Neuroimaging evidence of visual-vestibular interaction accounting for perceptual mislocalization induced by head rotation.

IF 4.8 2区 医学 Q1 NEUROSCIENCES Neurophotonics Pub Date : 2024-01-01 Epub Date: 2024-01-31 DOI:10.1117/1.NPh.11.1.015005
Xin He, Min Bao
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Abstract

Significance: A fleeting flash aligned vertically with an object remaining stationary in the head-centered space would be perceived as lagging behind the object during the observer's horizontal head rotation. This perceptual mislocalization is an illusion named head-rotation-induced flash-lag effect (hFLE). While many studies have investigated the neural mechanism of the classical visual FLE, the hFLE has been hardly investigated.

Aim: We measured the cortical activity corresponding to the hFLE on participants experiencing passive head rotations using functional near-infrared spectroscopy.

Approach: Participants were asked to judge the relative position of a flash to a fixed reference while being horizontally rotated or staying static in a swivel chair. Meanwhile, functional near-infrared spectroscopy signals were recorded in temporal-parietal areas. The flash duration was manipulated to provide control conditions.

Results: Brain activity specific to the hFLE was found around the right middle/inferior temporal gyri, and bilateral supramarginal gyri and superior temporal gyri areas. The activation was positively correlated with the rotation velocity of the participant around the supramarginal gyrus and negatively related to the hFLE intensity around the middle temporal gyrus.

Conclusions: These results suggest that the mechanism underlying the hFLE involves multiple aspects of visual-vestibular interactions including the processing of multisensory conflicts mediated by the temporoparietal junction and the modulation of vestibular signals on object position perception in the human middle temporal complex.

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视觉与前庭相互作用的神经影像学证据,解释了头部旋转引起的知觉错位。
意义:在观察者水平转动头部时,与在头部中心空间保持静止的物体垂直对齐的一闪即逝的闪光会被认为滞后于物体。这种知觉错位是一种错觉,被命名为头部旋转诱发的闪光滞后效应(hFLE)。目的:我们使用功能性近红外光谱测量了经历被动头部旋转的参与者大脑皮层与 hFLE 相对应的活动:方法:要求参与者在转椅上水平旋转或保持静止时,判断闪光与固定参照物的相对位置。同时,在颞顶叶区域记录功能性近红外光谱信号。为了提供对照条件,对闪光持续时间进行了调整:结果:在右侧颞中/下回周围、双侧边际上回和颞上回区域发现了 hFLE 的特异性脑活动。边上回周围的激活与参与者的旋转速度呈正相关,而颞中回周围的激活与 hFLE 强度呈负相关:这些结果表明,hFLE 的基本机制涉及视觉与前庭相互作用的多个方面,包括由颞顶交界处介导的多感觉冲突处理以及前庭信号对人类颞中部复合体中物体位置感知的调节。
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来源期刊
Neurophotonics
Neurophotonics Neuroscience-Neuroscience (miscellaneous)
CiteScore
7.20
自引率
11.30%
发文量
114
审稿时长
21 weeks
期刊介绍: At the interface of optics and neuroscience, Neurophotonics is a peer-reviewed journal that covers advances in optical technology applicable to study of the brain and their impact on the basic and clinical neuroscience applications.
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