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  • RRID:SCR_007012

    This resource has 1+ mentions.

http://openccdb-dev-web.crbs.ucsd.edu/software/index.shtm

THIS RESOURCE IS NO LONGER IN SERVICE, documented on July 2, 2019. Ontology-based segmentation and analysis tools for electron tomographic data.

Proper citation: Jinx (RRID:SCR_007012) Copy   


  • RRID:SCR_007091

    This resource has 1+ mentions.

http://neurodatabase.org

THIS RESOURCE IS NO LONGER IN SERVICE, documented on June 09, 2015. A repository of neurophysiology data conforming to BrainML data models and protocols: BrainML-formatted experimental data submissions are published in searchable, browsable form. Registered users may submit new experiments. The site contains spike trains, voltage time series, and some derived histograms from single cell and multi-unit activity. The database focuses on in vivo somatosensory and visual activity during task performance. This resource contains only a few datasets, but they are of high quality and have been used for reanalysis by several parties. There are three primary interfaces for querying data from this repository: a web-based browse interface, a web-based HTML query form, and a Java web start desktop application. In addition, there is an XML interface useful for direct access by software clients. To download the source code, please read and acknowledge the license agreement.

Proper citation: Neurodatabase.org (RRID:SCR_007091) Copy   


http://www.cns.atr.jp/dni/en/downloads/tools-for-brain-behavior-data-sharing/

This is MATLAB library to create Neuroshare data format. You can convert your own data into Neuroshare format file.

Proper citation: Matlab Neuroshare Library (RRID:SCR_006957) Copy   


http://smallrna.udel.edu/index.php

This project has developed a sequence dataset of plant small RNAs based on the hypothesis that most if not all plants utilize important small RNA signaling networks. Different plant families are likely to have both common and lineage-specific miRNAs or other small RNAs with important biological roles. Comparative genomics approaches can be applied to distinguish potential miRNAs from siRNAs and to match the miRNAs to the target sequences. This project develops an unparalleled resource of millions of plant small RNAs for comparative analyses. The project includes sequencing of small RNAs from a diverse and agronomically-relevant set of plant species, focused analyses of important members of the Solanaceae and Poaceae, and development of a small RNA database and web interface for public access and analysis of data. These data will allow the experimental characterization of the majority of biologically important small RNAs for a range of plant species, and will be tremendously useful to a broad set of plant biologists interested in development, stress responses, epigenetics, evolution, RNA biology and other traits impacted by small RNAs. We offer a variety of tools to query the small RNA data set, with options to identify sequences based on homology, expression levels, conservation, or potential function: 1. Small RNA mapping tool: searches for small RNAs perfectly matching a genomic sequence provided by the user. 2. Small RNA mismatch tool: searches the database for small RNAs or other short sequences provided by the user, allowing mismatches. 3. Library-comparison tool to identify conserved small RNAs. 4. Library-comparison tool to identify differentially regulated small RNAs. 5. Reverse Target Prediction.

Proper citation: Comparative Sequencing of Plant Small RNAs (RRID:SCR_007003) Copy   


  • RRID:SCR_007086

    This resource has 1+ mentions.

http://hcv.lanl.gov/content/immuno/immuno-main.html

The HCV Immunology Database contains a curated inventory of immunological epitopes in HCV and their interaction with the immune system, with associated retrieval and analysis tools. The funding for the HCV database project has stopped, and this website and the HCV immunology database are no longer maintained. The site will stay up, but problems will not be fixed. The database was last updated in September 2007. The HIV immunology website contains the same tools, and may be usable for non-HCV-specific analyses. For new epitope information, users of this database can try the Immuno Epitope Database (http://www.immuneepitope.org).

Proper citation: HCV Immunology Database (RRID:SCR_007086) Copy   


https://mctfr.psych.umn.edu/

Composed of many projects, including the Minnesota Twin Family Study (MTFS) and The Sibling Interaction and Behavior Study (SIBS), this research center seeks to identify genetic and environmental influences on development and psychological traits. Both projects are longitudinal research studies including twins, siblings, and parents. Over 9800 individuals have contributed to these exciting projects! By studying twins and siblings and their families, we can estimate how genes and environment interact to influence character, strengths, vulnerabilities and values. Participants in the MTFS include families with same-sex identical or fraternal twins who were born in Minnesota. The SIBS study is comprised of adoptive and biological siblings and their parents. Most participants partake in day-long visits to the MCTFR, and due to the longitudinal nature of our projects, they return every 3-4 years for follow-up visits.

Proper citation: Minnesota Center for Twin and Family Research (RRID:SCR_006948) Copy   


  • RRID:SCR_006947

    This resource has 10+ mentions.

https://github.com/jstjohn/SimSeq

An illumina paired-end and mate-pair short read simulator. This project attempts to model as many of the quirks that exist in Illumina data as possible. Some of these quirks include the potential for chimeric reads, and non-biotinylated fragment pull down in mate-pair libraries .

Proper citation: SimSeq (RRID:SCR_006947) Copy   


  • RRID:SCR_007278

    This resource has 10+ mentions.

https://www.nitrc.org/projects/fmridatacenter/

THIS RESOURCE IS NO LONGER IN SERVICE, documented August 25, 2013 Public curated repository of peer reviewed fMRI studies and their underlying data. This Web-accessible database has data mining capabilities and the means to deliver requested data to the user (via Web, CD, or digital tape). Datasets available: 107 NOTE: The fMRIDC is down temporarily while it moves to a new home at UCLA. Check back again in late Jan 2013! The goal of the Center is to help speed the progress and the understanding of cognitive processes and the neural substrates that underlie them by: * Providing a publicly accessible repository of peer-reviewed fMRI studies. * Providing all data necessary to interpret, analyze, and replicate these fMRI studies. * Provide training for both the academic and professional communities. The Center will accept data from those researchers who are publishing fMRI imaging articles in peer-reviewed journals. The goal is to serve the entire fMRI community.

Proper citation: fMRI Data Center (RRID:SCR_007278) Copy   


https://www.niagads.org/

National genetics data repository facilitating access to genotypic and phenotypic data for Alzheimer's disease (AD). Data include GWAS, whole genome (WGS) and whole exome (WES), expression, RNA Seq, and CHIP Seq analyses. Data for the Alzheimer’s Disease Sequencing Project (ADSP) are available through a partnership with dbGaP (ADSP at dbGaP). Repository for many types of data generated from NIA supported grants and/or NIA funded biological samples. Data are deposited at NIAGADS or NIA-approved sites. Genetic Data and associated Phenotypic Data are available to qualified investigators in scientific community for secondary analysis.

Proper citation: National Institute on Aging Genetics of Alzheimer’s Disease Data Storage Site (NIAGADS) (RRID:SCR_007314) Copy   


  • RRID:SCR_007391

    This resource has 50+ mentions.

http://www.ikaros-project.org/

Ikaros is an open infrastructure for system level modeling of the brain including databases of experimental data, computational models and functional brain data. The system makes heavy use of the emerging standards for Internet based information and makes all information accessible through an open web-based interface. In addition, Ikaros can be used as a control architecture for robots which in the extension will lead to the development of a brain inspired robot architecture. The main components of the Ikaros systems are: a platform independent simulation kernel; a set of computational brain models; a set of I/O modules for interfacing with data files and peripheral such as robots or video cameras; tools for building systems of interconnected models; a plug-in architecture that allows new models to be easily added to the system; and a database with data from learning experiments that can be used for validation of the computational models.

Proper citation: Ikaros Project (RRID:SCR_007391) Copy   


  • RRID:SCR_007429

http://ngs.ym.edu.tw/ym500/index.php

An Integrative small RNA Sequencing database for miRNA research and provides an integrative web interface for miRNA quantification, isomiR identification, arm switching discovery, and, most of all, novel miRNA predictions.

Proper citation: YM500 (RRID:SCR_007429) Copy   


  • RRID:SCR_007307

    This resource has 50+ mentions.

http://www.mcell.cnl.salk.edu/

Software modeling tool for realistic simulation of cellular signaling in complex 3-D subcellular microenvironment in and around living cells. Program that uses spatially realistic 3D cellular models and specialized Monte Carlo algorithms to simulate movements and reactions of molecules within and between cells.

Proper citation: MCell (RRID:SCR_007307) Copy   


  • RRID:SCR_007422

    This resource has 100+ mentions.

http://sbml.org

A computer-readable format for representing models of biochemical reaction networks in software. It''s applicable to models of metabolism, cell-signaling, and many others. This website is the portal for the global SBML development effort; you can find information about all aspects of SBML.

Proper citation: SBML (RRID:SCR_007422) Copy   


  • RRID:SCR_007381

    This resource has 10+ mentions.

http://www.e-cell.org/

Software platform, general technologies and theoretical supports for computational biology with the grand aim to make precise whole cell simulation at the molecular level possible.Technologies include formalisms and techniques, including technologies to predict, obtain or estimate parameters such as reaction rates and concentrations of molecules in the cell. The E-Cell System is a software platform for modeling, simulation and analysis of complex, heterogeneous and multi-scale system like the cell. The E-Cell Project is open to anyone who shares the view with u that development of cell simulation technology, and, even if such ultimate goal might not be within ten years of reach yet, solving various conceptual, computational and experimental problems that will continue to arise in the course of pursuing it, may have a multitude of eminent scientific, medical and engineering impacts on our society.

Proper citation: Electronic Cell Project (RRID:SCR_007381) Copy   


  • RRID:SCR_007380

    This resource has 1+ mentions.

http://pin.primate.wisc.edu/

Portal covering the broad field of primatology, providing original content and links to resources about nonhuman primates in research, education and conservation. Through email lists and other resources, PIN also supports an informal primate information network comprised of thousands of individuals around the world working with nonhuman primates in a variety of roles. Services Provided: - Primate Info Net (PIN): A comprehensive Web site with links to research, conservation, and education resources related to nonhuman primates. - PrimateLit Database (1940 to date): PrimateLite is a free, bibliographic database of more than 200,000 citations to the nonhuman primate literature. Indexing for PrimateLit is provided by the Primate Information Center, Washington NPRC, Seattle. - International Directory of Primatology: The International Directory of Primatology is a searchable directory of the field of primatology with detailed information about organizations, field studies, population management groups, and contact information for more than 3,000 primatologists. - Primate-Science: Primate-Science is a professionally oriented, e-mail-based electronic discussion forum for people engaged in research with nonhuman primates. - Primate-News: Primate-News is an e-mailed-based news clipping service open to anyone interested in nonhuman primates. - Primate Enrichment Forum: Primate Enrichment Forum is a professionally oriented, e-mail-based electronic discussion forum for individuals interested in environmental enrichment for nonhuman primates. - AskPrimate: AskPrimate is a cooperative e-mail reference service available to the research community and the general public. - Primate-Jobs: Primate-Jobs is a job listing service that includes paid and volunteer positions, wanted and available. - Careers in Primatology: Careers in Primatology is a resource for people considering careers in primate research, education, conservation, or veterinary medicine. - Audiovisual Resources: Audiovisual Resources is a collection of primate-related videotapes, slides, and audiotapes available for research and educational uses. - The Callicam: The Callicam is a Webcam feature of the Wisconsin NPRC''s common marmoset site that allows students in the classroom to observe marmoset behavior and learn about their natural history, care, and management.

Proper citation: Primate Info Net (RRID:SCR_007380) Copy   


https://gpcrdb.org/

The GPCRDB is a molecular-class information system that collects, combines, validates and stores large amounts of heterogenous data on G protein-coupled receptors (GPCRs). :The GPCRDB contains data on sequences, ligand binding constants and mutations. In addition, t he system provides computationally derived data such as multiple sequence alignments, homology models, and a series of query and visualization tools. :The GPCRDB is designed to be a data storage medium, as well as a tool to aid biomedical scientists with answering questions by offering a single point of access to many types of data that are integrated and visualized in a user-friendly way. Although most parts of the GPCRDB are self-explanatory, if you have not used this resource before it is adviced that you to take a look at the usage page. Sponsors: This resource is supported by Organon and Unilever, and the NIH. Keywords: G protein, Coupled, receptor, Molecular, Heterogenous, Data, Sequence, Ligand, Mutation, Computational, Software, Alignment, Homology, Model, Visualization, Tool, Biomedical, Scientist, Integration,

Proper citation: G Protein-Coupled Receptor Data Base (RRID:SCR_007419) Copy   


https://www.kent.edu/neuroscience

Neuroscience is dedicated to understanding how the brain and nervous system function in health, disease and repair. Neuroscience research at Kent State University is supported by over 50 faculty members from numerous departments and disciplines. Our researchers have a wide range of expertise including behavioral neuroscience, sensory neuroscience, developmental neuroscience and neurodegenerative diseases.

Proper citation: Kent State University Department of Neuroscience (RRID:SCR_007458) Copy   


http://www.cidr.jhmi.edu/

Next generation sequencing and genotyping services provided to investigators working to discover genes that contribute to disease. On-site statistical geneticists provide insight into analysis issues as they relate to study design, data production and quality control. In addition, CIDR has a consulting agreement with the University of Washington Genetics Coordinating Center (GCC) to provide statistical and analytical support, most predominantly in the areas of GWAS data cleaning and methods development. Completed studies encompass over 175 phenotypes across 530 projects and 620,000 samples. The impact is evidenced by over 380 peer-reviewed papers published in 100 journals. Three pathways exist to access the CIDR genotyping facility: * NIH CIDR Program: The CIDR contract is funded by 14 NIH Institutes and provides genotyping and statistical genetic services to investigators approved for access through competitive peer review. An application is required for projects supported by the NIH CIDR Program. * The HTS Facility: The High Throughput Sequencing Facility, part of the Johns Hopkins Genetic Resources Core Facility, provides next generation sequencing services to internal JHU investigators and external scientists on a fee-for-service basis. * The JHU SNP Center: The SNP Center, part of the Johns Hopkins Genetic Resources Core Facility, provides genotyping to internal JHU investigators and external scientists on a fee-for-service basis. Data computation service is included to cover the statistical genetics services provided for investigators seeking to identify genes that contribute to human disease. Human Genotyping Services include SNP Genome Wide Association Studies, SNP Linkage Scans, Custom SNP Studies, Cancer Panel, MHC Panels, and Methylation Profiling. Mouse Genotyping Services include SNP Scans and Custom SNP Studies.

Proper citation: Center for Inherited Disease Research (RRID:SCR_007339) Copy   


http://neuroscience.jhu.edu/

The Neuroscience Training Program at The Johns Hopkins University School of Medicine addresses the broad areas encompassed by modern neuroscience. The purpose of the Program is to train doctoral students for independent research and teaching in neuroscience. It is the goal of the Program to ensure that candidates for the Ph.D. and M.D./Ph.D. degrees obtain a background covering molecular/cellular and systems/cognitive approaches to neuroscience, as well as receive training that brings them to the forefront of research in their particular area of interest. A series of core courses in neuroscience, along with advanced electives, seminar series, laboratory rotations and original independent dissertation research form the Neuroscience Graduate Training Program. The Neuroscience Training Program and the Neuroscience Department are among the oldest in the United States and date back to 1980. The faculty of the Neuroscience Training Program have trained about 250 Ph.D. and M.D./Ph.D. students and 500 postdoctoral fellows over the past ten years. All doctoral candidates receive full tuition remission and a stipend. Research within the department ranges from investigating the development of the nervous system, synaptic plasticity and the molecular and cellular mechanisms of learning and memory to the neural basis of higher brain function such as perception and decision-making. Our faculty are also at the forefront of research into the molecular mechanisms of neurological and psychiatric diseases, including Parkinson''s, Alzheimer''s'' disease, amyotrophic lateral sclerosis (ALS), schizophrenia, depression, drug addiction, mental retardation and autism.

Proper citation: Johns Hopkins University Neuroscience (RRID:SCR_007455) Copy   


http://healthsciences.howard.edu/education/colleges/medicine/departments/pharmacology/Overview

The Department of Pharmacology offers programs leading to the Master of Science and Doctor of Philosophy degrees. The primary objective of these programs is to prepare candidates for research and teaching careers. The first few semesters are devoted primarily to core course work designed to give the student a broad background in the fundamental theories and techniques of pharmacology.During this time, the student gains exposure to methods for the solution of research problems by working in the laboratories of various faculty members culminating in a selection of a thesis advisor. The department has spacious laboratories equipped with modern instruments that are used by both faculty and students in such research areas as biochemical, molecular, cardiovascular, autonomic, clinical, and neuropharmacology, drug metabolism, cancer research and toxicology.

Proper citation: Howard University Washington D.C Department of Pharmacology (RRID:SCR_007454) Copy   



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