首页> 美国卫生研究院文献>The Journal of Physiology >Effects of visual and non-visual mechanisms on the vestibulo-ocular reflex during pseudo-random head movements in man.
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Effects of visual and non-visual mechanisms on the vestibulo-ocular reflex during pseudo-random head movements in man.

机译:视觉和非视觉机制对人伪随机头部运动过程中前庭眼反射的影响。

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摘要

1. The behaviour of the vestibulo-ocular reflex (VOR) in man was examined using pseudo-random and sinusoidal whole-body angular-motion stimuli applied about the yaw axis by a servo-controlled turn-table. 2. The VOR response was assessed in four conditions; during fixation on a head-fixed target (HFT); during attempted fixation in the dark of an imagined head-fixed (IHFT) or earth-fixed target (IEFT) and in darkness (DRK) whilst performing an auditory discrimination task. 3. When the pseudo-random stimulus was composed of four sinusoids, the three lowest frequencies (0.11, 0.24 and 0.37 Hz) were maintained constant whilst the highest frequency (F4) was varied from 0.39 to 2.08 Hz. In darkness (DRK condition) and when imagining a head-fixed target (IHFT condition) the gain of slow-phase eye velocity was not significantly affected by the frequency of the highest-frequency component, although there were significant changes in the phase for the IHFT condition. 4. During fixation of a real head-fixed target (HFT condition), both the gain and phase of eye velocity were significantly modified by the frequency (F4) of the highest-frequency component. When F4 was 0.39 Hz, all frequency components had a low gain (mean 0.05), but as F4 was increased there was a significant (P less than 0.001) increase in gain for all three low-frequency components which reached a maximum (mean 0.17) when F4 was 2.08 Hz. However, the gain for the highest frequency component always remained comparable to that obtained in response to a single discrete sinusoid of the same frequency. 5. When the stimulus was composed of only two sinusoids a similar increase in gain of the lower-frequency (0.22 Hz) component was observed in the head-fixed target condition as the frequency of the higher-frequency component was increased from 0.39 to 2.78 Hz. However, VOR gain was not significantly modified by the frequency of the higher-frequency component when subjects imagined a head-fixed or earth-fixed target in darkness. 6. The findings indicate that high levels of VOR suppression can be achieved in the head-fixed target condition with pseudo-random stimuli when all frequency components are below 0.4 Hz. But if the highest-frequency component rises above 0.8 Hz, optimum suppression is confined to the highest-frequency component, whilst suppression of the low-frequency components is significantly reduced.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.使用伪随机和正弦形全身偏角刺激,通过伺服控制转盘对人的前庭眼反射(VOR)行为进行了检查。 2.在四个条件下评估了VOR反应;在固定在头部固定目标(HFT)上;在执行想象的辨别任务时,在黑暗中想象的头戴固定(IHFT)或固定在地面上的目标(IEFT)以及黑暗(DRK)中进行固定尝试期间。 3.当伪随机刺激由四个正弦波组成时,三个最低频率(0.11、0.24和0.37 Hz)保持恒定,而最高频率(F4)从0.39到2.08 Hz变化。在黑暗中(DRK条件下)和对头部固定目标进行成像(IHFT条件)时,尽管高频率分量的相位发生了显着变化,但慢相眼速度的增益并不受最高频率分量的频率影响。 IHFT条件。 4.在固定真实的头部固定目标(HFT条件)期间,最高频率分量的频率(F4)显着改变了眼速度的增益和相位。当F4为0.39 Hz时,所有频率分量均具有较低的增益(平均值为0.05),但随着F4的增加,所有三个低频分量的增益均显着增加(P小于0.001),并达到最大值(平均值为0.17)。当F4为2.08 Hz时。然而,最高频率分量的增益始终保持与响应相同频率的单个离散正弦曲线所获得的增益相当。 5.当刺激仅由两个正弦波组成时,在头部固定的目标条件下,低频分量(0.22 Hz)的增益会类似地增加,因为高频分量的频率从0.39增加到2.78赫兹。但是,当受试者在黑暗中想象头部固定或固定在地面上的目标时,高频分量的频率并未显着改变VOR增益。 6.研究结果表明,当所有频率分量均低于0.4 Hz时,在具有伪随机刺激的头戴式目标条件下,可以实现高水平的VOR抑制。但是,如果最高频率成分上升到0.8 Hz以上,则最佳抑制仅限于最高频率成分,而对低频成分的抑制则大大降低。(摘要截断为400字)

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