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肌肉成熟过程中的生长结构模型。

Architectural model for muscle growth during maturation.

机构信息

Department of Motion and Exercise Science, University of Stuttgart, Stuttgart, Germany.

Institute of Mechanics and Adaptronics, Technische Universität Braunschweig, Braunschweig, Germany.

出版信息

Biomech Model Mechanobiol. 2021 Oct;20(5):2031-2044. doi: 10.1007/s10237-021-01492-y. Epub 2021 Jul 24.

Abstract

Muscle architecture, which includes parameters like fascicle length, pennation angle, and physiological cross-sectional area, strongly influences skeletal muscles' mechanical properties. During maturation, the muscle architecture has to adapt to a growing organism. This study aimed to develop an architectural model capable of predicting the complete 3D fascicle architecture for primarily unipennate muscles of an arbitrary age, based on fascicle data for an initial age. For model development, we collected novel data on 3D muscle architecture of the rabbit (Oryctolagus cuniculus) M. plantaris of eight animals ranging in age from 29 to 106 days. Experimental results show that plantaris muscle belly length increases by 73%, whereas mean fascicle length and mean pennation angle increases by 39 and 14%, respectively. Those changes were incorporated into the model. In addition to the data collected for M. plantaris the predictions of the model were compared to existing literature data of rabbit M. soleus and M. gastrocnemius medialis. With an error of -1.0 ± 8.6% for relative differences in aponeurosis length, aponeurosis width, muscle height, and muscle mass, the model delivered good results matching interindividual differences. For future studies, the model could be utilized to generate realistic architectural data sets for simulation studies.

摘要

肌肉结构包括肌束长度、羽状角和生理横截面积等参数,强烈影响骨骼肌的机械特性。在成熟过程中,肌肉结构必须适应不断生长的生物体。本研究旨在开发一种能够基于初始年龄的肌束数据预测任意年龄主要为一单羽状的骨骼肌完整 3D 肌束结构的结构模型。为了进行模型开发,我们收集了 8 只兔子(Oryctolagus cuniculus)M. plantaris 的 3D 肌肉结构的新数据,这些兔子的年龄从 29 到 106 天不等。实验结果表明,兔子的跖肌(plantaris muscle)肌腹长度增加了 73%,而平均肌束长度和平均羽状角分别增加了 39%和 14%。这些变化被纳入了模型中。除了为 M. plantaris 收集的数据外,该模型的预测结果还与兔子的 M. soleus 和 M. gastrocnemius medialis 的现有文献数据进行了比较。模型的预测结果与个体间差异相匹配,相对差异的误差为-1.0±8.6%,用于跟腱长度、跟腱宽度、肌肉高度和肌肉质量。对于未来的研究,该模型可以用于生成用于模拟研究的现实结构数据集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5225/8450218/f519f6c36faf/10237_2021_1492_Fig1_HTML.jpg

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