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Mechanisms of stepping rhythm formation in decerebrated and chronic spinal cats under epidural stimulation

机译:硬膜外刺激下去脑和慢性脊柱猫步速节律形成的机制

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摘要

A study was made of the stepping pattern formation in decerebrated and in chronic spinal cats during epidural stimulation (ES). The hindlimb stepping performance depended on the parameters of ES and afferent input. At non-optimal ES parameters, no stepping was induced, only muscle reflexes followed the stimulation rhythm. Optimized ES (3-5 Hz, 50-100 [mu]A for decerebrated and 20-30 Hz, 150-250 [mu]A for spinal cats) evoked coordinated stepping movements at a natural rate (0.8-1 Hz) accompanied by electromyographic burst activity of the corresponding muscles. In decerebrated cats, the bursts are formed owing to modulation of early responses and the late polysynaptic activity. In chronic spinal cats, this process is mainly due to amplitude modulation of the early responses. Formation of the stepping pattern in decerebrated cats involves spinal interneurons responsible for the polysynaptic activity, which allows its correction based on processing the afferent signals. Activation of this system in chronic spinal cats can be realized by afferent stimulation alone, without ES. [PUBLICATION ABSTRACT]
机译:研究了硬膜外刺激(ES)期间大脑和慢性脊髓猫的步进模式形成。后肢的步进性能取决于ES和传入输入的参数。在非最佳ES参数下,没有引起踩踏,只有肌肉反射跟随刺激节律。优化的ES(3-5 Hz,对于去脑的小鼠为50-100μA,对于20-30 Hz,对于脊猫为150-250μA)以自然速率(0.8-1 Hz)引起协调的步进运动并伴有相应肌肉的肌电图爆发活动。在无脑猫中,由于早期反应和晚期多突触活动的调节,形成了爆发。在慢性脊柱猫中,该过程主要是由于早期反应的幅度调制所致。在去脑猫中,步进模式的形成涉及负责多突触活动的脊髓中枢神经,这使得其可以根据处理传入信号进行校正。在没有ES的情况下,仅通过传入刺激即可在慢性脊柱猫中激活该系统。 [出版物摘要]

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