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首页> 外文期刊>Journal of Cognitive Neuroscience >Expectation and the Vestibular Control of Balance
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Expectation and the Vestibular Control of Balance

机译:期望与前庭平衡控制

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Recent experiments have shown that the visual channel of balance control is susceptible to cognitive influence. When a subject is aware that an upcoming visual disturbance is likely to arise from an external agent, that is, movement of the visual environment, rather than from self-motion, the whole-body response is suppressed. Here we ask whether this is a principle that generalizes to the vestibular channel of balance control. We studied the whole-body response to a pure vestibular perturbation produced by galvanic vestibular stimulation (GVS; 0.5 mA for 3 sec). In the first experiment, subjects stood with vision occluded while stimuli were delivered either by the subject himself (self-triggered) or by the experimenter. For the latter, the stimulus was delivered either without warning (unpredictable) or at a fixed interval following an auditory cue (predictable). Results showed that GVS evoked a whole-body response that was not affected by whether the stimulus was self-triggered, predictable, or unpredictable. The same results were obtained in a second experiment in which subjects had access to visual information during vestibular stimulation. We conclude that the vestibular-evoked balance response is automatic and immune to knowledge of the source of the perturbation and its timing. We suggest the reason for this difference between visual and vestibular channels stems from a difference in their natural abilities to signal self-motion. The vestibular system responds to acceleration of the head in space and therefore always signals self-motion. Visual flow, on the other hand, is ambiguous in that it signals object motion and eye motion, as well as self-motion.
机译:最近的实验表明,平衡控制的视觉通道容易受到认知影响。当受试者意识到即将到来的视觉障碍很可能是由外部因素引起的,即视觉环境的移动而不是由自身运动引起的,则全身反应受到抑制。在这里,我们问这是否是一种泛化至平衡控制的前庭通道的原理。我们研究了全身对电前庭刺激(GVS; 0.5 mA持续3秒)产生的纯前庭摄动的反应。在第一个实验中,受测者本人(自行触发)或由实验者提供刺激,而受测者则被遮挡了视力。对于后者,刺激是在没有警告的情况下(无法预测的)或在听觉提示后的固定间隔(可以预测的)下传递的。结果表明,GVS引起的全身反应不受该刺激是自触发,可预测还是不可预测的影响。在第二个实验中获得了相同的结果,在该实验中,受试者可以在前庭刺激过程中获得视觉信息。我们得出的结论是,前庭诱发的平衡反应是自动的,并且不受扰动源及其时机的影响。我们建议视觉通道和前庭通道之间存在这种差异的原因是其自然信号传递自我运动能力的差异。前庭系统响应头部在空间中的加速度,因此总是发出自我运动的信号。另一方面,视觉流是模棱两可的,因为它发出物体运动,眼睛运动以及自我运动的信号。

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