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长期刺激大鼠感觉运动皮层的脊髓和脊髓上效应。

Spinal and supraspinal effects of long-term stimulation of sensorimotor cortex in rats.

作者信息

Chen Xiang Yang, Pillai Shreejith, Chen Yi, Wang Yu, Chen Lu, Carp Jonathan S, Wolpaw Jonathan R

机构信息

Laboratory of Nervous System Disorders, Wadsworth Center, New York State Department of Health, Albany, New York 12201-0509, USA.

出版信息

J Neurophysiol. 2007 Aug;98(2):878-87. doi: 10.1152/jn.00283.2007. Epub 2007 May 23.

Abstract

Sensorimotor cortex (SMC) modifies spinal cord reflex function throughout life and is essential for operant conditioning of the H-reflex. To further explore this long-term SMC influence over spinal cord function and its possible clinical uses, we assessed the effect of long-term SMC stimulation on the soleus H-reflex. In freely moving rats, the soleus H-reflex was measured 24 h/day for 12 wk. The soleus background EMG and M response associated with H-reflex elicitation were kept stable throughout. SMC stimulation was delivered in a 20-day-on/20-day-off/20-day-on protocol in which a train of biphasic 1-ms pulses at 25 Hz for 1 s was delivered every 10 s for the on-days. The SMC stimulus was automatically adjusted to maintain a constant descending volley. H-reflex size gradually increased during the 20 on-days, stayed high during the 20 off-days, and rose further during the next 20 on-days. In addition, the SMC stimulus needed to maintain a stable descending volley rose steadily over days. It fell during the 20 off-days and rose again when stimulation resumed. These results suggest that SMC stimulation, like H-reflex operant conditioning, induces activity-dependent plasticity in both the brain and the spinal cord and that the plasticity responsible for the H-reflex increase persists longer after the end of SMC stimulation than that underlying the change in the SMC response to stimulation.

摘要

感觉运动皮层(SMC)在整个生命过程中都会改变脊髓反射功能,并且对于H反射的操作性条件反射至关重要。为了进一步探究SMC对脊髓功能的这种长期影响及其可能的临床应用,我们评估了长期SMC刺激对比目鱼肌H反射的影响。在自由活动的大鼠中,每天24小时测量比目鱼肌H反射,持续12周。与H反射诱发相关的比目鱼肌背景肌电图和M反应在整个过程中保持稳定。SMC刺激按照20天开启/20天关闭/20天开启的方案进行,在开启日,每隔10秒发送一串25Hz的双相1毫秒脉冲,持续1秒。SMC刺激会自动调整以维持恒定的下行冲动。在20个开启日期间,H反射大小逐渐增加,在20个关闭日期间保持高位,并在接下来的20个开启日期间进一步上升。此外,维持稳定下行冲动所需的SMC刺激强度在数天内稳步上升。在20个关闭日期间下降,刺激恢复时再次上升。这些结果表明,SMC刺激与H反射操作性条件反射一样,会在大脑和脊髓中诱导活动依赖性可塑性,并且导致H反射增加的可塑性在SMC刺激结束后持续的时间比SMC对刺激反应变化的可塑性更长。

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