婴儿和成人斜方肌的三维肌肉结构:一项尸体初步研究

Anatomy Pub Date : 2021-04-01 DOI:10.2399/ana.20.828627
Mikaela L. Stiver, Luke R. Bradshaw, Ethan M. Breinhorst, A. Agur, S. Mirjalili
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摘要

目的:人体斜方肌的精细形态测量有助于其参与肩带的许多主动运动和上肢的被动稳定。尽管斜方肌的功能在整个生命周期中都很重要,但人们对其在出生后任何时间点的三维结构知之甚少。因此,这项初步尸体研究的目的是数字化,量化,建模,并比较两个极端时间点斜方肌的三维结构:婴儿期和成年期。方法:对两具年龄分别为6个月和72岁的女性福尔马林尸体进行斜方肌检查。我们一丝不苟地解剖了每一块肌肉,使我们能够在纤维束水平上就地数字化和建模全面的肌肉结构。我们量化了标准的结构参数,以便于比较斜方肌的每个功能分区(即下降、横向、上升)以及婴儿和成人标本之间的比例。结果:我们发现肌肉内部和肌肉之间的纤维束长度范围、生理横截面积和肌肉体积有明显不同的模式。值得注意的是,婴儿的上升和下降分区的比例生理横截面积相等(1:1),而成人则为3:1。横向分割比例相似,占整个肌肉生理横截面积的一半以上。结论:该研究以无与伦比的细节和精度为婴儿和成人斜方肌结构提供了初步的见解。可量化的体系结构差异似乎与功能开发相一致,这一概念值得在更大的样本和纵向方法中进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-dimensional muscle architecture of the infant and adult trapezius: a cadaveric pilot study
Objectives: The elaborate morphometry of the human trapezius muscle facilitates its involvement in numerous active movements of the shoulder girdle and passive stabilization of the upper extremity. Despite its functional importance throughout the lifespan, little is known about the 3D architecture of trapezius at any post-natal timepoints. Accordingly, the aim of this preliminary cadaveric study was to digitize, quantify, model, and compare the 3D architecture of trapezius at two temporal extremes: infancy and adulthood. Methods: We examined trapezius in two female formalin-embalmed cadavers, aged 6 months and 72 years, respectively. We meticulously dissected each muscle, allowing us to digitize and model the comprehensive muscle architecture in situ at the fiber bundle level. We quantified standard architectural parameters to facilitate comparison between each functional partition of trapezius (i.e., descending, transverse, ascending) and proportionally between the infant and adult specimens. Results: We found markedly different patterns in fiber bundle length range, physiological cross-sectional area, and muscle volume within and between muscles. Notably, the proportional physiological cross-sectional area of the ascending and descending partitions was equal (1:1) in the infant, in contrast to 3:1 in the adult. The transverse partitions were proportionally similar, accounting for over half of the whole muscle physiological cross-sectional area in both specimens. Conclusion: This study provides preliminary insights into infant and adult trapezius architecture at an unparalleled level of detail and precision. The quantifiable architectural differences appear to coincide with functional development-a notion that warrants further investigation in larger samples and with longitudinal approaches.
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