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大小很重要:MEG 对枕叶皮质最早视觉活动源定位的实证和模拟研究。

Size matters: MEG empirical and simulation study on source localization of the earliest visual activity in the occipital cortex.

机构信息

Department of Physics, Faculty of Science, University of Zagreb, Bijenicka c. 32, Zagreb, Croatia.

出版信息

Med Biol Eng Comput. 2011 May;49(5):545-54. doi: 10.1007/s11517-011-0764-9. Epub 2011 Apr 8.

Abstract

While the relationship between sensory stimulation and tasks and the size of the cortical activations is generally unknown, the visual modality offers a unique possibility of an experimental manipulation of stimulus size-related increases of the spatial extent of cortical activation even during the earliest activity in the retinotopically organized primary visual cortex. We used magnetoecephalography (MEG), visual stimuli of increasing size, and numerical simulations on realistic cortical surfaces to explore the effects of increasing spatial extent of the activated cortical sources on the neuromagnetic fields, location estimation biases, and source resolution. Source localization was performed assuming multiple dipoles in a sphere model using an efficient, automatically restarted multi-start simplex minimizer within the Calibrated Start Spatio-Temporal (CSST) algorithm. We found size-related effects on amplitude and latencies and differences in relative locations of the earliest occipital sources evoked by stimuli of increasing size presented at the same eccentricity. This finding was confirmed by single patch simulations. Additionally, simulations of multiple extended sources demonstrated size-related increase in limits in source resolution for bilaterally simulated sources, biases in location estimates for a given separation of sources, and limits in source resolution due to source multiplicity within a hemisphere.

摘要

虽然感觉刺激与任务之间的关系以及皮质激活的大小通常是未知的,但视觉模态提供了一种独特的可能性,即在视网膜组织的初级视觉皮层的最早活动期间,即使在刺激大小相关的皮质激活的空间范围增加的情况下,也可以对刺激大小进行实验操纵。我们使用磁脑图 (MEG)、大小不断增加的视觉刺激以及在现实皮质表面上的数值模拟来探索增加激活的皮质源的空间范围对神经磁场、位置估计偏差和源分辨率的影响。源定位是使用 Calibrated Start Spatio-Temporal (CSST) 算法中的高效、自动重新启动的多起始单形最小化器,在球体模型中假设多个偶极子来执行的。我们发现,在相同的偏心位置呈现大小不断增加的刺激时,与刺激大小相关的振幅和潜伏期以及最早的枕叶源的相对位置的差异。这一发现得到了单个补丁模拟的证实。此外,对多个扩展源的模拟表明,双侧模拟源的源分辨率的限制与源分离的给定位置估计的偏差以及半球内源多重性引起的源分辨率的限制有关。

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