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On page 19 showing 361 ~ 379 out of 379 results
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http://purl.bioontology.org/ontology/GRO

Ontology that is a conceptual model for the domain of gene regulation. It covers processes that are linked to the regulation of gene expression as well as physical entities that are involved in these processes (such as genes and transcription factors) in terms of ontology classes and semantic relations between classes. GRO is intended to represent common knowledge about gene regulation in a formal way rather than representing extremely fine-grained classes as can be found in ontologies such as the Gene Ontology (GO) (created for data base annotation purposes) and various relevant databases. The main purpose of the ontology is to support NLP applications. It has a particular focus on the relations between processes and the molecules (participants) involved. The basic structure of the GRO is a direct acyclic graph (DAG) with ontology classes as nodes and is-a relations between classes as edges. The taxonomic backbone is further enriched by several semantic relation types (part-of, from-species, participates-in with the two sub-relations agent-of and patient-of).

Proper citation: Gene Regulation Ontology (RRID:SCR_010590) Copy   


http://zfin.org/zf_info/anatomy/dict/sum.html

A structured controlled vocabulary of the anatomy and development of the Zebrafish (Danio rerio). It includes a list of structures, organized hierarchically into an ontology, with descriptions of each structure. The current version is being written by a consortium of researchers, each serving as an expert for a particular set of anatomical structures. Additional anatomical information derived from the current literature is provided by the ZFIN curation group. Development of a complete and uniform anatomical ontology for the zebrafish is vital to the success of zebrafish science. The anatomical ontology is necessary for: * Effective data dissemination and informatics. * A reference framework. * Interoperability.

Proper citation: Zebrafish Anatomical Ontology (RRID:SCR_005887) Copy   


http://purl.bioontology.org/ontology/PMR

Ontology for knowledge representation related to computer-based decision support in rehabilitation; concepts and relationships in the rehabilitation domain, integrating clinical practice, the ICD (specifically its 11th revision), the clinical investigator record ontology, the ICF and SNOMED CT.

Proper citation: Physical Medicine and Rehabilitation (RRID:SCR_005948) Copy   


  • RRID:SCR_006016

    This resource has 50+ mentions.

http://www.human-phenotype-ontology.org/

Provides standardized vocabulary of phenotypic abnormalities encountered in human disease. Structured and controlled vocabulary for phenotypic features encountered in human hereditary and other disease. HPO is being developed in collaboration with members of OBO Foundry (Open Biological and Biomedical Ontologies), and logical definitions for HPO terms are being developed using PATO and a number of other ontologies including FMA, GO, ChEBI, and MPATH.

Proper citation: Human Phenotype Ontology (RRID:SCR_006016) Copy   


http://purl.bioontology.org/ontology/RSA

An ontology for sequence annotations and how to preserve them with reference sequences.

Proper citation: Reference Sequence Annotation (RRID:SCR_006095) Copy   


  • RRID:SCR_006271

    This resource has 1+ mentions.

http://purl.bioontology.org/ontology/VO

A biomedical ontology in the vaccine domain

Proper citation: Vaccine Ontology (RRID:SCR_006271) Copy   


  • RRID:SCR_010333

http://purl.bioontology.org/ontology/GLYCO

Ontology that provides an up-to-date knowledge base of experimentally verified glycan structures. Glycan (oligosaccharide or polysaccharide) structures are represented as trees of monosaccharide residues. Linkage to proteins and lipids is supported as well. Insertion of a new glycan is controlled by curation process that includes matching the new glycan against a canonical glyco-tree (a highly branched representation for a family of glycans).

Proper citation: Glycomics Ontology (RRID:SCR_010333) Copy   


http://purl.bioontology.org/ontology/SNPO

A domain ontology that provides a formal representation (OWL-DL) of genomic variations. Despite its name it is not limited to the representation of SNPs but it encompasses genomic variations in a broader meaning. SNP-Ontology is general enough to enable the representation of variations observed in genome of various species. Latest versions of SNP-Ontology include the representation of haplotype and of CNV. The unambiguous representation of genomic variations provided by SNP-Ontology enables to integrate heterogeneous data related to genomic variations. To achieve this goal SNP-Ontology enables (1) to represent one variation in accordance with various ways that exist for describing it, (2) to represent the equivalence between two distinct descriptions of one variation, and (3) to represent correspondence between a genomic variation and its outcome at the transcriptome and proteome levels.

Proper citation: Single-Nucleotide Polymorphism Ontology (RRID:SCR_010428) Copy   


http://purl.bioontology.org/ontology/TOK

An Ontology describing Resources having different formats. This Ontology can be used to annotate and describe Terminological, Ontological Knowledge resources.

Proper citation: Terminological and Ontological Knowledge Resources Ontology (RRID:SCR_010432) Copy   


http://purl.bioontology.org/ontology/EDDA

Ontology terms useful for machine learning experiments. The terminology appearing in JMLA has been enriched with terms from MeSH and Emtree, the controlled vocabularies for MEDLINE and Embase, respectively. Synonyms include American and British variants and some inverted terms.

Proper citation: EDDA Study Design Terminology (RRID:SCR_010312) Copy   


http://purl.bioontology.org/ontology/TMA

An OWL schema that expands upon the Tissue microarray (TMA) data exchange specification to assist in data sharing and integration.

Proper citation: Tissue Microarray Ontology (RRID:SCR_010434) Copy   


http://purl.bioontology.org/ontology/BCTEO

Ontology that describes the field of Tissue Engineering for what concerns bone and cartilage tissues.

Proper citation: Bone and Cartilage Tissue Engineering Ontology (RRID:SCR_006595) Copy   


http://purl.bioontology.org/ontology/BHN

Nomenclature for innovative activity of biology and anatomo-pathology performed especially in the Centres Hospitalo-Universitaires is usually called activity off nomenclature (BHN for nomenclature and PHN biology for the anatomo-pathology off nomenclature). This character of nomenclature means that health insurance has not yet incorporated these acts in the Nomenclature of acts of biology medical (NABM) or the General Nomenclature of professional acts (NGAP).

Proper citation: Biologie Hors Nomenclature (RRID:SCR_010249) Copy   


http://purl.bioontology.org/ontology/PTRANS

Vocabulary that describes a process that is the means of how a pathogen is transmitted from one host, reservoir, or source to another host. This transmission may occur either directly or indirectly and may involve animate vectors or inanimate vehicles.

Proper citation: Pathogen Transmission Ontology (RRID:SCR_010404) Copy   


http://purl.bioontology.org/ontology/PSDS

A controlled vocabulary of growth and developmental stages in various plants. Note that this has been subsumed into the Plant Ontology (PO). This file is created by filtering plant_ontology_assert.obo to contain only terms from the plant structure development stage branch of the PO. For more information, please see: http://palea.cgrb.oregonstate.edu/viewsvn/Poc/tags/live/

Proper citation: Plant Structure Development Stage (RRID:SCR_010410) Copy   


http://code.google.com/p/ogms/

An ontology based on the papers Toward an Ontological Treatment of Disease and Diagnosis and On Carcinomas and Other Pathological Entities to address some of the issues raised at the Workshop on Ontology of Diseases (Dallas, TX) and the Signs, Symptoms, and Findings Workshop (Milan, Italy). OGMS was formerly called the clinical phenotype ontology. Terms from OGMS hang from the Basic Formal Ontology.

Proper citation: Ontology for General Medical Science (RRID:SCR_010384) Copy   


http://purl.bioontology.org/ontology/TOP-MENELAS

Ontology to (i) Provide better account of and better access to medical information through natural languages in order to help physicians in their daily practice, and to (ii) Enhance European cooperation by multilingual access to standardised medical nomenclatures. The major achievements of MENELAS are the realization of its two functional systems: (i) The Document Indexing System encodes free text PDSs into both an internal representation (a set of Conceptual Graphs) and international nomenclature codes (ICD-9-CM). Instances of the Document Indexing System have been realised for French, English and Dutch ; (ii) The Consultation System allows users to access the information contained in PDSs previously indexed by the Document Indexing System. The test domain for the project was coronary diseases. The existing prototype shows promising results for information retrieval from natural language PDSs and for automatically encoding PDSs into an existing classification such as ICD-9-CM. A set of components, tools, knowledge bases and methods has also been produced by the project. These include language-independent ontology and models for the domain of coronary diseases; conceptual description of the relevant ICD-9-CM codes. This ontology includes a top-ontology, a top-domain ontology and a domain ontology (Coronay diseases surgery). The menelas-top ontology here is the part of the whole ontology without any reference to medical domain.

Proper citation: Menelas Project Top-Level Ontology (RRID:SCR_010356) Copy   


  • RRID:SCR_010360

http://purl.bioontology.org/ontology/MIRNAO

An application ontology for microRNAs.

Proper citation: MicroRNA Ontology (RRID:SCR_010360) Copy   


http://purl.bioontology.org/ontology/TYPON

Ontology that provides a comprehensive description of the existing microbial typing methods for the identification of bacterial Isolates and their classification. Such a description constitutes an universal format for the exchange of information on the microbial typing field, providing a vehicle for the integration of the numerous disparate online databases. In its current version, TyPon describes most used microbial typing methods but it is, and always will be, a work in progress given the constant advances in the microbial typing field.

Proper citation: Microbial Typing Ontology (RRID:SCR_010362) Copy   



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