McGill Vision Research, Department of Ophthalmology, McGill University, Montréal, Quebec, Canada.
Neuroimage. 2011 Jan 1;54(1):505-16. doi: 10.1016/j.neuroimage.2010.07.053. Epub 2010 Aug 2.
We investigate the effective connectivity in the lateral geniculate nucleus and visual cortex of humans with amblyopia. Six amblyopes participated in this study. Standard retinotopic mapping stimuli were used to define the boundaries of early visual cortical areas. We obtained fMRI time series from thalamic, striate and extrastriate cortical regions for the connectivity study. Thalamo-striate and striate-extrastriate networks were constructed based on known anatomical connections and the effective connectivities of these networks were assessed by means of a nonlinear system identification method. The effective connectivity of all networks studied was reduced when driven by the amblyopic eye, suggesting contrary to the current single-cell model of localized signal reduction, that a significant part of the amblyopic deficit is due to anomalous interactions between cells in disparate brain regions. The effective connectivity loss was unrelated to the fMRI loss but correlated with the degree of amblyopia (ipsilateral LGN to V1 connection), suggesting that it may be a more relevant measure. Feedforward and feedback connectivities were similarly affected. A hemispheric dependence was found for the thalamo-striate feedforward input that was not present for the feedback connection, suggesting that the reduced function of the LGN recently found in amblyopic humans may not be solely determined by the feedback influence from the cortex. Both ventral and dorsal connectivities were reduced.
我们研究了弱视患者外侧膝状体核和视皮层的有效连接。六名弱视患者参与了这项研究。标准的视网膜映射刺激被用来定义早期视觉皮层区域的边界。我们从丘脑、纹状和纹外皮质区域获得 fMRI 时间序列,用于连接研究。基于已知的解剖连接构建了丘脑-纹状和纹状-纹外网络,并通过非线性系统识别方法评估这些网络的有效连接。当由弱视眼驱动时,所有研究网络的有效连接都减少了,这表明与当前局部信号减少的单细胞模型相反,弱视的一个重要部分是由于不同脑区细胞之间的异常相互作用。有效连接的损失与 fMRI 的损失无关,但与弱视的程度(同侧外侧膝状体核到 V1 的连接)相关,这表明它可能是一个更相关的指标。前馈和反馈连接也受到类似的影响。在前馈连接中发现了丘脑-纹状的半球依赖性,但在反馈连接中没有发现,这表明在弱视患者中最近发现的外侧膝状体核功能降低可能不仅仅取决于来自皮层的反馈影响。腹侧和背侧连接都减少了。