McCrea D A
Department of Physiology, University of Manitoba, 730 William Avenue, Winnipeg, Manitoba, Canada R3E 3J7.
J Physiol. 2001 May 15;533(Pt 1):41-50. doi: 10.1111/j.1469-7793.2001.0041b.x.
During locomotion many segmental hindlimb reflex pathways serve not only to regulate the excitability of local groups of motoneurones, but also to control the basic operation of the central pattern-generating circuitry responsible for locomotion. This is accomplished through a reorganization of reflexes that includes the suppression of reflex pathways operating at rest and the recruitment during locomotion of previously unrecognized types of spinal interneurones. In addition presynaptic inhibition of transmission from segmental afferents serves to regulate the gain of segmental reflexes and may contribute to the selection of particular reflex pathways during locomotion. The fictive locomotion preparation in adult decerebrate cats has proved to be an important tool in understanding reflex pathway reorganization. Further identification of the spinal interneurones involved in locomotor-dependent reflexes will contribute to our understanding not only of reflex pathway organization but also of the organization of the mammalian central pattern generator.
在运动过程中,许多节段性后肢反射通路不仅用于调节局部运动神经元群的兴奋性,还用于控制负责运动的中枢模式发生器电路的基本运作。这是通过反射的重组来实现的,包括抑制静息时运作的反射通路以及在运动过程中募集先前未被识别的脊髓中间神经元类型。此外,节段性传入神经传递的突触前抑制用于调节节段性反射的增益,并可能有助于在运动过程中选择特定的反射通路。事实证明,成年去大脑猫的虚拟运动准备是理解反射通路重组的重要工具。进一步鉴定参与运动依赖性反射的脊髓中间神经元,不仅将有助于我们理解反射通路的组织,还将有助于我们理解哺乳动物中枢模式发生器的组织。