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负责在阿尔茨海默病的穹窿脑深部刺激期间引起刺激诱导的记忆闪回的大脑结构和网络。

Brain structures and networks responsible for stimulation-induced memory flashbacks during forniceal deep brain stimulation for Alzheimer's disease.

机构信息

Division of Neurosurgery, Toronto Western Hospital, University Health Network, University of Toronto, Toronto, Canada.

Joint Department of Medical Imaging, University of Toronto, Toronto, Canada.

出版信息

Alzheimers Dement. 2021 May;17(5):777-787. doi: 10.1002/alz.12238. Epub 2021 Jan 21.

Abstract

INTRODUCTION

Fornix deep brain stimulation (fx-DBS) is under investigation for treatment of Alzheimer's disease (AD). We investigated the anatomic correlates of flashback phenomena that were reported previously during acute diencephalic stimulation.

METHODS

Thirty-nine patients with mild AD who took part in a prior fx-DBS trial (NCT01608061) were studied. After localizing patients' implanted electrodes and modeling the volume of tissue activated (VTA) by DBS during systematic stimulation testing, we performed (1) voxel-wise VTA mapping to identify flashback-associated zones; (2) machine learning-based prediction of flashback occurrence given VTA overlap with specific structures; (3) normative functional connectomics to define flashback-associated brain-wide networks.

RESULTS

A distinct diencephalic region was associated with greater flashback likelihood. Fornix, bed nucleus of stria terminalis, and anterior commissure involvement predicted memory events with 72% accuracy. Flashback-inducing stimulation exhibited greater functional connectivity to a network of memory-evoking and autobiographical memory-related sites.

DISCUSSION

These results clarify the neuroanatomical substrates of stimulation-evoked flashbacks.

摘要

简介

穹窿深部脑刺激(fx-DBS)正被研究用于治疗阿尔茨海默病(AD)。我们研究了先前在急性间脑刺激期间报告的闪回现象的解剖学相关性。

方法

39 名患有轻度 AD 的患者参加了先前的 fx-DBS 试验(NCT01608061)。在定位患者的植入电极并通过系统刺激测试中 DBS 激活的组织体积(VTA)建模后,我们进行了(1)体素级 VTA 映射以识别与闪回相关的区域;(2)基于机器学习的预测给定 VTA 与特定结构重叠时发生闪回的可能性;(3)规范功能连接组学来定义与闪回相关的全脑网络。

结果

一个独特的间脑区域与更大的闪回可能性相关。穹窿、终纹床核和前连合的参与预测了记忆事件,准确率为 72%。引发闪回的刺激与记忆唤起和自传体记忆相关的网络之间表现出更大的功能连接。

讨论

这些结果阐明了刺激诱发闪回的神经解剖学基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0456/8247976/3d068adf8757/ALZ-17-777-g002.jpg

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