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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://med.uc.edu/research/core/Index/44/Facility/
Core is equipped with protein separation and mass spectrometry equipment as well as trained personnel to perform comparative analyses of complex protein mixtures and to identify differentially-expressed proteins. Offers guidance and consultation.
Proper citation: University of Cincinnati Proteomics Laboratory Core Facility (RRID:SCR_025895) Copy
https://johnshopkins.ilab.agilent.com/service_center/show_external/3819?name=reference-histology
Provides histology services for Autopsy, Cytology, Renal Pathology and Medical Archives Office within Department of Pathology. In conjunction with Pathology Send Out and Archives divisions, provides histology for clinical trial requests, scientific study or interest involving pathology materials. Services include: Complete routine paraffin histology services, including processing and sectioning; Special stains, including but not limited to carbohydrates, connective tissue, fats, lipids, microorganisms, nuclear elements, pigments, silver techniques; Immunopathology slide preparation techniques;DNA slide preparations; Frozen tissue sections; Oversized tissue processing and sectioning ;Histopathology teaching sets; Customized procedures.Services are provided for both human and animal tissue samples.
Proper citation: Johns Hopkins Reference Histology Core Facility (RRID:SCR_025986) Copy
https://www.petermac.org/research/research-technologies/bioinformatics
Provides services for data analysis, pipeline management, and artificial intelligence research and operations. Data types analysed by the core include whole-genome and whole-exome sequencing, targeted re-sequencing, radiological images, RNA-sequencing, single-cell RNA sequencing, ChIP-sequencing, NanoString and various types of microarray data. Core also develops and maintains software infrastructure required for bioinformatics processing, including pipelines and cloud provision systems.
Proper citation: Peter MacCallum Cancer Centre Bioinformatics Core Facility (RRID:SCR_025901) Copy
Microscopy facility serving Texas Medical Center. Facilitates utilization of advanced light microscopy techniques and quantitative image analysis to advance research programs of McGovern Medical School, UTHealth, and the greater Texas Medical Center. Fluorescence microscopy and image analysis core.
Proper citation: UTHealth Houston Center for Advanced Microscopy Core Facility (RRID:SCR_025962) Copy
https://geiselmed.dartmouth.edu/msp/
Core offers quantitative and qualitative proteomics services using LC-MS/MS technologies. Servies include sample preparation from harvested cell pellets, elutions post-enrichment or purification, or gel bands through data acquisition, quantification, and statistical analysis.
Proper citation: Dartmouth Geisel School of Medicine Biological Mass Spectrometry and Proteomics Shared Resource Core Facility (RRID:SCR_026076) Copy
https://www.goodmancancer.ca/en/histology-innovation-platform
Core provides expertise, cutting edge technology, and efficient workflows in histological processing, analysis and interpretation.
Proper citation: McGill University Goodman Cancer Institute Histology Innovation Platform Core Facility (RRID:SCR_026126) Copy
https://www.montana.edu/uit/rci/
Core provides centralized support, systems, and services for IT specific to research. Systems and services include areas of high-performance computing, virtual machine hosting, large scale storage, and high-performance networking and data transfer.Provides MSU researchers with consulting on technology budgets and implementation for grants and support for IT components of major research instrumentation, software, and specialized or unique research technology needs.
Proper citation: Montana State University Research Cyberinfrastructure Core Facility (RRID:SCR_026229) Copy
Core answers research questions in any scientific, medical or industrial discipline through capture, processing, image analysis, training and sample preparation services for microscopy. Provides technical and scientific support in advanced microscopy and image processing and analysis.
Proper citation: National Cancer Institute Advanced Microscopy Applications Unit Core Facility (RRID:SCR_026170) Copy
https://centers.louisville.edu/brown-cancer-center/core-facilities/molecular-modeling
Core offers services including molecular modeling of proteins and nucleic acids, virtual drug screening, computational biophysics.
Proper citation: University of Louisville School of Medicine Molecular Modeling Core Facility (RRID:SCR_026183) Copy
https://genomics.ucsf.edu/ucsf-clinical-cancer-genomic-laboratory
Core performs standard-of-care and advanced molecular testing for patients with cancer, and to provides special expertise in solid tumors. Services include targeted gene sequencing, microsatellite instability testing, fluorescence in situ hybridization (FISH), and next-generation sequencing (NGS). CCGL is staffed with board-certified surgical pathologists and board-certified molecular pathologists who can properly evaluate the quality of samples submitted for testing as well as make correlations between the pathologic diagnosis of a tumor and the molecular findings in the tumor.
Proper citation: University of California San Francisco Clinical Cancer Genomics Laboratory Core Facility (RRID:SCR_026219) Copy
https://www.unmc.edu/chvr/research/core-facilities/bioassay-core.html
Core provides equipment, personnel, and protocols for routine and advanced cellular and molecular assays for research.
Proper citation: University of Nebraska Medical Center Bioassay Core Facility (RRID:SCR_026270) Copy
https://site.research.utexas.edu/cbrs/
Facility provides access to and operational support for easy-to-operate equipment for sample preparation and analysis, including gel imagers, plate readers, and qPCRs. They provide training on instrument operation and grant access for independent use after completed training.
Proper citation: University of Texas at Austin Shared Instrumentation Facility (RRID:SCR_026271) Copy
Genomics core facility with goal to use instrumentation and innovative technical expertise in order to provide investigators with genomic data from comprehensive range of genomic services in timely manner. Services include Next-Generation Sequencing, Sanger Sequencing Single Cell Sequencing, Microarray Services, Fluorescent Fragment Length Analysis, nanoString nCounter Analysis, Bionano Optical Genome Mapping, Spatial Transcriptomics, Nanopore Sequencing.
Proper citation: University of Texas MD Anderson Advanced Technology Genomics Core Facility (RRID:SCR_026261) Copy
https://www.cancer.columbia.edu/research/shared-resources/confocal-and-specialized-microscopy
Advanced microscope systems for multidimensional optical imaging of living and fixed cells and tissues. Microscopy technologies include confocal, super-resolution (Airyscan and SMLM), TIRF, and wide-field microscopy as well as plate reading and laser capture microdissection. Analysis workstation and software are available, with custom pipeline development for processing, analysis, and visualization.
Proper citation: Columbia University Confocal and Specialized Microscopy Shared Resource Core Facility (RRID:SCR_026353) Copy
https://www.research.uky.edu/mass-spectrometry-and-proteomics-core
Mass spectrometry core lab performing proteomics, small molecule, and lipidomic analyses. Provides access to advanced analytical equipment for quantitation and structural analysis. Offers assistance in sample preparation, method development, acquisition, and data analysis.
Proper citation: University of Kentucky Research Mass Spectrometry and Proteomics Core Facility (RRID:SCR_026359) Copy
Facility dedicated to study of degraded and low DNA yield samples, such as environmental DNA, historical DNA, or ancient DNA. Offers positive pressure lab spaces that follow strict decontamination procedures to prevent human, bacterial, and fungal contamination. It is physically isolated from tissue samples or polymerase chain reaction (PCR) products to avoid contamination from samples with higher DNA concentration and quality. The space has dedicated equipment necessary for DNA extraction and PCR-free sample preparation.
Proper citation: Field Museum of Natural History Biomolecular Clean Laboratory Core Facility (RRID:SCR_026364) Copy
https://www.nuance.northwestern.edu/facilities/keck-ii/index.html
Core facilitates research, collaboration, education and outreach in all science from soft biological matter to hard physical matter, specializing in surface analysis and nano-scale characterization. Instruments include Time-of-Flight Secondary Ion Mass Spectrometry (ToF-SIMS), X-ray Photoelectron Spectroscopy (XPS), Fourier Transform Infrared Spectroscopy (FT-IR), Confocal Raman System, High Resolution Stylus Profilometer, 3D Optical Microscope, Spectroscopic Ellipsometer, and Zetasizer.Staff provides hand-on training, collaboration and assistance.
Proper citation: Northwestern University Keck Interdisciplinary Surface Science Core Facility (RRID:SCR_026360) Copy
https://nextgen.mgh.harvard.edu/Pricing.html
Core offers sequencing, upstream library construction (bulk RNA/DNA, single-cell), and post-sequencing analysis. Core uses Illumina NextSeq 2000 sequencers (and a MiSeq). Single-cell (fresh, frozen, FFPE) libraries (3' & 5' RNA-Seq, CITE-Seq, ATAC-Seq, Multiome, FLEX) are made with 10X Chromium X.
Proper citation: Massachusetts General Hospital NGS Core Facility (RRID:SCR_026362) Copy
Micro and nanofabrication facility that offers range of processing and packaging capabilities including lithography, wet and dry etching, thin film deposition, dicing, wire bonding, metrology, and inspection.
Proper citation: Montana State University Montana Microfabrication Core Facility (RRID:SCR_026333) Copy
https://www.montana.edu/geospatial/what-we-do/index.html
Provides equipment and team support to the workflow of all things geo-spatial from primary data collection using suite of different sensors and platforms to analysis that includes:Advanced mapping and geo-spatial analysis that leverage Uncrewed Aerial Vehicle (UAV) or drone-based sensors that use LiDAR, hyperspectral, thermal, orthoimagery, and Structure from Motion; High precision mapping and analysis using GPS and GNSS; Acoustic Doppler Profiles of rivers, reservoirs, and lakes;Data visualization and cartography;Remote sensing using active and passive sensors;Geo-spatial analysis, data development, and management;High Performance Computing infrastructure that leverages all of the above using open source and proprietary software.
Proper citation: Montana State University Geospatial Core Facility (RRID:SCR_026332) Copy
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