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脊柱前凸优化了维持稳定直立姿势的需求。

Spinal lordosis optimizes the requirements for a stable erect posture.

作者信息

Wagner Heiko, Liebetrau Anne, Schinowski David, Wulf Thomas, de Lussanet Marc H E

机构信息

Motion Science, Westf, Wilhelms-Universität Münster, Horstmarer Landweg 62b, 48149 Münster.

出版信息

Theor Biol Med Model. 2012 Apr 16;9:13. doi: 10.1186/1742-4682-9-13.

Abstract

BACKGROUND

Lordosis is the bending of the lumbar spine that gives the vertebral column of humans its characteristic ventrally convex curvature. Infants develop lordosis around the time when they acquire bipedal locomotion. Even macaques develop a lordosis when they are trained to walk bipedally. The aim of this study was to investigate why humans and some animals develop a lumbar lordosis while learning to walk bipedally.

RESULTS

We developed a musculoskeletal model of the lumbar spine, that includes an asymmetric, dorsally shifted location of the spinal column in the body, realistic moment arms, and physiological cross-sectional areas (PCSA) of the muscles as well as realistic force-length and force-velocity relationships. The model was used to analyze the stability of an upright body posture. According to our results, lordosis reduces the local joint torques necessary for an equilibrium of the vertebral column during an erect posture. At the same time lordosis increases the demands on the global muscles to provide stability.

CONCLUSIONS

We conclude that the development of a spinal lordosis is a compromise between the stability requirements of an erect posture and the necessity of torque equilibria at each spinal segment.

摘要

背景

腰椎前凸是腰椎的弯曲,它使人类的脊柱呈现出其特有的腹侧凸曲线。婴儿在获得双足行走能力时会出现腰椎前凸。甚至猕猴在经过双足行走训练后也会出现腰椎前凸。本研究的目的是探究人类和一些动物在学习双足行走时为何会出现腰椎前凸。

结果

我们构建了一个腰椎的肌肉骨骼模型,该模型包括脊柱在身体中不对称的、背侧移位的位置、实际的力臂、肌肉的生理横截面积(PCSA)以及实际的力-长度和力-速度关系。该模型用于分析直立身体姿势的稳定性。根据我们的结果,腰椎前凸可降低直立姿势时脊柱平衡所需的局部关节扭矩。同时,腰椎前凸增加了对全局肌肉提供稳定性的需求。

结论

我们得出结论,脊柱前凸的发展是直立姿势稳定性要求与每个脊柱节段扭矩平衡必要性之间的一种折衷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8bf/3349546/944225902bdb/1742-4682-9-13-1.jpg

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