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The neuromechanical adaptations to Achilles tendinosis

机译:对跟腱炎的神经力学适应

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摘要

Human movement is initiated, controlled and executed in a hierarchical system including the nervous system, muscle and tendon. If a component in the loop loses its integrity, the entire system has to adapt to that deficiency. Achilles tendon, when degenerated, exhibits lower stiffness. This local mechanical deficit may be compensated for by an alteration of motor commands from the CNS. These modulations in motor commands from the CNS may lead to altered activation of the agonist, synergist and antagonist muscles. The present study aimed to investigate the effect of tendon degeneration on its mechanical properties, the neuromechanical behaviour of the surrounding musculature and the existence of the CNS modulation accompanying tendinosis. We hypothesize that the degenerated tendon will lead to diminished tissue mechanical properties and protective muscle activation patterns, as well as an up-regulated descending drive from the CNS. Strong evidence, as reported in the present study, indicates that tendinotic tendons are more compliant compared to healthy tendons. This unilateral involvement affected the neuromuscular control on the involved side but not the non-involved side. The muscle–tendon unit on the tendinotic side exhibits a lowered temporal efficiency, which leads to altered CNS control. The altered CNS control is then expressed as an adapted muscle activation pattern in the lower leg. Taken together, the findings of the present study illustrate the co-ordinated multi-level adaptations to a mechanical lesion in a tendon caused by pathology.Key points class="unordered" style="list-style-type:disc"> Achilles tendinosis is a localized degenerative musculoskeletal disorder that develops over a long period of time and leads to a compliant human Achilles tendon. We demonstrate that the compliant Achilles tendon elicited a series of adaptations from different levels of the human movement control system, such as the muscle–tendon interaction, CNS control and other muscles in the lower leg. These results illustrate the human body’s capacity to adapt to tendon pathology and provide the physiological basis for intervention or prevention strategies.
机译:人类运动是在包括神经系统,肌肉和肌腱在内的分级系统中启动,控制和执行的。如果循环中的某个组件失去完整性,则整个系统必须适应这种缺陷。跟腱在退化时表现出较低的刚度。这种局部机械缺陷可以通过改变来自CNS的电动机指令来补偿。来自中枢神经系统的运动命令中的这些调节可导致激动剂,增效剂和拮抗肌的激活改变。本研究旨在研究肌腱变性对其力学性能,周围肌肉组织的神经力学行为以及伴随肌腱病的CNS调节的存在的影响。我们假设退化的肌腱将导致组织机械性能和保护性肌肉激活模式的减弱,以及来自中枢神经系统的上调下行驱动力。如本研究报道的有力证据表明,与健康肌腱相比,肌腱肌腱更顺应。这种单侧受累影响受累侧的神经肌肉控制,但不涉及受累侧。肌腱侧的肌腱单元表现出较低的时间效率,这导致中枢神经系统控制改变。然后,将改变后的CNS控制表示为小腿中适应的肌肉激活模式。综上所述,本研究的发现说明了由病理学引起的对肌腱机械病变的多层次协调适应。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior =无序前缀=标记类型=光盘max-label-size = 0-> 跟腱炎是一种局部退化性骨骼肌骨骼疾病,长期发展并导致顺应性人类跟腱。 我们证明了顺应性跟腱从人体运动控制系统的不同层次引发了一系列适应,例如肌肉与肌腱的相互作用,中枢神经系统的控制以及小腿的其他肌肉。 这些结果说明了人体适应肌腱病理的能力,并为干预或预防策略提供了生理基础。

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