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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Extramuscular myofascial force transmission alters substantially the acute effects of surgical aponeurotomy: assessment by finite element modeling
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Extramuscular myofascial force transmission alters substantially the acute effects of surgical aponeurotomy: assessment by finite element modeling

机译:肌筋膜肌外力传递极大地改变了外科腱膜切开术的急性影响:通过有限元建模进行评估

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Effects of extramuscular myofascial force transmission on the acute effects of aponeurotomy were studied using finite element modeling and implications of such effects on surgery were discussed. Aponeurotomized EDL muscle of the rat was modeled in two conditions: (1) fully isolated (2) with intact extramuscular connections. The specific goal was to assess the alterations in muscle length-force characteristics in relation to sarcomere length distributions and to investigate how the mechanical mechanism of the intervention is affected if the muscle is not isolated. Major effects of extramuscular myofascial force transmission were shown on muscle length-force characteristics. In contrast to the identical proximal and distal forces of the aponeurotomized isolated muscle, substantial proximo-distal force differences were shown for aponeurotomized muscle with extramuscular connections (for all muscle lengths F dist > F prox after distal muscle lengthening). Proximal optimal length did not change whereas distal optimal length was lower (by 0.5 mm). The optimal forces of the aponeurotomized muscle with extramuscular connections exerted at both proximal and distal tendons were lower than that of isolated muscle (by 15 and 7%, respectively). The length of the gap separating the two cut ends of the intervened aponeurosis decreases substantially due to extramuscular myofascial force transmission. The amplitude of the difference in gap length was muscle length dependent (maximally 11.6% of the gap length of the extramuscularly connected muscle). Extramuscular myofascial force transmission has substantial effects on distributions of lengths of sarcomeres within the muscle fiber populations distal and proximal to the location of intervention: (a) Within the distal population, the substantial sarcomere shortening at the proximal ends of muscle fibers due to the intervention remained unaffected however, extramuscular myofascial force transmission caused a more pronounced serial distribution towards the distal ends of muscle fibers. (b) In contrast, extramuscular myofascial force transmission limits the serial distribution of sarcomere lengths shown for the aponeurotomized isolated muscle in the proximal population. Fiber stress distributions showed that extramuscular myofascial force transmission causes most sarcomeres within the aponeurotomized muscle to attain lengths favorable for higher force exertion. It is concluded that acute effects of aponeurotomy on muscular mechanics are affected greatly by extramuscular myofascial force transmission. Such effects have important implications for the outcome of surgery performed to improve impeded function since muscle in vivo is not isolated both anatomically and mechanically.
机译:使用有限元模型研究了肌筋膜肌力传递对腱膜切开术急性影响的影响,并讨论了这种影响对手术的影响。在两个条件下对大鼠的经腹膜切除的EDL肌肉进行建模:(1)完全分离(2)完整的肌外连接。具体目标是评估与肌节长度分布有关的肌肉长度-力量特征的变化,并研究如果不分离肌肉,干预的机械机制如何受到影响。肌外肌筋膜力传递的主要影响显示在肌肉长度-力特性上。与经皮膜切开术分离的肌肉的近侧和远侧力相同,在具有肌外连接的皮膜切开术的肌肉中,显示出明显的近-远作用力差异(所有肌肉长度F dist> F prox在远端肌肉拉长后)。近端最佳长度没有变化,而远端最佳长度则较低(降低了0.5 mm)。在近端和远端肌腱上施加肌外连接的经足部切开的肌肉的最佳力低于孤立肌的最佳力(分别降低15%和7%)。由于肌外肌筋膜力传递,使介入的腱膜的两个切口端分开的间隙的长度大大减小。间隙长度差异的幅度取决于肌肉长度(最大为肌肉外连接肌肉间隙长度的11.6%)。肌外肌筋膜力传递对介入部位远端和近端的肌纤维群中肉瘤长度的分布有实质性影响:(a)在远端人群中,由于介入,肌纤维近端的大量肌节缩短然而,肌外肌筋膜力传递仍然不受影响,导致朝向肌纤维远端的序列分布更加明显。 (b)相反,肌外肌筋膜肌力传递限制了近端人群中经apurourotomized孤立的肌肉显示的肌节长度的连续分布。纤维应力分布表明,肌外肌筋膜力传递导致在截肢切除的肌肉内的大多数肉瘤达到有利于较高力施加的长度。结论是,肌腱肌筋膜外力传递极大地影响了腱膜切开术对肌肉力学的急性影响。由于体内肌肉在解剖学和机械上均未分离,因此这种效果对改善障碍功能的手术结果具有重要意义。

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