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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 93 showing 1841 ~ 1860 out of 2,379 results
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  • RRID:SCR_010515

    This resource has 1+ mentions.

http://www.biopta.com/

A contract research service to the pharmaceutical industry, focusing on the use of fresh human tissues to predict drug activity prior to clinical trials. Biopta''s expertise in all areas of human tissue research including sourcing, handling and experimenting on human tissue allows us to act as your Human Tissue Research Department. Biopta has developed an extensive network of tissue collaborators and is accredited as a Research Tissue Bank. It manages procurement, ethics and logistics for human tissue research projects.

Proper citation: Biopta (RRID:SCR_010515) Copy   


  • RRID:SCR_010486

    This resource has 10+ mentions.

http://www.precisionmed.com/

A biorepository of human biological material from healthy and diseased populations with a special focus on subjects with Alzheimer's disease, multiple sclerosis, Parkinson's disease and other neurological disorders. Data is collected longitudinally. PrecisionMed aims to facilitate research in genetics, drug discovery, biomarker research and molecular diagnostics. Materials collected include DNA, RNA, plasma and cerebrospinal fluid, among others.

Proper citation: PrecisionMed (RRID:SCR_010486) Copy   


  • RRID:SCR_010840

    This resource has 100+ mentions.

http://diana.imis.athena-innovation.gr/DianaTools/index.php?r=lncBase/index

Database that hosts elaborated information for both predicted and experimentally verified, miRNA-lncRNA interactions. The database consists of two distinct modules. The Experimental Module contains detailed information for more than 5,000 interactions, between 2,958 lncRNAs and 120 miRNAs, ranging from miRNA and lncRNA related facts to information specific to their interaction, the experimental validation methodologies and their outcomes. The Prediction Module, which is based on the latest version of DIANA-microT target prediction algorithm (DIANA-microT-CDS), contains detailed information for more than 10 million interactions, between 56,097 lncRNAs and 3,078 miRNAs, ranging from miRNA and lncRNA related details to specific information regarding their interaction sites, graphical representation of their binding and the predicted score. This module exhibits a unique feature for searching the database. Users are able to add genomic locations to their queries thus browsing every miRNA-lncRNA interaction that has at least one MRE located inside the queried locus.

Proper citation: DIANA-LncBase (RRID:SCR_010840) Copy   


  • RRID:SCR_010842

    This resource has 10+ mentions.

http://hoctar.tigem.it/

Database serving as a tool for microRNA target prediction. The HOCTAR procedure is based on the integration of expression profiling and sequence-based miRNA target recognition softwares. HOCTAR database (db) is the first and unique database to use transcriptomic data to score putative miRNA targets looking at the expression behaviour of their host genes, and it includes and re-analyzes all miRNA target predictions generated by softwares such as miRanda, TargetScan and PicTar. The HOCTARdb contains the prediction target lists for 290 human intragenic miRNAs and also provides tentative assignments of miRNA function based on Gene Ontology analyses of their predicted targets. There are two ways to interrogate HOCTARdb: (i) by selecting a miRNA using either an alphabetically sorted pull-down menu in the microRNA query, or (ii) by typing a target gene symbol (HUGO Gene Name-approved) in the Target Gene Name query.

Proper citation: HOCTAR (RRID:SCR_010842) Copy   


http://www.alberthealthservices.ca

Commercial tissue bank focused on human tissues.

Proper citation: Comprehensive Tissue Centre (RRID:SCR_010689) Copy   


  • RRID:SCR_011933

    This resource has 10+ mentions.

http://www.cbs.dtu.dk/services/HMMgene/

Data analysis service for prediction of vertebrate and C. elegans genes.

Proper citation: HMMgene (RRID:SCR_011933) Copy   


http://www.physionet.org/pn3/mghdb/

A database of 250 recordings of 3-lead ECGs, ABP, PAP, CVP, respiration, and airway CO2 signals from patients in critical care units; some recordings include intra-cranial, left atrial, ventricular and intra-aortic pressure waveforms.

Proper citation: MGH/MF Waveform Database (RRID:SCR_010737) Copy   


http://www.stemlife.com/international/stem_cell/index.html

Not yet vetted by NIF curator

Proper citation: StemLife Stem Cell Bank (RRID:SCR_010735) Copy   


  • RRID:SCR_011791

    This resource has 50+ mentions.

http://www.genomicus.biologie.ens.fr/genomicus-72.01/cgi-bin/search.pl

A genome browser that enables users to navigate in genomes in several dimensions: linearly along chromosome axes, transversaly across different species, and chronologicaly along evolutionary time.

Proper citation: Genomicus (RRID:SCR_011791) Copy   


http://www.conversantbio.com

Tissue bank that specifically provides human tissue and cell samples for research purposes. It offers PBMCs, whole blood, solid tumor tissues, circulating tumor cells, and a variety of other bio-specimens.

Proper citation: Conversant Biologics Inc. (RRID:SCR_010675) Copy   


http://www.viccancerbiobank.org.au/

Not yet vetted by NIF curator

Proper citation: Victorian Cancer Care Biobank (RRID:SCR_010677) Copy   


http://www1.petermac.org/allg/NewSite/

Not yet vetted by NIF curator

Proper citation: Austrailasian Leukemia and Lymphoma Tissue Bank (RRID:SCR_010711) Copy   


  • RRID:SCR_010799

    This resource has 1+ mentions.

http://phencode.bx.psu.edu/

A collaborative project to better understand the relationship between genotype and phenotype in humans that connects human phenotype and clinical data in various locus-specific mutation databases (LSDBs) with data on genome sequences, evolutionary history, and function in the UCSC Genome Browser. PhenCode is a collaboration among researchers at Penn State, UC Santa Cruz, and locus experts at other institutions.

Proper citation: PhenCode (RRID:SCR_010799) Copy   


http://www.tau.ac.il/medicine/NLGIP/nlgip.htm

Not yet vetted by NIF curator

Proper citation: National Laboratory for the Genetics of Israeli Populations (RRID:SCR_010679) Copy   


http://www.apastb.net/

Not yet vetted by NIF curator

Proper citation: Asia Pacific Association of Tissue Banking (RRID:SCR_010684) Copy   


  • RRID:SCR_011972

http://www.imtech.res.in/raghava/hslpred/

A support vector machine (SVM)-based method for the prediction of 4 major subcellular localization (cytoplasm, mitochondrial, nuclear and plasma membrane) of human proteins using various features such as i) amino acid composition, ii) dipeptide composition and iii) evolutionary information of proteins.

Proper citation: HSLPred (RRID:SCR_011972) Copy   


http://www.edinburghbrainbanks.ed.ac.uk/

The purpose of these three Banks (SUDDEN DEATH BRAIN AND TISSUE BANK, HIV BRAIN AND TISSUE BANK, and CJD BRAIN AND TISSUE BANK) is to collect donated samples from the brain and other organs of the body during post mortem examination, and to make these available for medical research. All the samples stored in the Edinburgh Banks are fully authorized for research by families and ethically approved for research use in accordance with the terms of current UK Human Tissue legislation. During the last 100 years or so, much of our knowledge of brain disorders has come from the study of post mortem tissues, based on identifying the differences between diseased and control (normal) brains. Advances in the diagnosis and treatment, as well as understanding the genetic background, of disorders such as Alzheimer''s disease, dementia with Lewy bodies, Parkinson''s disease and the effects of head injury have all depended on research using Brain Bank resources in different countries. Brain Banking in Edinburgh commenced in 1990, focusing specifically on HIV infection of the brain and on Creutzfeldt-Jakob disease (CJD). Significant progress in understanding these two brain infections has resulted both from the research in Edinburgh and from the work of scientists worldwide who have used tissue samples from the Edinburgh Brain Banks. These resources proved vital in establishing variant CJD as a new disease, different from the classic sporadic form and in demonstrating the brain changes in pre-AIDS and AIDS, particularly in drug abusers. In 2005 a third brain bank was established in Edinburgh with the specific aim of collecting donated normal brain tissue samples from the forensic post mortem service since there is a worldwide shortage of such material. This Bank also collects samples donated from individuals with psychiatric disorders or a history of head injury or of drug and alcohol addiction.

Proper citation: Edinburgh Brain and Tissue Banks (RRID:SCR_010650) Copy   


  • RRID:SCR_010774

    This resource has 1+ mentions.

http://ls-snp.icm.jhu.edu/ls-snp-pdb/

A web tool for genome-wide annotation of human SNPs.

Proper citation: LS-SNP/PDB (RRID:SCR_010774) Copy   


  • RRID:SCR_010746

    This resource has 1+ mentions.

http://www.lifenet.org/

A provider of bio-implants and organs for transplantation and tissue banking services.

Proper citation: LifeNet Health (RRID:SCR_010746) Copy   


  • RRID:SCR_011965

    This resource has 10+ mentions.

http://gpcr.biocomp.unibo.it/bacello/

A predictor for the subcellular localization of proteins in eukaryotes that is based on a decision tree of several support vector machines (SVMs). It classifies up to four localizations for Fungi and Metazoan proteins and five localizations for Plant ones. BaCelLo's predictions are balanced among different classes and all the localizations are considered as equiprobable.

Proper citation: BaCelLo (RRID:SCR_011965) Copy   



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