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使用实验室和同步辐射源的单色计算机显微断层扫描以及X射线荧光分析对骨骼结构变化进行综合分析。

Monochromatic computed microtomography using laboratory and synchrotron sources and X-ray fluorescence analysis for comprehensive analysis of structural changes in bones.

作者信息

Buzmakov Alexey, Chukalina Marina, Nikolaev Dmitry, Gulimova Victoriya, Saveliev Sergey, Tereschenko Elena, Seregin Alexey, Senin Roman, Zolotov Denis, Prun Victor, Shaefer Gerald, Asadchikov Victor

机构信息

Shubnikov Institute of Crystallography RAS , Moscow, Russian Federation.

Shubnikov Institute of Crystallography RAS , Moscow, Russian Federation ; Institute of Microelectronics Technology and High Purity Materials RAS , Moscow, Russian Federation.

出版信息

J Appl Crystallogr. 2015 May 31;48(Pt 3):693-701. doi: 10.1107/S1600576715006214. eCollection 2015 Jun 1.

Abstract

A combination of X-ray tomography at different wavelengths and X-ray fluorescence analysis was applied in the study of two types of bone tissue changes: prolonged presence in microgravity conditions and age-related bone growth. The proximal tail vertebrae of geckos were selected for investigation because they do not bear the supporting load in locomotion, which allows them to be considered as an independent indicator of gravitational influence. For the vertebrae of geckos no significant differences were revealed in the elemental composition of the flight samples and the synchronous control samples. In addition, the gecko bone tissue samples from the jaw apparatus, spine and shoulder girdle were measured. The dynamics of structural changes in the bone tissue growth was studied using samples of a human fetal hand. The hands of human fetuses of 11-15 weeks were studied. Autonomous zones of calcium accumulation were found not only in individual fingers but in each of the investigated phalanges. The results obtained are discussed.

摘要

将不同波长的X射线断层扫描与X射线荧光分析相结合,用于研究两种类型的骨组织变化:在微重力条件下的长期存在以及与年龄相关的骨骼生长。选择壁虎的近端尾椎进行研究,因为它们在运动中不承担支撑负荷,这使得它们可被视为重力影响的独立指标。对于壁虎的椎骨,飞行样本和同步对照样本的元素组成未显示出显著差异。此外,还对来自颌骨、脊柱和肩胛带的壁虎骨组织样本进行了测量。使用人类胎儿手部样本研究了骨组织生长过程中结构变化的动态。对11至15周龄的人类胎儿手部进行了研究。不仅在单个手指中,而且在每个被研究的指骨中都发现了钙积累的自主区域。对所得结果进行了讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/475a/4453975/fca19249c3b8/j-48-00693-fig1.jpg

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