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Four-pole galvanic vestibular stimulation causes body sway about three axes

机译:四极电前庭刺激导致人体绕三个轴摇摆

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摘要

Galvanic vestibular stimulation (GVS) can be applied to induce the feeling of directional virtual head motion by stimulating the vestibular organs electrically. Conventional studies used a two-pole GVS, in which electrodes are placed behind each ear, or a three-pole GVS, in which an additional electrode is placed on the forehead. These stimulation methods can be used to induce virtual head roll and pitch motions when a subject is looking upright. Here, we proved our hypothesis that there are current paths between the forehead and mastoids in the head and show that our invented GVS system using four electrodes succeeded in inducing directional virtual head motion around three perpendicular axes containing yaw rotation by applying different current patterns. Our novel method produced subjective virtual head yaw motions and evoked yaw rotational body sway in participants. These results support the existence of three isolated current paths located between the mastoids, and between the left and right mastoids and the forehead. Our findings show that by using these current paths, the generation of an additional virtual head yaw motion is possible.
机译:电流前庭刺激(GVS)可通过电刺激前庭器官来诱导定向虚拟头部运动的感觉。传统研究使用两极GVS,其中电极放置在每只耳朵的后面,或三极GVS,其中额外的电极放置在前额。这些刺激方法可用于在受试者直立时诱发虚拟头侧倾和俯仰运动。在这里,我们证明了我们的假设,即额头和乳突之间存在电流路径,并表明我们发明的使用四个电极的GVS系统通过施加不同的电流模式成功地诱导了包含偏航旋转的围绕三个垂直轴的定向虚拟头部运动。我们的新方法在参与者中产生了主观的虚拟头偏航运动并引起偏航旋转体摇摆。这些结果支持在乳突之间,左右乳突和前额之间存在三个隔离的电流路径。我们的发现表明,通过使用这些当前路径,可以生成其他虚拟磁头偏航运动。

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