a paper and all the good things that we associate with DOIs will magically happen. This isn't the case. Not all DOIs are the same. Zenodo DOIs are proved by DataCite, and DataCite DOis don't have all the features that CrossRef provides for their DOIs.

CrossRef provides some key services, one of the most important is discoverability. Given a bibliographic references, CrossRef has tools that can find whether it has a DOI (e.g., http://search.crossref.org). I use this a lot to map taxonomic papers to DOIs (by a lot I mean searching for DOIs for tens of thousands of articles). Most people don't do this, but you benefit from this service every time you read an article and see the literature cited section decorated with DOIs. Publishers use CrossRef's tools to convert citations from dumb strings to useful links. This feature we come to expect from any modern article relies on CrossRef have definitive metadata for lots (millions) or articles, all of which have DOIs. When publishers submit article metadata when registering their DOIs, they usually submit lists of literature cited (and the DOIs). This means that CrossRef is building a citation database, which you can see if you visit the web page for an article and see a "cited by" link.

Then there are additional services. Given that CrossRef has high quality bibliographic metadata for articles, if you have a DOI there is no need to type in the details of a paper. Most bibliographic software such as Mendeley and Zotero can take a DOI and flesh out those details for you. If a DOI fails to resolve, you can contact CrossRef Support and have somebody investigate. Then there are the new services such as FundRef and Prospect, which provide information on who funded a paper, and what text and data mining rights are available for a paper.

Datacite, crossref, ORCID

The scholarly communications sector has built and adopted a series of openidentifier and metadata infrastructure systems to great success. Content identifiers (through Crossref and DataCite) and contributor identifiers (through ORCID) have become foundational infrastructure to the industry. But there still seems to be one piece of the infrastructure that is missing. There is as yet no open, stakeholder-governedinfrastructure for organizationidentifiers and associated metadata. In order to understand this gap, Crossref, DataCite and ORCID have been collaborating to.
The easiest way for Crossref members to participate in this is to cite data using DataCite DOIs and to include them in the references within the metadata deposit. These data citations are automatically detected. Alternatively and/or additionally, Crossref members can deposit data citations (regardless of identifier) as a relation type in the metadata. Data & software citations from both methods are freely propagated. This blog post also describes how to retrieve the links collected between publication and data & software.
Do you want to see if a Crossref DOI (typically assigned to publications) refers to DataCite DOIs (typically assigned to data)?
Here you go: http://api.labs.crossref.org/graph/doi/10.4319/lo.1997.42.1.0001
Conversely, do you want to see if a DataCite DOI refers to Crossref DOIs? 
Voilà: http://api.labs.crossref.org/graph/doi/10.1594/pangaea.185321
Background “How can we effectively integrate data into the scholarly record?” This is the question that has, for the past few years, generated an unprecedented amount of handwringing on the part researchers, librarians, funders and publishers.
https://www.crossref.org/categories/datacite/