Department of Integrative Medical Biology, Section of Physiology, Umeå University, Umeå, Sweden.
J Neurophysiol. 2011 Jul;106(1):122-6. doi: 10.1152/jn.00089.2011. Epub 2011 Apr 20.
In motor control, the general view is still that spinal interneurons mainly contribute to reflexes and automatic movements. The question raised here is whether spinal interneurons can mediate the cortical command for independent finger movements, like a precision grip between the thumb and index finger in the macaque monkey, or if this function depends exclusively on a direct corticomotoneuronal pathway. This study is a followup of a previous report (Sasaki et al. J Neurophysiol 92: 3142-3147, 2004) in which we trained macaque monkeys to pick a small piece of sweet potato from a cylinder by a precision grip between the index finger and thumb. We have now isolated one spinal interneuronal system, the C3-C4 propriospinal interneurons with projection to hand and arm motoneurons. In the previous study, the lateral corticospinal tract (CST) was interrupted in C4/C5 (input intact to the C3-C4 propriospinal interneurons), and in this study, the CST was interrupted in C2 (input abolished). The precision grip could be performed within the first 15 days after a CST lesion in C4/C5 but not in C2. We conclude that C3-C4 propriospinal interneurons also can carry the command for precision grip.
在运动控制中,普遍观点仍然认为脊髓中间神经元主要参与反射和自动运动。这里提出的问题是,脊髓中间神经元是否可以介导大脑皮层对手指独立运动的指令,例如猕猴拇指和食指之间的精细抓握,或者这种功能是否完全依赖于直接的皮质运动神经元通路。本研究是对之前一项研究(Sasaki 等人,J Neurophysiol 92:3142-3147, 2004)的跟进,在该研究中,我们训练猕猴通过食指和拇指之间的精细抓握从圆柱形容器中挑选一小片红薯。我们现在已经分离出一个脊髓中间神经元系统,即 C3-C4 固有脊髓中间神经元,其投射到手和臂运动神经元。在之前的研究中,外侧皮质脊髓束(CST)在 C4/C5 中断(对 C3-C4 固有脊髓中间神经元的输入完整),而在本研究中,CST 在 C2 中断(输入被阻断)。在 CST 损伤后的前 15 天内,可以进行精细抓握,但在 C2 中则不行。我们得出结论,C3-C4 固有脊髓中间神经元也可以携带精细抓握的指令。