Martin John H, Friel Kathleen M, Salimi Iran, Chakrabarty Samit
Center for Neurobiology and Behavior, Columbia University, N.Y.S. Psychiatric Institute, New York, NY 10032, USA.
Neurosci Biobehav Rev. 2007;31(8):1125-35. doi: 10.1016/j.neubiorev.2007.04.017. Epub 2007 May 17.
The corticospinal (CS) system, critical for controlling skilled movements, develops during the late prenatal and early postnatal periods in all species examined. In the cat, there is a sequence of development of the mature pattern of terminations of CS tract axons in the spinal gray matter, followed by motor map development of the primary motor cortex. Skilled limb movements begin to be expressed as the map develops. Development of the proper connections between CS axons and spinal neurons in cats depends on CS neural activity and motor behavioral experience during a critical postnatal period. Reversible CS inactivation or preventing limb use produces an aberrant distribution of CS axon terminations and impairs visually guided movements. This altered pattern of CS connections after inactivation in cats resembles the aberrant pattern of motor responses evoked by transcranial magnetic stimulation in hemiplegic cerebral palsy patients. Left untreated in the cat, these impairments do not resolve. We have found that activity-dependent processes can be harnessed in cats to reestablish normal CS connections and function. This finding suggests that aspects of normal CS connectivity and function might some day be restored in hemiplegic cerebral palsy.
皮质脊髓(CS)系统对控制熟练运动至关重要,在所有被研究的物种中,它在产前晚期和产后早期发育。在猫中,CS束轴突在脊髓灰质中的成熟终末模式有一系列发育过程,随后是初级运动皮层的运动图谱发育。随着图谱的发育,熟练的肢体运动开始表现出来。猫中CS轴突与脊髓神经元之间正确连接的发育取决于产后关键时期的CS神经活动和运动行为经验。可逆性CS失活或阻止肢体使用会导致CS轴突终末分布异常,并损害视觉引导的运动。猫失活后CS连接的这种改变模式类似于偏瘫性脑瘫患者经颅磁刺激诱发的异常运动反应模式。在猫中若不进行治疗,这些损伤不会恢复。我们发现,在猫中可以利用活动依赖过程来重建正常的CS连接和功能。这一发现表明,偏瘫性脑瘫患者正常CS连接和功能的某些方面可能有朝一日得以恢复。