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  • RRID:SCR_001993

    This resource has 100+ mentions.

http://www.ebi.ac.uk/biomodels-main/

Repository of mathematical models of biological and biomedical systems. Hosts selection of existing literature based physiologically and pharmaceutically relevant mechanistic models in standard formats. Features programmatic access via Web Services. Each model is curated to verify that it corresponds to reference publication and gives proper numerical results. Curators also annotate components of models with terms from controlled vocabularies and links to other relevant data resources allowing users to search accurately for models they need. Models can be retrieved in SBML format and import/export facilities are being developed to extend spectrum of formats supported by resource.

Proper citation: BioModels (RRID:SCR_001993) Copy   


https://www.nei.nih.gov/learn-about-eye-health/outreach-resources/national-eye-health-education-program

NEI established NEHEP to increase awareness among healthcare professionals and the public of scientifically based health information that can be applied to preserving sight and preventing blindness. NEHEP works in partnership with a variety of public and private organizations that conduct eye health education programs. Program activities are designed to promote the importance of early detection and timely treatment of eye disease and the use of vision rehabilitation services using strategies that are culturally appropriate, health-literate, and evidence-based. NEHEP ensures that vision is a health priority by translating eye and vision research into public and professional education programs. NEHEP supports collaboration among eye health professionals, healthcare providers, patients, and the public. NEHEP programs provide healthcare professionals with information, materials, and resources to educate patients and the public about eye health and the importance of comprehensive dilated eye examinations. NEHEP is supported by a Planning Committee and a Partnership, which bring a vast array of knowledge about eye health and experience with populations at higher risk for eye disease. NEHEP Programs *Diabetic Eye Disease: The NEHEP Diabetic Eye Disease (DED) Education Program is designed to increase awareness about DED among people with diabetes, particularly those at higher risk. *Glaucoma: The NEHEP Glaucoma Education Program provides information about glaucoma to people at higher risk as well as those living with the disease. *Low Vision: The NEHEP Low Vision Education Program is designed to create awareness among adults, their families and friends, and the general public about vision rehabilitation services. *Ojo con su Vision: Ojo con su visin or Watch out for your vision is the Spanish-language program of NEHEP that targets the Hispanic/Latino community. Healthy Vision Program Healthy People 2010, the health promotion and disease prevention framework for the Nation, identifies the most significant risks to health and establishes national goals to reduce those risks. Focus area 28 of Healthy People 2010, Vision and Hearing, includes 10 vision objectives known as Healthy Vision. The Healthy Vision objectives identify national eye health concerns, and encourage individuals, organizations, and businesses to help address these concerns in their communities. *Healthy Vision 2010 Focusing on examination and prevention, eye diseases, injury and safety, and vision rehabilitation, Healthy Vision 2010 is designed to help you determine what you can do in your home, community, business, or state to help improve the Nation's eye health. *Healthy Vision Community Awards Program The Healthy Vision Community Awards Program provides awards of up to 10,000 for community-based eye health education programs. The program objectives address examinations and prevention, eye diseases, injury and safety, and vision rehabilitation. *Healthy Vision Month May is Healthy Vision Month, a national eye health observance sponsored by NEI and the National Eye Health Education Program Partnership. Healthy Vision Month is devoted to elevating vision as a public health priority. Each year focuses on a specific eye health topic. *Healthy Vision Community Programs Database The Healthy Vision Community Programs Database is a searchable collection of community-based vision health programs from the different U.S. states and territories. It stimulates ideas for creative eye health education projects and promotes networking among interested groups. Outlook Newsletter: Outlook is the electronic newsletter of the National Eye Health Education Program (NEHEP). Outlook provides quarterly updates on eye health education, disease prevention activities, and NEHEP activities and materials. Related Research: NEHEP represents an extension of the support that NEI provides to vision research, where results are disseminated to health professionals, patients, and the public.

Proper citation: National Eye Health Education Program (RRID:SCR_002049) Copy   


  • RRID:SCR_002048

    This resource has 1+ mentions.

http://www.cs.sunysb.edu/~skiena/shorty/

Software for targeted de novo assembly of microreads with mate pair information and sequencing errors.

Proper citation: SHORTY (RRID:SCR_002048) Copy   


  • RRID:SCR_002047

    This resource has 100+ mentions.

http://www.aspgd.org/

Database of genetic and molecular biological information about the filamentous fungi of the genus Aspergillus including information about genes and proteins of Aspergillus nidulans and Aspergillus fumigatus; descriptions and classifications of their biological roles, molecular functions, and subcellular localizations; gene, protein, and chromosome sequence information; tools for analysis and comparison of sequences; and links to literature information; as well as a multispecies comparative genomics browser tool (Sybil) for exploration of orthology and synteny across multiple sequenced Sgenus species. Also available are Gene Ontology (GO) and community resources. Based on the Candida Genome Database, the Aspergillus Genome Database is a resource for genomic sequence data and gene and protein information for Aspergilli. Among its many species, the genus contains an excellent model organism (A. nidulans, or its teleomorph Emericella nidulans), an important pathogen of the immunocompromised (A. fumigatus), an agriculturally important toxin producer (A. flavus), and two species used in industrial processes (A. niger and A. oryzae). Search options allow you to: *Search AspGD database using keywords. *Find chromosomal features that match specific properties or annotations. *Find AspGD web pages using keywords located on the page. *Find information on one gene from many databases. *Search for keywords related to a phenotype (e.g., conidiation), an allele (such as veA1), or an experimental condition (e.g., light). Analysis and Tools allow you to: *Find similarities between a sequence of interest and Aspergillus DNA or protein sequences. *Display and analyze an Aspergillus sequence (or other sequence) in many ways. *Navigate the chromosomes set. View nucleotide and protein sequence. *Find short DNA/protein sequence matches in Aspergillus. *Design sequencing and PCR primers for Aspergillus or other input sequences. *Display the restriction map for a Aspergillus or other input sequence. *Find similarities between a sequence of interest and fungal nucleotide or protein sequences. AspGD welcomes data submissions.

Proper citation: ASPGD (RRID:SCR_002047) Copy   


http://bbrfoundation.org/

The Brain and Behavior Research Foundation (formerly NARSAD, the National Alliance for Research on Schizophrenia and Depression) is committed to alleviating the suffering of mental illness by awarding grants that will lead to advances and breakthroughs in scientific research. Additionally, learn about brain and behavior disorders and upcoming events.
100% of all donor contributions for research are invested in NARSAD Grants leading to discoveries in understanding causes and improving treatments of disorders in children and adults, such as depression, bipolar disorder, schizophrenia, autism, attention deficit hyperactivity disorder, and anxiety disorders like obsessive-compulsive and post-traumatic stress disorders. Over a quarter of a century, we have awarded nearly $300 million worldwide to more than 3,000 scientists carefully selected by our prestigious Scientific Council. We receive no government funding. All of our work relies on contributions from families, foundations and other caring donors.

Proper citation: Brain and Behavior Research Foundation (RRID:SCR_001992) Copy   


  • RRID:SCR_001987

    This resource has 1+ mentions.

http://brainmapping.org/

This is a topical portal dedicated to the communication of news, science, and information of interest to the brain mapping community, and to sharing and promoting the science of brain mapping. The purpose and goal of brain mapping is to advance the understanding of the relationship between structure and function in the human brain. Scientists in this field seek to gain knowledge of the physical processes that underly human sensation, attention, awareness and cognition. These results are immediately applicable to surgical intervention, to the design of medical interventions and to the treatment of psychological and psychiatric disorders.

Proper citation: www.brainmapping.org (RRID:SCR_001987) Copy   


http://www.ismrm.org/

The International Society for Magnetic Resonance in Medicine is an international, nonprofit, scientific association whose purpose is to promote communication, research, development, and applications in the field of magnetic resonance in medicine and biology and other related topics and to develop and provide channels and facilities for continuing education in the field. In addition to its large scientific meetings, the Society holds workshops and publishes two journals, Magnetic Resonance in Medicine and the Journal of Magnetic Resonance Imaging, and a newsletter, MR Pulse. It also sponsors study groups on specific areas of scientific interest and chapters based on geographical location. Its multidisciplinary membership of over 6,000 consists of clinicians, physicists, engineers, biochemists, and technologists. The ISMRMs inception, on January 1, 1994, resulted from a merger of the Society of Magnetic Resonance in Medicine and the Society of Magnetic Resonance Imaging forming the Society of Magnetic Resonance (now named the International Society for Magnetic Resonance in Medicine). The purposes of the Society are: (A) (i) To promote communication, research, development, applications, and the availability of information on magnetic resonance in medicine and biology and other related topics internationally; (ii) To develop and provide channels and facilities for continuing education and communication in the field, to publish and assist in the publishing of journals and other publications in the field; and (iii) To provide information and advice on those aspects of public policy which are concerned with magnetic resonance in medicine and biology and other related topics, and otherwise perform charitable, scientific and educational functions with respect to magnetic resonance applications in medicine and biology and other related topics. (B) To work with or for, and to co-operate with local, regional and national governments and governmental and private agencies, organizations, firms and institutions in efforts to accomplish one or more of the above purposes. (C) To ensure that scientists and clinicians working in the field have equal and fair opportunities to contribute to it. The site lists a partial list of NMR and MRI resources available on the World Wide Web. The content of these sites is not controlled or endorsed in any way by the ISMRM or SMRT. Sections devoted to MR safety and MRI information for patients is also available. Study groups are established to foster interaction among members with a common interest in topical and active areas of MR. If you are a member of the ISMRM or SMRT, you may become a member of any number of study groups; however, the cost of membership for each study group is US20. Recorded educational presentations, oral presentations, traditional posters, and electronic posters Available only to Meeting registrants - Now online

Proper citation: International Society for Magnetic Resonance in Medicine (RRID:SCR_001988) Copy   


  • RRID:SCR_002034

    This resource has 1+ mentions.

http://www.worldpdcongress.org

A nonprofit organization dedicated to providing an international forum for the latest scientific discoveries, medical practices and caregiver initiatives related to Parkinson's disease. It hosts the annual World Parkinson Congress, an event which focuses on bringing physicians, scientists, allied health professionals, caregivers and people diagnosed with Parkinson's disease together, in order to create a global dialogue that will help expedite treatment practices and the discovery of a cure .

Proper citation: World Parkinson Congress (RRID:SCR_002034) Copy   


http://www.wpda.org

THIS RESOURCE IS NO LONGER IN SERVICE, documented August 23, 2016. The World Parkinson's Disease Association is an alliance of members from all over the world who have come together to share information about Parkinson's disease. In order to further Parkinson's research and better the condition of those diagnosed with the disease, the Association: establishes computerized connections; takes part in and/or finances research activities; urges pharmaceutical companies and government institutions of the various countries to support the guidelines recommended by the associations of Parkinson's patients; and coordinates and promotes interchange of information among its members with the aim of solving problems of mutual interest.

Proper citation: World Parkinson Disease Association (RRID:SCR_002035) Copy   


https://www.wtccc.org.uk/

Consortium of 50 research groups across the UK to harness the power of newly-available genotyping technologies to improve our understanding of the aetiological basis of several major causes of global disease. The consortium has gathered genotype data for up to 500,000 sites of genome sequence variation (single nucleotide polymorphisms or SNPs) in samples ascertained for the disease phenotypes. Analysis of the genome-wide association data generated has lead to the identification of many SNPs and genes showing evidence of association with disease susceptibility, some of which will be followed up in future studies. In addition, the Consortium has gained important insights into the technical, analytical, methodological and biological aspects of genome-wide association analysis. The core of the study comprised an analysis of 2,000 samples from each of seven diseases (type 1 diabetes, type 2 diabetes, coronary heart disease, hypertension, bipolar disorder, rheumatoid arthritis and Crohn's disease). For each disease, the case samples have been ascertained from sites widely distributed across Great Britain, allowing us to obtain considerable efficiencies by comparing each of these case populations to a common set of 3,000 nationally-ascertained controls also from England, Scotland and Wales. These controls come from two sources: 1,500 are representative samples from the 1958 British Birth Cohort and 1,500 are blood donors recruited by the three national UK Blood Services. One of the questions that the WTCCC study has addressed relates to the relative merits of these alternative strategies for the generation of representative population cohorts. Genotyping for this main Case Control study was conducted by Affymetrix using the (commercial) Affymetrix 500K chip. As part of this study a total of 17,000 samples were typed for 500,000 SNPs. There are two additional components to the study. First, the WTCCC award is part-funding a study of host resistance to infectious diseases in African populations. The same approach has been used to type 2,000 cases of tuberculosis (TB) and 2,000 cases of malaria, as well as 2,000 shared controls. As well as addressing diseases of major global significance, and extending WTCCC coverage into the area of infectious disease, the inclusion of samples of African origin has obvious benefits with respect to methodological aspects of genome-wide association analysis. Second, the WTCCC has, for four additional diseases (autoimmune thyroid disease, breast cancer, ankylosing spondylitis, multiple sclerosis), completed an analysis of 15,000 SNPs designed to represent a large proportion of the known non-synonymous coding SNPs across the genome. This analysis has been performed at the WTSI using a custom Infinium chip (Illumina). Data release The genotypic data of the control samples (1958 British Birth Cohort and UK Blood Service) and from seven diseases analyzed in the main study are now available to qualified researchers. Summary genotype statistics for these collections are available directly from the website. Access to the individual-level genotype data and summary genotype statistics is by application to the Consortium Data Access Committee (CDAC) and approval subject to a Data Access Agreement. WTCCC2: A further round of GWA studies were funded in April 2008. These include 15 WTCCC-collaborative studies and 12 independent studies be supported totaling approximately 120,000 samples. Many of the studies represent major international collaborative networks that have together assembled large sample collections. WTCCC2 will perform genome-wide association studies in 13 disease conditions: Ankylosing spondylitis, Barrett's oesophagus and oesophageal adenocarcinoma, glaucoma, ischaemic stroke, multiple sclerosis, pre-eclampsia, Parkinson's disease, psychosis endophenotypes, psoriasis, schizophrenia, ulcerative colitis and visceral leishmaniasis. WTCCC2 will also investigate the genetics of reading and mathematics abilities in children and the pharmacogenomics of statin response. Over 60,000 samples will be analyzed using either the Affymetrix v6.0 chip or the Illumina 660K chip. The WTCCC2 will also genotype 3,000 controls each from the 1958 British Birth cohort and the UK Blood Service control group, and the 6,000 controls will be genotyped on both the Affymetrix v6.0 and Illumina 1.2M chips. WTCCC3: The Wellcome Trust has provided support for a further round of GWA studies in January 2009. These include 5 WTCCC-collaborative studies to be carried out in WTCCC3 and 5 independent studies, across a range of diseases. Many of the studies represent major international collaborative networks that have together assembled large sample collections. WTCCC3 will perform genome-wide association studies in the following 4 disease conditions: primary biliary cirrhosis, anorexia nervosa, pre-eclampsia in UK subjects, and the interactions between donor and recipient DNA related to early and late renal transplant dysfunction. The WTCCC3 will also carry out a pilot in a study of the genetics of host control of HIV-1 infection. Over 40,000 samples will be analyzed using the Illumina 660K chip. The WTCCC3 will utilize the 6,000 control genotypes generated by the WTCCC2.

Proper citation: Wellcome Trust Case Control Consortium (RRID:SCR_001973) Copy   


http://www.humanbrainmapping.org/i4a/pages/index.cfm?pageid=1

International society dedicated to advancing understanding of anatomical and functional organization of human brain using neuroimaging. Primary function of society is to provide educational forums for exchange of up-to-the-minute and groundbreaking research across neuroimaging methods and applications. OHBM achieves this through its member led committees and Annual Meeting that is held in different locations throughout the world.

Proper citation: Organization for Human Brain Mapping (RRID:SCR_001978) Copy   


  • RRID:SCR_002066

    This resource has 10+ mentions.

http://www.neuralgate.org/download/NeuralAct

Software to visualize electrocorticographic (ECoG) and possibly also other kinds of neural activity (EEG / EMG/ DOT) on a 3D model of the cortical surface. The tool has been used to produce cortical activation images and image sequences in several recent studies using ECoG. The tool is written in matlab. The package is thoroughly documented and includes a demo.

Proper citation: NeuralAct (RRID:SCR_002066) Copy   


  • RRID:SCR_002068

    This resource has 10+ mentions.

https://cran.r-project.org/src/contrib/Archive/PurBayes/

An MCMC-based algorithm that uses next-generation sequencing data to estimate tumor purity and clonality for paired tumor-normal data.

Proper citation: PurBayes (RRID:SCR_002068) Copy   


http://adrc.ucsd.edu/

The UCSD ADRC conducts a wide variety of research studies dedicated to understanding the causes, clinical features, and treatments for Alzheimer's disease and related memory disorders. The goal of the center is to discover ways to prevent and eradicate the disease. The Center aims to maintain research subjects, clinical resources, and clinical data to support ongoing and proposed research and to assist in the development of new clinical and interdisciplinary research. An Alzheimer's brain bank with well characterized cases, including Mild Cognitive Impairment and Lewy Body disease, is maintained at the Center.

Proper citation: Shiley-Marcos Alzheimer's Disease Research Center (RRID:SCR_001928) Copy   


http://www.doe-mbi.ucla.edu/

The UCLA-DOE Institute for Genomics and Proteomics carries out research in bioenergy, structural biology, genomics and proteomics, consistent with the research mission of the United States Department of Energy. Major interests of the 12 Principal Investigators and 9 Associate Members include systems approaches to organisms, structural biology, bioinformatics, and bioenergetic systems. The Institute sponsors 5 Core Technology Centers, for X-ray and NMR structural determination, bioinformatics and computation, protein expression and purification, and biochemical instrumentation. Services offered by this Institute: - Databases: * DIP (The Database of Interacting Proteins): The DIPTM database catalogs experimentally determined interactions between proteins. It combines information from a variety of sources to create a single, consistent set of protein-protein interactions. * ProLinks Database of Functional Linkages: The Prolinks database is a collection of inference methods used to predict functional linkages between proteins. These methods include the Phylogenetic Profile method which uses the presence and absence of proteins across multiple genomes to detect functional linkages; the Gene Cluster method, which uses genome proximity to predict functional linkage; Rosetta Stone, which uses a gene fusion event in a second organism to infer functional relatedness; and the Gene Neighbor method, which uses both gene proximity and phylogenetic distribution to infer linkage. - Data-to-Structure Servers: * SAVEs Structure Verification Server * Merohedral Twinning Test Server * SER Surface Entropy Reduction Server * VERIFY3D Structure Verification Server * ERRAT Structure Verification Server - Structure-to-Function Servers: * ProKnow Protein Functionator * Hot Patch Functional Site Locator

Proper citation: University of California at Los Angeles - Department of Energy Institute for Genomics and Proteomics (RRID:SCR_001921) Copy   


http://www.mevislab.de/index.php?id=6

Modular framework for the development of image processing algorithms and visualization and interaction methods, with a special focus on medical imaging. It includes advanced medical imaging modules for segmentation, registration, volumetry, and quantitative morphological and functional analysis. The platform allows fast integration and testing of new algorithms and the development of application prototypes that can be used in clinical environments. In MeVisLab, individual image processing, visualization and interaction modules can be combined to complex image processing networks using a graphical programming approach. The algorithms can easily be integrated using a modular, platform-independent C++ class library. An abstract, hierarchical definition language allows the design of efficient graphical user interfaces, hiding the complexity of the underlying module network to the end user. JavaScript components can be added to implement dynamic functionality on both the network and the user interface level. MeVisLab is based on the Qt application framework, the OpenInventor 3D visualization toolkit and OpenGL. Several clinical prototypes have been realized on the basis of MeVisLab, including software assistants for neuro-imaging, dynamic image analysis, surgery planning, and vessel analysis. Feature Overview: :- Basic image processing algorithms and advanced medical imaging modules :- Full featured, flexible 2D/3D visualization and interaction tools :- High performance for large datasets :- Modular, expandable C++ image processing library :- Graphical programming of complex, hierarchical module networks :- Object-oriented GUI definition and scripting :- Full scripting functionality using Python and JavaScript :- DICOM support and PACS integration :- Intuitive user interface :- Integrated movie and screenshot generation for demonstration purposes :- Generic integration of the Insight Toolkit (ITK) and the Visualization Toolkit (VTK) :- Cross-platform support for Windows, Linux, and MacOS X :- Available for 64-bit operating systems

Proper citation: Medical Image Processing and Visualization (RRID:SCR_002055) Copy   


https://med.stanford.edu/sfgf.html

Stanford Genomics formerly Stanford Functional Genomics Facility provides services for high throughput sequencing, single cell assays, gene expression and genotyping studies utilizing microarray and real time PCR, and related services. High throughput sequencing (Illumina HiSeq 4000, NextSeq 500, MiSeq and MiniSeq), microarray gene expression and genotyping services (Affymetrix, Agilent and Illumina). Provides 24/7 access to instruments, equipment and software utilized within genomics field.

Proper citation: Stanford Genomics Service Center Core Facility (RRID:SCR_002050) Copy   


  • RRID:SCR_001997

    This resource has 10+ mentions.

https://dataverse.org/

Project portal for publishing, citing, sharing and discovering research data. Software, protocols, and community connections for creating research data repositories that automate professional archival practices, guarantee long term preservation, and enable researchers to share, retain control of, and receive web visibility and formal academic citations for their data contributions. Researchers, data authors, publishers, data distributors, and affiliated institutions all receive appropriate credit. Hosts multiple dataverses. Each dataverse contains studies or collections of studies, and each study contains cataloging information that describes the data plus the actual data files and complementary files. Data related to social sciences, health, medicine, humanities or other sciences with an emphasis in human behavior are uploaded to the IQSS Dataverse Network (Harvard). You can create your own dataverse for free and start adding studies for your data files and complementary material (documents, software, etc). You may install your own Dataverse Network for your University or organization.

Proper citation: Dataverse Network Project (RRID:SCR_001997) Copy   


  • RRID:SCR_001995

    This resource has 1+ mentions.

http://microarrays.curie.fr/publications/U900-RPPA_PLT/Normacurve/

Analysis methodology that allows simultaneous quantification and normalization of reverse phase protein array (RPPA) data.

Proper citation: NormaCurve (RRID:SCR_001995) Copy   


http://www.math.pitt.edu/~bard/xpp/xpp.html

XPPAUT is a tool for solving differential equations, difference equations, delay equations, functional equations, boundary value problems, and stochastic equations. It evolved from a chapter written by John Rinzel and me on the qualitative theory of nerve membranes and eventually became a commercial product for MSDOS computers called PHASEPLANE. It is now available as a program running under X11 and Windows. The code brings together a number of useful algorithms and is extremely portable. All the graphics and interface are written completely in Xlib which explains the somewhat idiosyncratic and primitive widgets interface. XPP contains the code for the popular bifurcation program, AUTO . Thus, you can switch back and forth between XPP and AUTO, using the values of one program in the other and vice-versa. I have put a ``friendly'' face on AUTO as well. You do not need to know much about it to play around with it. XPP has the capabilities for handling up to 590 differential equations. There are over a dozen solvers including several for stiff systems, a solver for integral equations and a symplectic solver. Up to 10 graphics windows can be visible at once and a variety of color combinations is supported. PostScript output is supported as well as GIF and animator GIF movies Post processing is easy and includes the ability to make histograms, FFTs and applying functions to columns of your data. Equilibria and linear stability as well as one-dimensional invariant sets can be computed. Nullclines and flow fields aid in the qualitative understanding of two-dimensional models. Poincare maps and equations on cylinders and tori are also supported. Some useful averaging theory tricks and various methods for dealing with coupled oscillators are included primarily because that is what I do for a living. Equations with Dirac delta functions are allowable. I have added an animation package that allows you to create animated versions of your simulations, such as a little pendulum moving back and forth or lamprey swimming. See toys! for examples. There is a curve-fitter based on the Marquardt-Levenberg algorithm which lets you fit data points to the solutions to dynamical systems. It is possible to automatically generate "movies'' of three-dimensional views of attractors or parametric changes in the attractor as some parameters vary. Dynamically link to external subroutines XPP has been successfully compiled on a SPARC II under OpenLook, a SPARC 1.5 running generic X, a NeXT running X11R4, a DEC 5000, a PC using Linux or Windows, and SGI and an HP 730. It also runs under Win95/NT/98 if you have an X-Server. I cannot vouch for other platforms but it has been compiled on the IBM RS6000. Building XPP requires only the standard C compiler, and Xlib. Look at the any README files that come with the distribution for solutions to common compilation problems.

Proper citation: XPP-Aut: X-Windows Phase Plane plus Auto (RRID:SCR_001996) Copy   



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