Cortical Function and Dynamics, Max-Planck Institute for Brain Research, Frankfurt/M, Germany.
Neuroimage. 2011 Jan 1;54(1):474-84. doi: 10.1016/j.neuroimage.2010.08.017. Epub 2010 Aug 13.
A highly important question in visual neuroscience is to identify where in the visual system information from different processing channels is integrated to form the complex scenery we perceive. A common view to this question is that information is processed hierarchically because small and selective receptive fields in lower visual areas melt into larger receptive fields in specialized higher visual areas. However, a higher order area in which all incoming signals ultimately converge has not yet been identified. Rather, modulation of subthreshold influences from outside the classical receptive field related to contextual integration occurs already in early visual areas. So far it is unclear how these influences are mediated (Gilbert, 1998; Angelucci and Bullier, 2003; Gilbert and Sigman, 2007). In the present study, we show that feedback connections from a higher motion processing area critically influence the integration of subthreshold global motion cues in early visual areas. Global motion cues are theoretically not discernible for a local motion detector in V1, however, imprints of pattern motion have been observed in this area (Guo et al., 2004; Schmidt et al., 2006). By combining reversible thermal deactivation and optical imaging of intrinsic signals we demonstrate that feedback signals from the posteromedial suprasylvian sulcus are critical for the discrimination between global and local motions already in early visual areas. These results suggest that global features of the visual scenery are fed back to lower visual processing units in order to facilitate the integration of local cues into a global construct.
在视觉神经科学中,一个非常重要的问题是确定信息在不同处理通道中整合的位置,以形成我们所感知的复杂场景。对于这个问题,一个常见的观点是,信息是按照层级结构进行处理的,因为较低视觉区域中的小而选择性的感受野融合到专门的较高视觉区域中的较大感受野中。然而,尚未确定所有传入信号最终汇聚的更高阶区域。相反,与上下文整合相关的、来自经典感受野之外的亚阈值影响的调制已经发生在早期视觉区域中。到目前为止,尚不清楚这些影响是如何介导的(Gilbert,1998;Angelucci 和 Bullier,2003;Gilbert 和 Sigman,2007)。在本研究中,我们表明,来自更高运动处理区域的反馈连接会严重影响早期视觉区域中亚阈值全局运动线索的整合。从理论上讲,V1 中的局部运动检测器无法辨别全局运动线索,但是已经在该区域观察到了模式运动的痕迹(Guo 等人,2004;Schmidt 等人,2006)。通过结合可逆热失活和内在信号的光学成像,我们证明了来自后内侧上顶沟的反馈信号对于在早期视觉区域中区分全局和局部运动至关重要。这些结果表明,视觉场景的全局特征被反馈到较低的视觉处理单元,以促进局部线索融入全局结构。