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Investigating the Effect of Persistent Inward Currents on Motor Unit Firing Rates and Beta-Band Coherence in a Model of the First Dorsal Interosseous Muscle*

机译:研究持久性内向电流对第一背骨间肌 * 模型中运动单位点火速率和β波段相干性的影响

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Neuromodulatory drive resulting in the generation of persistent inward currents (PICs) within motoneuron dendrites has been demonstrated to introduce nonlinearities into the motoneuron input-output function for a given motor command. It is less understood, however, as to what role PICs play during voluntary contractions or on the correlation between motoneuron firings arising as a result of common synaptic inputs to the motoneuron pool. To examine this, a biophysical model of the motoneuron pool representing the first dorsal interosseous (FDI) muscle was used to simulate the effects of PICs on motor unit firing patterns and beta-band (15-30 Hz) motor unit coherence at 20, 30, and 40 percent of maximum voluntary contraction (MVC). The contribution of PICs at each MVC was quantified by calculating the difference in the mean firing rate of each motoneuron within the pool and assessing changes in the mean firing rate distribution and motor unit coherence with and without PICs present. The results of the current study demonstrated that increased activation of PICs progressively reduced motor unit coherence, however, changes in coherence were modest when investigating activation levels consistent with experimentally observed mean motor unit firing rates in the FDI muscle during isometric voluntary contraction.
机译:已经证明,神经调节驱动会导致运动神经元树突内产生持续的内向电流(PIC),从而将非线性引入给定运动命令的运动神经元输入-输出功能中。然而,关于PIC在自发性收缩过程中所起的作用或由于运动神经元池中常见的突触输入而产生的运动神经元放电之间的相关性尚不甚了解。为了对此进行检验,使用了代表第一背骨间(FDI)肌肉的运动神经元池的生物物理模型来模拟PIC对20、30时运动单元发射模式和β波段(15-30 Hz)运动单元相干性的影响,以及最大自愿收缩(MVC)的40%。通过计算池中每个运动神经元的平均发动速率之差,并评估存在和不存在PIC的情况下,平均发动速率分布和运动单位相干性的变化,可以量化PIC在每个MVC上的贡献。当前研究的结果表明,PIC的激活增加会逐渐降低运动单位的连贯性,但是,在调查激活水平时,相干性的变化是适度的,该水平与实验观察到的等距自愿性收缩期间FDI肌肉的平均运动单位开火率一致。

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