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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.
http://www.scienceexchange.com/facilities/suny-at-buffalo
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on April 23,2024. Portal listing the labs and facilities at SUNY at Buffalo.
Proper citation: State University of New York at Buffalo Labs and Facilities (RRID:SCR_001039) Copy
http://www.pathologydiagnostics.com
THIS RESOURCE IS NO LONGER IN SERVICE, documented September 15, 2016. Pathology Diagnostics Ltd is an independent GCLP accredited histopathology research organisation delivering tissue, laboratory, and diagnostics services to industry Research and Development scientists engaged in drug and biomarker development.
Proper citation: Pathology Diagnostics (RRID:SCR_001033) Copy
http://nacet.org/az-core-labs/
A core facility which provides fee-based sample imaging and analysis using analytical and microscopy equipment to technology incubator clients, university researchers, and industry.
Proper citation: AZ Core Labs (RRID:SCR_001036) Copy
http://www.scienceexchange.com/facilities/optical-microscopy-core-facility-cornell
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 14,2024. Core facility whose resources and services include confocal microscopy, wide field fluorescence microscopy, histology services, and phosphorimaging, among others. It also provides consultation on project design and image visualization and analysis.
Proper citation: WCMC Optical Microscopy Core Facility (RRID:SCR_001027) Copy
http://www.scienceexchange.com/facilities/hybridoma-center-wustl
The Hybridoma Center / Monoclonal Antibody Development Core is a specialized cell culture facility that assists investigators in the generation of monoclonal antibody producing B cell hybridomas. Mouse and Armenian hamster models are utilized to generate antigen reactive monoclonal antibodies.
Proper citation: WUSTL Hybridoma Center (RRID:SCR_012226) Copy
http://www.scienceexchange.com/facilities/center-of-excellence-in-nutrigenomics-penn-state
The Center of Excellence in Nutrigenomics (CEN) is striving to be the focal point of molecular nutrition studies. The Center is a conduit to the Huck Institute of the Life Sciences and their genomics initiatives as well as the General Clinical Research Center and their expertise in human nutrition studies. Thus, PSU Nutrigenomics can fulfill our goal to understand nutrition from the table to the gene and back again.
Proper citation: Penn State Center of Excellence in Nutrigenomics (RRID:SCR_012227) Copy
http://www.scienceexchange.com/facilities/microarray-and-bioinformatics-core-mmc
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 22,2024. Core facility that provides the following services: RNA quality analysis service, qRT-PCR service, Microarray service, Bioinformatics data analysis service. The Core provides state of the art training, instrumentation, services and bioinformatics-driven data analysis to the Meharry Community in microarray experimental design, manipulation, and gene expression analysis. They also aid investigators and trainees in validation of microarray results using RNA QA/QC and real time PCR results. Finally, this Core Resource aids Meharry investigators and trainees with high performance computation in proteomics as well as genomics. Gene and protein pathways analysis and shotgun proteomics (mass spectrometry) analysis are just two more of the services that we provide. It is their aim to keep this facility up to date computationally and intellectually with state of the art Omics services to support education and research in microarray, genomics and proteomics data analysis, computational biology, and systems biology.
Proper citation: Meharry Microarray and Bioinformatics Core (RRID:SCR_012229) Copy
Provides genomics and molecular biology services for University of Delaware research groups and outside users.Supports genomic research through established expertise with genomics technologies.
Proper citation: University of Delaware Sequencing and Genotyping Center Core Facility (RRID:SCR_012230) Copy
http://www.scienceexchange.com/facilities/genomics-and-microarray-laboratory-dartmouth
The Genomics and Microarray Laboratory (DGML) is supported by the Norris Cotton Cancer Center. DGML is a core facility for investigators at Dartmouth College and Dartmouth Hitchcock Medical Center to provide genomics products and services at or below cost.
Proper citation: Dartmouth Genomics and Microarray Laboratory (RRID:SCR_012190) Copy
http://www.scienceexchange.com/facilities/university-of-louisville
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on October 30,2023. Portal, Core facility
Proper citation: University of Louisville Labs and Facilities (RRID:SCR_012192) Copy
http://gccri.uthscsa.edu/genome_sequencing.html
Core performs all protocols necessary for preparing a sample to be sequenced on the Illumina HiSeq2000 system. Core is also a research group with experience in customizing experiments and developing new applications. Core provides: Complete project consultation for optimal experimental design and setup, Super saver pricing for entire UT Health Science Center research community, especially research focusing on cancer genomics, Complete quality control analysis during library preparation and data generation, Secure website to download the sequencing data with quality information, Full project report, Bioinformatics analysis option available, NCBI GenBank submission option available
Proper citation: University of Texas Health Science Center at San Antonio Genome Sequencing Facility (RRID:SCR_012237) Copy
http://www.scienceexchange.com/facilities/genomics-core
The mission of the Genomics Core is to provide state-of-the-art genomic services including genotyping and cell banking to investigators from UTHSCSA, CTRC and the local scientific community in an economical and timely manner.
Proper citation: UTHSCSA Genomics Core (RRID:SCR_012239) Copy
http://www.scienceexchange.com/facilities/x-ray-crystallography-core-laboratory
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on April 15, 2024. The mission of the X-ray Crystallography Core Laboratory is to provide state-of-the-art resources to researchers at the University of Texas Health Science Center at San Antonio, and to external users, enabling the detailed 3-D analyses of biological macromolecules that play important roles in human health. This is a full service core in that it not only offers access to sophisticated equipment and technologies but also offers advice and technical assistance in sample preparation. Services are also provided to investigators without funding to facilitate the development of pilot data for new potentially fundable projects, as core resources permit. If priority of usage becomes an issue, this will be decided by the Core Director in consultation with the other principal scientists based on the feasibility of the projects, their scientific merits and their relevance to human health.
Proper citation: UTHSCSA X-ray Crystallography Core Laboratory (RRID:SCR_012242) Copy
http://www.scienceexchange.com/facilities/microct-core-laboratory
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 22, 2024. UTHSCSA Orthopaedics Bone and Mineral High-Resolution 3D Imaging Facility is a NIH-funded imaging facility equipped with two ex-vivo desktop microCT systems, a reference point indenter and a furnace. The non-destructive nature of microCT imaging allows the researcher to strengthen his/her research by using the same sample for histology or biomechanical testing after microCT imaging. Advantages of Micro-CT - Micro-CT allows for extremely high-resolution, non-destructive, 3D imaging. - No staining, sectioning, or sample preparation needed - Samples can be frozen or fixed - Since Micro-CT is non-destructive, other assays may be carried out after, thereby increasing the amount of data per sample - Data acquisition is a rapid process, allowing for a speedy return of samples
Proper citation: UTHSCSA MicroCT Core Laboratory (RRID:SCR_012241) Copy
http://www.scienceexchange.com/facilities/diygenomics
DIYgenomics provides crowdsourced health research study protocol design and operation in pre-clinical and disease cohorts. Founded in 2010, the mission of DIYgenomics is the realization of preventive medicine through the integrated study of multiple health data streams. The generalized hypothesis for DIYgenomics studies is that one or more genetic polymorphisms (mutations) may result in out-of-bounds phenotypic biomarker conditions (for example, low Vitamin B blood levels), that may be ameliorated through personalized intervention.
Proper citation: DIYgenomics (RRID:SCR_012243) Copy
The Marvell Nanofabrication Laboratory at the University of California, Berkeley is a multidisciplinary facility that serves research and education in the areas of integrated circuits (ICs) and systems, micro/nanofabrication technologies, micro/nanoelectromechanical (MEMS/NEMS) systems, advanced materials and interdisciplinary applications of microelectronics. This facility offers processing for both 4 inch and 6 inch substrates (wafers).
Proper citation: UC Berkeley Marvell Nanofabrication Laboratory (RRID:SCR_012246) Copy
http://www.scienceexchange.com/facilities/metabolomics-core-laboratory-mass-spectrometry-uthscsa
Cutting-edge mass spectrometers deliver extremely high mass accuracy and resolution to elucidate the identity and quantity of small molecules. Metabolomics Laboratory Services: Qualitative and quantitative analysis of small molecules - Molecular mass determination - Structural elucidation - Quantification Targeted and discovery modes of analysis - Quantitative analysis of targeted metabolites - Metabolite profiling for differential comparisons between experimental groups - High-throughput sample analysis The Metabolomics Laboratory is supported by awards from the National Institutes of Health, including a Shared Instrumentation grant (1S10RR031586-01) and a supplement to the Clinical and Translational Sciences Award (3UL1RR025767-03S1).
Proper citation: UTHSCSA Metabolomics Core Laboratory Mass Spectrometry (RRID:SCR_012245) Copy
http://www.scienceexchange.com/facilities/immunogenetics-center-ucla
The UCLA Immunogenetics Center (UIC) provides comprehensive testing for organ and tissue transplantation. Transplant testing has a long history at UCLA. HLA typing was pioneered here in the 1960''''s. The development of the microcytoxicity test in 1964 marked the beginning of international testing and standardization of HLA typing. The UCLA Immunogenetics Center has retained its leadership position in HLA research, and in the development of accompanying diagnostic testing. In the intervening years, laboratory and scientific personnel, from the US and abroad, have learned HLA typing through courses and workshops at the UCLA Immunogenetics laboratory. The center provides immunogenetics and histocompatibility testing services to a wide range of physicians, patients, pharmaceutical companies and other medical facilities. The laboratory is a World Health Organization reference laboratory for HLA, and is licensed by the State of California, New York, Maryland, Pennsylvania and Rhode Island, is CMS certified and accredited by the American Society for Histocompatibility and Immunogenetics.
Proper citation: UCLA Immunogenetics Center (RRID:SCR_012206) Copy
http://www.scienceexchange.com/facilities/high-throughput-clinical-proteomics-core-ucla
THIS RESOURCE IS NO LONGER IN SERVCE, documented September 6, 2016. The High-Throughput Clinical Proteomics (HTCP) core laboratory is a mass spectrometry core facility designed to profile large numbers of clinical samples for changes in protein content. We use small amounts (micrograms) of protein from samples such as urine, plasma, CSF, and cell lysates and incubate them with magnetic beads that bind different subsets of the total proteome. We then examine the different subsets of small proteins and peptides by high-resolution MALDI-TOF mass spectrometry. We measure the amounts and intact masses of the proteins in the samples and determine which have the greatest statistical relevance in defining clinical groupings before moving to physically isolate those peptides/proteins and identify them. The method works best for peptides and small proteins below 25 kDa and is an excellent complement to gel-based methods such as DIGE.
Proper citation: UCLA High-Throughput Clinical Proteomics Core (RRID:SCR_012205) Copy
http://www.scienceexchange.com/facilities/applied-bioinformatics-core
THIS RESOURCE IS NO LONGER IN SERVICE, documented January 23, 2019. Core supports SBMRI investigators in exploring, understanding and analyzing complex biological data. Core is equipped with cutting-edge computational infrastructure and a selective collection of bioinformatics software. Core's services include consultation, data analysis and management, software development, and accessing to large computing resources. To meet various demands from the investigators, we provide services at multiple levels, from full service to cost-effective limited service as well as collaborative projects requiring longer-term commitment of time and effort.
Proper citation: Sanford-Burnham Applied Bioinformatics Core Facility (RRID:SCR_012208) Copy
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