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血管对 BOLD 反应和 hV4 的视网膜映射的影响。

Vascular effects on the BOLD response and the retinotopic mapping of hV4.

机构信息

School of Psychology, University of Wollongong, Wollongong, NSW, Australia.

School of Psychology, University of Queensland, Brisbane, QLD, Australia.

出版信息

PLoS One. 2019 Jun 13;14(6):e0204388. doi: 10.1371/journal.pone.0204388. eCollection 2019.

Abstract

Despite general acceptance that the retinotopic organisation of human V4 (hV4) takes the form of a single, uninterrupted ventral hemifield, measured retinotopic maps of this visual area are often incomplete. Here, we test hypotheses that artefact from draining veins close to hV4 cause inverted BOLD responses that may serve to obscure a portion of the lower visual quarterfield-including the lower vertical meridian-in some hemispheres. We further test whether correcting such responses can restore the 'missing' retinotopic coverage in hV4. Subjects (N = 10) viewed bowtie, ring, drifting bar and full field flash stimuli. Functional EPIs were acquired over approximately 1.5h and analysed to reveal retinotopic maps of early visual cortex, including hV4. Normalised mean maps (which show the average EPI signal amplitude) were constructed by voxel-wise averaging of the EPI time course and used to locate venous eclipses, which can be identified by a decrease in the EPI signal caused by deoxygenated blood. Inverted responses are shown to cluster in these regions and correcting these responses improves maps of hV4 in some hemispheres, including restoring a complete hemifield map in one. A leftwards bias was found whereby 6/10 left hemisphere hV4 maps were incomplete, while this was the case in only 1/10 right hemisphere maps. Incomplete hV4 maps did not correspond with venous artefact in every instance, with incomplete maps being present in the absence of a venous eclipse and complete maps coexisting with a proximate venous eclipse. We also show that mean maps of upper surfaces (near the boundary between cortical grey matter and CSF) provide highly detailed maps of veins on the cortical surface. Results suggest that venous eclipses and inverted voxels can explain some incomplete hV4 maps, but cannot explain the remainder nor the leftwards bias in hV4 coverage reported here.

摘要

尽管人们普遍认为人类 V4(hV4)的视网膜组织形式是单一的、不间断的腹侧视野,但对该视觉区域的测量视网膜图往往是不完整的。在这里,我们测试了假设,即靠近 hV4 的引流静脉的伪影会导致反转的 BOLD 反应,这些反应可能会掩盖某些半球下半部分视野的一部分,包括下垂直子午线。我们进一步测试了是否可以通过校正这些反应来恢复 hV4 中“缺失”的视网膜覆盖范围。研究对象(N=10)观看了蝴蝶结、圆环、漂移棒和全视野闪光刺激。在大约 1.5 小时内采集功能 EPI,并进行分析以揭示早期视觉皮层的视网膜图,包括 hV4。通过对 EPI 时间序列进行体素平均,构建了归一化平均图(显示 EPI 信号幅度的平均值),并用于定位静脉遮挡,静脉遮挡可以通过脱氧血液引起的 EPI 信号下降来识别。结果表明,反转反应集中在这些区域,校正这些反应可以改善一些半球的 hV4 图,包括在一个半球中恢复完整的视野图。发现了一个向左的偏差,即 6/10 个左半球 hV4 图不完整,而这种情况在 1/10 个右半球图中仅出现一次。并非所有情况下,不完整的 hV4 图都与静脉伪影相对应,在没有静脉遮挡的情况下存在不完整的图,而在存在相邻静脉遮挡的情况下存在完整的图。我们还表明,上表面(靠近皮质灰质和 CSF 之间的边界)的平均图可以提供皮质表面上静脉的高度详细图。结果表明,静脉遮挡和反转体素可以解释一些不完整的 hV4 图,但不能解释其余部分,也不能解释此处报告的 hV4 覆盖范围的向左偏差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d591/6563965/19259500ba69/pone.0204388.g001.jpg

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