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Molecular and fluorescence in situ hybridization characterization of the breakpoints in 46 large supernumerary marker 15 chromosomes reveals an unexpected level of complexity.
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BAC microarray analysis of 15q11-q13 rearrangements and the impact of segmental duplications.
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Behavioral differences among subjects with Prader-Willi syndrome and type I or type II deletion and maternal disomy.
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Supernumerary tricentric derivative chromosome 15 in two boys with intractable epilepsy: another mechanism for partial hexasomy.
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Fluorescence in situ hybridization with human chromosome-specific libraries: detection of trisomy 21 and translocations of chromosome 4.
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Angelman and Prader-Willi syndromes share a common chromosome 15 deletion but differ in parental origin of the deletion.
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Angelman syndrome: three molecular classes identified with chromosome 15q11q13-specific DNA markers.
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Inv dup(15) supernumerary marker chromosomes.
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Supernumerary marker 15 chromosomes: a clinical, molecular and FISH approach to diagnosis and prognosis.
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Molecular characterization of two proximal deletion breakpoint regions in both Prader-Willi and Angelman syndrome patients.
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Clinical heterogeneity in 16 patients with inv dup 15 chromosome: cytogenetic and molecular studies, search for an imprinting effect.
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Refined molecular characterization of the breakpoints in small inv dup(15) chromosomes.
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Analysis of parent of origin specific DNA methylation at SNRPN and PW71 in tissues: implication for prenatal diagnosis.
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The mechanisms involved in formation of deletions and duplications of 15q11-q13.
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Molecular cytogenetic evidence for a common breakpoint in the largest inverted duplications of chromosome 15.
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A large polymorphic repeat in the pericentromeric region of human chromosome 15q contains three partial gene duplications.
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Molecular characterisation of four cases of intrachromosomal triplication of chromosome 15q11-q14.
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Isolation and molecular analysis of inv dup(15) and construction of a physical map of a common breakpoint in order to elucidate their mechanism of formation.
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Genome scanning with array CGH delineates regional alterations in mouse islet carcinomas.
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Human chromosome 15q11-q14 regions of rearrangements contain clusters of LCR15 duplicons.
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High-throughput analysis of subtelomeric chromosome rearrangements by use of array-based comparative genomic hybridization.
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Supernumerary marker chromosomes derived from chromosome 15: analysis of 32 new cases.
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A full-coverage, high-resolution human chromosome 22 genomic microarray for clinical and research applications.
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Double supernumerary isodicentric chromosomes derived from 15 resulting in partial hexasomy.
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Partial hexasomy 15pter-->15q13 including SNRPN and D15S10: first molecular cytogenetically proven case report.
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A supernumerary marker chromosome 15 tetrasomic for the Prader-Willi/Angelman syndrome critical region in a patient with a severe phenotype.
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Development of a comparative genomic hybridization microarray and demonstration of its utility with 25 well-characterized 1p36 deletions.
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Array-based comparative genomic hybridization for the genomewide detection of submicroscopic chromosomal abnormalities.
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