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整合虚拟现实、脑电图和经颅磁刺激以研究敬畏体验的神经关联:SUBRAIN方案。

Integrating virtual reality, electroencephalography, and transcranial magnetic stimulation to study the neural correlates of awe experiences: The SUBRAIN protocol.

作者信息

Bondi Elena, Carbone Flavia, Pizzolante Marta, Schiena Giandomenico, Ferro Adele, Mazzocut-Mis Maddalena, Gaggioli Andrea, Chirico Alice, Brambilla Paolo, Maggioni Eleonora

机构信息

Department of Pathophysiology and Transplantation, Università degli Studi di Milano, Milan, Italy.

Department of Electronics, Information and Bioengineering, Politecnico di Milano, Milan, Italy.

出版信息

PLoS One. 2025 Apr 2;20(4):e0302762. doi: 10.1371/journal.pone.0302762. eCollection 2025.

Abstract

INTRODUCTION

Awe is a complex emotion unveiling a positive and mixed nature, which resembles the Romantic feeling of the Sublime. It has increasingly become the object of scientific investigation in the last twenty years. However, its underlying brain mechanisms are still unclear. To fully capture its nature in the lab, researchers have increasingly relied on virtual reality (VR) as an emotion-elicitation method, which can resemble even complex phenomena in a limited space. In this work, a multidisciplinary team proposed a novel experimental protocol integrating VR, electroencephalography (EEG), and transcranial magnetic stimulation (TMS) to investigate the brain mechanisms of this emotion.

METHODS

A group of bioengineers, psychologists, psychiatrists, and philosophers designed the SUBRAIN study, a single-center, one-arm, non-randomized interventional study to explore the neural processes underlying awe experiences. The study is ongoing and is expected to enroll fifty adults between 20 and 40 years of age. Currently, more than 40 individuals have been enrolled. The experimental protocol includes different steps: (i) screening, (ii) enrollment, (iii) pre-experimental assessment, (iv) VR experimental assessment, and (v) post-experimental debriefing. The brain's electrical activity is recorded using the EEG while participants navigated three immersive awe-inducing VR environments and a neutral one. At the same time, the cortical excitability and connectivity is investigated by performing a TMS-EEG session right after each VR navigation. Along with cerebral signals, self-reported questionnaires were used to assess the VR-induced changes in the emotional state of the subjects. This data is then analyzed to delve into the cerebral mechanisms of awe.

DISCUSSION

This study protocol is the first one that tries to fully understand the neural bases of awe by eliciting and studying this phenomenon in VR. The pairing of awe-inducing VR experiences and questionnaires investigating participants' affect and emotions, with non-invasive neural techniques, can provide a novel and extensive knowledge on this complex phenomenon. The protocol can inform on the combination of different instruments showing a reproducible and reliable setting for the investigation of induced complex emotions.

摘要

引言

敬畏是一种复杂的情绪,展现出积极且复杂的本质,类似于浪漫主义的崇高感。在过去二十年里,它越来越成为科学研究的对象。然而,其潜在的大脑机制仍不清楚。为了在实验室中全面捕捉其本质,研究人员越来越依赖虚拟现实(VR)作为一种情绪诱发方法,它可以在有限的空间内模拟甚至复杂的现象。在这项工作中,一个多学科团队提出了一种新颖的实验方案,将VR、脑电图(EEG)和经颅磁刺激(TMS)相结合,以研究这种情绪的大脑机制。

方法

一组生物工程师、心理学家、精神科医生和哲学家设计了SUBRAIN研究,这是一项单中心、单臂、非随机干预性研究,旨在探索敬畏体验背后的神经过程。该研究正在进行中,预计招募50名年龄在20至40岁之间的成年人。目前,已有40多人入组。实验方案包括不同步骤:(i)筛选,(ii)入组,(iii)实验前评估,(iv)VR实验评估,以及(v)实验后汇报。在参与者浏览三个沉浸式的诱发敬畏的VR环境和一个中性环境时,使用EEG记录大脑的电活动。同时,在每次VR导航后立即进行一次TMS-EEG实验,以研究皮质兴奋性和连通性。除了大脑信号外,还使用自我报告问卷来评估VR引起的受试者情绪状态变化。然后对这些数据进行分析,以深入探究敬畏的大脑机制。

讨论

本研究方案是首个试图通过在VR中诱发和研究这种现象来全面理解敬畏的神经基础的方案。将诱发敬畏的VR体验与调查参与者情感和情绪的问卷相结合,再加上非侵入性神经技术,可以为这一复杂现象提供新颖而广泛的知识。该方案可以为不同仪器的组合提供信息,展示出用于研究诱发复杂情绪的可重复且可靠的设置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5001/11964456/5a4138e97ce2/pone.0302762.g001.jpg

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