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Human perceptual overestimation of whole body roll tilt in hypergravity

机译:人类对超重力下全身侧倾倾斜的感知高估

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摘要

Hypergravity provides a unique environment to study human perception of orientation. We utilized a long-radius centrifuge to study perception of both static and dynamic whole body roll tilt in hypergravity, across a range of angles, frequencies, and net gravito-inertial levels (referred to as G levels). While studies of static tilt perception in hypergravity have been published, this is the first to measure dynamic tilt perception (i.e., with time-varying canal stimulation) in hypergravity using a continuous matching task. In complete darkness, subjects reported their orientation perception using a haptic task, whereby they attempted to align a hand-held bar with their perceived horizontal. Static roll tilt was overestimated in hypergravity, with more overestimation at larger angles and higher G levels, across the conditions tested (overestimated by ∼35% per additional G level, P < 0.001). As our primary contribution, we show that dynamic roll tilt was also consistently overestimated in hypergravity (P < 0.001) at all angles and frequencies tested, again with more overestimation at higher G levels. The overestimation was similar to that for static tilts at low angular velocities but decreased at higher angular velocities (P = 0.006), consistent with semicircular canal sensory integration. To match our findings, we propose a modification to a previous Observer-type canal-otolith interaction model. Specifically, our data were better modeled by including the hypothesis that the central nervous system treats otolith stimulation in the utricular plane differently than stimulation out of the utricular plane. This modified model was able to simulate quantitatively both the static and the dynamic roll tilt overestimation in hypergravity measured experimentally.
机译:超重力为研究人类对方向的感知提供了独特的环境。我们利用长半径离心机研究了超重力在整个角度,频率和净重力惯性水平(称为G水平)范围内对静态和动态全身滚动倾斜的感知。虽然已经发表了关于超重力下的静态倾斜感知的研究,但这是第一个使用连续匹配任务来测量超重力下的动态倾斜感知(即随时间变化的运河刺激)的研究。在完全黑暗的环境中,受试者使用触觉任务报告了他们的方向感,从而尝试将手持式杠铃与其感知的水平方向对齐。在测试条件下,超重力下的静态滚动倾角被高估,在更大的角度和更高的G水平下,静态滚动倾角被高估了(每增加一个G水平,高估了约35%,P <0.001)。作为我们的主要贡献,我们表明,在所有测试的角度和频率下,超重力(P <0.001)中的动态滚动倾角也一直被高估,而在更高的G水平下,动态倾角也被高估了。高估与低角速度下的静态倾斜相似,但在高角速度下(P = 0.006)降低,这与半圆管感觉统合一致。为了匹配我们的发现,我们建议对以前的“观察者”型运河-耳石相互作用模型进行修改。具体而言,我们的数据可以通过包含以下假设来更好地建模:中枢神经系统对耳蜗平面内耳石刺激的治疗与对耳蜗平面外耳蜗刺激的处理不同。该修改后的模型能够定量地模拟实验测量的超重力下的静态和动态侧倾过高估计。

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