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  • RRID:SCR_007326

http://fireball.drexelmed.edu/birnlex/OWLdocs/

THIS RESOURCE IS NO LONGER IN SERVICE, documented on April 26, 2011. Lexicon that provides entities for data and database annotation for the BIRN project, covering anatomy, disease, data collection, project management and experimental design. These sources may include complex image databases, such as data from structural and functional magnetic resonance imaging (MRI) on human subjects involved in studies on Alzheimer''s disease or schizophrenia. The BIRNLex is a specialized vocabulary utilized by BIRN scientists in the context of their research, including common terms for neuroanatomy, molecular species, subject information, behavioral and cognitive processes, experimental practice and design, and the associated elements of primary data provenance required for large-scale data integration across disparate experimental studies.The BIRNLex offers well defined terms from several domains of importance to neuroimaging across scales.

Proper citation: BIRNLex (RRID:SCR_007326) Copy   


  • RRID:SCR_007207

    This resource has 1+ mentions.

http://www.poweratlas.org/

The Power Atlas is a web-based resource to assist investigators in the planning and design of microarray and expression based experiments. This software is currently aimed at estimating the power and sample size for a two group comparison based upon pilot data. The methods underlying the web site are reported in Gadbury et al (2004) and the software is described in further detail at Page et al (2006). There are two ways to use the Power Atlas: 1. We have downloaded the datasets currently in the Gene Expression Omnibus (GEO) and processed each of them with our power analysis software. Investigators may search among the datasets for the experiment that most closely resembles their proposed project and get sample size and power estimates. 2. Investigators may upload their own preliminary data and the program will extrapolate power from this dataset.

Proper citation: Power Atlas (RRID:SCR_007207) Copy   


  • RRID:SCR_007169

    This resource has 100+ mentions.

https://hpc.nih.gov/systems/

The NIH Biowulf cluster is a GNU/Linux parallel processing system designed and built at the National Institutes of Health and managed by the Helix Systems Staff. The system is designed for large numbers of simultaneous jobs common in bioinformatics as well as large-scale distributed memory tasks such as molecular dynamics. Sponsor: This work was supported by the National Institutes of Health Intramural Research Program through the Center for Information Technology and the National Institute of Neurological Disorders and Stroke, and by the Internal National Institute of Standards and Technology Research Fund. Keywords: Software, Program, Processing, System, Simulatenous, Bioinformatics, Memory, Molecular, Dynamics,

Proper citation: Biowulf at the NIH (RRID:SCR_007169) Copy   


http://www.azcert.org

Arizona CERT is an independent research and education center whose mission is to improve therapeutic outcomes and reduce adverse events caused by drug interactions and drugs that prolong the QT interval, especially those affecting women. The CERTs mission is to conduct research and provide education that will advance the optimal use of drugs, medical devices, and biological products The Arizona CERT is a program of the Critical Path Institute in collaboration with the Center for Health Outcomes and PharmacoEconomic Research at The University of Arizona College of Pharmacy. It is one of 14 national CERTs funded by the U.S. Agency for Healthcare Research and Quality (AHRQ).

Proper citation: Arizona Center for Education and Research on Therapeutics (RRID:SCR_007201) Copy   


http://purl.bioontology.org/ontology/CNO

A controlled vocabulary of terms used in Computational Neurosciences to describe models of the nervous system. This first release of CNO is an alpha version and should be further aligned with other ontologies accessible on Bioportal and should be made compliant with the OBO foundry recommendations.

Proper citation: Computational Neuroscience Ontology (RRID:SCR_007289) Copy   


http://www.port.ac.uk/research/exrc/

Supports researchers using Xenopus models. Researchers are encouraged to deposit Xenopus transgenic and mutant lines, Xenopus in situ hybridization probes, Xenopus specific antibodies and Xenopus expression clones with the Centre. EXRC staff perform quality assurance testing on these reagents and then make them available to researchers at cost. Supplies wild-type Xenopus, embryos, oocytes and Xenopus tropicalis fosmids.

Proper citation: European Xenopus Resource Center (RRID:SCR_007164) Copy   


http://www.bio.brandeis.edu/undergrad/neuro/index.html

Students entering Neuroscience Program at Brandeis have opportunities to work in range of fields, from cognitive neuroscience to structure and function of ion channels. Undergraduate concentration in neuroscience is designed to provide interdisciplinary program of study of neural mechanisms involved in control of human or animal behavior. Program is especially appropriate for students wishing to pursue further study in medicine, experimental psychology, or neuroscience.

Proper citation: Brandeis University Neuroscience Undergraduate Program (RRID:SCR_007166) Copy   


  • RRID:SCR_007283

    This resource has 100+ mentions.

https://ida.loni.usc.edu/login.jsp

Archive used for archiving, searching, sharing, tracking and disseminating neuroimaging and related clinical data. IDA is utilized for dozens of neuroimaging research projects across North America and Europe and accommodates MRI, PET, MRA, DTI and other imaging modalities.

Proper citation: LONI Image and Data Archive (RRID:SCR_007283) Copy   


http://www.ninds.nih.gov/research/parkinsonsweb/amr/amr_mice_ucla_repository.htm

THIS RESOURCE IS NO LONGER IN SERVICE, documented on April 26, 2011. Information for depositors Investigators who are willing to share mice with the PD research community through this resource should send an email to PDMice_at_ninds.nih.gov describing the mouse. The submission will be reviewed by the PD Models Repository Oversight Committee and, if accepted, a copy of the MTA will be sent by return email. NINDS is most interested in distributing mice that have been characterized in a peer-reviewed publication, but other models will certainly be considered. The email should describe the following: The protocol for identification from tail DNA. The health report of the mice to be shipped (the report has to be less than 2 months old). Information about the strain and any special needs for care and breeding. Information about any publications involving the mice Certification that mice are not encumbered by continuing intellectual property or other rights to any research, data or discovery utilizing the animals. Information for consumers Investigators desiring to study the mice available through the repository should send a request via email to PDMice_at_ninds.nih.gov. Requests will be reviewed by the PD Models Repository Oversight Committee and priority will be determined on a first come, first served basis; two breeding pairs will typically be shipped to any single requester. As detailed in the MTA, mice are not available for commercial research, including but not limited to drug screening. Neither the creator nor UCLA have a role in the governance of the Repository, and specifically, cannot impose conditions upon availability or distribution. It is anticipated that until the Repository is in a mode of steady state production, requests will be collected and mice distributed as supply allows. The email requesting mice should include: A brief description of the protocol Either a copy of the IACUC approval letter or numberNINDS/UCLA Repository for Parkinson's Disease Mouse Models: One of the most immediate and important benefits of discoveries regarding the genetic or environmental causes of Parkinson's disease (PD) is the subsequent development of animal models wherein therapeutic and/or preventative interventions may be studied. The widespread availability of such models is critically important to making progress against a disorder that affects more than 500,000 Americans at any given time. The National Institute of Neurological Disorders and Stroke (NINDS) fully recognizes the burden placed on investigators by the financial and logistical realities of distributing high demand research resources. Some investigators have deposited their mice with national distribution facilities but many mouse models are not available through such resources. Developing means to facilitate greater sharing of mouse models of PD is one of the goals developed by the PD research community at the July 2002 summit meeting convened by the NIH Director. Accordingly, as part of the effort to accelerate PD research, NINDS and the University of California at Los Angeles (UCLA) created a resource that will distribute transgenic mouse models of human PD that are not yet available through national commercial resources. Investigators who are willing to share mice with the PD research community can simply arrange with NINDS to have the mice deposited at UCLA and investigators desiring to study the mice may arrange with NINDS to obtain two breeding pairs. The process will use Material Transfer Agreements created specifically for this arrangement.

Proper citation: NINDS/UCLA Repository for Parkinson's Disease Mouse Models (RRID:SCR_007319) Copy   


http://www.crash2.lshtm.ac.uk

This is a trial for a large randomised placebo controlled trial among trauma patients with, or at risk of, significant haemorrhage, of the effects of antifibrinolytic treatment on death and transfusion requirement. Sponsors: This resource is supported by UK NIHR Health Technology Assessment programme, Pfizer, BUPA Foundation, and J P Moulton Charitable Foundation. Keyowrds: Trial, Placebo, Drug, Trauma, Haemorrhage, Antifibrinolytic, Treatment, Death, Transfusion,

Proper citation: Clinical Randomisation of an Antifibrinolytic in Significant Haemorrhage (RRID:SCR_007235) Copy   


  • RRID:SCR_007197

    This resource has 10+ mentions.

http://www.neuroconstruct.org/

Software for simulating complex networks of biologically realistic neurons, i.e. models incorporating dendritic morphologies and realistic cell membrane conductance, implemented in Java and generates script files for the NEURON and GENESIS simulators, with support for other simulation platforms (including PSICS and PyNN) in development. neuroConstruct is being developed in the Silver Lab in the Department of Neuroscience, Physiology and Pharmacology at UCL and uses the latest NeuroML specifications, including MorphML, ChannelML and NetworkML. Some of the key features of neuroConstruct are: Creation of networks of biologically realistic neurons, positioned in 3D space. Complex connectivity patterns between cell groups can be specified for the networks. Can import morphology files in GENESIS, NEURON, Neurolucida, SWC and MorphML format for inclusion in network models. Simulations can be run on the NEURON or GENESIS platforms. Cellular processes (synapses/channel mechanisms) can be imported from native script files or created in ChannelML. Recording of simulation data generated by the simulation and visualization/analysis of data. Stored simulation runs can be viewed and managed through the Simulation Browser interface.

Proper citation: neuroConstruct (RRID:SCR_007197) Copy   


  • RRID:SCR_007351

    This resource has 1+ mentions.

http://mipgsun.mipg.upenn.edu/~Vnews/

Data-, machine-, and application- independent software system for the visualization and analysis of multidimensional images. This transportable, very inexpensive software system, has capabilities for visualizing, manipulating, and analyzing multidimensional, multimodality image information. It is designed to run on Unix machines under X-windows. It uses a data protocol that is a multidimensional generalization of the ACR-NEMA standards. We have tested it extensively on SGI and Sun workstations and PCs. Other recipients of 3DVIEWNIX have installed it on a variety of platforms including IBM RS6000s, HP700s, and Stardent, all from a single source code version. UNIQUE FEATURES OF 3DVIEWNIX * Transportable - based on UNIX, X-window, and C * Based on multidimensional generalization of ACR-NEMA standards of data representation * Application-independent * Image dimensionality independent * Can handle rigid, non-rigid, static, and dynamic objects and object assemblies * Can handle object information from multiple modalities and longitudinal acquisitions * Multitudes of visualization, manipulation, and analysis methods incorporated * Open software system distributed with source code

Proper citation: 3DViewnix (RRID:SCR_007351) Copy   


http://www.regardsstudy.org/

The REasons for Geographic and Racial Differences in Stroke (REGARDS) project, sponsored by the National Institutes of Health (NIH), is a national study focusing on learning more about the factors that increase a person''s risk of having a stroke. REGARDS is an observational study of risk factors for stroke in adults 45 years or older. 30,239 participants were recruited between January 2003 and October 2007. They completed a telephone interview followed by an in-home physical exam. Measurements included traditional risk factors such as blood pressure and cholesterol levels, and an echocardiogram of the heart. At six month intervals, participants are contacted by phone to ask about stroke symptoms, hospitalizations and general health status. The study is ongoing and will follow participants for many years. The purpose of the REGARDS project is to understand why people in some parts of the country develop more strokes than people in other parts of the country, and why blacks develop more strokes than whites. We hope to learn how to reduce the number of people having strokes.

Proper citation: REGARDS - REasons for Geographic and Racial Differences in Stroke (RRID:SCR_007228) Copy   


http://www.bmdw.org

Bone Marrow Donors Worldwide (BMDW) is the continuing effort to collect the HLA phenotypes of volunteer stem cell donors and cord blood units, and is responsible for the co-ordination of their worldwide distribution. Participants are 63 stem cell donor registries from 44 countries, and 43 cord blood banks from 25 countries. The current number of donors and cord blood units in the BMDW database is: 14,605,618 (14,178,976 donors and 426,642 CBU''s The original goal to collect the HLA phenotypes of volunteer stem cell donors and cord blood units, and to co-ordinate their world-wide distribution remain their primary goals. But new initiatives have been added: - To maximise the chance of finding a stem cell donor or cord blood unit by providing access to all stem cell donors and cord blood units available in the world. - To minimise the effort required for stem cell donor or cord blood unit searches: only registries with potential stem cell donors or cord blood units need to be contacted. - To provide an estimate of the chance of finding a stem cell donor or cord blood unit for a given patient. - To provide advanced search programs to identify partially matched stem cell donors or cord blood units. - To facilitate search advice requests via the Internet. - To facilitate improvements in family search strategies. - To provide relevant general information for the benefit of the patient. - To provide statistics on the increase of different registries, the number of DNA typed donors, etc. Sponsors: Bone Marrow Donors Worldwide is an initiative of the Immunobiology Working Party of the European Group of Blood and Marrow Transplantation (EBMT) in 1988. Keyworss: Bone marrow, Donor, Cell, Phenotype, Stem cell, Cord blood unit,

Proper citation: Bone Marrow Donors Worldwide (RRID:SCR_007186) Copy   


http://www.visionnetwork.nei.nih.gov/

The National Eye Institute (NEI) created the VISION Public Information Network for the purpose of communicating with public information officers at NEI grantee institutions. The Network''s primary mission is to work with the NEI in disseminating research results to the national and local media. The Network also works to inform the public of the mission of the National Institutes of Health (NIH) to improve the health of America through medical research. The NEI is part of the NIH, U.S. Department of Health and Human Services (DHHS). General information portal for eye and vision related resources for the public. Sponsors: This resource is supported by the National Eye Institute.

Proper citation: Vision Public Information Network (RRID:SCR_007340) Copy   


http://brown.edu/academics/molecular-pharmacology-physiology-and-biotechnology/

THIS RESOURCE IS NO LONGER IN SERVICE, documented on August 20, 2021. Department of Molecular Pharmacology, Physiology, and Biotechnology has closed, effective June 30, 2021. Department of Molecular Pharmacology, Physiology and Biotechnology is basic science department within Brown Medical School, and is full participant in undergraduate based Program in Biology within Division of Biology and Medicine at Brown University.

Proper citation: Brown University Alpert Medical School Department of Molecular Pharmacology Physiology and Biotechnology (RRID:SCR_007222) Copy   


http://biology.caltech.edu/

For more than 75 years, the division of biology has provided many of the major research advances that have made biology the premier science of the 21st century, and has trained many of the world''s most eminent biologists. The division at present has 38 professors of various ranks, who in their classes and laboratories have approximately 100 undergraduates, 100 graduate students, and 160 postdoctoral scholars, as well as more than 250 staff members. We occupy parts or all of seven buildings on the Caltech campus; we also operate a marine laboratory 50 miles from campus. Each building is devoted to state-of-the-art educational facilities and cutting-edge laboratories. We have three major research emphases: Structural, Molecular and Cell Biology; Developmental and Regulatory Biology; and Molecular, Cellular and Integrative Neuroscience. In each area we are trying to solve one of the great problems of modern biology: How do the proteins and other components of cells interact to provide a marvelous nanomachine of more than 100,000 integrated parts, a machine that has numerous extraordinary functions and can reproduce itself? How does a single cell become, by division and formation of new cell types, an entire multicellular organism, which in the case of humans has thousands of different cell types and more than 1 trillion different cells in specific places, communicating to form complex organs? How does the brain, the most complex organ of all, work to allow calculations beyond those of any computer, as well as to demonstrate amazing sensory capabilities, emotions, and consciousness?

Proper citation: California Institute of Technology; Division of Biology (RRID:SCR_007221) Copy   


  • RRID:SCR_007377

http://ncmir.ucsd.edu/downloads/xvoxtrace.shtm

Xvoxtrace enables volume segmentation of tomographic data using manual tracing. This program allows the researcher to outline features on individual planes of the volume while being guided by simultaneous views of the tracing displayed on a volume rendering or tilt-series. Traced contours can be viewed using XDend or used to generate surfaces for viewing in Synu. Basic Requirements:OpenGL, X windows, and Linux platforms : :

Proper citation: Xvoxtrace (RRID:SCR_007377) Copy   


  • RRID:SCR_007379

    This resource has 1+ mentions.

http://nsr.bioeng.washington.edu/

Database of physiological, pharmacological, and pathological information on humans and other organisms and integration through computational modeling. Models include everything from diagrammatic schema, suggesting relationships among elements composing a system, to fully quantitative, computational models describing the behavior of physiological systems and an organism''s response to environmental change. Each mathematical model is an internally self-consistent summary of available information, and thereby defines a working hypothesis about how a system operates. Predictions from such models are subject to test, with new results leading to new models.BR /> A Tool developed for the NSR Physiome project is JSim, an open source, free software. JSim is a Java-based simulation system for building quantitative numeric models and analyzing them with respect to experimental reference data. JSim''s primary focus is in physiology and biomedicine, however its computational engine is quite general and applicable to a wide range of scientific domains. JSim models may intermix ODEs, PDEs, implicit equations, integrals, summations, discrete events and procedural code as appropriate. JSim''s model compiler can automatically insert conversion factors for compatible physical units as well as detect and reject unit unbalanced equations. JSim also imports the SBML and CellML model archival formats. All JSim models are open source. Goals of the Physiome Project: - To develop and database observations of physiological phenomenon and interpret these in terms of mechanism (a fundamentally reductionist goal). - To integrate experimental information into quantitative descriptions of the functioning of humans and other organisms (modern integrative biology glued together via modeling). - To disseminate experimental data and integrative models for teaching and research. - To foster collaboration amongst investigators worldwide, to speed up the discovery of how biological systems work. - To determine the most effective targets (molecules or systems) for therapy, either pharmaceutic or genomic. - To provide information for the design of tissue-engineered, biocompatible implants.

Proper citation: NSR Physiome Project (RRID:SCR_007379) Copy   


http://www.cpan.org

Welcome to CPAN, where you you will find All Things Perl. CPAN is the Comprehensive Perl Archive Network, a large collection of Perl software and documentation. You can begin exploring from either http://www.cpan.org/, http://www.perl.com/CPAN/ or any of the mirrors listed at http://www.cpan.org/SITES.html. Note that CPAN is also the name of a Perl module, CPAN.pm, which is used to download and install Perl software from the CPAN archive. This FAQ covers only a little about the CPAN module and you may find the documentation for it by using perldoc CPAN via the command line or on the web at http://search.cpan.org/dist/CPAN/lib/CPAN.pm. Sponsors: CPAN works with the generosity and cooperation of hundreds of developers, over 100 participating mirrors, funet.fi donating the network bandwidth, storage space and computing power, volunteers who help keep everything together and users whose interest in Perl keep the archive alive and growing. Keywords: Comprehension, Perl, Archive, Software, Documentation,

Proper citation: Comprehensive Perl Archive Network (RRID:SCR_007253) Copy   



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