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Effects of low-frequency repetitive electric and magnetic brain stimulation on somatosensory evoked potentials in rats

机译:低频重复电脑刺激对大鼠躯体感应诱发电位的影响

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Since the mechanism that repetitive electric (rES) or transcranial magnetic stimulation (rTMS) transiently modulates cortical neuron excitabilities is not clear, we studied the effects of rES and rTMS on somatosensory evoked potentials (SEPs) in rats. After anesthetizing rats, a pair of burr holes was drilled in the skull over the right somatosensory area for the hind limb. rES was performed with a frequency of 1 or 0.2 Hz for 3 h and 20 min using two stainless screws inserted into the burr holes. The right somatosensory areas were magnetically stimulated with a frequency of 0.2 Hz for 2 h and 20 min using a small eight-figure coil. SEPs elicited by stimulating the left hind limb was recorded before and after rES or rTMS. Amplitudes and latencies of SEP components were measured and compared between the rES or rTMS and control groups. As a result, amplitudes of cortical components of SEPs were significantly reduced after rES or rTMS compared with those in the control. Amplitudes of other components were not significantly changed by rES or rTMS. The present results support rES and rTMS having similar effects on cortical neuron excitabilities.
机译:由于重复电(RES)或经颅磁刺激(RTMS)瞬时调节皮质神经元刺激的机制尚不清楚,因此我们研究了RES和RTMS对大鼠躯体感应诱发电位(SEP)的影响。在麻醉大鼠之后,在头骨上钻出一对毛刺孔,用于后肢的右侧传感区域。使用插入毛刺孔中的两个不锈钢螺钉,频率为1或0.2Hz的频率为1或0.2Hz,和20分钟。使用小的八个数字线圈,用0.2Hz的频率为0.2Hz的频率致磁性刺激肌刺激。通过刺激左后肢引出的SEPs被记录在RE或RTMS之前和之后。测量SEP组分的巨大和延迟,并在RES或RTMS和对照组之间进行比较。结果,与对照中的那些相比,在RES或RTMS后,SEPs的皮质组分的振幅显着降低。 RER或RTMS没有显着改变其他组分的振幅。本结果支持具有类似效果对皮质神经元兴兴的res和rtms。

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