Yousif Nada, Denham Mike
Centre for Computational and Theoretical Neuroscience, University of Plymouth, Drake Circus, Plymouth PL4 8AA, UK.
Biol Cybern. 2007 Oct;97(4):269-77. doi: 10.1007/s00422-007-0171-3. Epub 2007 Jul 27.
The influence of cortical feedback on thalamic visual responses has been a source of much discussion in recent years. In this study we examine the possible role of cortical feedback in shaping the spatiotemporal receptive field (STRF) responses of thalamocortical (TC) cells in the lateral geniculate nucleus (LGN) of the thalamus. A population-based computational model of the thalamocortical network is used to generate a representation of the STRF response of LGN TC cells within the corticothalamic feedback circuit. The cortical feedback is shown to have little influence on the spatial response properties of the STRF organization. However, the model suggests that cortical feedback may play a key role in modifying the experimentally observed biphasic temporal response property of the STRF, that is, the reversal over time of the polarity of ON and OFF responses of the centre and surround of the receptive field, in particular accounting for the experimentally observed mismatch between retinal cells and TC cells in respect of the magnitude of the second (rebound) phase of the temporal response. The model results also show that this mismatch may result from an anti-phase corticothalamic feedback mechanism.
近年来,皮质反馈对丘脑视觉反应的影响一直是诸多讨论的焦点。在本研究中,我们探究了皮质反馈在塑造丘脑外侧膝状体核(LGN)中丘脑皮质(TC)细胞的时空感受野(STRF)反应方面可能发挥的作用。基于群体的丘脑皮质网络计算模型被用于生成皮质丘脑反馈回路中LGN的TC细胞STRF反应的表征。结果表明,皮质反馈对STRF组织的空间反应特性影响甚微。然而,该模型表明,皮质反馈可能在改变实验观察到的STRF双相时间反应特性方面起关键作用,即感受野中心和周边的开反应和关反应极性随时间的反转,特别是在解释实验观察到的视网膜细胞和TC细胞在时间反应的第二个(反弹)相的幅度方面的不匹配。模型结果还表明,这种不匹配可能源于反相皮质丘脑反馈机制。