Laycock R, Crewther S G, Crewther D P
School of Psychological Science, La Trobe University, Bunndoora, Vic. 3086, Australia.
Neurosci Biobehav Rev. 2007;31(3):363-76. doi: 10.1016/j.neubiorev.2006.10.003. Epub 2006 Dec 1.
Evidence exists implicating abnormal visual information processing and visually driven attention in a number of neurodevelopmental and psychiatric disorders, suggesting that research into such disorders may benefit from a better understanding of more recent advances in visual system processing. A new integrated model of visual processing based on primate single cell and human electrophysiology may provide a framework, to understand how the visual system is involved, by implicating the magnocellular pathway's role in driving attentional mechanisms in higher-order cortical regions, what we term the 'magnocellular advantage'. Evidence is also presented demonstrating visual processing occurs considerably faster than previously assumed, and emphasising the importance of top-down feedback signals into primary visual cortex, as well as considering the possibility of lateral connections from dorsal to ventral visual areas. Such organisation is argued to be important for future research highlighting visual aspects of impairment in disorders as diverse as schizophrenia and autism.
有证据表明,在一些神经发育和精神疾病中存在异常的视觉信息处理和视觉驱动的注意力问题,这表明对这些疾病的研究可能会受益于对视觉系统处理方面最新进展的更好理解。一种基于灵长类单细胞和人类电生理学的新的视觉处理综合模型,可能会提供一个框架,通过暗示大细胞通路在驱动高阶皮质区域注意力机制中的作用,即我们所说的“大细胞优势”,来理解视觉系统是如何参与其中的。还展示了证据,表明视觉处理比之前假设的要快得多,并强调了自上而下的反馈信号进入初级视觉皮层的重要性,以及考虑从背侧视觉区域到腹侧视觉区域的横向连接的可能性。有人认为,这种组织对于未来突出精神分裂症和自闭症等多种疾病中视觉损伤方面的研究很重要。