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V5/hMT responds to the stereoscopic motion induced by binocular disparity: A preliminary fMRI study

机译:V5 / HMT响​​应双目视差引起的立体运动:初步FMRI研究

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Purpose: To identify the regions responding to the stereoscopic motion induced by binocular disparity and investigate the relationship between the response intensity of these regions and speeds of spatial motion. Methods: The stereoscopic stimulus applied Random Dot Stereogram (RDS) distributed as checkerboard and a series of continuous disparities formed a dynamic stereoscopic stimulus. Observer needed to watch some static stimuli and dynamic stimuli moving in depth direction. The speeds of dynamic stimulus consisted of three levels: 0.315 degree/s, 0.63 degree/s, 1.26 degree/s. The functional Magnetic Resonance Imaging (fMRI) was used to sample the Blood Oxygen Level-Dependent (BOLD) signals and identify the regions sensitive to stereoscopic motion. Results: The dynamic stereoscopic stimulus can activate the hMT/V5 in a stronger degree than static stereoscopic stimulus. Besides, the signal intensity increased with the speed. The most reasonable explanation is that a large number of neurons sensitive to spatial motion exist in this region. Conclusion: The study reveals preliminarily that the human cortex hMT/V5 processes the information of spatial motion.
机译:目的:识别响应双目视差引起的立体运动的区域,并研究这些区域的响应强度与空间运动速度之间的关系。方法:作为棋盘的立体刺激施加随机点立体图(RDS),并且一系列连续差异形成了动态立体刺激。观察者需要观察一些静态刺激和动态刺激在深度方向上移动。动态刺激的速度由三个水平组成:0.315度,0.63度/ s,1.26度。使用功能磁共振成像(FMRI)来采用血氧等级依赖性(粗体)信号并识别对立体运动敏感的区域。结果:动态立体刺激可以以比静态立体刺激更强的程度激活HMT / V5。此外,信号强度随着速度而增加。最合理的解释是在该地区存在对空间运动敏感的大量神经元。结论:本研究略微揭示人皮层HMT / V5处理空间运动的信息。

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