神经科学
基底前脑
胆碱能的
心理学
胆碱能神经元
神经影像学
默认模式网络
认知
机制(生物学)
烟碱激动剂
视觉感受
多巴胺能
唤醒
神经功能成像
路易氏体型失智症
多巴胺
视觉系统
感知
功能成像
光遗传学
作者
Jinshuo Liu,Dezhu Yu,Yu Liu,Yuxuan Yong,Zihao Wang,Peidong Fan,Xinling Yang
标识
DOI:10.1016/j.nbd.2026.107316
摘要
Visual hallucinations (VH) represent a prevalent and clinically significant non-motor manifestation in Parkinson’s disease (PD), often leading to accelerated cognitive decline, increased caregiver burden, and reduced quality of life. Despite their impact, the neurobiological basis of VH remains poorly defined, and effective treatments are limited. This review systematically synthesizes evidence from neuropathology, multimodal neuroimaging (PET, DTI, fMRI), neurophysiology, and computational modeling to establish a coherent mechanism of VH rooted in cholinergic system failure. We demonstrate that selective degeneration of cholinergic circuits—notably the basal forebrain-cortical and brainstem-basal forebrain pathways—induces VH through multiple convergent pathways: disruption of thalamocortical sensory gating, breakdown in predictive coding, and maladaptive functional connectivity, particularly hypercoupling between the default mode network (DMN) and visual cortex. Imaging studies further delineate a posterior-anterior gradient of cholinergic denervation, quantified by AChE-PET as reduced k₃ values in occipito-temporal regions, while dynamic interactions with dopaminergic fluctuations amplify perceptual noise and computational imbalance. Beyond conventional cholinesterase inhibitors, novel interventions are emerging. These include α7-nAChR agonists, M4 receptor-positive allosteric modulators, and occipital tDCS. They represent circuit-specific strategies with the potential to restore cholinergic modulation and normalize network dynamics . This review integrates multimodal insights into a translational framework , thereby clarifying the cholinergic etiology of PD-VH and outlines a personalized therapeutic roadmap. We also urge future research to bridge molecular mechanisms with clinical innovation in hallucination management. • Cholinergic degeneration drives visual hallucinations in Parkinson's disease. • Posterior-to-anterior cortical cholinergic denervation gradient is revealed. • Dopaminergic-cholinergic imbalance disrupts thalamocortical sensory gating. • Altered DMN-visual network connectivity underlies hallucination mechanisms. • Targeted cholinergic therapies show promise beyond cholinesterase inhibitors.
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