首页> 外文会议>International IEEE/EMBS Conference on Neural Engineering >Inhibition of Knee Sensory Receptors does not affect Quadriceps Muscle Activity at Different Conditions of Patellofemoral Loading
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Inhibition of Knee Sensory Receptors does not affect Quadriceps Muscle Activity at Different Conditions of Patellofemoral Loading

机译:膝关节感受器的抑制不会影响不同条件的Patelloforal载量的Quaddriceps肌肉活动

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Sensory receptors within joints provide the central nervous system (CNS) with information about the stress and strains in joint structures such as ligaments and menisci. How these joint sensory afferents are used by the CNS to generate motor commands is still poorly understood. In this study, we evaluate the hypothesis that the role of joint sensory afferents depends on the level of joint loading. To this end, we assessed the effect of temporarily inhibiting joint sensory receptors on quadriceps muscles activity during locomotion in the rat before and after paralysis of vastus lateralis, a perturbation that causes medial loading in the patellofemoral joint. The CNS compensated for the loss of vastus lateralis by gradually increasing the activity of vastus intermedius and rectus femoris over five weeks of adaptation. This strategy limits patellofemoral joint loading, suggesting that the CNS regulates internal joint stresses and strains. However, the temporary inhibition of knee sensory receptors did not cause significant changes in quadriceps muscle activity, both before and at any time point after paralysis. We therefore found no evidence for the existence of fast feedback loops mediated by joint sensory afferents, that depends on patellofemoral joint loading. Additional work is needed to investigate whether joint sensory afferents mediate long-term adaptation to joint stresses and strains.
机译:关节内的感觉受体提供了中枢神经系统(CNS),其中包含有关关节结构等应激和菌株的信息,例如韧带和半月形。 CNS如何使用这些联合感官传入以产生电动机命令仍然不知所决。在这项研究中,我们评估了关节感官引入的作用取决于关节载荷水平的假设。为此,我们评估临时抑制关节感官受体对大鼠瘫痪前后的大鼠运动过程中的Quaddriceps肌肉活性的影响,这是对髌侧关节中内侧载荷的扰动。 CNS通过逐渐增加含有含膜和升降股的活性超过五周的适应性来补偿夸张的侧面。该策略限制了Patelloforal联合装载,表明CNS调节内部关节应力和菌株。然而,膝关节受体的暂时抑制在瘫痪后的任何时间点之前和任何时间点都不会导致Quaddriceps肌肉活动的显着变化。因此,我们没有发现任何证据表明通过联合感官传入介导的快速反馈循环,这取决于Patelloforal关节载荷。需要额外的工作来调查联合感官传入是否介导长期适应联合应力和菌株。

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