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0025034355
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Amplification of a variable number of tandem repeat (VNTR) locus (pMCT118) by the polymerase chain reaction (PCR) and its application to forensic science
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0025968683
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Analysis of the VNTR locus D1S80 by the PCR followed by high-resolution PAGE
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0027212218
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Amplified fragment length polymorphism analysis of the VNTR locus D1S80 in central Spain
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0029017091
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D1S80 population data in African Americans, Caucasians, Southeastern Hispanics, Southwestern Hispanics, and Orientals
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Badowle B, Baechtel FS, Smerick JB, Presley KW, Giusti AM, Parsons G, Alevy M, Chakraborty R. D1S80 population data in African Americans, Caucasians, Southeastern Hispanics, Southwestern Hispanics, and Orientals. J Forensic Sci 1995;40:38-44.
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0028988913
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Validation of the AmpiFLP D1S80 Amplification Kit for forensic casework analysis according to TWGDAM guidelines
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0029561374
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Statistical analysis of an Australian population for the loci Gc, HLA-DQA1, D1S80, and HMUTHO1
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Gutowski S, Budowle B, Auer J, van Oorschot R. Statistical analysis of an Australian population for the loci Gc, HLA-DQA1, D1S80, and HMUTHO1. Forens Sci Int (in press).
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0029095986
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Arab population data on the PCR-based loci: HLA-DQA1, LDLR, GYPA, HBGG, D7S8, Gc, and D1S80
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Hayes JM, Budowle B, Freund M. Arab population data on the PCR-based loci: HLA-DQA1, LDLR, GYPA, HBGG, D7S8, Gc, and D1S80. J Forensic Sci 1995;40:888-92.
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Typing of DNA extracted from compact bone tissue from human remains
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Hochmeister MN, Budowle B, Borer UV, Eggmann UT, Comey CT, Dirnhofer R. Typing of DNA extracted from compact bone tissue from human remains. J Forensic Sci 1991;36:1649-61.
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0025817815
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PCR-based typing of DNA extracted from cigarette butts
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Hochmeister MN, Budowle B, Jung J, Borer UV, Comey CT, Dimhofer R. PCR-based typing of DNA extracted from cigarette butts. Int J Leg Med 1991;104:229-33.
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12
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0027467434
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PCR-amplification and detection of the human D1S80 VNTR locus: Amplification conditions, population genetics, and application in forensic analysis
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Kloosterman AD, Budowle B, Daselaar P. PCR-amplification and detection of the human D1S80 VNTR locus: amplification conditions, population genetics, and application in forensic analysis. Int J Leg Med 1993;105:257-64.
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Kloosterman, A.D.1
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Isolation and mapping of a polymorphic DNA sequence (pMCT118) on chromosome 1p (D1S80)
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Nakamura Y, Carlson M, Krapcho V, White R. Isolation and mapping of a polymorphic DNA sequence (pMCT118) on chromosome 1p (D1S80). Nucleic Acids Res 1988;16:9364.
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0026533710
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Population genetics and forensic efficiency data of four AMPFLPs
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Rand S, Puers C, Skowasch K, Wiegand P, Budowle B, Brinkmann B. Population genetics and forensic efficiency data of four AMPFLPs. Int J Leg Med 1992;104:329-33.
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0025950479
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The polymerase chain reaction and post-mortem forensic identity testing: Application of amplified D1S80 and HLA-DQ alpha loci to the identification of fire victims
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Sajantila A, Strom M, Budowle B, Karhunen PJ, Peltonen L. The polymerase chain reaction and post-mortem forensic identity testing: application of amplified D1S80 and HLA-DQ alpha loci to the identification of fire victims. Forensic Sci Int 1991;51:23-34.
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16
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0026509369
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PCR amplification of alleles at the D1S80 locus: Comparison of a Finnish and a North American Caucasian population sample, and forensic casework evaluation
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Sajantila A, Budowle B, Strom M, Johnson V, Lukka H, Peltonen L, Enholm C. PCR amplification of alleles at the D1S80 locus: Comparison of a Finnish and a North American Caucasian population sample, and forensic casework evaluation. Am J Hum Genet 1992;50:816-25.
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17
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0030071280
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Navajo, Pueblo, and Sioux population data on the loci HLA-DQA1, LDLR, GYPA, HBGG, D7S8, Gc, and D1S80
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Scholl S, Budowle B, Radecki K, Salvo M. Navajo, Pueblo, and Sioux population data on the loci HLA-DQA1, LDLR, GYPA, HBGG, D7S8, Gc, and D1S80. J Forensic Sci 1996;41:47-51.
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18
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pMCT118 (D1S80): A new allelic ladder and improved electrophoretic separation lead to the demonstration of 28 alleles
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Skowasch K, Wiegand P, Brinkmann B. pMCT118 (D1S80): a new allelic ladder and improved electrophoretic separation lead to the demonstration of 28 alleles. Int J Leg Med 1992;105:165-68.
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19
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0029052815
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Korean population data on the PCR-based loci LDLR, GYPA, HBGG, D7S8, Gc, HLA-DQA1, and D1S80
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Woo KM, Budowle B. Korean population data on the PCR-based loci LDLR, GYPA, HBGG, D7S8, Gc, HLA-DQA1, and D1S80. J Forensic Sci 1995;40:645-48.
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Sex identification of forensic specimens by polymerase chain reaction (PCR): Two alternative methods
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0026595764
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Sex determination of forensic samples by dual PCR amplification of an X-Y homologous gene
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Akane A, Seki A, Shiono H, Nakamura H, Hasegawa M, Kagawa M, Matsubara K, Nakahori Y, Nagafuchi S, Nakagome Y. Sex determination of forensic samples by dual PCR amplification of an X-Y homologous gene. Forensic Sci Int 1992;52:143-48.
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0029003380
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HLA-DQA1 and amelogenin coamplification: A handy tool for identification
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Casarino L, De Stefano F, Mannucci A, Canale M. HLA-DQA1 and amelogenin coamplification: a handy tool for identification. J Forensic Sci 1995;40:456-58.
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0028212667
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Forensic application of a rapid and quantitative DNA sex test by amplification of the X-Y homologous gene amelogenin
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Mannucci A, Sullivan KM, Ivanov PL, Gill P. Forensic application of a rapid and quantitative DNA sex test by amplification of the X-Y homologous gene amelogenin. Int J Leg Med 1994;106:190-93.
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Sex identification by polymerase chain reaction using X-Y homologous primers
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A rapid and quantitative DNA sex test: Fluorescence based PCR analysis of X-Y Homologous gene amelogenin
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DNA extraction strategies for amplified fragment length polymorphism analysis
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A simple method for quantifying human genomic DNA in forensic specimen extracts
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