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首页> 外文期刊>The Journal of Experimental Biology >Mono- versus biarticular muscle function in relation to speed and gait changes: in vivo analysis of the goat triceps brachii
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Mono- versus biarticular muscle function in relation to speed and gait changes: in vivo analysis of the goat triceps brachii

机译:单关节和双关节肌肉功能与速度和步态变化的关系:山羊肱三头肌的体内分析

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摘要

The roles of muscles that span a single joint (monoarticular) versus those that span two (biarticular) or more joints have been suggested to differ. Monoarticular muscles are argued to perform work at a joint, whereas biarticular muscles are argued to transfer energy while resisting moments across adjacent joints. To test these predictions, in vivo patterns of muscle activation, strain, and strain rate were compared using electromyography and sonomicrometry in two major elbow extensors, the long and lateral heads of the triceps brachii of goats (Capra hircus), across a range of speed (1-5 m s(-1)) and gait. Muscle recordings were synchronized to limb kinematics using high-speed digital video imaging (250Hz). Measurements obtained from four goats (25-45 kg) showed that the monoarticular lateral head exhibited a stretch-shortening pattern (6.8 +/- 0.6% stretch and -10.6 +/- 2.7% shortening; mean +/- s.e.m. for all speeds and gaits) after being activated, which parallels the flexion-extension pattern of the elbow. By contrast, the biarticular long head shortened through most of stance (-16.4 +/- 3.4%), despite elbow flexion in the first half and shoulder extension in the last half of stance. The magnitude of elbow flexion and shoulder extension increased with increasing speed (ANCOVA, P<0.05 and P<0.001), as did the magnitude and rate of active stretch of fascicles in the lateral head (P<0.001 for both). In all individuals, shortening fascicle strain rates increased with speed in the long head (P<0.001), and, in three of the four individuals, strain magnitude increased. Few independent effects of gait were found. In contrast to its expected function, the biarticular long head appears to produce positive work throughout stance, whereas the monoarticular lateral head appears to absorb work at the elbow. The biarticular anatomy of the long head may mitigate increases in muscle strain with speed in this muscle, because strain magnitude in the second phase of stance (when the shoulder extends) decreased with speed (P<0.05).
机译:有人建议跨越单个关节(单关节)的肌肉与跨越两个(双关节)或更多关节的肌肉的作用是不同的。有人认为单关节肌肉在关节处发挥作用,而有人认为双关节肌肉在抵抗相邻关节之间的力矩的同时传递能量。为了检验这些预测,使用肌电描记法和体测术比较了两个主要肘部伸肌,即山羊肱三头肌的长头和侧头,跨速度在不同范围内的肌肉激活,应变和应变率的体内模式。 (1-5 ms(-1))和步态。使用高速数字视频成像(250Hz)将肌肉记录与肢体运动学同步。从四只山羊(25-45公斤)获得的测量结果表明,单关节外侧头表现出拉长缩短模式(6.8 +/- 0.6%拉伸和-10.6 +/- 2.7%缩短;所有速度和速度下的平均值+/- sem)。步态)在激活后,与肘部的屈伸模式平行。相比之下,尽管在上半部分肘部弯曲而在后半部分肩部伸展,但在大多数情况下双关节长头都缩短了(-16.4 +/- 3.4%)。肘部屈曲和肩部伸展的幅度随着速度的增加而增加(ANCOVA,P <0.05和P <0.001),而外侧头束的主动束缚的幅度和速率也增加(两者均P <0.001)。在所有个体中,缩短的束状应变速率随着长头的速度而增加(P <0.001),并且在四个个体中的三个个体中,应变幅度增加。几乎没有发现步态的独立影响。与预期功能相反,双关节长头在整个姿势中似乎产生积极的工作,而单关节侧头似乎在肘部吸收工作。长头的双关节解剖结构可以缓解该肌肉中速度随速度的增加,因为姿势第二阶段(当肩膀伸展时)的应变幅度随速度而降低(P <0.05)。

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