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Toe flexor muscle spindle discharge and stretch modulation during locomotor activity in the decerebrate cat

机译:去脑猫运动过程中脚趾屈肌主轴放电和拉伸调节

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摘要

In order to investigate the nature (i.e. static or dynamic) of fusimotor drive to the flexor hallucis longus (FHL) and flexor digitorum longus (FDL) muscles during locomotion we recorded Ia and group II muscle spindle afferent responses to sinusoidal stretch (0.25 and 1 mm amplitude, respectively, 4–5 Hz) in a decerebrate cat preparation. FHL Ia and group II afferents generally had increased discharge rates and decreased modulation to stretch throughout the step cycle, compared to rest, suggesting raised static γ drive at all locomotor phases. Although the modulation of Ia afferents was reduced during locomotion, most (13 of 18) showed a clear increasing trend during homonymous muscle activity (extension). This was consistent with phasic dynamic γ drive to FHL spindles linked with α drive. In agreement with previous reports, FHL gave a single burst of EMG activity during the step cycle while FDL α drive had two components. One was related to extension while the other comprised a brief burst around the end of this phase. Typically FDL Ia and group II afferents also had elevated firing rates and reduced modulation at all locomotor phases, again implicating static γ drive. Half the afferents (seven Ia, three group II) showed increased discharge during extension, suggesting phasic static γ drive. There was no γ drive associated with the late FDL α burst. In conclusion, the γ drives to FHL and FDL differed during locomotion. FHL, which has the α drive of a classic extensor, received γ drive that closely resembled other extensors. The γ drive of FDL, which exhibits both extensor and flexor α synergies, did not match either muscle type. These observations are compatible with the view that fusimotor drive varies in different muscles during locomotion according to the prevailing sensorimotor requirements.
机译:为了研究运动过程中融合运动驱动到拇长屈肌(FHL)和趾长屈肌(FDL)肌肉的本质(即静态或动态),我们记录了Ia和II组肌肉纺锤对正弦伸展的传入反应(0.25和1)。毫米波振幅,分别为4到5 Hz)。与休息相比,FHL Ia和II组传入者在整个步长周期中的放电速率通常增加,而调制的拉伸程度降低,这表明在所有运动阶段,静态γ驱动力均升高。尽管运动过程中Ia传入的调节降低,但大多数(18个中的13个)在同形肌肉活动(扩展)过程中显示出明显的增加趋势。这与对与α驱动链接的FHL主轴的相位动态γ驱动一致。与以前的报告一致,FHL在步进周期中产生了一次单一的EMG活动,而FDLα驱动具有两个成分。一个与扩展有关,另一个与本阶段末期的短暂爆发有关。通常,FDL Ia和II组传入者在所有运动阶段都具有较高的放电率和降低的调制,这再次暗示了静态γ驱动。一半的传入神经(七个Ia,三个II组)在伸展过程中显示出增加的放电,表明有阶段性静态γ驱动。没有与晚期FDLα爆发相关的γ驱动。总之,在运动过程中,γ驱动FHL和FDL有所不同。具有经典伸肌的α驱动力的FHL接受了与其他伸肌非常相似的γ驱动力。表现出伸肌和屈肌α协同作用的FDL的γ驱动与任何一种肌肉类型都不匹配。这些观察结果与以下观点相吻合:在运动过程中,不同的肌肉中融合运动的驱动力根据主要的感觉运动需求而变化。

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