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使用磁共振成像对人类MT及相关视觉皮层区域进行功能分析。

Functional analysis of human MT and related visual cortical areas using magnetic resonance imaging.

作者信息

Tootell R B, Reppas J B, Kwong K K, Malach R, Born R T, Brady T J, Rosen B R, Belliveau J W

机构信息

Massachusetts General Hospital NMR Center, Charlestown 02129, USA.

出版信息

J Neurosci. 1995 Apr;15(4):3215-30. doi: 10.1523/JNEUROSCI.15-04-03215.1995.

Abstract

Using noninvasive functional magnetic resonance imaging (fMRI) technique, we analyzed the responses in human area MT with regard to visual motion, color, and luminance contrast sensitivity, and retinotopy. As in previous PET studies, we found that area MT responded selectively to moving (compared to stationary) stimuli. The location of human MT in the present fMRI results is consistent with that of MT in earlier PET and anatomical studies. In addition we found that area MT has a much higher contrast sensitivity than that in several other areas, including primary visual cortex (V1). Functional MRI half-amplitudes in V1 and MT occurred at approximately 15% and 1% luminance contrast, respectively. High sensitivity to contrast and motion in MT have been closely associated with magnocellular stream specialization in nonhuman primates. Human psychophysics indicates that visual motion appears to diminish when moving color-varying stimuli are equated in luminance. Electrophysiological results from macaque MT suggest that the human percept could be due to decreases in firing of area MT cells at equiluminance. We show here that fMRI activity in human MT does in fact decrease at and near individually measured equiluminance. Tests with visuotopically restricted stimuli in each hemifield produced spatial variations in fMRI activity consistent with retinotopy in human homologs of macaque areas V1, V2, V3, and VP. Such activity in area MT appeared much less retinotopic, as in macaque. However, it was possible to measure the interhemispheric spread of fMRI activity in human MT (half amplitude activation across the vertical meridian = approximately 15 degrees).

摘要

我们使用无创功能磁共振成像(fMRI)技术,分析了人类MT区对视觉运动、颜色、亮度对比度敏感性以及视网膜拓扑结构的反应。与之前的PET研究一样,我们发现MT区对运动(相对于静止)刺激有选择性反应。本次fMRI结果中人类MT区的位置与早期PET和解剖学研究中MT区的位置一致。此外,我们发现MT区的对比度敏感性比包括初级视觉皮层(V1)在内的其他几个区域要高得多。V1区和MT区的功能磁共振成像半幅值分别出现在约15%和1%的亮度对比度处。MT区对对比度和运动的高敏感性与非人灵长类动物的大细胞通路特化密切相关。人类心理物理学表明,当移动的颜色变化刺激在亮度上相等时,视觉运动似乎会减弱。猕猴MT区的电生理结果表明,人类的这种感知可能是由于等亮度时MT区细胞放电减少所致。我们在此表明,人类MT区的fMRI活动实际上在个体测量的等亮度时及附近会降低。在每个半视野中使用视觉拓扑受限刺激进行测试,产生了fMRI活动的空间变化,与猕猴V1、V2、V3和VP区人类同源物中的视网膜拓扑结构一致。与猕猴一样,MT区的这种活动在视网膜拓扑上表现得要少得多。然而,可以测量人类MT区fMRI活动的半球间扩散(垂直子午线半幅值激活 = 约15度)。

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