Larry A. Kuehn, Ph.D.

Affiliations: 
2005 Virginia Polytechnic Institute and State University, Blacksburg, VA, United States 
Area:
Animal Culture and Nutrition Agriculture, Statistics, Genetics, Veterinary Science Biology
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"Larry Kuehn"

Parents

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David R. Notter grad student 2005 Virginia Tech
 (Implications of connectedness in the genetic evaluation of livestock.)
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Publications

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Keele JW, Foraker BA, Boldt R, et al. (2024) Genetic parameters for carcass traits of progeny of beef bulls mated to dairy cows. Journal of Animal Science
Snelling WM, Thallman RM, Spangler ML, et al. (2022) Breeding Sustainable Beef Cows: Reducing Weight and Increasing Productivity. Animals : An Open Access Journal From Mdpi. 12
Baller JL, Kachman SD, Kuehn LA, et al. (2022) Using pooled data for genomic prediction in a bivariate framework with missing data. Journal of Animal Breeding and Genetics = Zeitschrift Fur Tierzuchtung Und Zuchtungsbiologie
Abbas W, Howard JT, Paz HA, et al. (2020) Influence of host genetics in shaping the rumen bacterial community in beef cattle. Scientific Reports. 10: 15101
Paim TDP, Hay EHA, Wilson C, et al. (2020) Genomic Breed Composition of Selection Signatures in Brangus Beef Cattle. Frontiers in Genetics. 11: 710
Baller JL, Kachman SD, Kuehn LA, et al. (2020) Genomic prediction using pooled data in a single-step GBLUP framework. Journal of Animal Science
Rathert AR, Meyer AM, Foote AP, et al. (2020) Ruminal transcript abundance of the centromere-associated protein E gene may influence residual feed intake in beef steers. Animal Genetics
Paim TDP, Hay EHA, Wilson C, et al. (2020) Dynamics of genomic architecture during composite breed development in cattle. Animal Genetics
Freetly HC, Kuehn LA, Thallman RM, et al. (2020) Heritability and genetic correlations of feed intake, body weight gain, residual gain, and residual feed intake of beef cattle as heifers and cows. Journal of Animal Science. 98
Keel BN, Snelling WM, Lindholm-Perry AK, et al. (2019) Using SNP Weights Derived From Gene Expression Modules to Improve GWAS Power for Feed Efficiency in Pigs. Frontiers in Genetics. 10: 1339
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