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1800 - 1970年美国长骨长度和比例的长期变化。

Secular change in long bone length and proportion in the United States, 1800-1970.

作者信息

Jantz L M, Jantz R L

机构信息

Department of Anthropology, University of Tennessee, Knoxville, Tennessee 37996-0720, USA.

出版信息

Am J Phys Anthropol. 1999 Sep;110(1):57-67. doi: 10.1002/(SICI)1096-8644(199909)110:1<57::AID-AJPA5>3.0.CO;2-1.

Abstract

We examine secular change in long bone lengths and allometry of Americans dating from the mid-19th century to the 1970s. Skeletal samples were derived from the Huntington Collection, Terry Collection, World War II casualties, and the Forensic Anthropology Data Bank. Regression of bone length on year of birth allowed evaluation of the secular change in bone length. Size was computed as the geometric mean of all bone lengths, and shape as the ratio of each bone to size. These variables were then regressed on year of birth, allowing evaluation of allometric secular change. The results revealed a pattern of change that can be summarized as follows: male secular change is stronger than female, lower limb bone secular change is more pronounced than upper limb bone change, and distal bones change more than proximal bones, particularly in the lower limb. In males, white changes are uniformly higher than black but these differences do not rise to the level of statistical significance. Environmental forces, such as nutrition and disease, are the usual causes of secular changes in overall size. This paper shows that long bone proportions also respond to these same environmental factors. Moreover, the changes in body proportion are likely to be due to allometric consequences of growth changes that occur early in life. Am J Phys Anthropol 110:57-67, 1999.

摘要

我们研究了从19世纪中叶到20世纪70年代美国人的长骨长度和异速生长的长期变化。骨骼样本来自亨廷顿收藏、特里收藏、二战伤亡者以及法医人类学数据库。通过对骨长度与出生年份进行回归分析,得以评估骨长度的长期变化。尺寸计算为所有骨长度的几何平均值,形状则为每根骨头与尺寸的比值。然后将这些变量与出生年份进行回归分析,从而评估异速生长的长期变化。结果揭示了一种变化模式,可总结如下:男性的长期变化强于女性,下肢骨的长期变化比上肢骨更为明显,远端骨骼的变化大于近端骨骼,尤其是在下肢。在男性中,白人的变化始终高于黑人,但这些差异未达到统计学显著水平。环境因素,如营养和疾病,是总体尺寸长期变化的常见原因。本文表明,长骨比例也对这些相同的环境因素做出反应。此外,身体比例的变化可能是由于生命早期发生的生长变化的异速生长后果。《美国体质人类学杂志》110:57 - 67,1999年。

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