Seki Yoshimasa, Okanoya Kazuo
Graduate School of Science and Technology, Chiba University, Chiba, Japan.
Neuroreport. 2008 Apr 16;19(6):679-82. doi: 10.1097/WNR.0b013e3282fb7dae.
The song control system of songbirds consists mainly of the 'motor pathway' and 'anterior forebrain pathway'. The medial magnocellular nucleus of anterior nidopallium (mMAN) projects to the song control nucleus HVC, which is the point of divergence of the two pathways. We made simultaneous multiunit electrophysiological recordings from the mMAN and HVC in anesthetized Bengalese finches. We confirmed that the mMAN neurons showed song-selective auditory responses, and found temporal correlations between song-related activities of the mMAN and HVC neurons. The temporal relationship between the neural activation of the HVC and mMAN suggests that these nuclei are parts of a closed loop, which could provide internal feedback to the HVC for sequential syllable control.
鸣禽的歌声控制系统主要由“运动通路”和“前脑前通路”组成。前巢核内侧大细胞核(mMAN)投射到歌声控制核HVC,而HVC是这两条通路的分歧点。我们在麻醉的 Bengalese 雀中对 mMAN 和 HVC 进行了同步多单元电生理记录。我们证实 mMAN 神经元表现出歌声选择性听觉反应,并发现了 mMAN 和 HVC 神经元与歌声相关活动之间的时间相关性。HVC 和 mMAN 的神经激活之间的时间关系表明,这些核是一个闭环的组成部分,该闭环可以为 HVC 提供内部反馈以进行连续音节控制。