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首页> 外文期刊>Journal of Neurophysiology >Roll rotation cues influence roll tilt perception assayed using a somatosensory technique.
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Roll rotation cues influence roll tilt perception assayed using a somatosensory technique.

机译:辊旋转提示会影响使用体感技术测定的辊倾斜感。

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摘要

We investigated how the nervous system processes ambiguous cues from the otolith organs by measuring roll tilt perception elicited by two motion paradigms. In one paradigm (tilt), eight subjects were sinusoidally tilted in roll with the axis of rotation near ear level. Stimulus frequencies ranged from 0.005 to 0.7 Hz, and the peak amplitude of tilt was 20 degrees . During this paradigm, subjects experienced a sinusoidal variation of interaural gravitational force with a peak of 0.34 g. The second motion paradigm (translation) was designed to yield the same sinusoidal variation in interaural force but did not include a roll canal cue. This was achieved by sinusoidally translating the subjects along their interaural axis. For the 0.7-Hz translation trial, the subjects were simply translated from side to side. A centrifuge was used for the 0.005- to 0.5-Hz translation trials; the subjects were rotated in yaw at 250 degrees /s for 5 min before initiating sinusoidal translations yielding an interaural otolith stimulus composed of both centrifugal and radial acceleration. Using a somatosensory task to measure roll tilt perception, we found substantial differences in tilt perception during the two motion paradigms. Because the primary difference between the two motion paradigms was the presence of roll canal cues during roll tilt trials, these perceptual differences suggest that canal cues influence tilt perception. Specifically, rotational cues provided by the semicircular canals help the CNS resolve ambiguous otolith cues during head tilt, yielding more accurate tilt perception.
机译:我们通过测量由两种运动范例引起的侧倾感知,研究了神经系统如何处理来自耳石器官的歧义线索。在一个范例(倾斜)中,将八名受试者以正弦曲线滚动倾斜,旋转轴接近耳朵的水平。刺激频率范围为0.005至0.7 Hz,倾斜的峰值幅度为20度。在此范例中,受试者经历了耳间重力的正弦变化,峰值为0.34 g。第二运动范例(平移)旨在产生相同的听觉力正弦曲线变化,但不包括侧倾管提示。这是通过沿对象的耳间轴进行正弦平移来实现的。对于0.7 Hz的转换试验,只需将对象从一侧移到另一侧即可。离心机用于0.005-0.5 Hz的转换试验;在开始正弦平移之前,先将受试者以250度/ s的速度在偏航条件下旋转5分钟,然后产生由离心加速度和径向加速度共同构成的听觉耳石刺激。使用体感任务来测量侧倾感,我们发现在两种运动范例中,侧倾感存在很大差异。由于这两种运动范例之间的主要差异是在侧倾试验期间是否存在侧倾管提示,因此这些知觉差异表明,侧倾提示会影响倾斜感。具体而言,由半圆形管提供的旋转提示可帮助CNS在头部倾斜期间分辨歧义的耳石提示,从而产生更准确的倾斜感。

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