about
Understanding mammalian genetic systems: the challenge of phenotyping in the mousePost-publication sharing of data and toolsEuroPhenome: a repository for high-throughput mouse phenotyping dataEuroPhenome and EMPReSS: online mouse phenotyping resourceA common binding site on the microsomal triglyceride transfer protein for apolipoprotein B and protein disulfide isomeraseIdentification of a Z-band associated protein complex involving KY, FLNC and IGFN1Mouse Phenotype Database Integration Consortium: integration [corrected] of mouse phenome data resourcesA tale of two drug targets: the evolutionary history of BACE1 and BACE2Towards BioDBcore: a community-defined information specification for biological databasesPromoting coherent minimum reporting guidelines for biological and biomedical investigations: the MIBBI projectAnalysis of mammalian gene function through broad-based phenotypic screens across a consortium of mouse clinicsA comparative phenotypic and genomic analysis of C57BL/6J and C57BL/6N mouse strains.Introducing the Brassica Information Portal: Towards integrating genotypic and phenotypic Brassica crop data.Analyzing gene expression data in mice with the Neuro Behavior Ontology.Genome size and the accumulation of simple sequence repeats: implications of new data from genome sequencing projects.Commentary on Shimoyama et al. (2012): three ontologies to define phenotype measurement data.Phenostat: visualization and statistical tool for analysis of phenotyping data.Phenobabelomics--mouse phenotype data resources.CRAVE: a database, middleware and visualization system for phenotype ontologies.Solutions for data integration in functional genomics: a critical assessment and case study.Practical application of ontologies to annotate and analyse large scale raw mouse phenotype dataXGAP: a uniform and extensible data model and software platform for genotype and phenotype experimentsResearch funding. Sustaining the data and bioresource commons.Phenotype ontologies for mouse and man: bridging the semantic gap.Trinucleotide expansion diseases in the context of micro- and minisatellite evolution, Hammersmith Hospital, April 1-3, 1998Protein coalitions in a core mammalian biochemical network linked by rapidly evolving proteins.A gene-phenotype network for the laboratory mouse and its implications for systematic phenotyping.PlantProm: a database of plant promoter sequences.Simple sequence repeats in proteins and their significance for network evolution.Functional modelling of planar cell polarity: an approach for identifying molecular functionA bigger mouse? The rat genome unveiled.Human Variome Project Quality Assessment Criteria for Variation Databases.Entity/quality-based logical definitions for the human skeletal phenome using PATOGene factories, microfunctionalization and the evolution of gene families.Mouse, man, and meaning: bridging the semantics of mouse phenotype and human disease.The functional annotation of mammalian genomes: the challenge of phenotyping.An open and transparent process to select ELIXIR Node Services as implemented by ELIXIR-UK.ELIXIR-UK role in bioinformatics training at the national level and across ELIXIRDeveloping a strategy for computational lab skills training through Software and Data Carpentry: Experiences from the ELIXIR Pilot action.MouseBook: an integrated portal of mouse resources.
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John M Hancock
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John M Hancock
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