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Excursion is important in regulating sarcomere number in the growing rabbit tibialis anterior

机译:远足对于调节正在生长的兔胫前肌中的肌小节数目很重要

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摘要

class="enumerated" style="list-style-type:decimal">The mechanical signal(s) that may be important in regulating the number of sarcomeres in series in skeletal muscle fibres or fascicles (sarcomere number) remain(s) speculative, in part because the in vivo mechanical environment of muscle has not yet been defined during sarcomere number perturbations. In the present study, measurements of the in vivo mechanical environment were used to test the hypothesis that increasing muscle excursion results in increased serial sarcomere addition in growing animals.The tibialis anterior (TA) was released from its retinacular restraint at the ankle joint to increase muscle excursion in 4-week-old female New Zealand White rabbits. Twelve weeks post release, muscle excursion and sarcomere number were significantly increased for released TAs compared with control TAs.General cage activity over a 24 h period and in vivo ankle joint kinematics of the experimental leg during hopping on a treadmill were not significantly different between control and release groups, suggesting that altered animal and joint activity patterns were not responsible for the increased serial sarcomere addition associated with TA release.In vivo TA forces during hopping and during a large force-producing foot-flicking motion were significantly decreased in released TAs compared with control TAs. Chronically decreased force production may have been involved in the decreased longitudinal tendon growth observed for the released TA compared with the control TA, which, in turn, may have stimulated the increase in serial sarcomere addition. However, increasing force production of the released TA by partial ablation of the extensor digitorum longus did not inhibit the increase in serial sarcomere addition.The results of this study support the hypothesis that increasing excursion results in increased serial sarcomere addition in growing animals and, when combined with the results of previous studies indicating that decreasing excursion results in decreased serial sarcomere addition, support the working hypothesis that excursion is important in regulating sarcomere number in growing animals.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 在调节骨骼肌纤维或束中的串联肉瘤数量(肌节数)中可能重要的机械信号仍然是推测性的,部分原因是在此期间尚未定义肌肉的体内机械环境肌节数摄动。在本研究中,使用体内机械环境的测量值来检验假说:增加肌肉偏移会导致生长中动物的连续肌节增加。 胫骨前(TA)从其视网膜释放约束踝关节以增加4周龄雌性新西兰白兔的肌肉偏移。释放后十二周,释放的TA的肌肉偏移和肌节数均比对照TA显着增加。 24小时内笼的总体活动以及实验腿在跳跃过程中的体内踝关节运动学跑步机在对照组和释放组之间没有显着差异,这表明动物和关节活动模式的改变与增加与TA释放相关的系列肌节的增加并不负责。 在跳跃和大范围运动中体内的TA力与对照TA相比,释放的TA中产生力的甩脚运动明显减少。与对照TA相比,释放的TA观察到的纵向肌腱生长减少可能与力量的长期减少有关,而对照TA则反过来可能刺激了连续增加的肌节的增加。但是,通过部分切除指趾长伸肌而增加释放的TA的力产生并不能抑制连续肌节的增加。 这项研究的结果支持以下假设:增加偏移会导致连续肌节的增加添加到生长中的动物中,并且与先前的研究结果表明偏移减少导致连续增加的肌节蛋白添加量相结合,支持了假说,即偏移在调节生长中的动物的肌节数方面很重要。

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