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成年人的骨骼能恢复流失的骨质吗?

Can the adult skeleton recover lost bone?

作者信息

LeBlanc A, Schneider V

机构信息

Baylor College of Medicine, Houston, Texas.

出版信息

Exp Gerontol. 1991;26(2-3):189-201. doi: 10.1016/0531-5565(91)90011-a.

Abstract

The loss of bone mineral with aging and subsequent development of osteoporosis is a common problem in elderly women, and as life expectancy increases, in elderly men as well. Space flight also causes bone loss and could be a limiting factor for long duration missions, such as, a Mars expedition or extended occupation of a space station. Before effective countermeasures can be devised, a thorough knowledge of the extent, location, and rate of bone loss during weightlessness is needed from actual space flight data or ground-based disuse models. In addition, the rate and extent that these losses are reversed after return from space flight are of primary importance. Although the mechanisms are not likely to be the same in aging and space flight, there are common elements. For example, strategies developed to prevent disuse bone loss or to enhance the rate of recovery following space flight might have direct applicability to clinical medicine. For various reasons, little attention has been given to recovery of bone mass following space flight. As a prelude to the design of strategies to enhance recovery of bone, this paper reviews published literature related to bone recovery in the adult. We conclude that recovery can be expected, but the rate and extent will be individual and bone site dependent. The development of strategies to encourage or enhance bone formation following space flight may be as important as implementing countermeasures during flight.

摘要

随着年龄增长而出现的骨矿物质流失以及随后发生的骨质疏松是老年女性中的常见问题,并且随着预期寿命的增加,老年男性也会出现这种情况。太空飞行也会导致骨质流失,并且可能成为长时间任务(如火星探险或长期驻守空间站)的一个限制因素。在制定有效的应对措施之前,需要从实际太空飞行数据或地面失用模型中全面了解失重状态下骨质流失的程度、位置和速率。此外,太空飞行返回后这些骨质流失的逆转速率和程度至关重要。虽然衰老和太空飞行中的机制可能不同,但存在一些共同因素。例如,为预防失用性骨质流失或提高太空飞行后恢复速率而制定的策略可能直接适用于临床医学。由于各种原因,太空飞行后骨质恢复的问题很少受到关注。作为设计促进骨质恢复策略的前奏,本文回顾了已发表的与成年人骨质恢复相关的文献。我们得出的结论是,可以预期会有恢复,但恢复的速率和程度将因人而异且取决于骨骼部位。制定鼓励或增强太空飞行后骨形成的策略可能与在飞行期间实施应对措施同样重要。

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