Department of Biomedical Engineering, Columbia University, New York, NY, 10027, USA.
Department of Neurological Surgery, University of Texas Southwestern, Dallas, TX, 75390, USA.
Nat Commun. 2023 Aug 30;14(1):5283. doi: 10.1038/s41467-023-41025-y.
The cholinergic system is essential for memory. While degradation of cholinergic pathways characterizes memory-related disorders such as Alzheimer's disease, the neurophysiological mechanisms linking the cholinergic system to human memory remain unknown. Here, combining intracranial brain recordings with pharmacological manipulation, we describe the neurophysiological effects of a cholinergic blocker, scopolamine, on the human hippocampal formation during episodic memory. We found that the memory impairment caused by scopolamine was coupled to disruptions of both the amplitude and phase alignment of theta oscillations (2-10 Hz) during encoding. Across individuals, the severity of theta phase disruption correlated with the magnitude of memory impairment. Further, cholinergic blockade disrupted connectivity within the hippocampal formation. Our results indicate that cholinergic circuits support memory by coordinating the temporal dynamics of theta oscillations across the hippocampal formation. These findings expand our mechanistic understanding of the neurophysiology of human memory and offer insights into potential treatments for memory-related disorders.
胆碱能系统对记忆至关重要。虽然胆碱能通路的退化特征是与记忆相关的疾病,如阿尔茨海默病,但将胆碱能系统与人类记忆联系起来的神经生理机制仍然未知。在这里,我们结合颅内脑记录和药物处理,描述了在情景记忆过程中,一种胆碱能阻断剂东莨菪碱对人类海马结构的神经生理影响。我们发现,东莨菪碱引起的记忆损伤与编码过程中θ振荡(2-10 Hz)的幅度和相位对齐的中断有关。在个体之间,θ相位中断的严重程度与记忆损伤的程度相关。此外,胆碱能阻断破坏了海马结构内的连接。我们的结果表明,胆碱能回路通过协调海马结构中θ振荡的时间动态来支持记忆。这些发现扩展了我们对人类记忆神经生理学的机制理解,并为治疗与记忆相关的疾病提供了新的思路。