Department of Psychiatry and Graduate Program in Neurobiology and Behavior, Columbia University, New York, New York 10032, USA.
J Neurosci. 2013 Aug 28;33(35):14211-24. doi: 10.1523/JNEUROSCI.2378-13.2013.
The rodent medial prefrontal cortex (mPFC) is critical for spatial working memory (SWM), but the underlying neural processes are incompletely understood. During SWM tasks, neural activity in the mPFC becomes synchronized with theta oscillations in the hippocampus, and the strength of hippocampal-prefrontal synchrony is correlated with behavioral performance. However, to what extent the mPFC generates theta oscillations and whether they are also modulated by SWM remains unclear. Furthermore, it is not known how theta oscillations in the mPFC are synchronized with theta oscillations in the hippocampus. Although the ventral hippocampus (vHPC) projects directly to the mPFC, previous studies have only examined synchrony between the mPFC and the dorsal hippocampus (dHPC), with which it is not directly connected. To address these issues, we recorded simultaneously from the dHPC, vHPC, and mPFC of mice performing a SWM task in a T-maze. The local field potential recorded in the mPFC displayed robust theta oscillations that were reflected in local measures of neuronal activity and modulated by SWM performance. mPFC theta oscillations were also synchronized with theta oscillations in both the vHPC and dHPC, and the magnitude of theta synchrony was modulated by SWM. Removing the influence of the vHPC either computationally (through partial correlations) or experimentally (through pharmacological inactivation) reduced theta synchrony between the mPFC and dHPC. These results reveal theta oscillations as a prominent feature of neural activity in the mPFC and a candidate neural mechanism underlying SWM. Furthermore, our results suggest that the vHPC plays a major role in synchronizing theta oscillations in the mPFC and the hippocampus.
啮齿动物内侧前额叶皮层(mPFC)对于空间工作记忆(SWM)至关重要,但其中的神经过程尚不完全清楚。在 SWM 任务期间,mPFC 中的神经活动与海马体中的θ 振荡同步,并且海马体-前额叶同步的强度与行为表现相关。然而,mPFC 产生θ 振荡的程度以及它们是否也受到 SWM 的调节尚不清楚。此外,mPFC 中的θ 振荡如何与海马体中的θ 振荡同步也不得而知。尽管腹侧海马体(vHPC)直接投射到 mPFC,但先前的研究仅检查了 mPFC 与不直接相连的背侧海马体(dHPC)之间的同步性。为了解决这些问题,我们在 T 型迷宫中记录了执行 SWM 任务的小鼠的 dHPC、vHPC 和 mPFC 的同步记录。在 mPFC 中记录的局部场电位显示出强大的θ 振荡,这些振荡反映在神经元活动的局部测量中,并受到 SWM 性能的调节。mPFC 的θ 振荡也与 vHPC 和 dHPC 中的θ 振荡同步,θ 同步的幅度受到 SWM 的调节。通过计算(通过部分相关)或实验(通过药理学失活)去除 vHPC 的影响,会降低 mPFC 和 dHPC 之间的θ 同步性。这些结果揭示了θ 振荡作为 mPFC 中神经活动的一个突出特征,以及 SWM 的候选神经机制。此外,我们的结果表明,vHPC 在同步 mPFC 和海马体中的θ 振荡中起着主要作用。