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一项关于前庭刺激调节选择性注意的事件相关电位研究。

An event-related potentials study on selective attention modulated by vestibular stimulation.

作者信息

Wang Lin-Jie, Wei Jin-he, Zhang Dan, Dong Wei-jun, Guo Jian-ping, Hu Mao-qi

机构信息

The Fourth Military Medical University, Xi'an.

出版信息

Space Med Med Eng (Beijing). 2004 Apr;17(2):79-84.

Abstract

OBJECTIVE

To explore the dynamic change of the late attentional selection process under linearly varied vestibular stimuli using event-related potentials (ERPs) technique.

METHOD

Thirty-three subjects participated in the experiment. They were exposed to vestibular stimulation of constant angular velocity rotation (10 degrees/s) and four levels of constant angular acceleration rotation, the acceleration was 0.6 degrees/s2, 0.8 degrees/s2, 1.0 degrees/s2, 1.2 degrees/s2 respectively. The same auditory go/no-go cognitive task was done during the stimulation. The task involved verbally given Chinese digit number from two to nine with 1000 ms random interval. Subjects were asked to push the button for the odd numbers (target) and withhold to the even numbers (non-target).

RESULT

Compared with control and different level of constant angular acceleration rotation, the N2 amplitude of non-target ERPs (NT-ERPs) decreased significantly over anterior-central scalp during 10 degrees/s constant rotation, but the N2 amplitude of target ERPs (T-ERPs) reduced significantly only at F4, F(Z) and T4 sites. The P3 latency of T-ERPs decreased significantly in 10 degrees/s constant rotation in contrast with control. Under four different acceleration level, the P3 latency of T-ERPs was relatively longer in 0.8 degrees/s2 and 1.0 degrees/s2, but shorter in 0.6 degrees/s2 and 1.2 degrees/s2.

CONCLUSION

Constant angular velocity rotation had an activating effect on late attentional selection process. In contrast to the activation effect of constant angular velocity rotation, constant angular acceleration had an inhibition effect on the cognitive processes and this inhibition effect may have several levels.

摘要

目的

运用事件相关电位(ERP)技术,探究线性变化的前庭刺激下晚期注意选择过程的动态变化。

方法

33名受试者参与实验。他们接受了恒角速度旋转(10度/秒)以及四种不同水平的恒角加速度旋转的前庭刺激,加速度分别为0.6度/秒²、0.8度/秒²、1.0度/秒²、1.2度/秒²。在刺激过程中进行相同的听觉go/no-go认知任务。该任务涉及口头给出2到9的中文数字,随机间隔为1000毫秒。要求受试者对奇数(目标)按键,对偶数(非目标)不做反应。

结果

与对照组及不同水平的恒角加速度旋转相比,在10度/秒的恒速旋转过程中,非目标ERP(NT-ERP)的N2波幅在额中央头皮区域显著降低,但目标ERP(T-ERP)的N2波幅仅在F4、F(Z)和T4位点显著降低。与对照组相比,T-ERP的P3潜伏期在10度/秒的恒速旋转中显著缩短。在四种不同的加速度水平下,T-ERP的P3潜伏期在0.8度/秒²和1.0度/秒²时相对较长,而在0.6度/秒²和1.2度/秒²时较短。

结论

恒角速度旋转对晚期注意选择过程具有激活作用。与恒角速度旋转的激活作用相反,恒角加速度对认知过程具有抑制作用,且这种抑制作用可能存在多个水平。

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