观看令人不快的刺激性视频时,功能连接网络中的分隔增加:gPPI 分析

IF 2.4 3区 医学 Q3 NEUROSCIENCES Brain connectivity Pub Date : 2024-03-01 Epub Date: 2024-02-29 DOI:10.1089/brain.2023.0048
Yuqian Ni, Xia Zheng, Richard Betzel, Thomas W James
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引用次数: 0

摘要

背景:功能连通性(FC)的特性,如网络整合和分离,被证明与人类的各种行为有关。例如,Godwin 等人(2015 年)和 Sun 等人(2020 年)发现,注意力分配增加了整合性,而 Cohen 和 D'Esposito (2016 年)以及 Shine 等人(2016 年)观察到,简单运动任务增加了分离性。本研究调查了观看不同情绪和唤醒度的视频短片如何影响基于任务的FC网络的整合-分离特性:我们分析了 Kim 等人(2016 年)收集的开放数据集。方法:我们分析了Kim等人(2016年)收集的公开数据集,并结合网络分析和群落检测进行了gPPI分析,以研究人们在观看四种不同情感价位(不愉快或愉快)和唤醒(唤醒或平静)的视频时大脑网络动态的变化:结果表明,与其他类型的视频相比,令人不愉快的唤醒视频会产生更大的 FC 偏离基线(tiFCd),并扰乱大脑进入更加分离的状态。仅在联想系统中观察到分离增加,而在感觉运动系统中未观察到:讨论:令人不快的唤醒内容会扰乱大脑,使其进入与其他三种情感视频不同的功能状态。我们认为,大脑状态的变化与人们脱离令人不快的唤醒内容有关,或者说,与人们在接触令人不快的唤醒刺激时保持警惕有关。这项研究还让我们进一步了解了如何将基于任务的 gPPI 分析与群落检测方法和网络隔离措施相结合,从而增进我们对行为与大脑状态变化之间联系的了解。
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Increased Segregation in Functional Connectivity Networks When Watching Unpleasant Arousing Videos: A Generalized Psychophysiological Interaction Analysis.

Background: Properties of functional connectivity (FC), such as network integration and segregation, are shown to be associated with various human behaviors. For example, Godwin et al. and Sun et al. found increased integration with attention allocation, whereas Cohen and D'Esposito and Shine et al. observed increased segregation with simple motor tasks. The current study investigated how viewing video clips with different valence and arousal influenced integration-segregation properties in task-based FC networks. Methods: We analyzed an open dataset collected by Kim et al. We performed a generalized psychophysiological interaction (gPPI) analysis paired with network analysis and community detection to investigate changes in brain network dynamics when people watched four types of videos that differed by affective valence (unpleasant or pleasant) and arousal (arousing or calm). Results: Results showed that unpleasant arousing videos produced greater FC deviation from the baseline (task-induced FC deviation [tiFCd]) and perturbed the brain into a more segregated state than other kinds of video. Increased segregation was only observed in association systems, not sensorimotor systems. Discussion: Unpleasant arousing content perturbed the brain to a functionally distinct state from the other three types of affective videos. We suggest that the change in brain state was related to people disengaging from the unpleasant arousing content or, alternatively, staying alert while exposed to unpleasant arousing stimuli. The study also added to our understanding of how combining task-based gPPI analysis with community detection methods and network segregation measures can advance our knowledge of the links between behavior and brain state changes. Impact statement Network integration and segregation is an important property of the human brain. We address the question of how affective stimuli influence brain dynamics from a functional connectivity (FC) network integration-segregation perspective. By conducting a whole-brain generalized psychophysiological interaction (gPPI) analysis paired with community detection methods, we found that highly aversive video content induced significant FC changes and perturbed the brain to a more segregated state.

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来源期刊
Brain connectivity
Brain connectivity Neuroscience-General Neuroscience
CiteScore
4.80
自引率
0.00%
发文量
80
期刊介绍: Brain Connectivity provides groundbreaking findings in the rapidly advancing field of connectivity research at the systems and network levels. The Journal disseminates information on brain mapping, modeling, novel research techniques, new imaging modalities, preclinical animal studies, and the translation of research discoveries from the laboratory to the clinic. This essential journal fosters the application of basic biological discoveries and contributes to the development of novel diagnostic and therapeutic interventions to recognize and treat a broad range of neurodegenerative and psychiatric disorders such as: Alzheimer’s disease, attention-deficit hyperactivity disorder, posttraumatic stress disorder, epilepsy, traumatic brain injury, stroke, dementia, and depression.
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