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视觉诱发晕动病期间人类MT+区的半球间去同步化

Inter-hemispheric desynchronization of the human MT+ during visually induced motion sickness.

作者信息

Miyazaki Jungo, Yamamoto Hiroki, Ichimura Yoshikatsu, Yamashiro Hiroyuki, Murase Tomokazu, Yamamoto Tetsuya, Umeda Masahiro, Higuchi Toshihiro

机构信息

Corporate R&D, Canon Inc., Tokyo, Japan.

出版信息

Exp Brain Res. 2015 Aug;233(8):2421-31. doi: 10.1007/s00221-015-4312-y. Epub 2015 May 28.

Abstract

Visually induced motion sickness (VIMS) is triggered in susceptible individuals by stationary viewing of moving visual scenes. VIMS is often preceded by an illusion of self-motion (vection) and/or by inappropriate optokinetic nystagmus (OKN) responses associated with increased activity in the human motion-sensitive middle temporal area (MT+). Neuroimaging studies have reported predominant right hemispheric activation in MT+ during both vection and OKN, suggesting that VIMS may result from desynchronization of activity between left and right MT+ cortices. However, this possibility has not been directly tested. To this end, we presented VIMS-free and VIMS-inducing movies in that order while measuring the temporal correlations between corresponding left and right visual cortices (including MT+) using functional magnetic resonance imaging. The inter-hemispheric correlation was reduced significantly during the viewing of the VIMS-inducing movie compared to the control VIMS-free movie in the MT+ of subjects reporting VIMS, but not in insusceptible subjects. In contrast, there were no significant inter-hemispheric differences within VIMS-free or VIMS-inducing movie exposure for visual area V1, V2, V3, V3A or V7. Our findings provide the first evidence for an association between asynchronous bilateral MT+ activation and VIMS. Desynchronization of left and right MT+ regions may reflect hemispheric asymmetry in the activities of functional networks involved in eye movement control, vection perception and/or postural control.

摘要

视觉诱发晕动病(VIMS)是由易感个体观看静止的动态视觉场景引发的。VIMS通常先出现自我运动错觉(相对运动)和/或与人类运动敏感的颞中区(MT+)活动增加相关的不适当视动性眼震(OKN)反应。神经影像学研究报告称,在相对运动和OKN期间,MT+主要激活右侧半球,这表明VIMS可能是由左右MT+皮质之间的活动去同步化导致的。然而,这种可能性尚未得到直接验证。为此,我们依次播放无VIMS和诱发VIMS的影片,同时使用功能磁共振成像测量相应左右视觉皮质(包括MT+)之间的时间相关性。与观看无VIMS的对照影片相比,报告有VIMS的受试者在观看诱发VIMS的影片时,MT+中的半球间相关性显著降低,但在不易感的受试者中则没有。相反,在观看无VIMS或诱发VIMS的影片时,视觉区域V1、V2、V3、V3A或V7内没有显著的半球间差异。我们的研究结果首次证明了双侧MT+激活异步与VIMS之间存在关联。左右MT+区域的去同步化可能反映了参与眼球运动控制、相对运动感知和/或姿势控制的功能网络活动中的半球不对称性。

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