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Neurones in the pontomedullary reticular formation signal posture and movement both as an integrated behaviour and independently

机译:脊髓神经元网状结构中的神经元将姿势和运动作为一个整体行为和独立地发出信号

摘要

We have previously suggested that the discharge characteristics of some neurones in the pontomedullary reticular formation (PMRF) are contingent upon the simultaneous requirement for activity in both ipsilateral flexor muscles and contralateral extensors. To test this hypothesis we trained cats to stand on 4 force platforms and to perform a task in which they were required to reach forward with one forelimb or the other and depress a lever. As such the task required the cat to make a flexion movement followed by an extension in the reaching limb while maintaining postural support by increasing extensor muscle tonus in the supporting limbs. We recorded the activity of 131 neurones from the PMRF of 3 cats during left, ipsilateral, reach. Of these, 86/131 (66%) showed a change in discharge frequency prior to the onset of activity in one of the prime flexor muscles and 43/86 (50%) showed a bimodal pattern of discharge in which activity decreased during the lever press. Among the remaining cells, 28/86 (33%) showed maintained activity throughout the reach and the lever-press. Most cells showed a broadly similar pattern of discharge during reaches with the right, contralateral, limb. We suggest these results support the view that a population of neurones within the PMRF contributes to the control of movement in one forelimb, and the control of posture in the other forelimb, as a coordinated unit. Another population of neurones contributes to the control of postural support independently of the nature of the activity in the reaching limb.
机译:先前我们曾提出,桥面网状网状结构(PMRF)中某些神经元的放电特征取决于同侧屈肌和对侧伸肌同时活动的要求。为了验证这一假设,我们训练了猫站在四个受力平台上并执行一项任务,要求它们用一只前肢或另一只前肢向前推动并压下杠杆。因此,该任务需要猫进行屈曲运动,然后在到达的肢体中进行伸展,同时通过增加支撑肢体的伸肌张力来保持姿势支撑。我们记录了3只猫的PMRF在左侧,同侧到达期间的131个神经元的活动。其中,有86/131(66%)的原始屈肌之一开始活动之前放电频率发生了变化,而43/86(50%)则显示了双峰放电模式,在杠杆作用期间活动减少按。在其余的细胞中,28/86(33%)的细胞在整个触及范围内和压杆过程中均保持了活动状态。在右,对侧,四肢伸直时,大多数细胞的放电模式大致相似。我们建议这些结果支持这样的观点,即PMRF中的神经元群体作为一个协调单元有助于控制一个前肢的运动,并控制另一个前肢的姿势。另一个神经元群体独立于到达肢体活动的性质而有助于姿势支持的控制。

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