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大脑对视觉与旋转前庭刺激之间感觉冲突的血流动力学反应:使用多通道近红外光谱(NIRS)系统的分析

Cerebral Hemodynamic Responses to the Sensory Conflict Between Visual and Rotary Vestibular Stimuli: An Analysis With a Multichannel Near-Infrared Spectroscopy (NIRS) System.

作者信息

Nguyen Nghia Trong, Takakura Hiromasa, Nishijo Hisao, Ueda Naoko, Ito Shinsuke, Fujisaka Michiro, Akaogi Katsuichi, Shojaku Hideo

机构信息

Department of Otorhinolaryngology, Head and Neck Surgery, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama, Japan.

System Emotional Science Laboratory, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama, Japan.

出版信息

Front Hum Neurosci. 2020 Apr 21;14:125. doi: 10.3389/fnhum.2020.00125. eCollection 2020.

Abstract

Sensory conflict among visual, vestibular, and somatosensory information induces vertiginous sensation and postural instability. To elucidate the cognitive mechanisms of the integration between the visual and vestibular cues in humans, we analyzed the cortical hemodynamic responses during sensory conflict between visual and horizontal rotatory vestibular stimulation using a multichannel near-infrared spectroscopy (NIRS) system. The subjects sat on a rotatory chair that was accelerated at 3°/s for 20 s to the right or left, kept rotating at 60°/s for 80 s, and then decelerated at 3°/s for 20 s. The subjects were instructed to watch white stripes projected on a screen surrounding the chair during the acceleration and deceleration periods. The white stripes moved in two ways; in the "congruent" condition, the stripes moved in the opposite direction of chair rotation at 3°/s (i.e., natural visual stimulation), whereas in the "incongruent" condition, the stripes moved in the same direction of chair rotation at 3°/s (i.e., conflicted visual stimulation). The cortical hemodynamic activity was recorded from the bilateral temporoparietal regions. Statistical analyses using NIRS-SPM software indicated that hemodynamic activity increased in the bilateral temporoparietal junctions (TPJs) and human MT+ complex, including the medial temporal (MT) area and medial superior temporal (MST) area in the incongruent condition. Furthermore, the subjective strength of the vertiginous sensation was negatively correlated with hemodynamic activity in the dorsal part of the supramarginal gyrus (SMG) in and around the intraparietal sulcus (IPS). These results suggest that sensory conflict between the visual and vestibular stimuli promotes cortical cognitive processes in the cortical network consisting of the TPJ, the medial temporal gyrus (MTG), and IPS, which might contribute to self-motion perception to maintain a sense of balance or equilibrioception during sensory conflict.

摘要

视觉、前庭和躯体感觉信息之间的感觉冲突会诱发眩晕感和姿势不稳。为了阐明人类视觉和前庭线索整合的认知机制,我们使用多通道近红外光谱(NIRS)系统分析了视觉和水平旋转前庭刺激之间感觉冲突期间的皮质血流动力学反应。受试者坐在旋转椅上,以3°/秒的加速度向右或向左加速20秒,以60°/秒的速度持续旋转80秒,然后以3°/秒的加速度减速20秒。受试者被要求在加速和减速期间观看投射在围绕椅子的屏幕上的白色条纹。白色条纹以两种方式移动;在“一致”条件下,条纹以3°/秒的速度沿与椅子旋转相反的方向移动(即自然视觉刺激),而在“不一致”条件下,条纹以3°/秒的速度沿与椅子旋转相同的方向移动(即冲突视觉刺激)。从双侧颞顶叶区域记录皮质血流动力学活动。使用NIRS-SPM软件进行的统计分析表明,在不一致条件下,双侧颞顶叶交界处(TPJ)和人类MT+复合体(包括内侧颞叶(MT)区域和内侧颞上叶(MST)区域)的血流动力学活动增加。此外,眩晕感的主观强度与顶内沟(IPS)内及其周围的缘上回(SMG)背侧部分的血流动力学活动呈负相关。这些结果表明,视觉和前庭刺激之间的感觉冲突促进了由TPJ、颞中回(MTG)和IPS组成的皮质网络中的皮质认知过程,这可能有助于自我运动感知,以在感觉冲突期间维持平衡感或平衡觉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68ce/7187689/76a0944ae93c/fnhum-14-00125-g0001.jpg

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