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首页> 外文期刊>NeuroImage >fMRI localizer technique: efficient acquisition and functional properties of single retinotopic positions in the human visual cortex.
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fMRI localizer technique: efficient acquisition and functional properties of single retinotopic positions in the human visual cortex.

机译:fMRI定位器技术:在人类视觉皮层中单个视网膜位的有效捕获和功能特性。

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Current fMRI retinotopic mapping procedures often use checkerboard stimuli consisting of expanding rings and rotating wedges to measure the topography within human visual areas. Efficient procedures are well described in the literature. For many experimental paradigms, e.g., visuo-spatial attention paradigms, the identification of task-relevant positions is the only mandatory prerequisite. To define these specific regions-of-interest precise evaluation of localizer techniques in regard to efficient scanning time, optimal BOLD (blood oxygenic level dependent) response, as well as quantification of the resulting ROIs within each visual area (size, overlap, surround effects) has not been studied to date. Here, we suggest a mapping procedure designed to quantify spatial and functional properties of single positions at close proximity in multiple human visual areas. During a passive viewing task, various stimuli (e.g., checkerboards or colored objects) subtending 1.4 degrees of visual angle were presented at one out of four positions in a randomized block design. We measured the degree of overlap between positions at different hierarchical levels of the visual system (V1-V4v) and quantified modulatory effects on a specific position by stimulation at neighboring (1.7 degrees spacing) or distant positions (5.1 degrees or 8.5 degrees spacing). Within each visual area, mexican-hat describe a particular combination of facilitatory and suppressive effects, were found. Cubic fitting revealed the most localized tuning effect in V1, which gradually decreased throughout the higher visual areas. Colored objects were most efficient in localizing circumscribed retinotopic positions in both early and higher areas.
机译:当前的fMRI视网膜视位成像程序通常使用由扩展环和旋转楔形物组成的棋盘刺激来测量人类视觉区域内的地形。文献中充分描述了有效的程序。对于许多实验范式,例如视觉空间注意范式,识别与任务相关的位置是唯一的强制性前提。要定义这些特定的感兴趣区域,以对有效的扫描时间,最佳的BOLD(取决于血氧水平)响应以及对每个视觉区域内的ROI(大小,重叠,环绕效果)进行量化的定位器技术进行精确评估)迄今尚未研究。在这里,我们建议一种映射程序,旨在量化多个人类视觉区域中紧邻的单个位置的空间和功能特性。在被动观看任务期间,在随机区组设计中,在四个位置中的一个位置呈现了对接于1.4度视角的各种刺激(例如,棋盘或有色物体)。我们测量了视觉系统的不同层次级别(V1-V4v)上的位置之间的重叠程度,并通过在相邻位置(1.7度间距)或较远位置(5.1度或8.5度间距)处的刺激对特定位置的量化调制效果进行了量化。在每个视觉区域内,发现墨西哥帽描述了促进作用和抑制作用的特定组合。三次拟合显示了V1中最局部的调音效果,在较高的视觉区域逐渐减小。有色物体在早期和较高区域中定位外接视网膜视点的位置最有效。

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