Tracey D J, Walmsley B, Brinkman J
Neurosci Lett. 1980 May 15;18(1):59-65. doi: 10.1016/0304-3940(80)90213-x.
Extensor muscles of the fore- and hindlimb were stretched in the lightly anaesthetized monkey (Macaca fascicularis) and cat. The resulting electromyogram contained a short latency peak consistent with a monosynaptic, segmental pathway; this peak was identified as the M1 peak of Tatton et al. [21]. A longer latency peak, identified as M2 and said to involve a pathway including supraspinal centres, was also present. After spinal section at a high cervical level, the electromyogram was reduced in amplitude, but both short (M1) and longer latency (M2) peaks were present. It is concluded that neither the cerebral cortex nor the cerebellum are necessary parts of the neural circuitry generating longer latency components of the electromyographic response to muscle stretch.
在前肢和后肢的伸肌上对轻度麻醉的猕猴(食蟹猴)和猫进行拉伸。由此产生的肌电图包含一个潜伏期短的峰值,这与单突触节段性通路一致;这个峰值被确定为塔顿等人[21]的M1峰值。还存在一个潜伏期较长的峰值,被确定为M2,据说涉及一个包括脊髓上中枢的通路。在高颈段进行脊髓横断后,肌电图的振幅减小,但仍存在潜伏期短的(M1)和潜伏期长的(M2)峰值。得出的结论是,大脑皮层和小脑都不是产生对肌肉拉伸的肌电反应中潜伏期较长成分的神经回路的必要组成部分。