Aoki Yuki, Yokoi Taiki, Morikawa Shota, Kuga Nahoko, Ikegaya Yuji, Sasaki Takuya
Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Department of Pharmacology, Graduate School of Pharmaceutical Sciences, Tohoku University, 6-3 Aramaki-Aoba, Aoba-Ku, Sendai 980-8578, Japan.
iScience. 2023 Jun 28;26(7):107233. doi: 10.1016/j.isci.2023.107233. eCollection 2023 Jul 21.
As animals explore environments, hippocampal place cells sequentially fire at progressively earlier phases of theta oscillations in hippocampal local field potentials. In this study, we evaluated the network-level significance of theta phase-entrained neuronal activity in organizing place cell spike patterns. A closed-loop system was developed in which optogenetic stimulation with a temporal pattern replicating theta phase precession is delivered to hippocampal CA1 neurons when rats traversed a particular region on a linear track. Place cells that had place fields during phase precessing stimulation, but not random phase stimulation, showed stronger reactivation during hippocampal sharp-wave ripples in a subsequent rest period. After the rest period, place cells with place fields that emerged during phase precessing stimulation showed more stable place fields. These results imply that neuronal reactivation and stability of spatial maps are mediated by theta phase precession in the hippocampus.
当动物探索环境时,海马体位置细胞会在海马体局部场电位的θ振荡的逐渐更早阶段依次放电。在本研究中,我们评估了θ相位夹带的神经元活动在组织位置细胞放电模式中的网络层面意义。我们开发了一个闭环系统,当大鼠在直线轨道上穿过特定区域时,以复制θ相位进动的时间模式进行光遗传学刺激传递给海马体CA1神经元。在相位进动刺激期间有位置野但在随机相位刺激期间没有的位置细胞,在随后的休息期海马体尖波涟漪期间表现出更强的再激活。休息期后,在相位进动刺激期间出现位置野的位置细胞表现出更稳定的位置野。这些结果表明,海马体中的θ相位进动介导了神经元再激活和空间图谱的稳定性。