about
Identification and analysis of functional elements in 1% of the human genome by the ENCODE pilot projectThe structure of a rigorously conserved RNA element within the SARS virus genomeForces shaping the fastest evolving regions in the human genomeRetrocopy contributions to the evolution of the human genomePseudogenes in the ENCODE regions: consensus annotation, analysis of transcription, and evolutionGenome sequence of the Brown Norway rat yields insights into mammalian evolutionInitial sequencing and comparative analysis of the mouse genomeHuman-mouse alignments with BLASTZMosaic retroposon insertion patterns in placental mammalsThe consensus coding sequence (CCDS) project: Identifying a common protein-coding gene set for the human and mouse genomesEvolution's cauldron: duplication, deletion, and rearrangement in the mouse and human genomesHotspots of mammalian chromosomal evolutionThe UCSC Archaeal Genome Browser.Pathway-Based Genomics Prediction using Generalized Elastic NetGenome sequence of the basal haplorrhine primate Tarsius syrichta reveals unusual insertions28-way vertebrate alignment and conservation track in the UCSC Genome BrowserThe UCSC Genome Browser Database: 2008 updateGeneHub-GEPIS: digital expression profiling for normal and cancer tissues based on an integrated gene database.The completion of the Mammalian Gene Collection (MGC).Exploring Massive Incomplete Lineage Sorting in Arctoids (Laurasiatheria, Carnivora).N-Myc Drives Neuroendocrine Prostate Cancer Initiated from Human Prostate Epithelial Cells.Speciation network in Laurasiatheria: retrophylogenomic signals.A basal stem cell signature identifies aggressive prostate cancer phenotypes.Using native and syntenically mapped cDNA alignments to improve de novo gene finding.A model for the proteolipid ring and bafilomycin/concanamycin-binding site in the vacuolar ATPase of Neurospora crassa.Abstract B1-37: A signature catalog to classify tumor mixtures: application to recognition of metastatic disease in prostate cancerAbstract A28: N-Myc drives small cell neuroendocrine cancer initiated from human prostate basal cellsAbstract 731: Integrative genomic analysis to identify emergent enzalutamide resistance mechanisms in castration-resistant prostate cancerAbstract 4177: Identification of pathways relevant for metastatic site prediction in prostate cancerAbstract 60: The MedBook network for cancer precision medical careForces Shaping the Fastest Evolving Regions in the Human GenomeAbstract A2-64: A signature catalog to classify tumor mixtures: Application to recognition of metastatic disease in prostate cancerPrototyping a precision oncology 3.0 rapid learning platform
P50
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P50
description
hulumtues
@sq
onderzoeker
@nl
researcher
@en
հետազոտող
@hy
name
Robert Baertsch
@ast
Robert Baertsch
@en
Robert Baertsch
@es
Robert Baertsch
@fr
Robert Baertsch
@nl
Robert Baertsch
@sl
type
label
Robert Baertsch
@ast
Robert Baertsch
@en
Robert Baertsch
@es
Robert Baertsch
@fr
Robert Baertsch
@nl
Robert Baertsch
@sl
prefLabel
Robert Baertsch
@ast
Robert Baertsch
@en
Robert Baertsch
@es
Robert Baertsch
@fr
Robert Baertsch
@nl
Robert Baertsch
@sl
P106
P21
P31
P496
0000-0002-4733-2649