Tanaka Masaki
Department of Physiology, Hokkaido University School of Medicine, Sapporo 060-8638, Japan.
Cereb Cortex. 2007 Jul;17(7):1504-15. doi: 10.1093/cercor/bhl061. Epub 2006 Aug 21.
Although both sensory and motor signals in multiple cortical areas are modulated by eye position, the origin of eye position signals for cortical neurons remains uncertain. One likely source is the central thalamus, which contains neurons sensitive to eye position. Because the central thalamus receives inputs from the brainstem, these neurons may transmit eye position signals arising from the neural integrator or from proprioceptive feedback. However, because the central thalamus also receives inputs from many cortical areas, eye position signals in the central thalamus could come from the cerebral cortex. To clarify these possibilities, spatial and temporal properties of eye position signals in the central thalamus were examined in trained monkeys. Data showed that eye position signals were decomposed into horizontal and vertical components, suggesting that the central thalamus lies within pathways that transmit brainstem eye position signals to the cortex. Further quantitative analyses suggested that 2 distinct groups of thalamic neurons mediate eye position signals from different subcortical origins, and that the signals are modified dynamically through ascending pathways. Eye position signals through the central thalamus may play essential roles in spatial transformation performed by cortical networks.
尽管多个皮层区域的感觉和运动信号都会受到眼位的调制,但皮层神经元的眼位信号来源仍不明确。一个可能的来源是丘脑中央核,其中包含对眼位敏感的神经元。由于丘脑中央核接收来自脑干的输入,这些神经元可能会传递来自神经积分器或本体感受反馈产生的眼位信号。然而,由于丘脑中央核也接收来自许多皮层区域的输入,丘脑中央核中的眼位信号可能来自大脑皮层。为了阐明这些可能性,研究人员在经过训练的猴子身上检查了丘脑中央核中眼位信号的空间和时间特性。数据显示,眼位信号被分解为水平和垂直分量,这表明丘脑中央核位于将脑干眼位信号传输到皮层的通路中。进一步的定量分析表明,两组不同的丘脑神经元介导来自不同皮层下起源的眼位信号,并且这些信号通过上行通路进行动态修改。通过丘脑中央核的眼位信号可能在皮层网络执行的空间转换中发挥重要作用。