Muscle Architecture of Leg Muscles: Functional and Clinical Significance

Q3 Medicine Acta Medica Lituanica Pub Date : 2023-11-14 DOI:10.15388/amed.2023.30.2.12
Gurpreet Kaur, R. Lalwani, Manal M. Khan, Sunita A Athavale
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Abstract

Background. Architectural properties of the muscles are the prime predictors of functional attributes and force-generating capacity of the muscles. This data is vital for musculoskeletal modelling and selecting the appropriate muscle–tendon units for tendon transfers.Cadaveric data for architectural properties is the gold standard and primary input for musculoskeletal modelling. There is a paucity of these datasets, especially in the leg muscles.Methods. Sixty muscles of the anterior and lateral compartments from twelve formalin-fixed lower limbs were studied for gross architecture, including the peculiar fibre arrangements and architectural properties of muscles. Muscle weight, muscle length, fibre length, pennation angle and sarcomere length were measured. Normalised fibre length, fibre length to muscle length ratio (FL/ML ratio), and the physiological cross-sectional area (PCSA) were calculated from the obtained data.Results. Muscles displayed a combination of architectural strategies and were partly fusiform and partly pennate. The tibialis anterior and peroneus longus were the heaviest muscles in their respective compartments and showed more extensive origin from the nearby deep facial sheets.Long fibre length and less pennation angle were seen in muscles of the extensor compartment. Potential muscle power was highest in the tibialis anterior and peroneus longus and least in the extensor hallucis longus.Conclusions. Arching of the foot and eversion are peculiar to humans and recent in evolution. Due to the functional demand of maintaining the medial longitudinal arch and eversion, the tibialis anterior and peroneus longus have more muscle weight and larger physiological cross-sectional area and are potentially more powerful.Extensor compartment muscles were architecturally more suited for excursions because of the long fibre length and less pennation angle.This study contributes baseline normative data for musculoskeletal modelling platforms and simulation tools – an emerging area in biomechanics and tendon transfers.
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腿部肌肉的结构:功能和临床意义
背景。肌肉的结构特性是肌肉功能属性和发力能力的主要预测指标。这些数据对于肌肉骨骼建模和选择合适的肌肉-肌腱单位进行肌腱转移至关重要。尸体结构特性数据是肌肉骨骼建模的黄金标准和主要输入数据。这些数据集非常缺乏,尤其是腿部肌肉。我们对来自 12 个福尔马林固定的下肢前部和侧部的 60 块肌肉进行了大体结构研究,包括肌肉的特殊纤维排列和结构特性。测量了肌肉重量、肌肉长度、纤维长度、五棱角和肌节长度。根据获得的数据计算归一化纤维长度、纤维长度与肌肉长度比率(FL/ML 比率)和生理横截面积(PCSA)。肌肉显示出多种结构策略,部分呈纺锤形,部分呈羽状。胫骨前肌和腓骨长肌是各自部位中最重的肌肉,并显示出更广泛的起源于附近的深面片。胫骨前肌和腓骨长肌的潜在肌肉力量最大,而拇长伸肌最小。足弓和足外翻是人类特有的现象,也是最近才出现的进化现象。由于维持内侧纵弓和足外翻的功能需求,胫骨前肌和腓骨长肌的肌肉重量更大,生理横截面积更大,可能更有力量。
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来源期刊
Acta Medica Lituanica
Acta Medica Lituanica Medicine-General Medicine
CiteScore
0.70
自引率
0.00%
发文量
33
审稿时长
16 weeks
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