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Behavior of human gastrocnemius muscle fascicles during ramped submaximal isometric contractions

机译:人腓肠肌肌束在倾斜的最大等距收缩过程中的行为

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Precise estimates of muscle architecture are necessary to understand and model muscle mechanics. The primary aim of this study was to estimate continuous changes in fascicle length and pennation angle in human gastrocnemius muscles during ramped plantar flexor contractions at two ankle angles. The secondary aim was to determine whether these changes differ between proximal and distal fascicles. Fifteen healthy subjects performed ramped contractions (0?¢????25% MVC) as ultrasound images were recorded from the medial (MG, eight sites) and lateral (LG, six sites) gastrocnemius muscle with the ankle at 90???° and 120???° (larger angles correspond to shorter muscle lengths). In all subjects, fascicles progressively shortened with increasing torque. MG fascicles shortened 5.8????mm (11.1%) at 90???° and 4.5????mm (12.1%) at 120???°, whereas LG muscle fascicles shortened 5.1????mm (8.8%) at both ankle angles. MG pennation angle increased 1.4???° at 90???° and 4.9???° at 120???°, and LG pennation angle decreased 0.3???° at 90???° and increased 2.6???° at 120???°. Muscle architecture changes were similar in proximal and distal fascicles at both ankle angles. This is the first study to describe continuous changes in fascicle length and pennation angle in the human gastrocnemius muscle during ramped isometric contractions. Very similar changes occurred in proximal and distal muscle regions. These findings are relevant to studies modeling active muscle mechanics.
机译:要了解和建模肌肉力学,就必须对肌肉结构进行精确估计。这项研究的主要目的是估计在两个踝关节角的足底屈肌收缩过程中人腓肠肌的束长度和摆角的连续变化。次要目的是确定近端和远端束之间的这些变化是否不同。十五例健康受试者进行了倾斜收缩(MVC为0%)(25%MVC),因为从内侧(MG,八个部位)和外侧(LG,六个部位)的腓肠肌记录了超声图像,踝关节在90°。 °和120°(较大的角度对应较短的肌肉长度)。在所有受试者中,随着扭矩的增加,束逐渐缩短。 MG分束在90°时缩短5.8毫米(11.1%),在120°°时缩短4.5毫米(12.1%),而LG肌肉分束缩短5.1毫米(8.8%(8.8)。 %)在两个脚踝角度。 MG的垂角在90°时增加1.4°,在120°时增加4.9°,LG的垂角在90°时减少0.3°,并增加2.6°。在120℃下。在两个踝角处,近端和远端分束的肌肉结构变化相似。这是首次描述倾斜等距收缩过程中人类腓肠肌束长度和垂体角度的连续变化的研究。在近端和远端的肌肉区域发生了非常相似的变化。这些发现与模拟主动肌肉力学的研究有关。

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