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使用相同刺激对形态和位置进行视觉探索:正电子发射断层扫描的功能解剖学

Visual exploration of form and position with identical stimuli: functional anatomy with PET.

作者信息

Vidnyánszky Z, Gulyás B, Roland P E

机构信息

Division of Human Brain Research, Department of Neuroscience, Karolinska Institute, Stockholm, Sweden.

出版信息

Hum Brain Mapp. 2000 Oct;11(2):104-16. doi: 10.1002/1097-0193(200010)11:2<104::AID-HBM40>3.0.CO;2-T.

Abstract

Visual form and position perception in primates is thought to engage two different sets of cortical visual areas. However, the original concept of two functionally different and anatomically segregated pathways has been challenged by recent investigations. Using identical stimuli in the centre of the visual field with no external cues, we examined whether discrimination of form aspects and position aspects would indeed activate occipito-temporal and occipito-parietal areas, respectively. We measured and localised regional cerebral blood flow (rCBF) changes in the brain with positron emission tomography (PET) and 15O-butanol while the subjects performed four visual tasks: position discrimination (PD), form discrimination (FD), joint form and position discrimination (FPD), and a control task. Discrimination of form contrasted with discrimination of position resulted in rCBF increases in the lateral occipital and fusiform gyri. Discrimination of position contrasted with discrimination of form yielded rCBF increases in the left frontal eye field and middle frontal gyrus. No extra activations were seen when the joint form and position discrimination task was contrasted with either the individual form and position discrimination tasks. When the individual form and position discrimination tasks were contrasted with the control task, form discrimination resulted in activations in both occipito-temporal and occipito-parietal visual cortical regions, as well as in the right middle-frontal gyrus. Position discrimination resulted in activation in occipito-parietal visual cortical regions, the left frontal eye field and the left middle frontal gyrus. These findings are consistent with the view that the processing of visual position information activates occipito-parietal visual regions. On the other hand, the processing of 2D visual form information, in addition to the activation of occipito-temporal neuronal populations, also involves the parietal cortex. Form and position discrimination activated different nonsymmetrical prefrontal fields. Although the visual stimuli were identical, the network of activated cortical fields depended on whether the task was a form discrimination task or a position discrimination task, indicating a strong task dependence of cortical networks underlying form and position discrimination in the human brain. In contrast to former studies, however, these task-dependent macronetworks are overlapping in the posterior parietal cortex, but differentially engage the occipito-temporal and the prefrontal cortex.

摘要

灵长类动物的视觉形状和位置感知被认为涉及两组不同的皮质视觉区域。然而,关于两条功能不同且解剖学上分离的通路的原始概念受到了最近研究的挑战。我们在没有外部线索的视野中心使用相同的刺激,研究形状方面和位置方面的辨别是否确实会分别激活枕颞区和枕顶区。当受试者执行四项视觉任务时,我们使用正电子发射断层扫描(PET)和15O-丁醇测量并定位大脑中的局部脑血流量(rCBF)变化:位置辨别(PD)、形状辨别(FD)、联合形状和位置辨别(FPD)以及一项对照任务。形状辨别与位置辨别相比,导致枕外侧和梭状回的rCBF增加。位置辨别与形状辨别相比,使左侧额叶眼区和额中回的rCBF增加。当联合形状和位置辨别任务与单独的形状和位置辨别任务进行对比时,未观察到额外的激活。当单独的形状和位置辨别任务与对照任务进行对比时,形状辨别导致枕颞和枕顶视觉皮质区域以及右侧额中回激活。位置辨别导致枕顶视觉皮质区域、左侧额叶眼区和左侧额中回激活。这些发现与视觉位置信息处理激活枕顶视觉区域的观点一致。另一方面,二维视觉形状信息的处理,除了激活枕颞神经元群体外,还涉及顶叶皮质。形状和位置辨别激活了不同的不对称前额叶区域。尽管视觉刺激相同,但激活的皮质区域网络取决于任务是形状辨别任务还是位置辨别任务,这表明人脑形状和位置辨别背后的皮质网络具有很强的任务依赖性。然而,与以前的研究不同,这些任务依赖的大网络在后顶叶皮质中重叠,但不同程度地涉及枕颞皮质和前额叶皮质。

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