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Biomechanical benefits of the Onion-Skin motor unit control scheme

机译:洋葱皮电机单元控制方案的生物力学优势

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摘要

Muscle force is modulated by varying the number of active motor units and their firing rates. For the past five decades, the notion that the magnitude of the firing rates is directly related to motor unit size and recruitment threshold has been widely accepted. This construct, here named the After-hyperpolarization scheme evolved from observations in electrically stimulated cat motoneurons and from reported observations in voluntary contractions in humans. It supports the assumption that the firing rates of motor units match their mechanical properties to “optimize” force production, so that the firing rate range corresponds to that required for force-twitch fusion (tetanization) and effective graduation of muscle force. In contrast, we have shown that, at any time and force during isometric voluntary constant-force contractions in humans, the relationship between firing rate and recruitment threshold is inversely related. We refer to this construct as the Onion-Skin scheme because earlier-recruited motor units always have greater firing rates than latter-recruited ones. By applying a novel mathematical model that calculates the force produced by a muscle for the two schemes we found that the Onion-Skin scheme is more energy efficient, provides smoother muscle force at low to moderate force levels, and appears to be more conducive to evolutionary survival than the After-hyperpolarization scheme.
机译:肌肉力是通过改变活动的电动机单元的数量及其点火速度来调节的。在过去的五十年中,点火率的大小直接与运动单位的大小和招募阈值有关的观点已被广泛接受。这种构造,这里称为超极化后方案,是根据电刺激的猫运动神经元的观察结果和人类自愿收缩的报道观察结果发展而来的。它支持这样的假设,即电机单元的点火速率与它们的机械性能相匹配,以“优化”力的产生,因此,点火速率范围对应于力-抽动融合(钛化)和肌肉力的有效分度所需的范围。相反,我们已经证明,在等距等距人类自愿恒力收缩过程中的任何时间和力量下,发射率与募集阈值之间的关系都是负相关的。我们将这种构造称为“洋葱皮”方案,因为早期招募的电机始终比后期招募的电机具有更高的点火率。通过应用新颖的数学模型来计算两种方案中肌肉产生的力,我们发现洋葱皮方案具有更高的能源效率,在低至中等力水平下提供更平滑的肌肉力,并且似乎更有利于进化存活率比超极化后方案高。

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