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一项高分辨率外周定量CT研究:现代人类的左右侧性和握力对手骨微观结构的影响

Laterality and grip strength influence hand bone micro-architecture in modern humans, an HRpQCT study.

作者信息

Reina Nicolas, Cavaignac Etienne, Trousdale William H, Laffosse Jean-Michel, Braga José

机构信息

Orthopedic and Trauma Surgery Department, Hôpital Pierre Paul Riquet, Centre Hospitalier Universitaire de Toulouse, Toulouse, France.

Laboratoire d'Anthropobiologie AMIS, UMR 5288 CNRS, Université Paul Sabatier, Toulouse, France.

出版信息

J Anat. 2017 Jun;230(6):796-804. doi: 10.1111/joa.12608. Epub 2017 Apr 19.

Abstract

It is widely hypothesized that mechanical loading, specifically repetitive low-intensity tasks, influences the inner structure of cancellous bone. As such, there is likely a relationship between handedness and bone morphology. The aim of this study is to determine patterns in trabecular bone between dominant and non-dominant hands in modern humans. Seventeen healthy patients between 22 and 32 years old were included in the study. Radial carpal bones (lunate, capitate, scaphoid, trapezium, trapezoid, 1st, 2nd and 3rd metacarpals) were analyzed with high-resolution micro-computed tomography. Additionally, crush and pinch grip were recorded. Factorial analysis indicated that bone volume ratio, trabeculae number (Tb.N), bone surface to volume ratio (BS.BV), body weight, stature and crush grip were all positively correlated with principal components 1 and 2 explaining 78.7% of the variance. Volumetric and trabecular endostructural parameters (BV/TV, BS/BV or Tb.Th, Tb.N) explain the observed inter-individual variability better than anthropometric or clinical parameters. Factors analysis regressions showed correlations between these parameters and the dominant side for crush strength for the lunate (r = 0.640, P < 0.0001), trapezium (r = 0.836, P < 0.0001) and third metacarpal (r = 0.763). However, despite a significant lateralization in grip strength for all patients, the endostructural variability between dominant and non-dominant sides was limited in perspective to inter-individual differences. In conclusion, handedness is unlikely to generate trabecular patterns of asymmetry. It appears, however, that crush strength can be considered for endostructural analysis in the modern human wrist.

摘要

人们普遍推测,机械负荷,特别是重复性低强度任务,会影响松质骨的内部结构。因此,利手与骨骼形态之间可能存在关联。本研究的目的是确定现代人类优势手和非优势手之间小梁骨的模式。该研究纳入了17名年龄在22至32岁之间的健康患者。使用高分辨率微型计算机断层扫描分析桡腕骨(月骨、头状骨、舟骨、大多角骨、小多角骨、第1、2和3掌骨)。此外,记录了挤压和捏握力。因子分析表明,骨体积比、小梁数量(Tb.N)、骨表面积与体积比(BS.BV)、体重、身高和挤压握力均与主成分1和2呈正相关,这两个主成分解释了78.7%的方差。体积和小梁内部结构参数(BV/TV、BS/BV或Tb.Th、Tb.N)比人体测量或临床参数能更好地解释观察到的个体间变异性。因子分析回归显示,这些参数与月骨(r = 0.640,P < 0.0001)、大多角骨(r = 0.836,P < 0.0001)和第三掌骨(r = 0.763)的优势侧挤压强度之间存在相关性。然而,尽管所有患者的握力都有明显的偏侧化,但从个体间差异的角度来看,优势侧和非优势侧之间的内部结构变异性是有限的。总之,利手不太可能产生不对称的小梁模式。然而,在现代人类手腕的内部结构分析中,挤压强度似乎可以作为一个考虑因素。

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