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胼胝体发育不全患者中通过前连合的初级视觉皮层区域间的半球间连接

Interhemispheric Connections between the Primary Visual Cortical Areas via the Anterior Commissure in Human Callosal Agenesis.

作者信息

van Meer Nathalie, Houtman Anne C, Van Schuerbeek Peter, Vanderhasselt Tim, Milleret Chantal, Ten Tusscher Marcel P

机构信息

Department of Ophthalmology, Universitair Ziekenhuis, Vrije Universiteit Brussel Brussels, Belgium.

Department of Radiology, Universitair Ziekenhuis, Vrije Universiteit Brussel Brussels, Belgium.

出版信息

Front Syst Neurosci. 2016 Dec 26;10:101. doi: 10.3389/fnsys.2016.00101. eCollection 2016.

Abstract

In humans, images in the median plane of the head either fall on both nasal hemi-retinas or on both temporal hemi-retinas. Interhemispheric connections allow cortical cells to have receptive fields on opposite sides. The major interhemispheric connection, the corpus callosum, is implicated in central stereopsis and disparity detection in front of the fixation plane. Yet individuals with agenesis of the corpus callosum may show normal stereopsis and disparity vergence. We set out to study a possible interhemispheric connection between primary visual cortical areas via the anterior commissure to explain this inconsistency because of the major role of these cortical areas in elaborating 3D visual perception. MRI, DTI and tractography of the brain of a 53-year old man with complete callosal agenesis and normal binocular single vision was undertaken. Tractography seed points were placed in both the right and the left V1 and V2. Nine individuals with both an intact corpus callosum and normal binocularity served as controls. Interhemispheric tracts through the anterior commissure linking both V1 and V2 visual cortical areas bilaterally were indeed shown in the subject with callosal agenesis. All other individuals showed interhemispheric visual connections through the corpus callosum only. Callosal agenesis may result in anomalous interhemispheric connections of the primary visual areas via the anterior commissure. It is proposed here that these connections form as alternative to the normal callosal pathway and may participate in binocularity.

摘要

在人类中,头部正中平面的图像要么落在两个鼻侧半视网膜上,要么落在两个颞侧半视网膜上。半球间连接使皮质细胞在对侧具有感受野。主要的半球间连接——胼胝体,与注视平面之前的中央立体视觉和视差检测有关。然而,胼胝体发育不全的个体可能表现出正常的立体视觉和视差聚散。由于这些皮质区域在形成三维视觉感知中起主要作用,我们着手研究通过前连合在初级视觉皮质区域之间可能存在的半球间连接,以解释这种不一致性。对一名53岁、胼胝体完全发育不全但双眼单视正常的男性进行了脑部MRI、DTI和纤维束成像检查。纤维束成像的种子点分别置于右侧和左侧的V1和V2区域。九名胼胝体完整且双眼视力正常的个体作为对照。在胼胝体发育不全的受试者中,确实显示出通过前连合的双侧连接V1和V2视觉皮质区域的半球间纤维束。所有其他个体仅显示通过胼胝体的半球间视觉连接。胼胝体发育不全可能导致初级视觉区域通过前连合形成异常的半球间连接。本文提出,这些连接作为正常胼胝体通路的替代形式形成,并可能参与双眼视觉。

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