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阿尔茨海默病遗传风险个体记忆相关连接性的广义心理生理交互作用(PPI)分析

Generalized Psychophysiological Interaction (PPI) Analysis of Memory Related Connectivity in Individuals at Genetic Risk for Alzheimer's Disease.

作者信息

Harrison Theresa M, McLaren Donald G, Moody Teena D, Feusner Jamie D, Bookheimer Susan Y

机构信息

Psychiatry and Biobehavioral Sciences, University of California, Los Angeles;

Biospective, Inc.

出版信息

J Vis Exp. 2017 Nov 14(129):55394. doi: 10.3791/55394.

Abstract

In neuroimaging, functional magnetic resonance imaging (fMRI) measures the blood-oxygenation-level dependent (BOLD) signal in the brain. The degree of correlation of the BOLD signal in spatially independent regions of the brain defines the functional connectivity of those regions. During a cognitive fMRI task, a psychophysiological interaction (PPI) analysis can be used to examine changes in the functional connectivity during specific contexts defined by the cognitive task. An example of such a task is one that engages the memory system, asking participants to learn pairs of unrelated words (encoding) and recall the second word in a pair when presented with the first word (retrieval). In the present study, we used this type of associative memory task and a generalized PPI (gPPI) analysis to compare changes in hippocampal connectivity in older adults who are carriers of the Alzheimer's disease (AD) genetic risk factor apolipoprotein-E epsilon-4 (APOEε4). Specifically, we show that the functional connectivity of subregions of the hippocampus changes during encoding and retrieval, the two active phases of the associative memory task. Context-dependent changes in functional connectivity of the hippocampus were significantly different in carriers of APOEε4 compared to non-carriers. PPI analyses make it possible to examine changes in functional connectivity, distinct from univariate main effects, and to compare these changes across groups. Thus, a PPI analysis may reveal complex task effects in specific cohorts that traditional univariate methods do not capture. PPI analyses cannot, however, determine directionality or causality between functionally connected regions. Nevertheless, PPI analyses provide powerful means for generating specific hypotheses regarding functional relationships, which can be tested using causal models. As the brain is increasingly described in terms of connectivity and networks, PPI is an important method for analyzing fMRI task data that is in line with the current conception of the human brain.

摘要

在神经影像学中,功能磁共振成像(fMRI)测量大脑中的血氧水平依赖(BOLD)信号。大脑空间独立区域中BOLD信号的相关程度定义了这些区域的功能连接性。在认知fMRI任务期间,心理生理交互作用(PPI)分析可用于检查在认知任务定义的特定背景下功能连接性的变化。此类任务的一个例子是涉及记忆系统的任务,要求参与者学习不相关单词对(编码),并在看到第一个单词时回忆该单词对中的第二个单词(检索)。在本研究中,我们使用这种类型的联想记忆任务和广义PPI(gPPI)分析,比较携带阿尔茨海默病(AD)遗传风险因素载脂蛋白Eε4(APOEε4)的老年人海马连接性的变化。具体而言,我们表明,在联想记忆任务的两个活跃阶段,即编码和检索期间,海马子区域的功能连接性会发生变化。与非携带者相比,APOEε4携带者海马功能连接性的背景依赖性变化显著不同。PPI分析能够检查功能连接性的变化,这与单变量主效应不同,并比较不同组之间的这些变化。因此,PPI分析可能揭示传统单变量方法未捕捉到的特定队列中的复杂任务效应。然而,PPI分析无法确定功能连接区域之间的方向性或因果关系。尽管如此,PPI分析为生成关于功能关系的特定假设提供了有力手段,这些假设可以使用因果模型进行检验。随着大脑越来越多地从连接性和网络的角度进行描述,PPI是一种分析fMRI任务数据的重要方法,与当前对人类大脑的概念一致。

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