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Digital Image Processing of Functional Magnetic Resonance Images to Identify Stereo-Sensitive Cortical Regions Using Dynamic Global Stimuli

机译:功能磁共振图像的数字图像处理,以识别使用动态全球刺激的立体敏感皮质区域

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Functional magnetic resonance images (fMRI) were analyzed to investigate the cortical regions involved in stereoscopic vision using red/green anaglyphs to present random dot stereograms. Two experiments were conducted both of which required high attentional demands. In the first experiment the subjects were instructed to follow the path of a square defined by depth and moving in the horizontal plane contrasted with a similar sized square defined by a slight difference in luminance. Three main regions were identified V3A, V3B and BA7. To test that the observed activations were not produced by the pursuit eye movements, a second experiment required the subjects to fixate whilst a shape was presented in different random orientations. Our results suggests that areas V1, V3A and precuneus are involved in stereo disparity processing. We hypothesise that the activation of the V3B region was produced by the second order motion component induced by the spatio-temporal changes in disparity.
机译:分析了功能磁共振图像(FMRI)以研究使用红色/绿色骨骼的立体视觉中涉及的皮质区域,以呈现随机点立体图。 进行两项实验,这两项实验都需要高收藏性需求。 在第一次实验中,指示受试者遵循由深度限定的正方形的路径,并在水平面中移动,其与由亮度略微差异定义的类似尺寸的平面对比。 鉴定了三个主要区域V3A,V3B和BA7。 为了测试观察到的激活不是由追踪眼球运动产生的,第二实验需要将受试者固定在不同随机取向的形状。 我们的结果表明,地区V1,V3A和PRIENEUS参与了立体声差距处理。 我们假设通过差异的时空变化诱导的二阶运动组分产生V3B区域的激活。

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