The Experts below are selected from a list of 907935 Experts worldwide ranked by ideXlab platform
Bruce Budowle - One of the best experts on this subject based on the ideXlab platform.
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The Slovenian Population data on the PCR based loci HLA-DQA1, LDLR, GYPA, HBGG, D7S8, GC, and D1S80.
Journal of forensic sciences, 2000Co-Authors: Katja Drobnič, Aleksander Regent, Bruce BudowleAbstract:Allele frequencies for the loci HLA-DQA1, LDLR, GYPA, HBGG, D7S8, GC, and D1S80 were determined for a Sample Population of unrelated individuals from Slovenia. All loci meet Hardy-Weinberg expectations, except the loci GYPA (p = 0.041) and D1S80 (p = 0.009). There is little evidence for association of alleles among the seven loci. Only one out of 21 pairwise comparisons demonstrated departures from independence (HLA-DQA1/HBGG, p = 0.008). The allelic frequency data generally are similar to that of U.S. Caucasians.
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ARAB Population DATA ON THE PCR-BASED LOCI : HLA-DQA1, LDLR, GYPA, HBGG, D7S8, GC, AND D1S80
Journal of forensic sciences, 1995Co-Authors: Jeanne M. Hayes, Bruce Budowle, Maya FreundAbstract:Allele and genotype frequencies for seven polymerase chain reaction (PCR)-based DNA genetic markers were determined in an Arab Sample Population. The loci analyzed were HLA-DQA1, LDLR, GYPA, HBGG, D7S8, Gc and D1S80. Results were obtained from the first six loci using the AmpliType HLA-DQα DNA and AmpliType PM PCR Amplification and Typing Kits. The VNTR locus D1S80 PCR product was analyzed by polyacrylamide electrophoresis and silver staining. All loci meet Hardy-Weinberg expectations. The frequency data can be used in forensic analyses and paternity tests to estimate the frequency of a DNA profile in the Arab Population.
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swiss Population data on the loci hla dqα ldlr gypa hbgg d7s8 gc and d1s80
Forensic Science International, 1994Co-Authors: Manfred N Hochmeister, Bruce Budowle, Urs V Borer, Richard DirnhoferAbstract:Allele and genotype frequencies for seven polymerase chain reaction-based DNA genetic markers were determined in a Swiss Sample Population. The loci are D1S80, HLA-DQ alpha, low density lipoprotein receptor, glycophorin A, hemoglobin G gammaglobin, D7S8, and group-specific component. All loci meet Hardy-Weinberg expectations. In addition, there is no detectable association of alleles between loci. The frequency data can be used in forensic analyses and paternity tests to estimate the frequency of a DNA profile in the Swiss Population.
Ali El Karmi - One of the best experts on this subject based on the ideXlab platform.
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Jordanian Population data on the PCR-based loci: LDLR, GYPA, HBGG, D7S8 and GC
Forensic science international, 1999Co-Authors: Salem R. Yasin, Mawieh Hamad, Ali El KarmiAbstract:Genotype and allele frequency distributions for PM polymerase chain reaction (PCR)-based genetic markers were determined in a Jordanian Sample Population. Results were obtained using the AmpliType PM PCR Amplification and typing kit. All loci were in agreement with the Hardy-Weinberg equilibrium expectations. The predominant alleles for LDLR, GYPA, HBGG, D7S8 and GC loci were B, A, B, A and C respectively. No statistically significant variation was detected in allele frequencies of these loci in Jordanians compared to that in Israeli Arab, U.S Caucasian and Japanese Populations. Data presented here can be used to estimate the frequency of a specific DNA profile in the Jordanian Population for forensic analyses and paternity testing.
Richard Dirnhofer - One of the best experts on this subject based on the ideXlab platform.
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swiss Population data on the loci hla dqα ldlr gypa hbgg d7s8 gc and d1s80
Forensic Science International, 1994Co-Authors: Manfred N Hochmeister, Bruce Budowle, Urs V Borer, Richard DirnhoferAbstract:Allele and genotype frequencies for seven polymerase chain reaction-based DNA genetic markers were determined in a Swiss Sample Population. The loci are D1S80, HLA-DQ alpha, low density lipoprotein receptor, glycophorin A, hemoglobin G gammaglobin, D7S8, and group-specific component. All loci meet Hardy-Weinberg expectations. In addition, there is no detectable association of alleles between loci. The frequency data can be used in forensic analyses and paternity tests to estimate the frequency of a DNA profile in the Swiss Population.
Salem R. Yasin - One of the best experts on this subject based on the ideXlab platform.
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Jordanian Population data on the PCR-based loci: LDLR, GYPA, HBGG, D7S8 and GC
Forensic science international, 1999Co-Authors: Salem R. Yasin, Mawieh Hamad, Ali El KarmiAbstract:Genotype and allele frequency distributions for PM polymerase chain reaction (PCR)-based genetic markers were determined in a Jordanian Sample Population. Results were obtained using the AmpliType PM PCR Amplification and typing kit. All loci were in agreement with the Hardy-Weinberg equilibrium expectations. The predominant alleles for LDLR, GYPA, HBGG, D7S8 and GC loci were B, A, B, A and C respectively. No statistically significant variation was detected in allele frequencies of these loci in Jordanians compared to that in Israeli Arab, U.S Caucasian and Japanese Populations. Data presented here can be used to estimate the frequency of a specific DNA profile in the Jordanian Population for forensic analyses and paternity testing.
Manfred N Hochmeister - One of the best experts on this subject based on the ideXlab platform.
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swiss Population data on the loci hla dqα ldlr gypa hbgg d7s8 gc and d1s80
Forensic Science International, 1994Co-Authors: Manfred N Hochmeister, Bruce Budowle, Urs V Borer, Richard DirnhoferAbstract:Allele and genotype frequencies for seven polymerase chain reaction-based DNA genetic markers were determined in a Swiss Sample Population. The loci are D1S80, HLA-DQ alpha, low density lipoprotein receptor, glycophorin A, hemoglobin G gammaglobin, D7S8, and group-specific component. All loci meet Hardy-Weinberg expectations. In addition, there is no detectable association of alleles between loci. The frequency data can be used in forensic analyses and paternity tests to estimate the frequency of a DNA profile in the Swiss Population.