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Pre-adaptation to noisy Galvanic vestibular stimulation is associated with enhanced sensorimotor performance in novel vestibular environments

机译:在新的前庭环境中预先适应嘈杂的电流前庭刺激与增强感觉运动表现有关

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摘要

Performance on a visuomotor task in the presence of novel vestibular stimulation was assessed in nine healthy subjects. Four subjects had previously been adapted to 120 min exposure to noisy Galvanic vestibular stimulation (GVS) over 12 weekly sessions of 10 min; the remaining five subjects had never experienced GVS. Subjects were seated in a flight simulator and asked to null the roll motion of a visual bar presented on a screen using a joystick. Both the visual bar and the simulator cabin were moving in roll with a pseudorandom (sum of sines) waveform that were uncorrelated. The cross correlation coefficient, which ranges from 1 (identical waveforms) to 0 (unrelated waveforms), was calculated for the ideal (perfect nulling of bar motion) and actual joystick input waveform for each subject. The cross correlation coefficient for the GVS-adapted group (0.90 [SD 0.04]) was significantly higher (t[8] = 3.162; p = 0.013) than the control group (0.82 [SD 0.04]), suggesting that prior adaptation to GVS was associated with an enhanced ability to perform the visuomotor task in the presence of novel vestibular noise.
机译:在9位健康受试者中,评估了在存在新的前庭刺激的情况下进行视觉运动任务的表现。先前有四名受试者适应于在12分钟的每周10分钟内暴露于嘈杂的电前庭刺激(GVS)中120分钟;其余五个科目从未经历过GVS。将受试者坐在飞行模拟器中,并要求使用操纵杆使显示在屏幕上的可视条的滚动运动无效。视觉条和模拟器舱都以不相关的伪随机(正弦和)波形滚动移动。计算出互相关系数,范围是1(相同的波形)到0(无关的波形),是针对每个对象的理想值(条形运动的完美零位)和实际操纵杆输入波形。适应GVS的组(0.90 [SD 0.04])的互相关系数显着高于对照组(0.82 [SD 0.04])(t [8] = 3.162; p = 0.013),表明先前适应GVS在新的前庭噪声的存在下,其与执行运动运动任务的能力增强有关。

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