首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Effects of a high-frequency, low-intensity, biphasic conditioning train of TMS pulses on the human motor cortex.
【24h】

Effects of a high-frequency, low-intensity, biphasic conditioning train of TMS pulses on the human motor cortex.

机译:TMS脉冲的高频,低强度,双相调节序列对人体运动皮层的影响。

获取原文
获取原文并翻译 | 示例
           

摘要

Intracortical circuit excitability of the human motor cortex has been studied by measuring effects of some conditioning TMS stimulus on the succeeding test TMS stimulus in the motor cortex, such as short-interval intracortical inhibition (SICI) and intracortical facilitation (ICF). A single-pulse TMS was used as a conditioning stimulus (CS) in these techniques, but a train of several TMS pulses might induce some intracortical changes in the motor cortex more effectively. For nine healthy volunteers, we compared the SICI and ICF induced by a single conditioning biphasic TMS pulse with those induced by a train of 10 biphasic TMS pulses of the same intensity. As a conditioning stimulus, we delivered a subthreshold single biphasic pulse (CS1) or 10, 10-Hz biphasic pulses (CS10) before a suprathreshold monophasic test stimulus at several interstimulus intervals (ISIs) of 3-40 ms over the hand motor area. The CS intensity was 50-100% of the active motor threshold (AMT). We compared the motor cortical excitability after the conditioning stimulus (single pulse or a train of ten pulses) at the intervals for SICI and ICF. A train of ten 10-Hz pulses elicited greater inhibition at short ISIs than a single conditioning pulse did. The facilitation at ISIs around 10 ms corresponding to the ICF was evoked by CS1 only at an intensity of 80% AMT; CS10 evoked no ICF. Furthermore, CS10 evoked MEP inhibition at longer intervals. Results show that a train of high-frequency, low-intensity, biphasic TMS pulses can have a strong inhibitory effect on the motor cortex.
机译:通过测量某些条件性TMS刺激对运动皮层中后续测试TMS刺激的影响,例如短间隔皮层内抑制(SICI)和皮层内促进(ICF),研究了人类运动皮层的皮层内电路兴奋性。在这些技术中,单脉冲TMS被用作条件刺激(CS),但是一系列TMS脉冲可能会更有效地诱发运动皮层的皮质内变化。对于九名健康志愿者,我们比较了单个条件性双相TMS脉冲与一系列相同强度的10个双相TMS脉冲诱导的SICI和ICF。作为调节刺激,我们在手部运动区域内以3-40 ms的几个刺激间隔(ISIs)传递了一个阈值以下的单双相脉冲(CS1)或10、10 Hz双相脉冲(CS10)之前的阈值以上的单相测试刺激。 CS强度为活动电机阈值(AMT)的50-100%。我们比较了在以SICI和ICF为间隔的条件刺激(单脉冲或十个脉冲序列)后的运动皮层兴奋性。一串10个10 Hz脉冲在短ISI时比单个调节脉冲引起更大的抑制。 CS1仅在强度为AMT的80%时才引起对应于ICF的ISI大约10 ms的促进。 CS10引发了没有ICF。此外,CS10在更长的时间间隔内引起MEP抑制。结果表明,一列高频,低强度,双相TMS脉冲对运动皮层具有很强的抑制作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号