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首页> 外文期刊>Journal of Neurophysiology >Time course of the subjective visual vertical during sustained optokinetic an galvanic vestibular stimulation
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Time course of the subjective visual vertical during sustained optokinetic an galvanic vestibular stimulation

机译:持续视觉垂直期间的时期过程在持续的视神经中的一种电流前庭刺激

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摘要

The brain is thought to use rotation cues from both the vestibular and optokinetic system to disambiguate the gravito-inertial force, as measured by the otoliths, into components of linear acceleration and gravity direction relative to the head. Hence, when the head is stationary and upright, an erroneous percept of tilt arises during optokinetic roll stimulation (OKS) or when an artificial canal-like signal is delivered by means of galvanic vestibular stimulation (GVS). It is still unknown how this percept is affected by the combined presence of both cues or how it develops over time. Here, we measured the time course of the subjective visual vertical (SVV), as a proxy of perceived head tilt, in human participants (n = 16) exposed to constant-current GVS (1 and 2 mA, cathodal and anodal) and constant-velocity OKS (30 degrees/s clockwise and counterclockwise) or their combination. In each trial, participants continuously adjusted the orientation of a visual line, which drifted randomly, to Earth vertical. We found that both GVS and OKS evoke an exponential time course of the SVV. These time courses have different amplitudes and different time constants, 4 and 7 s respectively, and combine linearly when the two stimulations are presented together. We discuss these results in the framework of observer theory and Bayesian state estimation.
机译:脑被认为使用旋转线索从前庭和视动系统既消除歧义的gravito惯性力,如通过测量耳石成线性加速度和相对重力方向上的头部组件。因此,当头部处​​于静止和直立,倾斜的错误知觉视动辊期间出现刺激(OKS),或者当一个人工运河样信号借助于电前庭刺激(GVS)递送。如何感知由两个线索的组合存在或者它如何随时间发展的影响仍是一个未知数。在这里,我们测量的主观视觉垂直(SVV)的时间过程,如感知头部倾斜的代理,在人类受试者暴露于恒流GVS(1和2毫安,阴极和阳极)和恒定(N = 16) -velocity OKS(30度/秒顺时针和逆时针)或它们的组合。在每次试验中,参与者不断调整视线,其随机地漂移,地球垂直的取向。我们发现,GVS和OKS都唤起SVV的指数时程。这些时间过程具有不同的振幅和不同的时间常数,4个7秒分别,而当所述两个刺激被呈现一起线性地组合。我们讨论这些结果在观测器理论和贝叶斯状态估计的框架。

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