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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.
https://genomecenter.ucdavis.edu/core-facilities/
Genome Center uses technologies to understand how heritable genetic information of diverse organisms functions in health and disease. Provides research facilities, service cores, and staff for genomics research and training. Core facilities for Bioinformatics,DNA Technologies and Expression Analysis, Metabolomics, Proteomics,TILLING Core,Yeast One Hybrid Services Core.
Proper citation: UC Davis Genome Center Labs and Facilities (RRID:SCR_012480) Copy
Database of ascidian embryonic development at the level of the genome (cis-regulatory sequences, gene expression, protein annotation), of the cell (morphology, fate, induction, lineage) or of the whole embryo (anatomy, morphogenesis). Currently, four organism models are described in Aniseed: Ciona intestinalis, Ciona savignyi, Halocynthia roretzi and Phallusia mammillata.
This version supports four sets of Ciona intestinalis transcript models: JGI v1.0, KyotoGrail 2005, KH and ENSEMBL, all functionally annotated, and grouped into Aniseedv3.0 gene models. Users can explore their expression profiles during normal or manipulated development, access validated cis-regulatory regions, get the molecular tools used to assay gene function, or all articles related to the function, or regulation of a given gene. Known transcriptional regulators and targets are listed for each gene, as are the gene regulatory networks acting in individual anatomical territories.
ANISEED is a community tool, and the direct involvement of external contributors is important to optimize the quality of the submitted data. Virtual embryo: The 3D Virtual embryo is available to download in the download section of the website.
Proper citation: Ascidian Network for InSitu Expression and Embryological Data (RRID:SCR_013030) Copy
http://www.clcbio.com/products/clc-genomics-workbench/
Commercially available software for visualization and analysis of next generation sequencing data. Used for viewing, exploring, and sharing of NGS analysis results. Complete toolkit for genomics, transcriptomics, epigenomics, and metagenomics in one program.
Proper citation: CLC Genomics Workbench (RRID:SCR_011853) Copy
http://www.scienceexchange.com/facilities/caresbio-laboratory
CaresBio Laboratory (CBL) is a contract research organization, serving as a translational link with the one stop service approach to close the gaps between basic and clinical sciences for biomedical science community. We are serving academic laboratories, CROs, biotechnology and pharmaceutical companies and research organizations by providing high quality and cost effective pre-clinical and clinical research services. If you are doing biomarker and or drug discovery and development; therapeutics and translational research along with the applications of genomics and proteomics study; data validation and analysis; histopathology, immunohistochemistry, pathology or other immunostaining, imaging; histomorphometry, image analysis; small animal imaging; screening, efficacy and toxicity testing of your candidate compounds. We also provide biostatistics analysis of pre-clinical and or clinical data, data base developments or any subcategories of these fields. We do assay developments and provide customized assays to match your needs.
Proper citation: CaresBio Laboratory (RRID:SCR_012393) Copy
http://www.sph.umich.edu/csg/abecasis/QTDT/
How is association mapping going to help me find genes? During the past decade, the genes for a large number of rare mendelian traits have been identified. However, traditional linkage analyses lack power and precision when applied to complex disease. Association mapping, which compares the effects of different chromosomal variants, may be more successful at identifying genes of small effect. How does QTDT help association mapping? Association mapping can produce misleading results when the study population is not homogeneous, but includes individuals with different genetic backgrounds. Family based association tests, commonly referred to as TDTs (Transmission Disequilibrium Tests), do not produce misleading results in these circumstances. QTDT can use all the information in a pedigree to construct powerful tests of association that are robust in the presence of stratification. What does the Q stant for ? Q stands for Quantitative. Quantitative traits provide effective descriptions of many complex diseases, including asthma. For many of these conditions, all or nothing definitions of disease are arbitrary and unsatisfactory. QTDT incorporates variance components methodology in the analysis of family data and includes exact estimation of p-values for analysis of small samples and non-normal data. The QTDT abbreviation (for Quantitative Transmission Disequilibrium Tests) was first used by David Allison in his 1997 paper. This research was supported in part by the intramural program of the National Eye Institute and by National Institutes of Health Grants EY016862, EY007758, EY09859, EY012118, P30-EY014801, EY-014458, EY014467, HL084729, and HG002651, by the Foundation Fighting Blindness, the Macula Vision Research Foundation, the American Health Assistance Foundation, Research to Prevent Blindness, the Pew Charitable Trusts, the Mayo Clinic Foundation, the Casey Macular Degeneration Center Fund, the Marion W. and Edward F. Knight AMD Fund, the Harold and Pauline Price Foundation, National Genotyping Centre of Spain, and the Elmer and Sylvia Sramek Foundation. The Center for Inherited Disease Research, fully funded through a federal contract (HHSN268200782096C) from National Institutes of Health to
Proper citation: Linkage Disequilibrium Analyses for Quantitative and Discrete Traits (RRID:SCR_013365) Copy
iDigBio is the National Resource for Advancing Digitization of Biodiversity Collections (ADBC) funded by the National Science Foundation. Through ADBC, data and images for millions of biological specimens are being made available in electronic format for the research community, government agencies, students, educators, and the general public.
Proper citation: Integrated Digitized Biocollections (RRID:SCR_014336) Copy
https://www.thermofisher.com/order/catalog/product/4475073
Genotyping software package that provides DNA sizing and quality allele calls for all Applied Biosystems electrophoresis-based genotyping systems. GeneMapper specializes in multiapplication functionality, including amplified fragment length polymorphism, loss of heterozygosity, microsatellite, and SNP genotyping analysis. The software provides remote auto-analysis and command line operation, and allows for multiuser, client-server deployment.
Proper citation: GeneMapper (RRID:SCR_014290) Copy
http://crn2m.univ-mrs.fr/pub/recherche/equipe-t-brue/jullien-nicolas/programmation/amplifx/?lang=fr
A software for managing, testing, and drawing primers. The software can locate primers for target sequences, calculate the quality score, predict amplified fragments and dimers, and create graphic representations of the primers.
Proper citation: AmplifX (RRID:SCR_014465) Copy
http://www.cytoskeleton.com/antibodies
An Antibody supplier
Proper citation: Cytoskeleton (RRID:SCR_013532) Copy
http://www.proteomesoftware.com/products/scaffold/
Software for MS/MS proteomic experiments to compare samples, identify biological relevance, and identify isoforms and protein PTMs. These proteins can be classified based on molecular function or organelle. Users can investigate spectrum details and counts, as well as use high through-put batch processing. Tutorials and a free trial are available through the main site., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: Scaffold Proteome Software (RRID:SCR_014345) Copy
http://ced.co.uk/products/signal
A sweep-based data acquisition and analysis software package. Its uses range from a simple storage oscilloscope to complex applications requiring stimulus generation, data capture, control of external equipment and custom analysis. A built-in script language automates tasks and provides additional tools for custom analyses and applications. Signal includes functions for specific application areas, including dynamic clamp, whole cell and patch clamp electrophysiology, and evoked response including control of magnetic and other stimulus devices. Video tutorials and a demo version of Signal is available on the main page.
Proper citation: Signal (RRID:SCR_014276) Copy
Standalone solution dedicated to Visual Psychophysics running on Mac OS X. Psykinematix runs standard psychophysical protocols, presents complex stimuli, collects subject's responses, and analyzes results on the fly. It consists of a unique OpenGL-based software package that does not require any programming skill to create and run complex experiments.
Proper citation: Psykinematix (RRID:SCR_014830) Copy
Site for collection and distribution of clinical data related to genetic analysis of drug abuse phenotypes. Anonymous data on family structure, age, sex, clinical status, and diagnosis, DNA samples and cell line cultures, and data derived from genotyping and other genetic analyses of these clinical data and biomaterials, are distributed to qualified researchers studying genetics of mental disorders and other complex diseases at recognized biomedical research facilities. Phenotypic and Genetic data will be made available to general public on release dates through distribution mechanisms specified on website.
Proper citation: National Institute on Drug Abuse Center for Genetic Studies (RRID:SCR_013061) Copy
http://www.nitrc.org/projects/nihlungseg/
A segmentation tool for the segmentation of a lung from CT images. The sofware can be run in two modes: fully automatic and semi-automatic with manual seeding by the user. The software also allows the user to perform basic filtering operations and manual correction to the segmentation. The VTK-based rendering implementation, along with option to view in axial, coronal, and sagittal, provides the user with better visualization of the segmented lung.
Proper citation: NIH-CIDI Lung Segmentation Tool (RRID:SCR_014150) Copy
http://erilllab.umbc.edu/research/software/xfitom/
A fully customizable program that uses a graphical user interface to locate transcription factor-binding sites in genomic sequences. xFITOM scans DNA or RNA sequences for putative binding sites as defined by a collection of aligned known sites, a consensus sequence in IUPAC degenerate-base format, or a combination of the two.
Proper citation: xFITOM (RRID:SCR_014445) Copy
https://atgu.mgh.harvard.edu/plinkseq/
An open-source C/C++ library for working with human genetic variation data. The specific focus is to provide a platform for analytic tool development for variation data from large-scale resequencing projects, particularly whole-exome and whole-genome studies. However, the library could in principle be applied to other types of genetic studies, including whole-genome association studies of common SNPs. (entry from Genetic Analysis Software)
Proper citation: PLINK/SEQ (RRID:SCR_013193) Copy
Modular program for SPM (scanning probe microscopy) data visualization and analysis. Primarily it is intended for the analysis of height fields obtained by scanning probe microscopy techniques (AFM, MFM, STM, SNOM/NSOM) and it supports a lot of SPM data formats. However, it can be used for general height field and (greyscale) image processing, for instance for the analysis of profilometry data or thickness maps from imaging spectrophotometry.
Proper citation: Gwyddion (RRID:SCR_015583) Copy
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