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J Neurophysiol. 2011 May;105(5):2150-6. doi: 10.1152/jn.00781.2010. Epub 2011 Feb 23.
2
Safety, ethical considerations, and application guidelines for the use of transcranial magnetic stimulation in clinical practice and research.经颅磁刺激在临床实践与研究中的安全性、伦理考量及应用指南
Clin Neurophysiol. 2009 Dec;120(12):2008-2039. doi: 10.1016/j.clinph.2009.08.016. Epub 2009 Oct 14.
3
Navigated transcranial magnetic stimulation and computed electric field strength reduce stimulator-dependent differences in the motor threshold.导航经颅磁刺激和计算电场强度可减少运动阈值中与刺激器相关的差异。
J Neurosci Methods. 2008 Sep 15;174(1):116-22. doi: 10.1016/j.jneumeth.2008.06.032. Epub 2008 Jul 11.
4
Intracortical modulation of cortical-bulbar responses for the masseter muscle.咬肌皮质-延髓反应的皮质内调制
J Physiol. 2008 Jul 15;586(14):3385-404. doi: 10.1113/jphysiol.2008.153288. Epub 2008 May 22.
5
Primary motor cortex activation by transcranial direct current stimulation in the human brain.经颅直流电刺激对人脑中初级运动皮层的激活作用。
Neurosci Lett. 2008 Apr 11;435(1):56-9. doi: 10.1016/j.neulet.2008.02.012. Epub 2008 Feb 12.
6
Factors influencing cortical silent period: optimized stimulus location, intensity and muscle contraction.影响皮质静息期的因素:优化刺激位置、强度和肌肉收缩。
J Neurosci Methods. 2008 Mar 30;169(1):231-8. doi: 10.1016/j.jneumeth.2007.12.005. Epub 2007 Dec 23.
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Normative data on changes in transcranial magnetic stimulation measures over a ten hour period.
Clin Neurophysiol. 2005 Sep;116(9):2099-109. doi: 10.1016/j.clinph.2005.06.006.
8
Somatotopic blocking of sensation with navigated transcranial magnetic stimulation of the primary somatosensory cortex.通过对初级体感皮层进行导航式经颅磁刺激实现体感定位性感觉阻断。
Hum Brain Mapp. 2005 Oct;26(2):100-9. doi: 10.1002/hbm.20142.
9
Significance of coil orientation for motor evoked potentials from nasalis muscle elicited by transcranial magnetic stimulation.经颅磁刺激诱发鼻肌运动诱发电位时线圈方向的意义
Clin Neurophysiol. 2004 Apr;115(4):862-70. doi: 10.1016/j.clinph.2003.11.033.
10
The physiological basis of transcranial motor cortex stimulation in conscious humans.清醒人类经颅运动皮层刺激的生理基础。
Clin Neurophysiol. 2004 Feb;115(2):255-66. doi: 10.1016/j.clinph.2003.10.009.

健康受试者中经导航优化 TMS 电流方向映射对面手部肌肉运动皮层的辨别。

Differentiation of motor cortical representation of hand muscles by navigated mapping of optimal TMS current directions in healthy subjects.

机构信息

Department of Neurology, Division of Cognitive Neurology, Berenson-Allen Center for Noninvasive Brain Stimulation, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.

出版信息

J Clin Neurophysiol. 2013 Aug;30(4):390-5. doi: 10.1097/WNP.0b013e31829dda6b.

DOI:10.1097/WNP.0b013e31829dda6b
PMID:23912579
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3740163/
Abstract

The precision of navigated transcranial magnetic stimulation (TMS) to map the human primary motor cortex may be effected by the direction of TMS-induced current in the brain as determined by the orientation of the stimulation coil. In this study, the authors investigated the effect of current directionality on motor output mapping using navigated brain stimulation. The goal of this study was to determine the optimal coil orientation (and, thus, induced brain current) to activate hand musculature representations relative to each subject's unique neuroanatomical landmarks. The authors studied motor output maps for the first dorsal interosseous, abductor pollicis brevis, and abductor digiti minimi muscles in 10 normal volunteers. Monopolar current pulses were delivered through a figure-of-eight-shaped TMS coil, and motor evoked potentials were recorded using electromyography. At each targeted brain region, the authors systematically rotated the TMS coil to determine the direction of induced current in the brain for induction of the largest motor evoked potentials. These optimal current directions were expressed as an angle relative to each subject's central sulcus. Consistency of the optimal current direction was assessed by repeating the entire mapping procedure on two different occasions across subjects. The authors demonstrate that systematic optimization of current direction as guided by MRI-based neuronavigation improves the resolution of cortical output motor mapping with TMS.

摘要

经颅磁刺激(TMS)导航的精确性可能会受到 TMS 诱导电流在大脑中的方向影响,而该方向由刺激线圈的方向决定。在这项研究中,作者使用经颅磁刺激导航研究了电流方向对运动输出映射的影响。本研究的目的是确定相对于每个受试者独特的神经解剖学标志,激活手部肌肉代表区的最佳线圈方向(以及由此产生的脑内电流)。作者研究了 10 名正常志愿者的第一背间骨间肌、拇指外展短肌和小指外展肌的运动输出图。单极电流脉冲通过 8 字形 TMS 线圈传递,肌电图记录运动诱发电位。在每个目标脑区,作者系统地旋转 TMS 线圈,以确定大脑中诱导电流的方向,从而诱导最大的运动诱发电位。这些最佳电流方向相对于每个受试者的中央沟以角度表示。通过在不同时间在不同受试者中重复整个映射过程来评估最佳电流方向的一致性。作者证明,在 MRI 引导下对电流方向进行系统优化,可提高 TMS 皮质运动输出映射的分辨率。