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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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https://core.bioinformatics.udel.edu

CBCB Bioinformatics Data Science Core builds upon infrastructure of the Center for Bioinformatics and Computational Biology. Delaware Biotechnology Institute , Delaware Data Science Institute, and Protein Information Resource. Core helps with planning your research or analyzing your current data. Services:Consultation and Collaboration, Proposal Assistance,Training, Bioinformatics Software, Computational Hardware, Database and Web Services, Next Gen Analysis, Custom Analysis.

Proper citation: University of Delaware CBCB Bioinformatics Data Science Core Facility (RRID:SCR_017696) Copy   


http://bioimaging.dbi.udel.edu

Microscopy facility that houses equipment including confocal microscopes: LSM780 confocal microscope (Located at CBBI),LSM880 confocal microscope (Located at DBI 117),electron microscopes and their accessory instrumentation:Thermo Scientific Apreo VS SEM microscope,Hitachi S-4700, Leica EM ACE600 and Tousimis Autosamdri-815B,CX7 high content analysis system. Our staff has technical expertise across different microscopy platforms and methodologies.

Proper citation: University of Delaware BioImaging Center Core Facility (RRID:SCR_017814) Copy   


https://qb3.berkeley.edu/facility/genomics/

Partnership between Vincent J. Coates Genomics Sequencing Laboratory,Functional Genomics Laboratory, and Computational Genomics Resource Laboratory. Offers consultation on experimental design and data analysis, full suite of technical services related to high throughput sequencing and genomics experiments, and access to high performance computational infrastructure.

Proper citation: University of California at Berkeley QB3 Genomics Core Facility (RRID:SCR_022170) Copy   


https://www.unmc.edu/vcr/cores/vcr-cores/confocal-microscopy/index.html

Facility houses imaging technologies ranging from super resolution (~ 0.120 um to 0.020 um) to microscopic (~ 0.300 um) to mesoscopic (~ 1 um) biomedical imaging. Imaging specialists provide training and/or actively assist researchers collecting images across imaging instrumentation. Instrumentation includes Zeiss ELYRA PS.1 is inverted microscope for super resolution (SR) structured illumination microscopy (SIM) and single molecule localization microscopy (SMLM) including, PhotoActivated Localization Microscopy (PALM) using photo switchable/convertible fluorescent proteins, Total Internal Reflection Fluorescence (TIRF) and STochastic Optical Reconstruction Microscopy (STORM);Zeiss 800 CLSM with Airyscan is an inverted microscope dramatically increasing conventional confocal image resolution to ~180 nm using Airyscan technology; Zeiss 710 LSM is inverted microscope supporting most basic imaging applications, multi channel and spectral, co localization, live cell, 3D, and time series imaging; Zeiss Celldiscoverer 7 is widefield imaging system for automated, time lapse imaging of live samples; Zeiss Axioscan 7 is high performance whole slide scanning system for fluorescence, brightfield, and polarization imaging;Miltenyi Biotec Ultramicroscope II Light Sheet fluorescence microscope (LSFM) extends fluorescent imaging into true 3D, large scale volumetric imaging of intact tissues, organs, and small organisms. AMCF also houses several high-end data analysis workstations with premier image analysis software including HALO (Indica Labs) and IMARIS (Oxford Instruments) facilitating data rendering, analyses, and presentation options.

Proper citation: University of Nebraska Medical Center Advanced Microscopy Core Facility (RRID:SCR_022467) Copy   


https://www.utsouthwestern.edu/labs/qlmc/

Provides access to variety of microscope modalities including laser scanning and spinning disk confocal, multiphoton, wide field deconvolution, CFP/YFP FRET, TIRF, single molecule imaging, and more. Offers customized microscopy training, advise and help with sample preparation, image quantification, and offer basic microscope maintenance. Can streamline your data handling and image visualization as well as automate your image analysis workflow through customized Fiji macros.

Proper citation: University of Texas Southwestern Medical Center Quantitative Light Microscopy Core Facility (RRID:SCR_022605) Copy   


https://www.lji.org/research/research-services/sequencing/

Core provides latest sequencing technology combined with Institute's expansive bioinformatics capabilities. Provides instrumentation including Illumina Miseq, Covaris Model E220, NovaSeq 6000, Agilent 2200 Tapestation, Beckman Coulter Biomek FXP, HiSeq 2500.

Proper citation: La Jolla Institute for Immunology Next Generation Sequencing Core Facility (RRID:SCR_023107) Copy   


http://www.yerkes.emory.edu/about/news/neuropharmacology_neurologic_diseases/Transgenic_Huntingtons_Disease_Monkey_Resource_Available.html

Center for resources to facilitate basic and preclinical applications of the transgenic Huntington's disease (HD) monkey model to advance scientific knowledge and the discovery of a cure for HD. Their resources include longitudinal biomaterials and MRI data, postmortem biomaterials, and research proposal assistance.

Proper citation: Transgenic Huntington's Disease Monkey Resources (RRID:SCR_014560) Copy   


http://mmrrc.ucdavis.edu/

Center that imports, archives, maintains, and distributes mutant mouse alleles as live mice, frozen germplasm, stem cells, and molecular vectors for use in biomedical research. The MMRRC Davis receives transgenics, knockouts, and other kinds of mutant mouse lines at no cost to the donor, and after re-derivation and cryopreservation, distributes breeding stock, germplasm, cells, or tissues of genetically-defined and pathogen-free mice for a small fee to requesting investigators.

Proper citation: University of California at Davis Mutant Mouse Resource and Research Center (RRID:SCR_016448) Copy   


http://www.mmrrc.missouri.edu/

Center that supplies mice and conducts research projects focused on the role of mice as animal models. Some of these projects include refinement of models to ensure study reproducibility, as well as development and improvement of economical methods for cryopreservation of mouse strains.

Proper citation: Mutant Mouse Resource and Research Center - University of Missouri (RRID:SCR_016447) Copy   


http://www.vet.upenn.edu/research/core-resources-facilities/referral-center-for-animal-models

Center that aims to discover, characterize, maintain breeding colonies, and make available dog and cat models with hereditary diseases homologous to those found in human patients that can be used to translate preclinical trials from kennel to clinic. The animal models represent true orthologs of their respective human disease, involving defects in homologous genes resulting in similar molecular, biochemical, pathological, and clinical phenotype as in human patients.

Proper citation: Referral Center for Animal Models of Human Genetic Diseases (RRID:SCR_016453) Copy   


  • RRID:SCR_013733

    This resource has 1+ mentions.

http://www.wormguides.org/home

A worm atlas that provides an interactive 4D atlas of nuclear positions, from zygote until hatching which can be used to guide cell identification. The tools enable examination of the connectome during development from integrate knowledge of C. elegans embryogenesis to widely used resources, such as WormAtlas and WormBase.

Proper citation: WormGUIDES (RRID:SCR_013733) Copy   


http://kimlab.io/brain-map/atlas/

Website to visualize and share anatomical labels. Franklin and Paxinos (FP) based anatomical labels in Allen Common Coordinate Framework (CCF). Cell type specific transgenic mice and MRI atlas were used to adjust and further segment labels. New segmentations were created in dorsal striatum using cortico-striatal connectivity data. Anatomical labels were digitized based on Allen ontology, and web-interface was created for easy visualization. These labels provide resource to isolate and identify mouse brain anatomical structures. Open source data sharing will facilitate further refinement of anatomical labels and integration of data interpretation within single anatomical platform.

Proper citation: Enhanced and Unified Anatomical Labeling for Common Mouse Brain Atlas (RRID:SCR_019267) Copy   


https://nyumc.ilab.agilent.com/service_center/show_external/4296?name=experimental-pathology-research-laboratory

Core provides services, access to instruments, and training to facilitate production of animal tissue samples for morphological and molecular analyses. Supports multiplex immunofluorescence staining, RNA in situ hybridization (ISH), and imaging analysis. Services include tissue preparation, processing, and sectioning, as well as histochemistry and immunohistochemistry of fresh, frozen, and fixed animal tissues, can optimize and validate commercial or proprietary antibodies for chromogenic or fluorescence-based immunohistochemistry including seven-color multiplexing.Provides access to database listing antibodies that have been tested in lab to date and are currently in stock.Offers basic imaging resources and digital whole-slide scanning of stained tissue sections, which allows researchers to view their slides online at their convenience.Researchers can also rent our self-service instruments. These include embedding station, microtome, cryostat, and vibratome. Provides access to brightfield and fluorescence upright and dissecting microscopes,laser capture microdissection scope, and high-throughput multispectral imaging system.To reserve time on instrument, faculty, staff, and investigators must be registered in iLab.

Proper citation: New York University School of Medicine Langone Health Experimental Pathology Research Laboratory Core Facility (RRID:SCR_017928) Copy   


https://www.bcm.edu/research/advanced-technology-core-labs/lab-listing/rna-in-situ-hybridization

Core performs non-radioactive, RNA in situ hybridization (ISH) on tissue sections. Provides services including: collecting animal tissue specimens, preparation of frozen and paraffin sections, preparation of RNA probes from customer templates, conducting high-throughput ISH, and documentation and quantification of expression patterns by microscopy. We also do X-gal and Cresyl Violet staining on sections. For human studies, customers must provide tissue sections.

Proper citation: Baylor College of Medicine RNA In Situ Hybridization Core Facility (RRID:SCR_017856) Copy   


https://med.nyu.edu/research/scientific-cores-shared-resources/precision-immunology-laboratory

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on November 20,2025. Core to study immune cell phenotype and function, characterizes antitumor immune responses, determines mechanisms of immune escape and evasion, and develops biomarkers that predict patient outcomes or possible toxicities. Offers services for immune monitoring,provides expert knowledge that guides choice of technologies used for study, coordinates purchase, quality control, and use of reagents. Stand-alone services include high-quality cell processing and storage to support correlative studies. These services allow convenient batched analysis of trial samples.Staff purifies peripheral blood mononuclear cells daily from clinic visits and another staff member is available for on-demand and after-hours processing. Samples are cryopreserved on-site in temperature-monitored LN2 freezers for short-term storage. For long-term storage, samples are transferred to Novare Biologistics,off-site cGMP-compliant, New York State-licensed, and FDA-registered biorepository. Routinely assess quality of processing and cryopreservation. Core meets performance targets for cell viability and recovery necessary for certification by Integrated Biobank of Luxembourg. Offers service for isolating tumor-infiltrating lymphocytes using dissociation protocols optimized for various tumor tissues. Offers flow cytometry at Perlmutter Cancer Center, along with expert service and training. Sterile fluorescence-activated cell sorting (17 colors) is routinely performed with options for high-speed (50K cells per second), single-cell deposition (into polymerase chain reaction plates), and BSL-3 sorting for unscreened or infected human material. Data analysis workstations are also available.Offers single-cell analysis through our cutting-edge 30-parameter flow cytometry technology and Integrated Molecular Cytometry Platforms (IMCPs).

Proper citation: New York University School of Medicine Langone Health Precision Immunology Laboratory Core Facility (RRID:SCR_017936) Copy   


http://www.med.uvm.edu/mic

Core provides imaging equipment including JEOL 1400 transmission electron microscope with AMT 11 megapixel digital camera,JEOL JSM 6060 scanning electron microscope with attached Oxford INCA energy dispersive spectroscopy detector for element analysis,Nikon Air HD confocal scanning laser microscope, Nikon C2 confocal scanning laser microscope, Andor Spinning Disk confocal microscope, Zeiss LSM 7 Multiphoton confocal microscope, Nikon STORM super-resolution light microscope, Olympus BX50 research microscope for transmitted light, phase contrast, and epi-fluorescence microscopy, Asylum Research MFP-3D BIO atomic force microscope, Asylum Research Cypher Environmental atomic force microscope,Arcturus XT-Ti Laser Capture Microdissector system, Olympus IX70 inverted microscope with associated Applied BioPhysics Electri Cell-Substrate Impedance Sensing (ECIS Ztheta) system, Leica VERSA 8 whole slide imager, Dell workstations containing Molecular Devices MetaMorph image analysis software for complex quantitative image analysis, Indica Labs HALO software, Improvision Volocity, MBR StereoInvestigator.

Proper citation: Vermont University Larner College of Medicine Microscopy Imaging Center Core Facility (RRID:SCR_018821) Copy   


http://proteomics.northwestern.edu/collaborate

Core offers multiple types of experiments from simple protein identification to protein quantitation. Performs traditional bottom-up proteomics, where proteins are digested with enzyme prior to analysis and intact, top-down proteomics analyses. Services include proteins identification after in-gel or in-solution digestion, top-down mass spectrometry to preserve post-translationally modified forms of proteins present in vivo by measuring them intact, IP-MS Pulldown,BioID service to identify target of biotin ligase that has been tagged onto their protein via traditional cloning methods,Untargeted Quantitative Peptide Proteomics,Targeted Quantitative Peptide Proteomics,Epiproteomic Histone Modification Panel A,Epiproteomic Histone Modification Panel B,Untargeted Metabolomics,Phosphoproteomics,PTM Scan,ChIP-MS.

Proper citation: Northwestern University Proteomics Core Facility (RRID:SCR_017945) Copy   


https://cancer.dartmouth.edu/scientists-researchers/molecular-biology-resource

Genomics Section provides services and instrumentation that enable DNA/RNA extraction and quality control, next-generation Illumina and Nanopore sequencing, epigenetic profiling, and microarray analysis on a whole-genome scale, from the level organisms to single cells. Molecular Biology Section provides DNA fragment analysis qPCR, Sanger sequencing and NanoString Technology.

Proper citation: Dartmouth Genomics and Molecular Biology Shared Resource (GMBSR) (RRID:SCR_021293) Copy   


https://www.uhcancercenter.org/research/shared-resources/microscopy-imaging-and-flow-cytometry

Core offers optical analysis instrumentation from specialized light microscopes to bioluminescence preclinical imagers to flow cytometers for multicolor cellular analysis. Services include high resolution optical sectioning of fixed cells and tissues, time lapse imaging of living cell cultures, non invasive monitoring of tumor formation in preclinical studies, and extracting specific cells of interest from tissue samples.

Proper citation: University of Hawaii at Manoa Microscopy, Imaging, and Flow Cytometry Core Facility (RRID:SCR_021753) Copy   


  • RRID:SCR_027031

https://aireadi.org

Multidisciplinary data generation project which aims to create and share multimodal dataset optimized for artificial intelligence research in type 2 diabetes. At each release of the AI-READI dataset, two sets will be made available: public access and controlled access set. The public set will be stripped of Protected Health Information (PHI) as well as information related to the sex and race/ethnicity of the participants.

Proper citation: AI-READI (RRID:SCR_027031) Copy   



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