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视觉运动对听觉皮层反应的影响:一项脑磁图研究。

The impact of visual movement on auditory cortical responses: a magnetoencephalographic study.

作者信息

Miki Kensaku, Kida Tetsuo, Tanaka Emi, Nagata Osamu, Kakigi Ryusuke

机构信息

Department of Integrative Physiology, National Institute for Physiological Sciences, 38 Nishigonaka Myodaiji, Okazaki, Aichi 444-8585, Japan.

出版信息

Exp Brain Res. 2009 Apr;194(4):597-604. doi: 10.1007/s00221-009-1735-3. Epub 2009 Feb 28.

Abstract

We developed a visual 3D model of a space module and analyzed whether activity in the auditory cortex is influenced by rotating the image using magnetoencephalography. We presented 1,000 Hz pure tone as an auditory stimulus in four different visual conditions: (1) RR: a virtual image rotated around the center, (2) VR: images rotated vertically, (3) HR: images rotated horizontally and (4) ST: the images did not rotate. We compared the difference in the auditory evoked component among the conditions. The dipoles were estimated to lie in Heschl's gyrus. The dipole moment was significantly larger for RR and VR than for ST in the right hemisphere. Investigating the inter-hemispheric differences in each visual condition, the dipole moments for RR and VR were significantly larger in the right hemisphere than the left hemisphere. Auditory activity was influenced by visual movement inducing self-motion perception and the effect of such visual movement on the auditory cortex was right-dominant.

摘要

我们开发了一个太空舱的可视化三维模型,并使用脑磁图分析了旋转图像是否会影响听觉皮层的活动。我们在四种不同的视觉条件下呈现1000赫兹的纯音作为听觉刺激:(1)RR:围绕中心旋转的虚拟图像;(2)VR:垂直旋转的图像;(3)HR:水平旋转的图像;(4)ST:图像不旋转。我们比较了不同条件下听觉诱发成分的差异。偶极子估计位于赫氏回。在右半球,RR和VR的偶极矩明显大于ST。研究每种视觉条件下的半球间差异,RR和VR的偶极矩在右半球明显大于左半球。听觉活动受诱发自我运动感知的视觉运动影响,这种视觉运动对听觉皮层的影响以右侧为主。

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