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Now showing items 21-30 of 43
Mapping quantitative trait loci for cross-sectional geometry at the femoral neck
Shen, H.; Long, J. R.; Xiong, D. H.; Liu, Y. J.; Liu, Y. Z.; Xiao, P.; Zhao, L. J.; Dvornyk, V.; Zhang, Y. Y.; Rocha-Sanchez, S.; Liu, P. Y.; Li, J. L.; Deng, H. W. Mapping quantitative trait loci for cross-sectional geometry at the femoral neck. Journal of Bone and Mineral Research. 2005, NOV. 20(11):1973-1982.
Genome-wide scan identified QTLs underlying femoral neck cross-sectional geometry that are novel studied risk factors of osteoporosis
Xiong, D. H.; Shen, H.; Xiao, P.; Guo, Y. F.; Long, J. R.; Zhao, L. J.; Liu, Y. Z.; Deng, H. Y.; Li, J. L.; Recker, R. R.; Deng, H. W. Genome-wide scan identified QTLs underlying femoral neck cross-sectional geometry that are novel studied risk factors of osteoporosis. Journal of Bone and Mineral Research. 2006, MAR. 21(3):424-437.
Exclusion mapping of chromosomes 1, 4, 6 and 14 with bone mineral density in 79 Caucasian pedigrees
Chen, X. D.; Shen, H.; Lei, S. F.; Li, M. X.; Yang, Y. J.; Deng, H. W. Exclusion mapping of chromosomes 1, 4, 6 and 14 with bone mineral density in 79 Caucasian pedigrees. Bone. 2006, MAR. 38(3):450-455.
Genetic and environmental correlations between age at menarche and bone mineral density at different skeletal sites
Guo, Y.; Zhao, L. J.; Shen, H.; Guo, Y.; Deng, H. W. Genetic and environmental correlations between age at menarche and bone mineral density at different skeletal sites. Calcified tissue international. 2005, DEC. 77(6):356-360.
A follow-up linkage study for bone size variation in an extended sample
Xu, Fu-Hua; Liu, Yong-Jun; Deng, Hongyi; Huang, Qing-Yang; Zhao, Lan-Juan; Shen, Hui; Liu, Yao-Zhong; Dvornyk, Volodymyr; Conway, Theresa; Li, Jin-Long; Davies, K. M.; Recker, Robert R.; Deng, Hong-Wen. A follow-up linkage study for bone size variation in an extended sample. Bone. 2004, SEP. 35(3):777-784.
Current limitations of SNP data from the public domain for studies of complex disorders: a test for ten candidate genes for obesity and osteoporosis
Dvornyk, V.; Long, JR; Xiong, DH.; Liu, PY.; Zhao, LJ.; Shen, H.; Zhang, YY.; Liu, YJ.; Rocha-Sanchez, S.; Xiao, P.; Recker, R. R.; Deng, HW.. Current limitations of SNP data from the public domain for studies of complex disorders: a test for ten candidate genes for obesity and osteoporosis. BMC Genetics. 2004, FEB 15. 5:4.
Differentiation of Caucasians and Chinese at Bone Mass Candidate Genes: Implication for Ethnic Difference of Bone Mass
Dvornyk, V.; Liu, X. -H; Shen, H.; Lei, S. -F; Zhao, L. -J; Huang, Q. -R; Qin, Y. -J; Jiang, D. -K; Long, J. -R; Zhang, Y. -Y; Gong, G.; Recker, R. R.; Deng, H. -W. Differentiation of Caucasians and Chinese at Bone Mass Candidate Genes: Implication for Ethnic Difference of Bone Mass. Annals of Human Genetics. 2003, 05. 67(3):216-227.
A whole-genome linkage scan suggests several genomic regions potentially containing quantitative trait loci for osteoporosis
Deng, HW; Xu, FH; Huang, QY; Shen, H.; Deng, HY; Conway, T.; Liu, YJ; Liu, YZ; Li, JL; Zhang, HT; Davies, KM; Recker, RR. A whole-genome linkage scan suggests several genomic regions potentially containing quantitative trait loci for osteoporosis. Journal of Clinical Endocrinology & Metabolism. 2002, NOV. 87(11):5151-5159.
Several genomic regions potentially containing QTLs for bone size variation were identified in a whole-genome linkage scan
Deng, HW; Shen, H.; Xu, FH; Deng, HY; Conway, T.; Liu, YJ; Liu, YZ; Li, JL; Huang, QY; Davies, KM; Recker, RR. Several genomic regions potentially containing QTLs for bone size variation were identified in a whole-genome linkage scan. American Journal of Medical Genetics Part a. 2003, JUN 1. 119A(2):121-131.
A whole-genome linkage scan suggests several genomic regions potentially containing QTLs underlying the variation of stature
Deng, HW; Xu, FH; Liu, YZ; Shen, H.; Deng, HY; Huang, QY; Liu, YJ; Conway, T.; Li, JL; Davies, KM; Recker, RR. A whole-genome linkage scan suggests several genomic regions potentially containing QTLs underlying the variation of stature. American Journal of Medical Genetics. 2002, NOV 15. 113(1):29-39.