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Test prijenosne neravnoteže×IBD mapiranje×
PodručjeGenetikaGenetika
ObiteljProcess / pipelineProcess / pipeline
Godina nastanka19931987
TvoracRichard Spielman & Warren EwensEric Lander & David Botstein
VrstaHypothesis testGenomic mapping method
Temeljni izvorSpielman, R. S., McGinnis, R. E., & Ewens, W. J. (1993). Transmission test for linkage disequilibrium. American Journal of Human Genetics, 52(3), 506–516. link ↗Lander, E. S., & Botstein, D. (1987). Homozygosity mapping of autosomal recessive disorders in consanguineous families. American Journal of Human Genetics, 36(3), 537–551. link ↗
Drugi naziviTDT, Family-based association testIBD mapping, Autozygosity mapping, Homozygosity mapping
Srodne44
SažetakThe Transmission Disequilibrium Test (TDT) is a family-based statistical method for testing genetic association with disease or traits while inherently controlling for population stratification. Developed by Spielman and Ewens in 1993, the TDT examines whether an allele is preferentially transmitted from heterozygous parents to affected children compared to unaffected children. By comparing transmission patterns within families, the TDT avoids the confounding effects of population structure that plague case-control studies, making it particularly valuable in admixed or stratified populations.Identity-by-descent (IBD) mapping is a genetic mapping technique that identifies disease loci in consanguineous families or isolated populations by detecting homozygous chromosomal segments shared among affected individuals. Developed by Lander and Botstein in 1987, this method exploits the fact that rare disease alleles in related individuals must lie within shared ancestral DNA blocks. By mapping regions where affected individuals are homozygous at multiple markers, researchers can localize disease genes to narrowly defined genomic intervals without prior knowledge of the disease mechanism.
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ScholarGateUsporedite metode: Transmission Disequilibrium Test · IBD Mapping. Preuzeto 2026-06-18 s https://scholargate.app/hr/compare