Dumoulin Serge O, Jirsch Jeffrey D, Bernasconi Andrea
McGill Vision Research Unit, Department of Ophthalmology, McGill University, Montréal, Canada.
Hum Brain Mapp. 2007 Dec;28(12):1302-12. doi: 10.1002/hbm.20370.
Polymicrogyrias (PMG) are cortical malformations resulting from developmental abnormalities. In animal models PMG has been associated with abnormal anatomy, function, and organization. The purpose of this study was to describe the function and organization of human polymicrogyric cortex using functional magnetic resonance imaging. Three patients with epilepsy and bilateral parasagittal occipital polymicrogyri were studied. They all had normal vision as tested by Humphrey visual field perimetry. The functional organization of the visual cortex was reconstructed using phase-encoded retinotopic mapping analysis. This method sequentially stimulates each point in the visual field along the axes of a polar-coordinate system, thereby reconstructing the representation of the visual field on the cortex. We found normal cortical responses and organization of early visual areas (V1, V2, and V3/VP). The locations of these visual areas overlapped substantially with the PMG. In five out of six hemispheres the reconstructed primary visual cortex completely fell within polymicrogyric areas. Our results suggest that human polymicrogyric cortex is not only organized in a normal fashion, but is also actively involved in processing of visual information and contributes to normal visual perception.
多小脑回(PMG)是由发育异常导致的皮质畸形。在动物模型中,多小脑回与解剖结构、功能及组织异常有关。本研究的目的是利用功能磁共振成像描述人类多小脑回皮质的功能和组织。对3例患有癫痫且双侧矢状旁枕叶多小脑回的患者进行了研究。经汉弗莱视野计测试,他们的视力均正常。使用相位编码视网膜拓扑映射分析重建视觉皮质的功能组织。该方法沿极坐标系的轴依次刺激视野中的每个点,从而重建视野在皮质上的表征。我们发现早期视觉区域(V1、V2和V3/VP)的皮质反应和组织正常。这些视觉区域的位置与多小脑回有很大重叠。在六个半球中的五个半球,重建的初级视觉皮质完全位于多小脑回区域内。我们的结果表明,人类多小脑回皮质不仅组织方式正常,而且还积极参与视觉信息处理并有助于正常视觉感知。