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Femur-bending properties as influenced by gravity: I. Ultimate load and moment for 3-G rats.

作者信息

Wunder C C, Cook K M, Welch R C, Glade R, Fleming B P

出版信息

Aviat Space Environ Med. 1977 Apr;48(4):339-46.

PMID:860979
Abstract

Fresh experimental bones can withstand greater bending forces and moments after 1.0 to 2.5 weeks of 3-G exposure. This appears more attributable to a 50% greater strength of bone material than to effects upon size or shape, and is most measurable for animals of 5 to 8 weeks of age. Experimental bone material seems to grow to its mature level at a younger age rather than there being so marked an effect upon the mature level itself. We simulated 3.1 G by chronic centrifugation of 66 albino rats and compared them to 63 1-G controls. Extrapolation of the simplest mathematical description of the present results to weaker, zero-G bones could be tested by a total of 60 space-based control and experimental animals. A flight of only 15 animals would be necessary for comparison to ground-based control animals. This is consistent with reports of bone demineralization during space-flight. In light of the differences in bone histology, however, extrapolation of these results to humans would be premature and, if at all applicable, are most likely to be so for children rather than adults.

摘要

相似文献

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Femur-bending properties as influenced by gravity: I. Ultimate load and moment for 3-G rats.
Aviat Space Environ Med. 1977 Apr;48(4):339-46.
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引用本文的文献

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Effect of a hypergravity environment on cortical bone elasticity in rats.
Calcif Tissue Int. 1996 Sep;59(3):214-7. doi: 10.1007/s002239900111.
2
Effect of chronic centrifugation on bone density of the dog.
Anat Embryol (Berl). 1978 Jun 12;153(3):321-9. doi: 10.1007/BF00315934.