Department of Systems Neurophysiology, Graduate School of Medicine, Tokyo Medical and Dental University, Tokyo, Japan.
J Neurophysiol. 2013 Aug;110(3):640-57. doi: 10.1152/jn.01045.2012. Epub 2013 May 8.
Neurons in the interstitial nucleus of Cajal (INC) that are known to be involved in eye and head movements are excitatory. We investigated the input-output organization of inhibitory INC neurons involved in controlling vertical saccades. Intracellular recordings were made in INC neurons activated antidromically by stimulation of the contralateral trochlear or oculomotor nucleus, and their synaptic input properties from the superior colliculi (SCs) and the contralateral INC were analyzed in anesthetized cats. Many INC neurons projected to the contralateral trochlear nucleus, Forel's field H, INC, and oculomotor nucleus, and mainly received monosynaptic excitation followed by disynaptic inhibition from the ipsi- and contralateral SCs. After sectioning the commissural connections between the SCs, these neurons received monosynaptic excitation from the ipsilateral medial SC and disynaptic inhibition via the INC from the contralateral lateral SC. Another group of INC neurons were antidromically activated from the contralateral oculomotor nucleus, INC and Forel's field H, but not from the trochlear nucleus, and received monosynaptic excitation from the ipsilateral lateral SC and disynaptic inhibition from the contralateral medial SC. The former group was considered to inhibit contralateral trochlear and inferior rectus motoneurons in upward saccades, whereas the latter was considered to inhibit contralateral superior rectus and inferior oblique motoneurons in downward saccades. The mutual inhibition existed between these two groups of INC neurons for upward saccades on one side and downward saccades on the other. This pattern of input-output organization of inhibitory INC neurons suggests that the basic neural circuits for horizontal and vertical saccades are similar.
已知参与眼球和头部运动的 Cajal 间质核(INC)中的神经元为兴奋性神经元。我们研究了参与控制垂直扫视的抑制性 INC 神经元的输入-输出组织。在麻醉猫中,通过对对侧滑车或动眼神经核进行逆行刺激激活 INC 神经元,进行细胞内记录,并分析其来自上丘(SCs)和对侧 INC 的突触输入特性。许多 INC 神经元投射到对侧滑车核、Forel 场 H、INC 和动眼神经核,主要接受来自同侧和对侧 SC 的单突触兴奋,随后是来自同侧和对侧 SC 的双突触抑制。在切断 SC 之间的连合连接后,这些神经元接受来自同侧内侧 SC 的单突触兴奋和来自对侧外侧 SC 通过 INC 的双突触抑制。另一组 INC 神经元从对侧动眼神经核、INC 和 Forel 场 H 逆行激活,但不从滑车核激活,从同侧外侧 SC 接受单突触兴奋,从对侧内侧 SC 接受双突触抑制。前一组被认为抑制同侧向上扫视时的对侧滑车和下直肌运动神经元,而后一组被认为抑制同侧向下扫视时的对侧上直肌和下斜肌运动神经元。同侧向上扫视和对侧向下扫视时这两组 INC 神经元之间存在相互抑制。抑制性 INC 神经元的这种输入-输出组织模式表明,水平和垂直扫视的基本神经回路是相似的。