Roth Yiftach, Amir Alon, Levkovitz Yechiel, Zangen Abraham
Advanced Technology Center, Sheba Medical Center, Tel-Hashomert, Israel.
J Clin Neurophysiol. 2007 Feb;24(1):31-8. doi: 10.1097/WNP.0b013e31802fa393.
The H-coils are a novel development in transcranial magnetic stimulation (TMS), designed to achieve effective stimulation of deep neuronal regions without inducing unbearable fields cortically, thus broadly expanding the potential feasibility of TMS for research and for treating various neurologic disorders. This study compared the field distribution of two H-coil versions, termed H1 and H2, and of a standard figure-of-eight coil. Three-dimensional electrical field distributions of the H1 and H2-coils, designed for effective stimulation of prefrontal regions, and of a standard figure-8 coil, were measured in a head model filled with physiologic saline solution. With stimulator output at 120% of the hand motor threshold, suprathreshold field is induced by the H1-coil at lateral and medial frontal regions at depths of up to 4 to 5 cm, and by the H2-coil at medial prefrontal regions up to 2 to 3 cm, and at lateral frontal regions up to 5 to 6 cm. The figure-8 coil induced suprathreshold field focally under the coil's central segment, at depths of up to 1.5 cm. The ability of the H-coils to stimulate effectively deeper neuronal structures is obtained at the cost of a wider electrical field distribution in the brain. However, the H-coils enable simultaneous stimulation of several brain regions, whereas the depth penetration in each region can be controlled either by adjusting the stimulator output, and/or by varying the distance between various coil elements and the skull.
H 型线圈是经颅磁刺激(TMS)领域的一项新进展,旨在有效刺激深部神经元区域,同时避免在皮层诱发难以忍受的磁场,从而大大扩展了 TMS 在研究和治疗各种神经系统疾病方面的潜在可行性。本研究比较了两种 H 型线圈版本(称为 H1 和 H2)以及标准八字形线圈的磁场分布。在充满生理盐水溶液的头部模型中,测量了设计用于有效刺激前额叶区域的 H1 和 H2 型线圈以及标准八字形线圈的三维电场分布。当刺激器输出设置为手部运动阈值的 120%时,H1 型线圈在额叶外侧和内侧区域深度达 4 至 5 厘米处诱发阈上磁场,H2 型线圈在额叶内侧区域深度达 2 至 3 厘米处以及额叶外侧区域深度达 5 至 6 厘米处诱发阈上磁场。八字形线圈在其中心段下方局部诱发阈上磁场,深度达 1.5 厘米。H 型线圈能够有效刺激更深部神经元结构,但代价是在大脑中产生更广泛的电场分布。然而,H 型线圈能够同时刺激多个脑区,而且每个区域的深度穿透可通过调整刺激器输出和/或改变不同线圈元件与颅骨之间的距离来控制。