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视皮层中央凹 pRF 的特性取决于受刺激的视野范围。

Foveal pRF properties in the visual cortex depend on the extent of stimulated visual field.

机构信息

Department of Ophthalmology, Otto-von-Guericke University, Magdeburg, Germany.

Laboratory of Experimental Ophthalmology, University Medical Center Groningen, University of Groningen, Groningen, the Netherlands.

出版信息

Neuroimage. 2020 Nov 15;222:117250. doi: 10.1016/j.neuroimage.2020.117250. Epub 2020 Aug 14.

Abstract

Previous studies demonstrated that alterations in functional MRI derived receptive field (pRF) properties in cortical projection zones of retinal lesions can erroneously be mistaken for cortical large-scale reorganization in response to visual system pathologies. We tested, whether such confounds are also evident in the normal cortical projection zone of the fovea for simulated peripheral visual field defects. We applied fMRI-based visual field mapping of the central visual field at 3 T in eight controls to compare the pRF properties of the central visual field of a reference condition (stimulus radius: 14°) and two conditions with simulated peripheral visual field defect, i.e., with a peripheral gray mask, stimulating only the central 7° or 4° radius. We quantified, for the cortical representation of the actually stimulated visual field, the changes in the position and size of the pRFs associated with reduced peripheral stimulation using conventional and advanced pRF modeling. We found foveal pRF-positions (≤3°) to be significantly shifted towards the periphery (p<0.05, corrected). These pRF-shifts were largest for the 4° condition [visual area (mean eccentricity shift): V1 (0.9°), V2 (0.9°), V3 (1.0°)], but also evident for the 7° condition [V1 (0.5°), V2 (0.5°), V3 (0.9°)]. Further, an overall enlargement of pRF-sizes was observed. These findings indicate the dependence of foveal pRF parameters on the spatial extent of the stimulated visual field and are likely associated with methodological biases and/or physiological mechanisms. Consequently, our results imply that, previously reported similar findings in patients with actual peripheral scotomas need to be interpreted with caution and indicate the need for adequate control conditions in investigations of visual cortex reorganization.

摘要

先前的研究表明,视网膜病变引起的皮质投射区功能磁共振成像(fMRI)所得感受野(pRF)特性的改变可能会被错误地误认为是皮质对视觉系统病变的大规模重组。我们测试了这种混淆是否也存在于黄斑区的正常皮质投射区中,以模拟周边视野缺陷。我们在 8 名对照者中进行了 3T 下基于 fMRI 的中央视野视野图绘制,以比较中央视野的 pRF 特性,包括参考条件(刺激半径:14°)和两种模拟周边视野缺陷的条件,即使用外围灰色掩蔽刺激,仅刺激中央 7°或 4°半径。我们使用常规和先进的 pRF 建模来量化与外围刺激减少相关的皮质代表实际刺激视野的 pRF 位置和大小的变化。我们发现黄斑区 pRF-位置(≤3°)向周边明显移位(p<0.05,校正)。对于 4°条件[视觉区(平均偏心率移位):V1(0.9°),V2(0.9°),V3(1.0°)],这些 pRF 移位最大,对于 7°条件[V1(0.5°),V2(0.5°),V3(0.9°)]也很明显。此外,还观察到 pRF 大小的整体增大。这些发现表明黄斑区 pRF 参数取决于刺激视野的空间范围,并可能与方法学偏差和/或生理机制有关。因此,我们的结果表明,先前在实际周边暗点患者中报告的类似发现需要谨慎解释,并表明在研究视觉皮层重组时需要适当的对照条件。

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