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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.fairfaxcryobank.com
For over 20 years Fairfax Cryobank has provided the highest quality donor sperm that has led to the creation of many happy healthy families. We provide the caring and sensitive support you need, the high quality donor sperm you require, and are accredited by the AATB (American Association of Tissue Banks) and fully compliant with FDA regulations governing reproductive tissue banks. Fairfax Cryobank offers a large selection of high quality donors; only 1 in 200 applicants make it through our rigorous screening process to become donors. We perform the most extensive genetic and infectious disease testing of all sperm banks. Fairfax Cryobank is dedicated to supplying updated verified and accurate medical and personal information on our donors. We have a caring, sensitive and knowledgeable Client Services Team ready to assist you in your choices. Fairfax Cryobank provides a variety of services that will support your process of selecting your perfect donor match including photo matching and a clear and user friendly donor search. We appreciate the importance of finding the right match, the total package, and so we offer incentives and specials that allow you to purchase donor sperm and accompanying products at reduced cost. We have a long-standing reputation of excellence with over two decades of satisfied physicians and patients. Trust, credibility, and quality are the basis of our success.
Proper citation: Fairfax Cryobank (RRID:SCR_005023) Copy
THIS RESOURCE IS NO LONGER IN SERVICE, documented on July 16, 2013. Located in Spain, the Andalusian Regional Tumour Bank is a regional tumor bank. In the last decades cancer knowledge is growing exponentially due human genome knowledge and technological advantages. However, this disease is the biggest problem of health in Europe, with more than 2,5 million new cases per year. The diagnosis and treatment of cancer is now allowing to identify the characteristics that the disease has on each person. The next step is meant to be a great revolution in the treatment of cancer. This scientific development is dependent on the availability of human tumour samples preserved in demanding conditions. Current technology requires the availability of tissue morphological and molecular conditions similar to those that had the sample before being removed. Tumor banks are responsible for these new quality requirements to foster the development of research and health care of patients.
Proper citation: Andalusian Regional Tumour Bank (RRID:SCR_004885) Copy
http://www.bcw.edu/bcw/OrganTissueDonation/WisconsinTissueBank/index.htm
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on January 2,2026. A non-profit program providing tissue procurement services to the state of Wisconsin. The Wisconsin Tissue Bank handles organ donation, works with organ donors, provides organ donation information and organ transplantation. The Wisconsin Tissue Bank staff provides service to hospitals, Medical Examiners/Coroners and Funeral Directors throughout the state of Wisconsin for the recovery of bone, related soft tissue, veins, skin, and cardiovascular tissue for donation and transplantation. The Wisconsin Tissue Bank is dedicated to the education of health care professionals and the public to promote organ and tissue donation. The Wisconsin Tissue Bank promotes an environment sensitive to the physical, emotional, spiritual, social and economic needs of both those served and those who provide the service.
Proper citation: Wisconsin Tissue Bank (RRID:SCR_004910) Copy
http://www.lcnw.org/medical/tissue-services/
Northwest Tissue Services is the only fully accredited non-profit tissue bank in this region. As a non-profit tissue bank, we provide all allograft and tissue products at the lowest possible cost consistent with high quality. Our accreditation by the American Association of Tissue Banks (AATB) is a testament to the quality and safety of tissue we have provided to hospitals and patients in this region for over twenty years. As the most knowledgeable and experienced tissue resource in the Northwest, we work hard every day to provide high quality tissue products and services.
Proper citation: Northwest Tissue Services (RRID:SCR_004875) Copy
https://htrn.osu.edu/Pages/Default.aspx
Collect, bank, and distribute human tissue and fluid specimens by uniting tissue-based research resources within the OSU Department of Pathology and promoting collaborative research within the OSU Medical Center and related national human research projects. The HTRN is comprised of the Pathology Core Facility (PCF), Tissue Archive Service (TAS), Tissue Procurement Service (TPS), AIDS and Cancer Specimen Resource (ACSR), the Cancer and Leukemia Group B Pathology Coordinating Office (CALGB - PCO), and an Adenoma Polyp Tissue Bank (APTB).
Proper citation: Human Tissue Resource Network (RRID:SCR_004785) Copy
https://www.beaumonthospitals.com/biobank
BioBank is a new Beaumont research center that is focused on developing innovative methods for early detection of disease and personalized treatment plans through leading edge analysis techniques and state of the art technologies. Biomarkers from tissue, blood or fluids, are used to develop the next generation of care management, taking it from bench to bedside. Beaumont BioBank will work to: * collect high-quality biological specimens from any specialty at Beaumont * store, analyze and record specimens in an efficient, organized and accessible manner using leading-edge technologies * connect specialties and specialists with each other across traditional hospital or laboratory departments to provide a multidisciplinary research structure * facilitate translational research that links molecular laboratory techniques that enable us to apply biomarker discoveries to clinical outcome studies in a speedy and direct manner
Proper citation: Beaumont Hospitals Biobank (RRID:SCR_004666) Copy
The New York Organ Donor Network is the nonprofit, federally designated organ procurement organization (OPO) for the greater New York Metropolitan area. Established in 1978, the Donor Network is the second largest OPO in the United States, serving a culturally and ethnically diverse population of 13 million people. Working closely with transplant centers and hospitals, we: * Coordinate organ, tissue and eye donation for transplant in the New York region * Educate the public and health care professionals about donation and transplantation * Promote the importance of signing up on the New York State Donate Life Registry. We work closely with 10 transplant centers, more than 90 hospitals, and various tissue and eye banks. The Donor Network is accredited by the Association of Organ Procurement Organizations (AOPO) and a member of the United Network for Organ Sharing (UNOS), which oversees the organ transplant waiting list in the U.S.
Proper citation: New York Organ Donor Network - NYODN (RRID:SCR_004659) Copy
https://scicrunch.org/scicrunch/data/source/nlx_154697-6/search?q=*&l=
A virtual database currently indexing authoritative information on disease and treatment options from NINDS Disorder List and PubMed Health.
Proper citation: Integrated Disease (RRID:SCR_004892) Copy
http://www.ucl.ac.uk/ion/departments/molecular/themes/neurodegeneration/brainbank
A brain bank which holds an archive of brains donated by individuals with neurodegenerative disease and others who serve as neurologically normal controls. It specializes in parkinsonian movement disorders, including Parkinson's disease and multiple system atrophy, and holds the national collection of brains donated by individuals with progressive supranuclear palsy (PSP). Recently the collection has been developed to include donated brains from prospectively studied people with familial dementias. The QSBB also banks brains donated by people with dystonia and Gilles de la Tourette syndrome. The Brain Bank aims to provide brain tissue for neuropathological studies and for scientific research both in the UK and worldwide. The large collection of tissue is backed up by clinical documentation and all material is fully evaluated by the neuropathologists at QSBB. Brain tissue is stored as formalin-fixed, wax embedded blocks and is frozen, either at -20 degrees C or at -80 degrees C (flash-frozen). Tissue can be provided as slide-mounted sections, or as small blocks for neurochemistry, proteomics and DNA and RNA analysis. Flash-frozen material has excellent histological preservation and is suitable for in situ hybridization and immunohistochemistry. Case-control studies are matched for post-mortem delay and agonal status and are supplied blind.
Proper citation: Queen Square Brain Bank (RRID:SCR_004652) Copy
Biospecimen repository of normal and diseased human material from a variety of tissues and conditions along with clinical annotation. Both frozen aliquots and paraffin embedded tissue are available. Biospecimens are available to qualified researchers with IRB approval. * Preliminary inquires please contact Cheryl Spencer at cheryl.spencer (at) bmc.org
Proper citation: Boston University Biospecimen Archive Research Core (RRID:SCR_005363) Copy
http://med.emory.edu/ADRC/research/core_neurology_database.html
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on June 9, 2025. A database which retains extensive clinical information about study subjects recruited by the Alzheimer's Disease Research Center Clinical Core, as well as other individuals with neurological diseases. In addition to clinical information, the database has basic demographics, medical history (including risk factors such as smoking), and a detailed family history from all subjects. Some entries have neuropsychological measures. Users can access a Summary Database which contains the most commonly requested variables. A data dictionary describing the variables in the Summary Database is available.
Proper citation: Emory Neurology Database (RRID:SCR_005277) Copy
http://cmrm.med.jhmi.edu/cmrm/atlas/human_data/file/JHUtemplate_newuser.html
DTI white matter atlases with different data sources and different image processing. These include single-subject, group-averaged, B0 correction, processed atlases (White Matter Parcellation Map, Tract-probability maps, Conceptual difference between the WMPM and tract-probability maps), and linear or non-linear transformation for automated white matter segmentation. # Adam single-subject white matter atlas (old version): These are electronic versions of atlases published in Wakana et al, Radiology, 230, 77-87 (2004) and MRI Atlas of Human White Matter, Elsevier. ## Original Adam Atlas: 256 x 256 x 55 (FOV = 246 x 246 mm / 2.2 mm slices) (The original matrix is 96x96x55 (2.2 mm isotropic) which is zerofilled to 256 x 256 ## Re-sliced Adam Atlas: 246 x 246 x 121 (1 mm isotropic) ## Talairach Adam: 246 x 246 x 121 (1 mm isotropic) # New Eve single-subject white matter atlas: The new version of the single-subject white matter atlas with comprehensive white matter parcellation. ## MNI coordinate: 181 x 217 x 181 (1 mm isotropic) ## Talairach coordinate: 181 x 217 x 181 (1 mm isotropic) # Group-averaged atlases: This atlas was created from their normal DTI database (n = 28). The template was MNI-ICBM-152 and the data from the normal subjects were normalized by affine transformation. Image dimensions are 181x217x181, 1 mm isotropic. There are two types of maps. The first one is the averaged tensor map and the second one is probabilistic maps of 11 white matter tracts reconstructed by FACT. # ICBM Group-averaged atlases: This atlas was created from ICBM database. All templates follow Radiology convention. You may need to flip right and left when you use image registration software that follows the Neurology convention.
Proper citation: DTI White Matter Atlas (RRID:SCR_005279) Copy
http://med.brown.edu/neurology/brainbank/index.html
A tissue resource center which facilitates research into the relationship between Alzheimer's disease and other brain disorders such as strokes and mental illnesses. Most donations have been obtained from Alzheimer's patients. Normal controls are available, many of which are from subjects with close relatives with Alzheimer's. The Brown BTRC also supports a collection of brain tumor cases that were harvested from patients who underwent surgery and who were enrolled in a clinical trial for the development of new treatments for brain cancer.
Proper citation: Brown Brain Tissue Resource Center (RRID:SCR_005392) Copy
https://sites.google.com/site/jpopgen/dbNSFP
A database for functional prediction and annotation of all potential non-synonymous single-nucleotide variants (nsSNVs) in the human genome. Version 2.0 is based on the Gencode release 9 / Ensembl version 64 and includes a total of 87,347,043 nsSNVs and 2,270,742 essential splice site SNVs. It compiles prediction scores from six prediction algorithms (SIFT, Polyphen2, LRT, MutationTaster, MutationAssessor and FATHMM), three conservation scores (PhyloP, GERP++ and SiPhy) and other related information including allele frequencies observed in the 1000 Genomes Project phase 1 data and the NHLBI Exome Sequencing Project, various gene IDs from different databases, functional descriptions of genes, gene expression and gene interaction information, etc. Some dbNSFP contents (may not be up-to-date though) can also be accessed through variant tools, ANNOVAR, KGGSeq, UCSC Genome Browser''s Variant Annotation Integrator, Ensembl Variant Effect Predictor and HGMD.
Proper citation: dbNSFP (RRID:SCR_005178) Copy
http://swissregulon.unibas.ch/fcgi/sr/swissregulon
A database of genome-wide annotations of regulatory sites. The predictions are based on Bayesian probabilistic analysis of a combination of input information including: * Experimentally determined binding sites reported in the literature. * Known sequence-specificities of transcription factors. * ChIP-chip and ChIP-seq data. * Alignments of orthologous non-coding regions. Predictions were made using the PhyloGibbs, MotEvo, IRUS and ISMARA algorithms developed in their group, depending on the data available for each organism. Annotations can be viewed in a Gbrowse genome browser and can also be downloaded in flat file format.
Proper citation: SwissRegulon (RRID:SCR_005333) Copy
http://www.einstein.yu.edu/centers/ictr/
Patient-derived specimens are essential to research in genomics, proteomics, and biomarkers. We provide banking for biological fluid and tissue specimens as well as human DNA and RNA. We provide secure archival sample storage as well as clinically-annotated specimen biobanks for defined research projects. The core serves the human research blood and tissue banking needs of clinical and translational researchers. Samples can be banked by an individual PI or by a consortium of investigators. All samples are tracked and archived using a secure tracking database, the Einstein-Montefiore Bio-Repository Databank (EM-BRED), http://informatics30.aecom.yu.edu/em-bred/default.aspx. EM-BRED provides qualified investigators with a solution to securely link patient specimens to clinical and pathological data. It consists of a user-friendly query engine that allows for comprehensive specimen search, and ultimately to build clinical annotations of relevance. The facility works under the best practices set out by NCI and ISBER (2006) for collection, storage, and retrieval of human biological materials for research.
Proper citation: Einstein-Montefiore Institute for Clinical and Translational Research Biorepository (RRID:SCR_005297) Copy
A blog produced by the NEJM publishing communications team about new and innovative content in the New England Journal of Medicine (NEJM.org). Our goal is to inform you about what''s new and provide some additional context to complement the content published in NEJM. Each week we post a piece under Insights about one of the latest research papers in NEJM, discussing its clinical significance, where it may lead us in practice and research, and often giving an editor''s thoughts about why it was important to publish. We pose questions to stimulate your thinking and discussion. The idea is to make it easy for you to give us your views on a particular topic and make the conversation accessible to other doctors and physicians-in-training. Posts contain links to the full article, which will be free to all visitors for a limited time. We also feature two posts from the Resident e-Bulletin each week, with an article summary, Clinical Pearls, and Morning Report Questions teaching points that many of you find so useful in your roles as teachers or trainees. The blog gives us a new way to distribute and store this educational information on the social web, again, inviting comment and discussion. You''ll also hear about new products and applications as we bring them out, such as new Interactive Medical Cases, or iPhone applications, like NEJM This Week and the Image Challenge. We link to videos on the NEJMvideo channel on YouTube, share our Twitter feed, and links to NEJM in the News, too. We''d like this to be an open forum, complementary to the core content of NEJM, engaging you in a new experience beyond the journal page in a more interactive community.
Proper citation: Now at NEJM (RRID:SCR_005239) Copy
http://fairbrother.biomed.brown.edu/spliceman/index.cgi
An online tool that takes a set of DNA sequences with point mutations and returns a ranked list to predict the effects of point mutations on pre-mRNA splicing. The current implementation includes 11 genomes: human, chimp, rhesus, mouse, rat, dog, cat, chicken, guinea pig, frog and zebrafish.
Proper citation: Spliceman (RRID:SCR_005354) Copy
A knowledgebase of Biochemically, Genetically and Genomically structured genome-scale metabolic network reconstructions. BiGG integrates several published genome-scale metabolic networks into one resource with standard nomenclature which allows components to be compared across different organisms. BiGG can be used to browse model content, visualize metabolic pathway maps, and export SBML files of the models for further analysis by external software packages. Users may follow links from BiGG to several external databases to obtain additional information on genes, proteins, reactions, metabolites and citations of interest.
Proper citation: BiGG Database (RRID:SCR_005809) Copy
http://the_brain.bwh.harvard.edu/uniprobe/
Database that hosts experimental data from universal protein binding microarray (PBM) experiments (Berger et al., 2006) and their accompanying statistical analyses from prokaryotic and eukaryotic organisms, malarial parasites, yeast, worms, mouse, and human. It provides a centralized resource for accessing comprehensive data on the preferences of proteins for all possible sequence variants ("words") of length k ("k-mers"), as well as position weight matrix (PWM) and graphical sequence logo representations of the k-mer data. The database's web tools include a text-based search, a function for assessing motif similarity between user-entered data and database PWMs, and a function for locating putative binding sites along user-entered nucleotide sequences.
Proper citation: UniPROBE (RRID:SCR_005803) Copy
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