功能性近红外光谱超扫描中人际神经影响的方向性:运动任务信息论因果分析的可行性。

IF 2.4 4区 医学 Q3 NEUROSCIENCES
Maha Shadaydeh, Vanessa Noering, Marcel Franz, Tara Chand, Ilona Croy, Joachim Denzler
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引用次数: 0

摘要

超扫描方法标志着从单人神经科学到双人神经科学的转变,使人们能够更深刻地理解人际同步的神经机制。在此背景下,功能性近红外光谱(fNIRS)已成为测量自然、不受约束环境下大脑活动的宝贵工具。虽然使用fNIRS超扫描的人际同步已经使用统计关联分析进行了很好的研究,但建立阐明影响方向的因果关系仍然具有挑战性。本研究旨在探讨确定二元相互作用中影响方向的可行性。由于这种方向的基本真理在自然环境中是不可用的,我们在一个实验设置中验证了我们的方法,在这个实验设置中,我们通过给两个受试者分配特定运动任务的“模型”和“模仿者”角色来控制他们之间的影响方向。总共有22名参与者,也就是11对,在主题内设计中完成了这项任务。我们采用了光谱因果效应分解理论的概念来制定影响方向和强度的新度量。结果表明,在近红外光谱数据中,影响方向的检测精度在62% ~ 71%之间。此外,与时域因果分析相比,所提出的频谱因果关系测量显着减少了由于生理过程和测量伪影的混淆效应而导致的虚假因果关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Directionality of Interpersonal Neural Influence in Functional Near-Infrared Spectroscopy Hyperscanning: Feasibility of Information–Theoretic Causality Analysis in Motor Tasks

Directionality of Interpersonal Neural Influence in Functional Near-Infrared Spectroscopy Hyperscanning: Feasibility of Information–Theoretic Causality Analysis in Motor Tasks

Hyperscanning approaches mark a shift from single- to two-person neuroscience, enabling a more profound understanding of the neural mechanisms underlying interpersonal synchronization. In this context, functional near-infrared spectroscopy (fNIRS) has emerged as a valuable tool for measuring brain activity in a natural, unconstrained environment. While interpersonal synchrony using fNIRS hyperscanning has been well-studied using statistical association analysis, establishing causal relationships that elucidate the direction of influence remains challenging. This study aimed to investigate the feasibility of determining the direction of influence in dyadic interactions. Since the ground truth of such direction is not available in a natural setting, we validated our approach in an experimental setup in which we controlled the direction of influence between two subjects by assigning them the roles of “Model” and “Imitator” of specified motor tasks. A total of 22 participants, hence 11 dyads, completed the task in a within-subject design. We adapted concepts from spectral causal effect decomposition theories to formulate a new measure of the direction and intensity of influence. The results demonstrate that the direction of influence in fNIRS data can be detected with an accuracy in the range of 62%–71%. Furthermore, the proposed spectral causality measure was shown to significantly reduce spurious causal relationships due to the confounding effects of physiological processes and measurement artifacts compared to time domain causal analysis.

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来源期刊
European Journal of Neuroscience
European Journal of Neuroscience 医学-神经科学
CiteScore
7.10
自引率
5.90%
发文量
305
审稿时长
3.5 months
期刊介绍: EJN is the journal of FENS and supports the international neuroscientific community by publishing original high quality research articles and reviews in all fields of neuroscience. In addition, to engage with issues that are of interest to the science community, we also publish Editorials, Meetings Reports and Neuro-Opinions on topics that are of current interest in the fields of neuroscience research and training in science. We have recently established a series of ‘Profiles of Women in Neuroscience’. Our goal is to provide a vehicle for publications that further the understanding of the structure and function of the nervous system in both health and disease and to provide a vehicle to engage the neuroscience community. As the official journal of FENS, profits from the journal are re-invested in the neuroscientific community through the activities of FENS.
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