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Michael Krawczak

Biographic Data

ID5485736
NAMEMichael Krawczak
GIVEN NAMESMichael
FAMILY NAMEKrawczak
SIGNATUREKRAWCZAK M
AFFILIATIONSChristian-Albrechts-Universität zu Kiel
ORCID0000-0003-2603-1502
VERIFIEDYes
TOTAL WORKS6
TOTAL CITATIONS0
AUTHOR COUNT6
EDITOR COUNT0
FIRST PUBLICATION YEAR1993
LATEST PUBLICATION YEAR2022
H-INDEX0
  • Carrier detection probabilities for autosomal recessive variants in unrelated and consanguineous couples — an evaluation of the 86 genes of the ACMG ‘Tier 3’ panel

    Open Access•Jörg Schmidtke, Michael Krawczak•ARTICLE•Journal of Community Genetics•2022

    Carrier screening for autosomal recessive variants has become a cornerstone of community and public health genetics. While the first carrier screening programs were confined to conditions with relatively high prevalence, and hence well-known carrier frequency, the number of candidate genes has increased greatly since the advent of high-throughput DNA sequencing technologies. The epidemiological database of the ensuing gene panels is mostly sparse…

  • Linking pre-existing biorepositories for medical research

    Open Access•Wolfgang Lieb, Gunnar Jacobs et al.•ARTICLE•Journal of Community Genetics•2019

    The significance of human biorepositories for modern medical research, particularly for comprehensive population-based genetic analyses, is constantly growing. While large and centralized institutions are usually considered best suited to meet the increasing demand for high-quality "biobanks," most medical research institutions still host rather heterogeneous and fragmented biobanking activities, undertaken by clinical departments with oftentimes…

  • Genetic studies on the Cayo Santiago rhesus macaques

    Open Access•Anja Widdig, Matthew J Kessler et al.•ARTICLE•American Journal of Primatology•2016

    Genetic studies not only contribute substantially to our current understanding of the natural variation in behavior and health in many species, they also provide the basis of numerous in vivo models of human traits. Despite the many challenges posed by the high level of biological and social complexity, a long lifespan and difficult access in the field, genetic studies of primates are particularly rewarding because of the close evolutionary relat…

  • How obedience of marriage rules may counteract genetic drift

    Open Access•Michael Krawczak, R H Barnes•ARTICLE•Journal of Community Genetics•2010

  • Multiple sirehood in free‐ranging twin rhesus macaques ( Macaca mulatta )

    Open Access•Fred B Bercovitch, Anja Widdig et al.•ARTICLE•American Journal of Primatology•2002

    Rhesus macaque females regularly copulate with a number of partners, and produce a single offspring per reproductive cycle in over 99% of cases. We used genotyping of 10 STR markers to determine paternity in the Cayo Santiago population of rhesus macaques. About 1,500 monkeys have been analyzed to date, with their marker genotypes entered into a computerized database. These data enable us to report the first documented case in any cercopithecine …

  • Power and limits of DNA-profiling in primate populations

    Open Access•Michael Krawczak, John D Berard et al.•ARTICLE•Primates•1993

No prominent works on this page.

  • Power and limits of DNA-profiling in primate populations

    Open Access•Michael Krawczak, John D Berard et al.•ARTICLE•Primates•1993

  • Multiple sirehood in free‐ranging twin rhesus macaques ( Macaca mulatta )

    Open Access•Fred B Bercovitch, Anja Widdig et al.•ARTICLE•American Journal of Primatology•2002

    Rhesus macaque females regularly copulate with a number of partners, and produce a single offspring per reproductive cycle in over 99% of cases. We used genotyping of 10 STR markers to determine paternity in the Cayo Santiago population of rhesus macaques. About 1,500 monkeys have been analyzed to date, with their marker genotypes entered into a computerized database. These data enable us to report the first documented case in any cercopithecine …

  • How obedience of marriage rules may counteract genetic drift

    Open Access•Michael Krawczak, R H Barnes•ARTICLE•Journal of Community Genetics•2010

  • Genetic studies on the Cayo Santiago rhesus macaques

    Open Access•Anja Widdig, Matthew J Kessler et al.•ARTICLE•American Journal of Primatology•2016

    Genetic studies not only contribute substantially to our current understanding of the natural variation in behavior and health in many species, they also provide the basis of numerous in vivo models of human traits. Despite the many challenges posed by the high level of biological and social complexity, a long lifespan and difficult access in the field, genetic studies of primates are particularly rewarding because of the close evolutionary relat…

  • Linking pre-existing biorepositories for medical research

    Open Access•Wolfgang Lieb, Gunnar Jacobs et al.•ARTICLE•Journal of Community Genetics•2019

    The significance of human biorepositories for modern medical research, particularly for comprehensive population-based genetic analyses, is constantly growing. While large and centralized institutions are usually considered best suited to meet the increasing demand for high-quality "biobanks," most medical research institutions still host rather heterogeneous and fragmented biobanking activities, undertaken by clinical departments with oftentimes…

  • Carrier detection probabilities for autosomal recessive variants in unrelated and consanguineous couples — an evaluation of the 86 genes of the ACMG ‘Tier 3’ panel

    Open Access•Jörg Schmidtke, Michael Krawczak•ARTICLE•Journal of Community Genetics•2022

    Carrier screening for autosomal recessive variants has become a cornerstone of community and public health genetics. While the first carrier screening programs were confined to conditions with relatively high prevalence, and hence well-known carrier frequency, the number of candidate genes has increased greatly since the advent of high-throughput DNA sequencing technologies. The epidemiological database of the ensuing gene panels is mostly sparse…

Biology (5 works) · Demography (4 works) · Evolutionary biology (4 works) · Gene (4 works) · Genetics (4 works) · Population (4 works) · Primate (3 works) · Primate Behavior and Ecology (3 works) · Zoology (3 works) · Animal Behavior and Reproduction (2 works)

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