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http://www.arl.org/focus-areas/shared-access-research-ecosystem-share#

A higher education and research community initiative to ensure the preservation of, access to, and reuse of research outputs. SHARE will develop solutions that capitalize on the compelling interest shared by researchers, libraries, universities, funding agencies, and other key stakeholders to maximize research impact, today and in the future. SHARE aims to make the inventory of research assets more discoverable and more accessible, and to enable the research community to build upon these assets in creative and productive ways. ARL, AAU, and APLU strongly believe that ensuring broad and continuing access to research is central to the mission of higher education. Research publications, research data, other research outputs, along with their associated metadata, should be publicly accessible and available for reuse, text mining, data mining, and machine reading. This accelerates further research and discovery.

Proper citation: SHared Access Research Ecosystem (RRID:SCR_004125) Copy   


http://iapo.org.uk/

A global alliance representing patients of all nations across all disease areas and promoting patient-centered healthcare across the world. They represent people who suffer from diseases, disabilities, illnesses, impairments or syndromes and work with communities of patients to get their voices heard by all involved in healthcare. With the help of their members and collaborating organizations, they work towards patient-centered healthcare throughout the world.

Proper citation: International Alliance of Patients Organizations (RRID:SCR_004073) Copy   


http://www.brainarchitecture.org/mouse-home

An atlas project whose goal is to enerate brainwide maps of inter-regional neural connectivity that specify the inputs and outputs of every brain region, at a "mesoscopic" level of analysis. A 3D injection viewer is used to view the mouse brain. To determine the outputs of a brain region, anterograde tracers are used which are taken up by neurons locally ("the input"), then transported actively down the axons to the "output regions." The whole brain is then sliced thinly, and each slice is digitally imaged. These 2-D images are reconstructed in 3D. The majority of the resulting 3-D brain image is unlabeled. Only the injected region and its output regions have tracer in them, allowing for identification of this small fraction of the connectivity map. This procedure is repeated identically, to account for individual variability. To determine the inputs to the same brain region as above, a retrograde tracer is injected in the same stereotaxic location ("the input"), and the process is repeated. In order to accumulate data from different mice (each of whom has a slightly different brain shape and size), 3-D spatial normalization is performed using registration algorithms. These gigapixel images of whole-brain sections can be zoomed to show individual neurons and their processes, providing a "virtual microscope." Each sampled brain is represented in about 500 images, each image showing an optical section through a 20 micron-thick slice of brain tissue. A multi-resolution viewer permits users to journey through each brain, following the pathways taken through three-dimensional brain space by tracer-labeled neuronal pathways. A key point is that at the mid-range "mesoscopic" scale, the team expects to assemble a picture of connections that are stereotypical and probably genetically determined in a species-specific manner. By dividing the volume of a hemisphere of the mouse brain into 250 equidistant, predefined grid-points, and administering four different kinds of tracer injections at each grid point -- in different animals of the same sex and age a complete wiring diagram that will be stitched together in "shotgun" fashion from the full dataset.

Proper citation: Mouse Brain Architecture Project (RRID:SCR_004683) Copy   


http://wiki.code4lib.org/index.php/Code4Lib_Journal_WordPress_Customizations

WordPress plugins for Anti-Spam, Metadata, Presentation, URLs, and Workflow from the Code4Lib community, a group of computer programmers and library technologists who largely work for and with libraries. Anti-Spam *Akimset - Filters out spam-link comments based on their content *reCAPTCHA - Requires users to copy a distorted word before they can comment Metadata *COinS Quicktags Button - In the non-WYSIWYG editor, can be used to build a basic COinS tag. This has been abandoned in favor of the generator at http://generator.ocoins.info/. *unAPI Server - Provides information about articles. Useful for Zotero users. Presentation *SyntaxHighlighter - Makes code pretty. *C4LJ Custom the_author()- Replaces the text returned by the_author() with the value of the author custom field. Necessary since articles are entered by their editors, but we want author information to appear on the articles and in the syndication feeds. URLs *C4LJ Remove Parents - A customization of http://wordpress.org/extend/plugins/remove-parents/. Prettifies category URLs so that issues appear at http://journal.code4lib.org/issues/issue1 instead of http://journal.code4lib.org/issues/issues/issue1. *FeedBurner FeedSmith - Redirects the main feed and the general comments feed to FeedBurner Workflow *Issue Manager - Enables one-click publishing of new issues, and prevents articles from being published until their associated issue is published. *Role Manager - Allows creation of custom roles and editing of roles' permissions. Used to create the Reviewer role, which can read Private articles, so that authors can see their articles before publication, and to prevent editors from publishing articles on accident.

Proper citation: Code4Lib Journal WordPress Customizations (RRID:SCR_004798) Copy   


http://www.unmc.edu/physiology/Mann/

The Nervous System In Action by Michael D. Mann, Ph.D. is a textbook on nervous system physiology. Available here is the web accessible version of of this textbook. An Adobe Acrobat (PDF) version is also supplied for better printing. You will need Acrobat Reader to see and print it. The textbook consists of the following: Preface (1) Neurophysiology, An Overview (2) Human Behavior (3) 1. Diffusion and Transport (4) 2. Control Systems and Homeostasis (5) 3a. Properties of Excitable Membranes: The Membrane Potential (6) 3b. Properties of Excitable Membranes: The Spike (7) 4a. Receptor Properties: Receptor Potentials and Coding (8) 4b. Sensory Receptors II (9) 5. Somesthesia--Peripheral Mechanisms (0) 6. Somesthesia--Central Mechanisms (a) 7. Vision (b) 8. Audition (c) 9. The Vestibular System (d) 10.Gustatory and Olfactory Senses (e) 11. Muscle Receptors (f) 12. Peripheral Nerves (g) 13. Synapses (h) 14. Muscle Contraction (i) 15. Reflexes (j) 16. Initiation and Control of Movement (k) 17. Activities Involving the Cerebral Hemispheres (l) 18. The Clinical Implications of Neurophysiological Concepts (m) 19. Learning and Memory Appendix: Common abbreviations (n) Glossary (o) Index (p)

Proper citation: The Nervous System in Action (RRID:SCR_004985) Copy   


http://spot.colorado.edu/~dubin/talks/brodmann/brodmann.html

Reference atlas of Brodmann Areas in the Human Brain with an Emphasis on Vision and Language. Other Pages include: Flat Brodmann Maps, Brodmann Area Names (with locational Descriptions), Flat Visual Area Maps, Language Areas, PopUp Gyri Maps

Proper citation: Brodmann Areas in the Human Brain with an Emphasis on Vision and Language (RRID:SCR_004857) Copy   


http://www.protocol-online.org/

Database of research protocols in a variety of life science fields, it contains protocols contributed by worldwide researchers as well as links to web protocols hosted by worldwide research labs, biotech companies, personal web sites. The data is stored in a MySql relational database. Protocol Online also hosts discipline specific discussion forums (BioForum), and provides a free PubMed search and alerting service (PubAlert).

Proper citation: Protocol Online - Your labs reference book (RRID:SCR_004937) Copy   


http://www.nimh.nih.gov/about/advisory-boards-and-groups/namhc/reports/mri-research-safety-ethics.pdf

NIMH recognizes the need to consider safety and ethical issues related to both the administration of MR (magnetic resonance) facilities and the use of these facilities for research. This document summarizes the points to consider discussed by the National Advisory Mental Health Council (NAMHC) Workgroup. Examples of safe and ethical practices are discussed in relation to several issues. These examples are intended to be illustrative and should not be interpreted as an exhaustive or exclusive list. This document was presented to the full NIMH Council on September 15, 2006 and approved unanimously. By making the points to consider document available publicly, NIMH intends to provide a resource for researchers and institutions that use MRI in research. The agenda was organized into six topics, which provide the organization for the points to consider that follow: A. MRI screening B. Training, operating, and emergency procedures C. Physical facilities D. Scanning/participant health variables E. Context- Specific Considerations: University vs. medical settings F. Additional data needs and updating The NIMH believes that investigators, institutions and facilities can use this document as a resource for the development, administration, evaluation, and use of MRI research facilities.

Proper citation: MRI Research Safety and Ethics (RRID:SCR_005642) Copy   


  • RRID:SCR_005886

    This resource has 10+ mentions.

https://www.google.com/docs/about/

Authoring tool to create, share, and collaborate on the web with documents, spreadsheets, presentations, and more in real time. All your changes are saved automatically in Drive.

Proper citation: Google Docs (RRID:SCR_005886) Copy   


http://thedata.org/citation/standard

Citation standard that offers proper recognition to authors as well as permanent identification through the use of global, persistent identifiers in place of URLs, which can change frequently. Use of universal numerical fingerprints (UNFs) guarantees to the scholarly community that future researchers will be able to verify that data retrieved is identical to that used in a publication decades earlier, even if it has changed storage media, operating systems, hardware, and statistical program format.

Proper citation: Universal Numerical Fingerprint (RRID:SCR_005912) Copy   


http://daac.ornl.gov/citation_policy.html

Data Product Citation Policy of including a bibliographic citation for the products that were used in publications to acknowledge the scientists who have provided archived ORNL DAAC (Oak Ridge National Laboratory Distributed Active Archive Center) data products. Such citations will help others find the products and see how they have been used. Citation information is provided in the documentation that accompanies all data products. ORNL DAAC is operated by the ORNL Environmental Sciences Division and is responsible for data archival, product development and distribution, and user support for biogeochemical and ecological data and models. The Oak Ridge National Laboratory Distributed Active Archive Center (ORNL DAAC) for biogeochemcial dynamics is one of the NASA Earth Observing System Data and Information System (EOSDIS) data centers managed by the Earth Science Data and Information System (ESDIS) Project, which is responsible for providing scientific and other users access to data from NASA''s Earth Science Missions.

Proper citation: ORNL DAAC Data Product Citation Policy (RRID:SCR_005902) Copy   


http://variation.osu.edu/rtcgd/

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 12,2023. Database of high throughput insertional mutagenesis screening projects of retroviral and transposon insertional mutagenesis in mouse tumors. Information in the RTCGD is obtained from sequence comparison by using public databases UCSC genome mm9 browser. Data based on previous genome assembly mm8 is also available at RTCGD mm8. MCGP has developed three web search tools including Easy Search to query proviral integration sites using mouse gene symbol of gene name; Model Search to obtain RIS information based on tumor models and/or tumor types; Interaction Search to find gene-to-gene interaction. It displays the list of genes which reside in the same tumor to your gene of interest.

Proper citation: Retroviral Tagged Cancer Gene Database (RRID:SCR_007908) Copy   


  • RRID:SCR_007625

    This resource has 1+ mentions.

https://cran.r-project.org/web/packages/tdthap/index.html

Software package for TDT with extended haplotypes in the R language. R is the public domain dialect of S. It should be possible to port this library to the commercial Splus product. The main problem would be translation of the help files. (entry from Genetic Analysis Software)

Proper citation: R/TDTHAP (RRID:SCR_007625) Copy   


  • RRID:SCR_008268

https://simtk.org/home/simtkcore

SimTK Core is one of the two packages that together constitute SimTK, the biosimulation toolkit from the Simbios Center. The other major component of SimTK is OpenMM which is packaged separately. This SimTK Core project collects together all the binaries needed for the various SimTK Core subprojects. These include Simbody, Molmodel, Simmath (including Ipopt), Simmatrix, CPodes, SimTKcommon, and Lapack. See the individual projects for descriptions. SimTK brings together in a robust, convenient, open source form the collection of highly-specialized technologies necessary to building successful physics-based simulations of biological structures. These include: strict adherence to an important set of abstractions and guiding principles, robust, high-performance numerical methods, support for developing and sharing physics-based models, and careful software engineering. Accessible High Performance Computing We believe that a primary concern of simulation scientists is performance, that is, speed of computation. We seek to build valid, approximate models using classical physics in order to achieve reasonable run times for our computational studies, so that we can hope to learn something interesting before retirement. In the choice of SimTK technologies, we are focused on achieving the best possible performance on hardware that most researchers actually have. In today''s practice, that means commodity multiprocessors and small clusters. The difference in performance between the best methods and the do-it-yourself techniques most people use can be astoundingeasily an order of magnitude or more. The growing set of SimTK Core libraries seeks to provide the best implementation of the best-known methods for widely used computations such as: Linear algebra, numerical integration and Monte Carlo sampling, multibody (internal coordinate) dynamics, molecular force field evaluation, nonlinear root finding and optimization. All SimTK Core software is in the form of C++ APIs, is thread-safe, and quietly exploits multiple CPUs when they are present. The resulting pre-built binaries are available for download and immediate use. Audience: Biosimulation application programmers interested in including robust, high-performance physics-based simulation in their domain-specific applications.

Proper citation: SimTKCore (RRID:SCR_008268) Copy   


https://simtk.org/home/isim_interface

A simple Java graphical user interface for running the program ISIM. ISIM is a package that simulates the thermodynamic ensemble of ions around a macromolecule using a grand canonical Monte Carlo scheme and simple hard sphere ion models. It is meant to provide an alternative mechanism to mean field approaches to allow the calculation of ion distributions around a highly charged molecule using a simple model that takes into account ion-ion correlations and steric interactions. The original source was created in the McCammon group at UCSD but is no longer available. The version of ISIM used is available in the ISIM project on simtk.org.

Proper citation: Ion Simulator Interface (RRID:SCR_008267) Copy   


  • RRID:SCR_008261

https://scicrunch.org/scicrunch/data/source/nlx_154697-16/search?q=%2A&l=&facet[]=Database:ResearchCrossroads

THIS RESOURCE IS NO LONGER IN SERVICE, documented on Feb. 05, 2014, however, NIF holds the Research Crossroads data and makes it available through Integrated Grants. World of publicly funded research aggregated into a database providing funding, publication, clinical trial and grant data from government and private research agencies. Advanced reporting and analysis tools are then used to connect research to researchers, organizations and topic areas to uncover non-obvious associations. Use ResearchCrossroads for: Researchers * Make your research visible to funding organizations and collaborators. * Connect with peers to stay up to date on their research progress * Update your investigator profile, biography and publications so funding organizations can find you * Discover available funding from private foundations and government funding organizations * Annotate your previous research grants with outcomes * Create a research diary and participate in discussions with your peers Foundations Participating in ResearchCrossroads is free if you share your research data. Send us a spreadsheet with your grant and investigator information. * Create a community for your researchers to learn from each other * Locate potential investigators and collaborators * Post available funding and be matched with investigator profiles * Access to analytical reporting of funding and research statistics * Update your personalized organization profile page * Display your logo in search results * Link to your ResearchCrossroads grants and investigator profiles from your own website Corporations, Academia & Governments Contact us about subscriptions to funding trend analytics and marketing opportunities. * In-depth reporting of 15 years of funding data from government and private institutions * Subscriptions available to advanced analysis & reporting tools * Display your corporate logo in search results * Update your organization profile page * Highly targeted marketing & advertising by research areas, keywords and categories of investigator * Register for notifications of the newest grants in your area of interest

Proper citation: ResearchCrossroads (RRID:SCR_008261) Copy   


  • RRID:SCR_008374

    This resource has 10+ mentions.

http://herpnet.org/

HerpNET is a collaborative effort by natural history museums to establish a global network of herpetological collections data. Sixty-four institutions are participating in the HerpNET community, with an open ended invitation to institutions who would like to join. Currently 56 institutions are available on the specimen searching portal, with data from over 5.5 million specimens available for searching. VertNet: The Future HerpNET, ORNIS, MaNIS and FishNet2 are taxon-based web portals that now serve georeferenced data on vertebrates from over 90 global institutions. Together these comprise VertNET, a cooperative project working to maintain and expand these distributed database projects. Future plans include biodiversity informatics workshops, enhancement of the portal design, better searching capabilities, and a dynamic cache to expand performance and analytic features. Sponsors: This resource is supported by the National Science Foundation (NSF No. 0132303) and by a GBIF DIGIT .

Proper citation: HerpNET (RRID:SCR_008374) Copy   


http://www.oege.org/software/hwe-mr-calc.shtml

This portal leads to the Chi-sq Hardy-Weinberg equilibrium test calculator for biallelic markers (SNPs, indels etc), including analysis for ascertainment bias for dominant/recessive models (due to biological or technical causes.) The purpose of this web program is for estimating possible missingness and an approach to evaluating missingness under different genetic models. Mendelian randomization (MR) permits causal inference between exposures and a disease. It can be compared with randomized controlled trials. Whereas in a randomized controlled trial the randomization occurs at entry into the trial, in MR the randomization occurs during gamete formation and conception. Several factors, including time since conception and sampling variation, are relevant to the interpretation of an MR test. Particularly important is consideration of the missingness of genotypes that can be originated by chance, genotyping errors, or clinical ascertainment. Testing for Hardy-Weinberg equilibrium (HWE) is a genetic approach that permits evaluation of missingness. Through this tool, the authors demonstrate evidence of nonconformity with HWE in real data. They also perform simulations to characterize the sensitivity of HWE tests to missingness. Unresolved missingness could lead to a false rejection of causality in an MR investigation of trait-disease association. These results indicate that large-scale studies, very high quality genotyping data, and detailed knowledge of the life-course genetics of the alleles/genotypes studied will largely mitigate this risk. Sponsors: This resource is supported by an Intermediate Fellowship (grant FS/05/065/19497) from the British Heart Foundation.

Proper citation: Hardy-Weinberg Equilibrium Calculator (RRID:SCR_008371) Copy   


  • RRID:SCR_008314

    This resource has 500+ mentions.

http://www.ieee.org/portal/site/iportals?WT.mc_id=hplogo_upleft

IEEE is the worlds largest professional association advancing innovation and technological excellence for the benefit of humanity. IEEE and its members inspire a global community to innovate for a better tomorrow through its highly cited publications, conferences, technology standards, and professional and educational activities. IEEE is the trusted voice for engineering, computing and technology information around the globe. Through its global membership, IEEE is a leading authority on areas ranging from aerospace systems, computers and telecommunications to biomedical engineering, electric power and consumer electronics among others. Members rely on IEEE as a source of technical and professional information, resources and services. To foster an interest in the engineering profession, IEEE also serves student members in colleges and universities around the world. Other important constituencies include prospective members and organizations that purchase IEEE products and participate in conferences or other IEEE programs. IEEE has: -more than 375,000 members in more than 160 countries; 45 percent of whom are from outside the United States -more than 80,000 student members -329 sections in ten geographic regions worldwide -1,860 chapters that unite local members with similar technical interests -1,789 student branches in 80 countries -483 student branch chapters at colleges and universities -390 affinity groups -- IEEE Affinity Groups are non-technical sub-units of one or more Sections or a Council. The Affinity Group patent entities are Consultants'' Network, Graduates of the Last Decade (GOLD), Women in Engineering (WIE) and Life Members (LM) IEEE''s core purpose is to foster technological innovation and excellence for the benefit of humanity. It will be essential to the global technical community and to technical professionals everywhere, and be universally recognized for the contributions of technology and of technical professionals in improving global conditions., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.

Proper citation: IEEE (RRID:SCR_008314) Copy   


  • RRID:SCR_008398

    This resource has 1+ mentions.

http://www.accelrys.com/products/downloads/ds_visualizer/

A life science modeling and simulation suite of applications focused on optimizing the drug discovery process. Discovery Studio makes it easier to examine the properties of large and small molecules, study systems, identify leads and optimize candidates. Discovery Studio ADME Descriptors allow scientists to eliminate compounds with unfavorable ADME characteristics early in the discovery process and evaluate proposed structural refinements prior to synthesis. Applications of predictive ADME include pharmaceutical, cosmeceutical, and environmental sciences.

Proper citation: Discovery Studio Visualizer (RRID:SCR_008398) Copy   



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