Genetic and environmental components of the population variance in bone density

被引:0
作者
E. Seeman
J. L. Hopper
机构
[1] University of Melbourne,Austin and Repatriation Medical Centre
[2] University of Melbourne,Department of Public Health and Community Medicine
来源
Osteoporosis International | 1997年 / 7卷
关键词
Lean Mass; Areal Bone Mineral Density; Basic Multicellular Unit; Total Body Lean Mass; Fractional Calcium Absorption;
D O I
暂无
中图分类号
学科分类号
摘要
Understanding of the genetic and environmental factors contributing to the differences in fracture rates between young and old, between women and men, and between races is limited. The reasons for this may partly relate to the lack of a detailed understanding of the structural basis of bone fragility. This information, although difficult to obtain because of the invasiveness of bone biopsy, will be required if advances are to occur. aBMD cannot be relied upon as an endpoint in the study of the pathophysiology of osteoporosis. Advances will require the description of the age-, gender and race-specific means and variances in trabecular number, thickness, spacing and orientation, cortical thickness, and bone size and shape in women and men of different racial groups. Subsequent comparison of the structures in young versus old, female versus male, and in racial groups may reveal the structural differences from which inferences may be made concerning the differences in fracture rates between these groups. By defining the structural basis for bone fragility, the genetic andmodifiable environmental determinants of these structures may then be identified, providing hypotheses to be tested in randomized trials aimed at reducing the incidence of fractures in these groups.
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页码:10 / 16
页数:6
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共 62 条
[1]  
Eisman JA(1995)Vitamin D receptor gene alleles and osteoporosis: an affirmative view J Bone Miner Res 10 1289-93
[2]  
Peacock M(1995)Vitamin D receptor gene alleles and osteoporosis: a contrasting view J Bone Miner Res 10 1294-7
[3]  
Krall EA(1995)Vitamin D receptor alleles and rates of bone loss: influences of years since menopause and calcium intake J Bone Miner Res 10 978-84
[4]  
Parry P(1994)Vitamin D receptor gene polymorphism and bone mineral density in healthy Japanese women Lancet 344 1027-1027
[5]  
Lichter JB(1995)Calcium absorption on high and low calcium intakes in relation to vitamin D receptor genotype J Clin Endocrinol Metab 80 3657-61
[6]  
Dawson-Hughes B(1979)Bone status and fracture rates in two regions of Yugoslavia Am J Clin Nutr 32 540-9
[7]  
Yamagata Z(1991)Effect of dietary calcium on bone density in growing rabbits Am J Physiol 260 E471-6
[8]  
Miyamura T(1997)From density to structure: growing up and growing old on the surfaces of bone J Bone Miner Res 12 1-13
[9]  
Iijima S(1964)Secular increase in height: is the end in sight? Lancet 11 1195-6
[10]  
Sasaki M(1982)Increase in length of leg relative to trunk in Japanese children and adults from 1957 to 1977: comparison with British and with Japanese Americans Ann Hum Biol 9 411-23