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低频皮层内电刺激可降低缺血性中风急性期感觉运动皮层的过度兴奋性。

Low-Frequency Intracortical Electrical Stimulation Decreases Sensorimotor Cortex Hyperexcitability in the Acute Phase of Ischemic Stroke.

作者信息

Nielsen Rasmus K, Jensen Winnie

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2017 Aug;25(8):1287-1296. doi: 10.1109/TNSRE.2016.2610762. Epub 2016 Sep 16.

Abstract

Ischemic stroke causes a series of complex pathophysiological events in the brain. Electrical stimulation of the brain has been considered as a novel neuroprotection intervention to save the penumbra. However, the effect on the cells' responsiveness and their ability to survive has yet to be established. The objective of the present study was to investigate the effects of low-frequency intracortical electrical stimulation (lf-ICES) applied to the ischemia-affected sensorimotor cortex immediately following ischemic stroke. Twenty male Sprague-Dawley rats were instrumented with an intracortical microelectrode array (IC MEA) and a cuff-electrode around the sciatic nerve. Photothrombosis intervention was performed within the sensorimotor cortex and the electrophysiological changes were assessed by analysis of the neural responses to stimulation of the sciatic nerve. Neuroprotection intervention consisted of eight 23 min lf-ICES blocks applied to the IC MEA during the initial 4 h following photothrombosis. Our results revealed that the area and magnitude of the sensorimotor cortex response significantly increased if ischemic stroke was allowed to progress uninterrupted, whereas this was not observed for the group of rats subjected to lf-ICES. Our findings indicate that low-frequency electrical stimulation is able to minimize hyperexcitability and may therefore be a candidate as neuroprotection intervention in the future.

摘要

缺血性中风会在大脑中引发一系列复杂的病理生理事件。脑电刺激已被视为一种挽救半暗带的新型神经保护干预措施。然而,其对细胞反应性及其存活能力的影响尚未明确。本研究的目的是探讨在缺血性中风后立即对受缺血影响的感觉运动皮层施加低频皮层内电刺激(lf-ICES)的效果。20只雄性Sprague-Dawley大鼠被植入皮层内微电极阵列(IC MEA)和坐骨神经周围的袖带电极。在感觉运动皮层内进行光血栓形成干预,并通过分析对坐骨神经刺激的神经反应来评估电生理变化。神经保护干预包括在光血栓形成后的最初4小时内对IC MEA施加8个23分钟的lf-ICES阻断。我们的结果显示,如果缺血性中风不受干扰地进展,感觉运动皮层反应的面积和幅度会显著增加,而接受lf-ICES的大鼠组则未观察到这种情况。我们的研究结果表明,低频电刺激能够将过度兴奋降至最低,因此未来可能成为神经保护干预的候选方法。

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