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雄性大鼠不同骨骼部位骨矿物质密度、横截面积和强度的年龄相关变化。

Age-related changes in bone mineral density, cross-sectional area and strength at different skeletal sites in male rats.

作者信息

Iida Haruzo, Fukuda Satoshi

机构信息

International Space Radiation Laboratory, National Institute of Radiological Sciences, Chiba-shi, Chiba, Japan.

出版信息

J Vet Med Sci. 2002 Jan;64(1):29-34. doi: 10.1292/jvms.64.29.

Abstract

Age-related changes in bone mineral density (BMD), cross-sectional area and strength strain index (SSI) of the long bones in the limbs and first lumbar vertebra of male Wistar rats were measured by a peripheral quantitative computed tomography (pQCT) method. One hundred and ten rats aged 2-30 months were used. The results indicate that the total (cortical + trabecular), cortical and trabecular BMD values of the metaphysis and cortical BMD values of the diaphysis in the long bones varied for each bone and differed from those of the first lumbar vertebra. The total BMD of long bones showed high values at 6-21 months and then decreased, but these did not always coincide with cortical and trabecular BMD. The values of SSI in the long bones varied. The values of total and cortical BMD and SSI of lumbar vertebra increased for 6-12 months and then decreased, but the trabecular BMD increased after 12 months. The total area in both the long bones and the first lumbar vertebra increased with the decrease in cortical area and the increase in the trabecular area with increasing age. It was concluded that age-related changes in bones, similar to those observed in humans, could be observed in some bones and parameters, although the age in rats when the so-called peak bone mass appears in the whole skeleton could not be clearly determined.

摘要

采用外周定量计算机断层扫描(pQCT)方法,测量雄性Wistar大鼠四肢长骨及第一腰椎的骨密度(BMD)、横截面积和强度应变指数(SSI)的年龄相关变化。使用了110只2至30月龄的大鼠。结果表明,长骨干骺端的总(皮质 + 小梁)、皮质和小梁骨密度值以及骨干的皮质骨密度值因骨而异,且与第一腰椎的不同。长骨的总骨密度在6至21个月时显示出较高值,然后下降,但这些并不总是与皮质和小梁骨密度一致。长骨的SSI值各不相同。腰椎的总骨密度、皮质骨密度和SSI值在6至12个月时增加,然后下降,但小梁骨密度在12个月后增加。随着年龄的增长,长骨和第一腰椎的总面积增加,同时皮质面积减少,小梁面积增加。得出的结论是,尽管无法明确确定大鼠整个骨骼中所谓的峰值骨量出现的年龄,但在某些骨骼和参数中可以观察到与人类相似的骨骼年龄相关变化。

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