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http://sourceforge.net/projects/b-o-s-s/
Batch primer selection software program designed to select PCR oligos for gap closure for assemblies containing a large number of gaps. It will select oligos for gap closure of both contig and scaffold gaps.
Proper citation: Batch Oligo Selection Script (RRID:SCR_002808) Copy
https://github.com/rcanovas/libCSAM
Contains several C++ codes for compress, decompress, and access each of the fields of any SAM format file.
Proper citation: libCSAM (RRID:SCR_002766) Copy
The deer mouse (Peromyscus maniculatus) and congeneric species are the most common native North American mammal. Laboratory stock of both wild-type and genetically variant Peromyscus are used for investigations in which laboratory-based studies can be interfaced with those of natural populations. The major function of the Stock Center is to provide genetically characterized types of Peromyscus in limited quantities to scientific investigators. It provides a reliable source of genetically defined and virus-free animals and related materials to the scientific and educational communities. The center currently keeps nine species and more than 27 distinctive mutant and other genetically defined stocks. Included among the species maintained are P. californicus, P. leucopus, P. eremicus, P. aztecus, P. melanophrys as well as two subspecies each of P. maniculatus and P. polionotus and three inbred lines of P. leucopus. Among the mutant stocks are 17 with altered coat phenotypes, 3 with neurological symptoms, and 6 others with developmental/physiological effects. One of these is a line deficient in alcohol dehydrogenase that has been widely used in studies of alcohol metabolism. The stock center also supplies biological materials, including fresh, frozen, and preserved tissues; molecular probes, and libraries. The center functions as a clearinghouse for information regarding this genus by sponsoring an Internet database and the semi-annual Peromyscus Newsletter. The center maintains a collection of over 3,000 Peromyscus-related reprints of published articles, books, and journals-photocopies of which are available upon request. Continuation of the center is dependent upon significant external utilization, therefore potential users are encouraged to take advantage of this resource. Sufficient animals of the mutant types generally can be provided to initiate a breeding stock. Some what larger numbers, up to about 50 animals, can be provided from the wild-type stocks. A user fee of $25.00 per wild-type animal and $33.00 per mutant or other special types is charged. The user assumes the cost of air shipment. Animals lost in transit are replaced without charge. Tissues, blood, skins, etc. can also be supplied at a modest fee. Arrangements for special orders will be negotiated. :Sponsors: The peromyscus genetic stock center is supported by the University of South Carolina, :a grant from the Special Projects Program of the National Science Foundation and a P40 grant ( grant number: P40 RR014279) from the National Institutes of Health. physiological, Developmental, Biological, Animal,
Proper citation: Peromyscus Genetic Stock Center (RRID:SCR_002769) Copy
A National NIH Center for Biomedical Computing that focuses on physics-based simulation of biological structures and provides open access to high quality simulation tools, accurate models and the people behind them. It serves as a repository for models that are published (as well as the associated code) to create a living archive of simulation scholarship. Simtk.org is organized into projects. A project represents a research endeavor, a software package or a collection of documents and publications. Includes sharing of image files, media, references to publications and manuscripts, as well as executables and applications for download and source code. Simulation tools are free to download and space is available for developers to manage, share and disseminate code.
Proper citation: Simtk.org (RRID:SCR_002680) Copy
https://simtk.org/home/simvascular
Open source software suite for cardiovascular simulation. It includes code for reading 3D images, segmenting structures, generating models and meshes, and modeling blood flow in deformable vessels. The suite also includes tools for physiologic boundary conditions, fluid structure interaction, and an accurate and efficient finite element Navier-Stokes solver. Commercial components have been used in the simulation process, and for these components, the project attempts to provide interfaces that allow substitution of open source components. The SimVascular project is derived from the ASPIRE2 software project and includes modified portions of PHASTA from RPI/SCOREC.
Proper citation: SimVascular (RRID:SCR_002686) Copy
http://bioportal.bioontology.org/
Open repository of biomedical ontologies that provides access via Web browsers and Web services to ontologies. It supports ontologies in OBO format, OWL, RDF, Rich Release Format (RRF), Protege frames, and LexGrid XML. Functionality includes the ability to browse, search and visualize ontologies as well as to comment on, and create mappings for ontologies. Any registered user can submit an ontology. The NCBO Annotator and NCBO Resource Index can also be accessed via BioPortal. Additional features: * Add Reviews: rate the ontology according to several criteria and describe your experience using the ontology. * Add Mappings: submit point-to-point mappings or upload bulk mappings created with external tools. Notification of new Mappings is RSS-enabled and Mappings can be browsed via BioPortal and accessed via Web services. * NCBO Annotator: Tool that tags free text with ontology terms. NCBO uses the Annotator to generate ontology annotations, creating an ontology index of these resources accessible via the NCBO Resource Index. The Annotator can be accessed through BioPortal or directly as a Web service. The annotation workflow is based on syntactic concept recognition (using the preferred name and synonyms for terms) and on a set of semantic expansion algorithms that leverage the ontology structure (e.g., is_a relations). * NCBO Resource Index: The NCBO Resource Index is a system for ontology based annotation and indexing of biomedical data; the key functionality of this system is to enable users to locate biomedical data linked via ontology terms. A set of annotations is generated automatically, using the NCBO Annotator, and presented in BioPortal. This service uses a concept recognizer (developed by the National Center for Integrative Biomedical Informatics, University of Michigan) to produce a set of annotations and expand them using ontology is_a relations. * Web services: Documentation on all Web services and example code is available at: BioPortal Web services.
Proper citation: BioPortal (RRID:SCR_002713) Copy
https://simtk.org/home/cv-gmodels
Repository of geometric models collected from on-going and past research projects in the Cardiovascular Biomechanics Research Laboratory at Stanford University. The geometric models are mostly built from imaging data of healthy and diseased individuals. For each of the models, a short description is given with a reference. The geometric models are in VTK PolyData XML .vtp format. * Audience: Biomechanical and computational researchers interested in complex models of cardiovascular applications * Long Term Goals and Related Uses: Allow users to download geometric models for cardiovascular applications. These geometric models can be used for research purposes, such as meshing and scientific visualization. Users are welcome to contact the project administrator, join the project and contribute additional models.
Proper citation: Cardiovascular Model Repository (RRID:SCR_002679) Copy
http://www.poldracklab.org/software
The Poldrack lab has developed software tools for fMRI data analysis (links on the site), experimental design, and informatics, in collaboration with several other groups. * pubbrain.org: Developed in collaboration with the UCLA Consortium for Neuropsychiatric Phenomics, this site is an automatic meta-analytic search aid that allows for visualizing PubMed searches based on published neuroanatomic findings. * LONI Probabilistic Atlas: Developed in collaboration with the UCLA Laboratory of Neuroimaging and Center for Cognitive Phenomics, this project provides free and open access to a probabilistic atlas of cortical structures in 40 healthy individuals, including all raw data. * fmripower.org: Software developed by Jeanette Mumford in the Poldrack lab for statistical power analysis for fMRI studies. * Automated ICA-based denoising: Toolbox developed by Jussi Tohka at the Tampere University of Technology in Finland in collaboration with our laboratory and the UCLA Laboratory of Neuroimaging. * Raw data diagnostics - An R program that reads in a 4-D data file and provides a diagnostic report. * Code to run various tasks used in the lab - all of these require MATLAB and the MATLAB Psychophysics toolbox: * - Stop signal task (for behavioral testing outside the scanner) * - File Stop signal task (for use in the scanner) * - File mixed gambles task (demo and scanning script)
Proper citation: Poldracklab Portal (RRID:SCR_002712) Copy
Public university in New Zealand that offers degree programs in fields such as art, commerce, engineering, forestry, health sciences, and social work.
Proper citation: University of Canterbury; Christchurch; New Zealand (RRID:SCR_002711) Copy
http://cran.r-project.org/web/packages/FisHiCal/
Software that integrates Hi-C and FISH data, offering a modular and easy-to-use tool for chromosomal spatial analysis.
Proper citation: FisHiCal (RRID:SCR_002799) Copy
https://github.com/SciCrunch/RRID-Instruments/blob/main/PDF/SCR_002677.pdf
Digital image processing system where microscope settings and processing steps may be adjusted in single user interface. Can acquire images from variety of cameras. Includes software package for capturing, archiving and preparing images for publication. Allows users to visualize and present images in several dimensions. Functionality of imaging toolbox expands constantly with wide range of different modules that are tailored to specific applications or microscope accessories.
Proper citation: Zeiss: AxioVision Imaging System (RRID:SCR_002677) Copy
Ratings or validation data are available for this resource
Statistical analysis software that combines scientific graphing, comprehensive curve fitting (nonlinear regression), understandable statistics, and data organization. Designed for biological research applications in pharmacology, physiology, and other biological fields for data analysis, hypothesis testing, and modeling.
Proper citation: GraphPad Prism (RRID:SCR_002798) Copy
http://www.phalanxbiotech.com/
Group service that provides expression profiling products and services. They manufacture DNA microarrays for gene expression and microRNA profiling.
Proper citation: Phalanx Biotech Group (RRID:SCR_002717) Copy
Web service that tags gene, protein, and small molecule names in any web page. Clicking on a tagged term opens a small popup showing summary information, and allows the user to quickly link to more detailed information. For each protein or gene, Reflect provides domain structure, sub-cellular localization, 3D structure, and interaction partners. For small molecules, it provides the chemical structure and interaction partners. Reflect can be installed as a plugin to Firefox or Internet Explorer, or can be used by entering a URL in the field provided. It can also be accessed programmatically via a REST or SOAP API, and a Reflect button can easily be added to any web page using Javascript or using a CGI proxy. Reflect was first-prize winner out of over 70 submissions in the Elsevier Grand Challenge, an international competition for systems that improve the way scientific information is communicated and used. Reflect can be edited and improved by the community.
Proper citation: Reflect (RRID:SCR_002714) Copy
THIS RESOURCE IS NO LONGER IN SERVICE, documented May 26, 2016; however, the URL provides links to associated projects and data. A suite of data query, download, upload, analysis and sharing tools serving the needs of the microbial ecology research community, and other scientists using metagenomics data.
Proper citation: Community Cyberinfrastructure for Advanced Marine Microbial Ecology Research and Analysis (RRID:SCR_002676) Copy
THIS RESOURCE IS NO LONGER IN SERVICE, documented on December 6, 2012. Connectome Wiki is a knowledge base for macro- and mesoscale brain region and brain structural connectivity information across species. Employing modern semantic wiki technology, it serves as collaborative platform as well. What can I get? * Brain Regions: Plenty of information, including links to relevant literature and much more. * Brain Connections: Well established neuronal connections based mainly on neuronal tracer studies from the literature. * Abbreviations: Look up abbreviations and corresponding English and Latin names * Partition Schemes: Foundational and more partitions with their corresponding delineation criteria and protocols. * Species: Information about different species is available, using their binomial name as identifier. * External: Enhance the ConnectomeViewer with Volume-To-Ontology mappings. * Data Source: You can download the raw data in RDF or JSON. How can I contribute? If your research is in particular brain regions, or model organisms not yet registered, feel free to act as domain expert and add your knowledge. If you do any tracer studies, add findings with appropriate published papers. Incrementally building a mesoscale skeleton wiring diagram. Complete anything that is missing. See also PapersToAdd. Register your own partition scheme and link it semantically against known schemes. Adding brain region pages for your particular research organisms. Use ConnectomeWiki as knowledge backend for your application concerned with gross neuroanatomy. The goals of this wiki are: * A collaborative platform to collect, collate, manage and disseminate mesoscale nervous system region and connectivity information across various species * Authority for Brain Region Abbreviations * Representation of Brain Region Homologies * Interrelation of Brain Partition Schemes * Information source for the ConnectomeViewer application
Proper citation: Connectome Wiki (RRID:SCR_002675) Copy
https://github.com/alibashir/pacmonstr
Software that implements a reference-based probabilistic approach to identify the Tandem Repeat (TR) region and estimate the number of these TR elements in long DNA reads.
Proper citation: PacmonSTR (RRID:SCR_002796) Copy
A software package that anayzes the structral details of RNA molecules through rapid quantification of a footprinting gel. By automating many of the steps involved in gel analysis, approximately one entire gel with thousands of bands can be quantified in less than 10 minutes using SAFA. In general, all the automated features have a manual override, such that even difficult or exceptional gels can be analyzed with the package.
Proper citation: SAFA Footprinting Software (RRID:SCR_002707) Copy
https://simtk.org/home/foldvillin
An archive of hundreds of all-atom, explicit solvent molecular dynamics simulations that were performed on a set of nine unfolded conformations of a variant of the villin headpiece subdomain (HP-35 NleNle). It includes scripts for accessing the archive of villin trajectories as well as a VMD plug-in for viewing the trajectories. In addition, all starting structures used in the trajectories are also provided. The simulations were generated using a distributed computing method utilizing the symmetric multiprocessing paradigm for individual nodes of the Folding_at_home distributed computing network. The villin trajectories in the archive are divided into two projects: PROJ3036 and PROJ3037. PROJ3036 contains trajectories starting from nine non-folded configurations. PROJ3037 contains trajectories starting from the native (folded) state. Runs 0 through 8 (in PROJ3036) correspond to starting configurations 0 through 8 discussed in the paper in J. Mol. Biol. (2007) 374(3):806-816 (see the publications tab for a full reference), whereas RUN9 uses the same starting configuration as RUN8. Each run contains 100 trajectories (named clone 0-99), each with the same starting configuration but different random velocities. Trajectories vary in their length of time and are subdivided into frames, also known as a generation. Each frame contains around 400 configurational snapshots, or timepoints, of the trajectory, with the last configurational snapshot of frame i corresponding to the first configurational snapshot of generation i+1. The goal is to allow researchers to analyze and benefit from the many trajectories produced through the simulations.
Proper citation: Molecular Simulation Trajectories Archive of a Villin Variant (RRID:SCR_002704) Copy
http://www.schlaganfallcentrum.de/index.php?id=147
Stroke research group that performs disease-oriented basic research, clinical research, epidemiology and health services research.
Proper citation: Center for Stroke Research Berlin (RRID:SCR_002742) Copy
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