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首页> 外文期刊>Archives of physiology and biochemistry >Myofascial force transmission causes interaction between adjacent muscles and connective tissue: effects of blunt dissection and compartmental fasciotomy on length force characteristics of rat extensor digitorum longus muscle.
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Myofascial force transmission causes interaction between adjacent muscles and connective tissue: effects of blunt dissection and compartmental fasciotomy on length force characteristics of rat extensor digitorum longus muscle.

机译:肌筋膜力传递引起相邻肌肉与结缔组织之间的相互作用:钝性解剖和筋膜筋膜切开术对大鼠指趾长肌的长度力特性的影响。

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摘要

Muscles within the anterior tibial compartment (extensor digitorum longus: EDL, tibialis anterior: TA, and extensor hallucis longus muscles: EHL) and within the peroneal compartment were excited simultaneously and maximally. The ankle joint was fixed kept at 90 degrees. For EDL length force characteristics were determined. This was performed first with the anterior tibial compartment intact (1), and subsequently after: (2) blunt dissection of the anterior and lateral interface of EDL and TA. (3) Full longitudinal lateral fasciotomy of the anterior tibial compartment. (4) Full removal of TA and EHL muscles. Length-force characteristics were changed significantly by these interventions. Blunt dissection caused a force decrease of approximately 10% at all lengths, i.e., without changing EDL optimum or active slack lengths. This indicates that intermuscular connective tissue mediates significant interactions between adjacent muscles. Indications of its relatively stiff mechanical properties were found both in the physiological part of the present study, as well as the anatomical survey of connective tissue. Full lateral compartmental fasciotomy increased optimum length and decreased active slack length, leading to an increase of length range (by approximately 47%), while decreasing optimal force. As a consequence an increase in force for the lower length range was found. Such changes of length force characteristics are compatible with an increased distribution of fiber mean sarcomere length. On the basis of these results, it is concluded that extramuscular connective tissue has a sufficiently stiff connection to intramuscular connective tissue to be able to play a role in force transmission. Therefore, in addition to intramuscular myofascial force transmission, extramuscular force transmission has to be considered within intact compartments of limbs. A survey of connective tissue structures within the compartment indicated sheet-like neuro-vascular tracts to be major components of extramuscular connective tissue with connections to intramuscular connective tissue stroma. Removal of TA and EHL yielded yet another decrease of force (mean for optimal force approximately 10%). No significant changes of optimum and active slack lengths could be shown in this case. It is concluded that myofascial force transmission should be taken into account when considering muscular function and its coordination, and in clinical decisions regarding fasciotomy and repetitive strain injury.
机译:胫骨前室内(指长伸肌:EDL,胫骨前肌:TA和拇长伸肌:EHL)和腓骨内的肌肉同时被激发并得到最大程度的兴奋。踝关节固定在90度。对于EDL长度,确定了力特性。首先在完整的胫骨前室完好无损的情况下进行(1),然后在完成以下操作之后:(2)对EDL和TA的前后界面进行钝性解剖。 (3)胫骨前腔的全纵向外侧筋膜切开术。 (4)完全去除TA和EHL肌肉。这些干预显着改变了长度力特性。钝器解剖导致所有长度的力降低约10%,即不改变EDL最佳或有效松弛长度。这表明肌间结缔组织介导相邻肌肉之间的显着相互作用。在本研究的生理学部分以及结缔组织的解剖学调查中均发现了其相对较硬的机械性能。全侧筋膜筋膜切开术增加了最佳长度,减少了活动松弛长度,导致长度范围增加(大约47%),同时减小了最佳力。结果,发现对于较小长度范围的力增加了。长度力特性的这种变化与纤维平均肌节长度的增加分布是相容的。基于这些结果,可以得出结论,肌外结缔组织与肌内结缔组织具有足够刚性的连接,从而能够在力传递中起作用。因此,除了肌内肌筋膜力传递外,还必须考虑肢体完整隔室内的肌外力传递。对车厢内结缔组织结构的调查表明,片状神经血管束是肌外结缔组织的主要成分,与肌内结缔组织基质有关。除去TA和EHL会使力再次降低(最佳力的平均值约为10%)。在这种情况下,最佳和有效松弛长度没有明显变化。结论是,在考虑肌肉功能及其协调以及有关筋膜切开术和重复性劳损的临床决策时,应考虑肌面力量的传递。

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