Hagler Donald J
Department of Radiology, University of California-San Diego, La Jolla, CA, USA.
J Vis. 2014 Dec 19;14(14):13. doi: 10.1167/14.14.13.
Behavioral responses to visual stimuli exhibit visual field asymmetries, but cortical folding and the close proximity of visual cortical areas make electrophysiological comparisons between different stimulus locations problematic. Retinotopy-constrained source estimation (RCSE) uses distributed dipole models simultaneously constrained by multiple stimulus locations to provide separation between individual visual areas that is not possible with conventional source estimation methods. Magnetoencephalography and RCSE were used to estimate time courses of activity in V1, V2, V3, and V3A. Responses to left and right hemifield stimuli were not significantly different. Peak latencies for peripheral stimuli were significantly shorter than those for perifoveal stimuli in V1, V2, and V3A, likely related to the greater proportion of magnocellular input to V1 in the periphery. Consistent with previous results, sensor magnitudes for lower field stimuli were about twice as large as for upper field, which is only partially explained by the proximity to sensors for lower field cortical sources in V1, V2, and V3. V3A exhibited both latency and amplitude differences for upper and lower field responses. There were no differences for V3, consistent with previous suggestions that dorsal and ventral V3 are two halves of a single visual area, rather than distinct areas V3 and VP.
对视觉刺激的行为反应表现出视野不对称,但皮质折叠以及视觉皮质区域的紧密相邻使得不同刺激位置之间的电生理比较存在问题。视网膜拓扑约束源估计(RCSE)使用由多个刺激位置同时约束的分布式偶极子模型,以实现传统源估计方法无法做到的各个视觉区域之间的分离。利用脑磁图和RCSE来估计V1、V2、V3和V3A区域的活动时间进程。对左半视野和右半视野刺激的反应没有显著差异。在V1、V2和V3A区域,外周刺激的峰值潜伏期明显短于中央凹周围刺激的峰值潜伏期,这可能与外周V1区域中较大细胞输入的比例较高有关。与先前的结果一致,下视野刺激的传感器幅值约为上视野刺激的两倍,这仅部分地由V1、V2和V3区域中下视野皮质源与传感器的接近程度来解释。V3A区域在上视野和下视野反应中均表现出潜伏期和幅值差异。V3区域没有差异,这与之前的观点一致,即背侧V3和腹侧V3是单个视觉区域的两个部分,而不是不同的V3和VP区域。