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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://purl.bioontology.org/ontology/BNO
Ontology that relates concepts and terminologies used for human nutrition in a clinical and biomedical setting.
Proper citation: Bionutrition Ontology (RRID:SCR_010272) Copy
http://toolkit.tuebingen.mpg.de/hhpred
The primary aim in developing HHpred was to provide biologists with a method for sequence database searching and structure prediction that is as easy to use as BLAST or PSI-BLAST and that is at the same time much more sensitive in finding remote homologs. In fact, HHpred''s sensitivity is competitive with the most powerful servers for structure prediction currently available. HHpred is the first server that is based on the pairwise comparison of profile hidden Markov models (HMMs). Whereas most conventional sequence search methods search sequence databases such as UniProt or the NR, HHpred searches alignment databases, like Pfam or SMART. This greatly simplifies the list of hits to a number of sequence families instead of a clutter of single sequences. All major publicly available profile and alignment databases are available through HHpred.
Proper citation: HHpred (RRID:SCR_010276) Copy
http://code.google.com/p/bitseq/
A software application for inferring expression levels of individual transcripts from sequencing (RNA-Seq) data and estimating differential expression (DE) between conditions.
Proper citation: BitSeq (RRID:SCR_009904) Copy
Fosters, promotes, and develops the welfare of the wage earners, job seekers, and retirees of the United States; improves working conditions; advances opportunities for profitable employment; and assures work-related benefits and rights.
Proper citation: U.S. Department of Labor (RRID:SCR_010157) Copy
http://purl.bioontology.org/ontology/BT
A top-domain ontology that provides definitions for the foundational entities of biomedicine as a basic vocabulary to unambiguously describe facts in this domain. It can furthermore serve as top-level model for creating new ontologies for more specific domains or as aid for aligning or improving existing ones.
Proper citation: BioTop Ontology (RRID:SCR_010039) Copy
http://purl.bioontology.org/ontology/ELIG
A set of 1,437 eligibility features that were organized into a feature hierarchy using 80 breast cancer trials.
Proper citation: Eligibility Feature Hierarchy (RRID:SCR_010314) Copy
http://purl.bioontology.org/ontology/EMO
Ontology to describe the active components of the enzyme''s reactions (cofactors, amino acid residues and cognate ligands) and their roles in the reaction. EMO builds upon this by formalizing key concepts, and the relationships between them, necessary to define enzymes and their functions. This describes not only the general features of an enzyme, including the EC number (catalytic activity), 3D structure and cellular locations, but also allows for the detailed annotation of the mechanism. This mechanistic detail can be either at a gross level (overall reaction only), or the more detailed granularity of the steps and components required to effect the overall chemical transformation.
Proper citation: Enzyme Mechanism Ontology (RRID:SCR_010315) Copy
http://purl.bioontology.org/ontology/PIERO
An enzyme ontology that deals with partial reactions (transformations)
Proper citation: Enzyme Reaction Ontology for partial chemical perspectives (RRID:SCR_010316) Copy
http://purl.bioontology.org/ontology/EPILONT
Ontology about the epilepsy domain and epileptic seizures. Based on the diagnosis proposed by the International League Against Epilepsy (ILAE).
Proper citation: Epilepsy Ontology (RRID:SCR_010317) Copy
http://purl.bioontology.org/ontology/LHN
An ontology for Loggerhead sea turtle (Caretta caretta) nesting behavior, based on the published ethogram of Hailman and Elowson. A demonstration of ontology construction as a general technique for coding ethograms and other descriptions of behavior into machine understandable forms.
Proper citation: Loggerhead Nesting Ontology (RRID:SCR_010318) Copy
http://purl.bioontology.org/ontology/FIRE
Ontology to represent the set of concepts about the fire occurring in natural vegetation, its characteristics, causes and effects, with focus on Cerrado vegetation domain. The fire plays a determinant role on the structure and composition of Cerrado physiognomies.
Proper citation: Fire Ontology (RRID:SCR_010320) Copy
http://purl.bioontology.org/ontology/FLOPO
Ontology generated from the Flora Malesiana, Flora Gabon, Flora of Central Africa, and a collection of Kew''s African Floras. Every class in the ontology has at least one taxon annotation. This is the pre-classified version of the ontology; the original OWL file is at http://jagannath.pdn.cam.ac.uk/plant/flopo-unclassified.owl
Proper citation: Flora Phenotype Ontology (RRID:SCR_010321) Copy
http://purl.bioontology.org/ontology/BIOMODELS
OWL Representation of the models in the BioModels repository.
Proper citation: BioModels Ontology (RRID:SCR_010125) Copy
Johns Hopkins University is private research university in Baltimore, Maryland. Founded in 1876, university was named for its first benefactor, American entrepreneur, abolitionist, and philanthropist Johns Hopkins.
Proper citation: Johns Hopkins University; Maryland; USA (RRID:SCR_010247) Copy
http://bioportal.bioontology.org/ontologies/ASDPTO
Ontology that encapsulates the Autism Spectrum Disorder behavioral phenotype, informed by the standard ASD assessment instruments and the currently known characteristics of this disorder.
Proper citation: Autism Spectrum Disorder Phenotype Ontology (RRID:SCR_010006) Copy
Group headed by Professor David Jones, and was originally founded as the Joint Research Council funded Bioinformatics Unit within the Department of Computer Science at University College London. Supports the following tools: Protein Structure Prediction Threading (THREADER) Ab initio folding simulations Secondary structure prediction (PSIPRED) Protein disorder prediction (DISOPRED) Protein domain prediction (DomPred) Database of protein disorder (DisoDB) Protein Sequence Analysis Protein function prediction (ffpred) Metsite: Metal binding residue prediction HSPred : Protein-protein interaction characterisation Amino acid substitution matrices Hidden Markov Models (collaboration with N. Goldman, Cambridge, & J. Thorne, NCSU) Genome Analysis Genomic fold recognition (GenTHREADER) Genome annotation using software agents Protein Structure Classification CATH (collaboration with J. Thornton & C. Orengo, UCL Biochemistry) Transmembrane Protein Modelling MEMSAT & MEMSATSVM Folding In Lipid Membranes (FILM) MEMPACK Biological Applications of Data-mining and Machine Learning Techniques Information extraction for biological research (BioRat) Microarray Analysis Data integration for microarray analysis Data visualization Systems Biology Systems biology applied to stem cells Legacy Services (to be retired shortly) Comparison of structure classifications (CATH/SCOP/FSSP) Genomic Threading Database (GTD)
Proper citation: UCL Bioinformatics Group (RRID:SCR_010248) Copy
http://utep.eagle-i.net/i/00000134-a952-c738-bfc0-fe9780000000
THIS RESOURCE IS NO LONGER IN SERVCE, documented January 23, 2019. Core facility that provides the following services: Zeiss LD-5 Pascal Scanning Confocal Microscope/Assisted access, Zeiss Axioskop Epifluorescence Microscope/Assisted access, Zeiss EM-10 Transmission Electron Microscope/Assisted access, Microscopy sample preparation, Observation and photography service. The Analytical Cytology Core Facility provides assistance in the designing of protocols and the use of sophisticated, well maintained and supervised equipment. Each microscope is equipped with software for image analysis, image processing and printing of digital images. Service contracts are maintained on each of the microscopes. Computers and software are regularly upgraded. Confocal workshops are held regularly to familiarize users with new techniques and new protocols. The specific aims of the Analytical Cytology Core Facility (ACCF) are: 1. to train users in the design of protocols, the fixations, sectioning, cryofixations, immunolocalizations, the use of the Zeiss EM-10, the Zeiss Axioskop epifluorescence microscope and the Zeiss Pascal scanning confocal microscope with image analysis and image processing, 2. to support new faculty in realizing their research objectives that utilize microscopy, 3. to support the productivity of the Infectious Diseases and Immunology unit, the Toxicology unit, the Neuroscience/Metabolic Disorders unit, the Statistical Consulting Laboratory and the Bioinformatics unit by assisting faculty, undergraduate, masters, doctoral and postdoctoral students in advancing biomedical research, 4. to maintain and upgrade equipment and expertise and; 5. to provide core services anticipating self-sustaining maintenance of the core facility.
Proper citation: University of Texas El Paso Analytical Cytology Core Facility (RRID:SCR_010137) Copy
http://purl.bioontology.org/ontology/ICPC
Ontology of the international classification of primary care (ICPC). Denmark: World Organisation of Family Doctors, 1993.
Proper citation: International Classification of Primary Care (RRID:SCR_010262) Copy
Tools for performing statistical computation including: Clinical Research Calculators Probabilities Distributions Frequency Data Proportions Ordinal Data Correlation & Regression t-Tests & Procedures ANOVA ANCOVA
Proper citation: VassarStats (RRID:SCR_010263) Copy
http://bioen-compbio.bioen.illinois.edu/TrueSight/
Self-training Algorithm for Splice Junction Detection using RNA-seq.
Proper citation: TrueSight (RRID:SCR_009835) Copy
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