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Human ocular torsion and perceived roll responses to linear acceleration

机译:人眼扭转和感知的侧倾对线性加速度的反应

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摘要

We investigated if human ocular torsion (OT) and perceived roll (PR) are elicited in response to either dynamic interaural linear acceleration or dynamic roll tilt of the gravito-inertial force (GIF). We expanded a previous study [] that measured only OT across a limited frequency-range (from 0.35 Hz to 1 Hz) by simultaneously measuring OT and PR at three very low (0.01, 0.02 and 0.05 Hz) and one high (1 Hz) frequencies. Three experimental conditions were investigated: (1) Y-Upright with acceleration along the interaural (Y) axis while upright, (2) Y-Supine with acceleration along the Y -axis while supine, and (3) Z-RED with acceleration along the rostro-caudal (Z) axis with right-ear-down (RED). OT was measured by video-oculography, while PR was measured by use of a somatosensory bar. OT and PR were qualitatively different. Large OT responses were measured for Y-Upright and Y-Supine, while large perceived roll responses were observed for Y-Upright and Z-RED. OT for Z-RED was small, and PR for Y-Supine was absent. In conclusion, OT and PR appear governed by qualitatively different neural mechanisms. OT appears mostly influenced by central low-pass filtering of interaural graviceptor cues, while PR appears mostly influenced by roll tilt of the GIF.
机译:我们调查了是否响应动态听觉线性加速度或重力-惯性力(GIF)的动态侧倾倾斜引起了人类眼部扭转(OT)和感知侧倾(PR)。我们扩展了先前的研究[],通过同时在三个非常低的频率(0.01、0.02和0.05 Hz)和一个很高的频率(1 Hz)下同时测量OT和PR,从而仅在有限的频率范围(从0.35 Hz到1 Hz)中测量OT。频率。研究了三个实验条件:(1)Y-直立并沿耳间(Y)轴加速,(2)Y-Supine并经仰卧时沿Y轴的加速度,以及(3)Z-RED沿顺听时的加速度右耳向下(RED)的弓形尾(Z)轴。 OT通过视频眼动仪进行测量,而PR通过使用体感棒进行测量。 OT和PR在质量上有所不同。对Y-立式和Y-仰卧测量了较大的OT响应,而对Y-立式和Z-RED观察到了较大的侧倾响应。 Z-RED的OT很小,而Y-Supine的PR则不存在。总之,OT和PR似乎受质的不同神经机制支配。 OT主要受耳间重力感受器信号的中央低通滤波的影响,而PR主要受GIF滚动倾斜的影响。

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