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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.

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On page 13 showing 241 ~ 260 out of 558 results
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http://www.civm.duhs.duke.edu/

Biomedical technology research center dedicated to the development of novel imaging methods for the basic scientist and the application of the methods to important biomedical questions. The CIVM has played a major role in the development of magnetic resonance microscopy with specialized MR imaging systems capable of imaging at more than 500,000x higher resolution than is common in the clinical domain. The CIVM was the first to demonstrate MR images using hyperpolarized 3He which has been moved from mouse to man with recent clinical trials performed at Duke in collaboration with GE. More recently the CIVM has developed the molecular imaging workbench---a system dedicated to multimodality cardiopulmonary imaging in the rodent. Their collaborators are employing these unique imaging systems in an extraordinary range of mouse and rat models of neurologic disease, cardiopulmonary disease and cancer to illuminate the underlying biology and explore new therapies.

Proper citation: Center for In Vivo Microscopy (RRID:SCR_001426) Copy   


http://neomorph.salk.edu/brain_methylomes/

THIS RESOURCE IS NO LONGER IN SERVICE. Datasets described in the manuscript: "Global Epigenomic Reconfiguration During Mammalian Brain Development" (Science, 2013 - DOI: 10.1126/science.1237905. This study provides genome-wide composition, patterning, cell specificity, and dynamics of DNA methylation at single-base resolution in human and mouse frontal cortex throughout their lifespan. Widespread methylome reconfiguration occurs during fetal to young adult development, coincident with synaptogenesis.

Proper citation: Mammalian Brain Methylomes (RRID:SCR_001648) Copy   


http://www.neuro.mpg.de/connectomics

Data set of the dense reconstruction of 950 neurons and their mutual contacts for the mouse inner plexiform layer--the main computational neuropil region in the mammalian retina. This was achieved by applying a combination of crowd-sourced manual annotation and machine-learning-based volume segmentation to serial block-face electron microscopy data. They characterize a new type of retinal bipolar interneuron and show that they can subdivide a known type based on connectivity. Circuit motifs that emerge from their data indicate a functional mechanism for a known cellular response in a ganglion cell that detects localized motion, and predict that another ganglion cell is motion sensitive. A Data browser is also available for download

Proper citation: Connectomic reconstruction of the inner plexiform layer in the mouse retina (RRID:SCR_002246) Copy   


  • RRID:SCR_002469

    This resource has 10+ mentions.

http://bpg.utoledo.edu/~afedorov/lab/eid.html

Data sets of protein-coding intron-containing genes that contain gene information from humans, mice, rats, and other eukaryotes, as well as genes from species whose genomes have not been completely sequenced. This is a comprehensive and convenient dataset of sequences for computational biologists who study exon-intron gene structures and pre-mRNA splicing. The database is derived from GenBank release 112, and it contains protein-coding genes that harbor introns, along with extensive descriptions of each gene and its DNA and protein sequences, as well as splice motif information. They have created subdatabases of genes whose intron positions have been experimentally determined. The collection also contains data on untranslated regions of gene sequences and intron-less genes. For species with entirely sequenced genomes, species-specific databases have been generated. A novel Mammalian Orthologous Intron Database (MOID) has been introduced which includes the full set of introns that come from orthologous genes that have the same positions relative to the reading frames.

Proper citation: EID: Exon-Intron Database (RRID:SCR_002469) Copy   


http://ftp://ftp.informatics.jax.org/pub/reports/MGI_PhenotypicAllele.rpt

Data set of collected and annotated expression and activity data for recombinase-containing transgenes and knock-in alleles. As the authoritative source of official names for mouse genes, alleles, and strains, MGI makes this list of transgenes available as a service and includes all known transgenes and synonyms. NIF provides a database interface so that researchers may have a better idea whether the trangene or transgenic animal that they are searching for is available.
Nomenclature follows the rules and guidelines established by the International Committee on Standardized Genetic Nomenclature for Mice.

Proper citation: Mouse Genome Informatics Transgenes (RRID:SCR_003468) Copy   


http://krasnow1.gmu.edu/cn3/L-Neuron/database/

A database of virtually generated anatomically plausible neurons for several morphological classes, including cerebellar Purkinje cells, hippocampal pyramidal and granule cells, and spinal cord motoneurons. It presently contains 542 cells. In the trade neurons collection the database contains an amaral cell archive, neuron morpho reconstructions, and mouse alpha motoneurons. Their collection of generated neurons include motoneurons, Purkinje cells, and hippocampal pyramidal cells.

Proper citation: Virtual NeuroMorphology Electronic Database (RRID:SCR_007118) Copy   


http://degradome.uniovi.es/domains.html

Domains found in human and mouse proteases colour-coded according to the catalytic class in which they appear. Some of them appear in more than one catalytic group, and two-colours are used. Yellow, aspartyl proteases; blue, cysteine proteases; green, metalloproteases; and red, serine proteases.

Proper citation: Ancillary Domains Associated With Human and Mouse Proteases (RRID:SCR_008363) Copy   


https://confluence.crbs.ucsd.edu/display/NIF/StemCellInfo

Data tables providing an overview of information about stem cells that have been derived from mice and humans. The tables summarize published research that characterizes cells that are capable of developing into cells of multiple germ layers (i.e., multipotent or pluripotent) or that can generate the differentiated cell types of another tissue (i.e., plasticity) such as a bone marrow cell becoming a neuronal cell. The tables do not include information about cells considered progenitor or precursor cells or those that can proliferate without the demonstrated ability to generate cell types of other tissues. The tables list the tissue from which the cells were derived, the types of cells that developed, the conditions under which differentiation occurred, the methods by which the cells were characterized, and the primary references for the information.

Proper citation: National Institutes of Health Stem Cell Tables (RRID:SCR_008359) Copy   


http://cell.ccrc.uga.edu/world/glycomics/glycomics.php

Biomedical technology research center that develops and implements new technologies to investigate the glycome of cells, including glycoproteomics and glycoconjugate analysis, transcript analysis and bioinformatics. It develops the tools and technology to analyze in detail the glycoprotein and glycolipid expression of mouse embryonic stem cells and the cells into which they differentiate. The technology developed in the Center will allow an understanding of how glycosylation is controlled during differentiation and will allow the development of tools to promote the use of stem cells to treat human disease. In addition, the technology developed will be applicable to the study of other cell types, including cancer cells that are progressing to a more invasive phenotype. The technology developed will also allow others in the scientific community to participate in glycomics research through dissemination of the new methods developed and through the analytical services provided by the resource to other scientists requesting assistance in glycomic analyses.

Proper citation: Integrated Technology Resource for Biomedical Glycomics (RRID:SCR_009003) Copy   


http://drc.ucsf.edu/mouse-metabolism-core

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on October 10,2024. Core which provides technical support for UCSF investigators to conduct metabolic studies using a 12-chambered Comprehensive Lab Animal Monitoring System (CLAMS), an EchoMRI, and Dual energy X-ray absorptiometry, which together allow measurement of food intake, water intake, motor activities, core temperature, and body composition in live mice. It also helps to identify emerging technologies that will enhance multiple research programs and coordinates the acquisition and maintenance of those facilities.

Proper citation: University of California San Francisco Diabetes Research Center Mouse Metabolism Core (RRID:SCR_015101) Copy   


http://diabetesresearchcenter.dom.wustl.edu/transgenic-es-cell-core/

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on November 7,2024. Core facility that provides services for efficient and cost-effective development of genetically altered mouse models to elucidate the pathogenesis of diabetes and related metabolic disorders.

Proper citation: Washington University School of Medicine Diabetes Research Center Transgenic and ES Cell Core (RRID:SCR_015141) Copy   


https://www.derc.cuimc.columbia.edu/services/mouse-metabolic-function-and-phenotyping-core

Core that provides services that facilitate the efficient characterization of mouse models of diabetes and its complications: NMR Body Composition Analysis, Whole Body Metabolic Assessment (chamber calorimetry with motion detection), Metabolic Clamps, Gastric Infusion/Feeding and Thermogenic Phenotyping.

Proper citation: Columbia Diabetes Research Center Mouse Metabolic Function and Phenotyping Core Facility (RRID:SCR_015082) Copy   


http://drtc.bsd.uchicago.edu/islet-cell-biology-core-about/

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on November 7,2024. Core which provides services and hands-on training in the isolation and functional characterization of pancreatic islets from normal and diabetic humans and mice. It also maintains a repository of insulinoma cell lines for distribution. It puts emphasis on facilitating studies of primary islet cells and it has developed many unique tools and techniques for carrying such studies including novel animals models, biophysical methods and a library of adenovirus-based expression constructs for studying beta-cell function.

Proper citation: University of Chicago Diabetes Research and Training Center Islet Cell Biology Core (RRID:SCR_015132) Copy   


http://depts.washington.edu/diabetes/viral-vector-and-transgenic-mouse/

Core facility that provides Diabetes Research Center affiliates with vectors necessary to overexpress, knockdown, knockout, or alter expression of RNAs and proteins of interest in cultured cells, isolated tissues, and animals.

Proper citation: University of Washington Diabetes Research Center Vector and Transgenic Mouse Core (RRID:SCR_015130) Copy   


http://www.massgeneral.org/csibd/cores/genetic.aspx

Core whose services include breeding and maintenance of mutant mouse stocks, characterization of murine models, bone marrow transfers and adoptive T cell transfers, in vivo tracking of fluorescently labeled bacteria and cells, and whole body imaging of bioluminescent and fluorescent signals.

Proper citation: Center for the Study of Inflammatory Bowel Disease Genetic Animal Models Core (RRID:SCR_015238) Copy   


http://diabetesresearchcenter.dom.wustl.edu/translational-diagnostics-core/

Core provides range of assays for human and animal hormones, peptides, and metabolites related to metabolic disorders.

Proper citation: Washington University School of Medicine Diabetes Research Center Translational Diagnostics Core (RRID:SCR_015161) Copy   


https://ddrcc.wustl.edu/scientific-cores/murine-models-gnotobiotics-core/

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on June 15,2026. Core facility that provides advice and technical services to DDRCC investigators that include production of transgenic and chimeric mice, derivation of speed congenics and assisted reproduction services for maintaining pedigrees via the Mouse Genetics Core, as well as gnotobiotic mouse provision, colonization and rederivation.

Proper citation: Washington University Digestive Diseases Research Core Center Murine Models and Gnotobiotics Core (RRID:SCR_015260) Copy   


http://livercenter.yale.edu/core-facilities/cellular-molecular-physiology-core-facility.aspx

Core facility that provides technical expertise, equipment and personnel to Liver Center Investigators who wish to work with animal models of liver disease, isolated liver cells, or gene expression in liver tissue. The Cell Isolation sub-core isolates hepatocytes and non-parenchymal liver cells primarily from rat and mouse, while the Molecular Biology sub-core provides equipment and expertise to Liver Center members in a centralized facility.

Proper citation: Yale Liver Center Cellular and Molecular Physiology Core (RRID:SCR_015258) Copy   


http://animalcare.umich.edu/business-services/germ-free-mouse-facility

Core that provides services to the University of Michigan community and can also ship germ-free mice to locations worldwide. Its projects include studies investigating inflammatory bowel disease and cancer, host microbiome interactions, infectious disease pathogenesis, and mammalian and bacterial metabolism.

Proper citation: MMPC-University of Michigan Medical School Animal Care and Germ-Free Mouse Core (RRID:SCR_015344) Copy   


http://medicine.yale.edu/labmed/ycceh/cores/core_d/index.aspx

Core facility which provides expertise, technical assistance, and mice for human-into-mouse xenotransplantation studies. Mouse models include MITRG-SKI (KnockIn) mice that express human cytokines and huSIRPa from the endogenous murine loci in the Rag-/- IL-2Ry -/- background. It also offers training and technical assistance in the study of hematopoiesis and benign hematologic questions in mice.

Proper citation: Yale Cooperative Center of Excellence in Hematology Animal Modeling Core (RRID:SCR_015349) Copy   



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