人体功能磁共振成像麻醉与睡眠时综合信息的减少与恢复Φ。

IF 4.3 Q1 PSYCHOLOGY, BIOLOGICAL
Neuroscience of Consciousness Pub Date : 2025-09-01 eCollection Date: 2025-01-01 DOI:10.1093/nc/niaf024
Keiichi Onoda, Satoru Miyauchi, Shigeyuki Kan, Hiroyuki Akama
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引用次数: 0

摘要

综合信息理论(IIT)提供了一个基于现象学性质的公理框架,允许通过称为Φ的测量来量化和表征意识。根据IIT的说法,Φ反映了意识水平,并且随着意识的丧失而下降,尽管支持这一说法的经验数据仍然有限。在这项研究中,我们分析了麻醉(异丙酚诱导)和自然睡眠期间获得的两个功能磁共振成像(fMRI)数据集,以确定Φ是否随着意识的丧失和恢复而变化。我们的分析是使用第四版IIT进行的。我们构建了由五个脑功能网络组成的系统,从fMRI时间序列数据中计算转移概率矩阵,并基于这些矩阵推导出Φ值。正如IIT所预测的那样,Φ在麻醉引起的整体和局部意识丧失期间都有所下降。同样,在睡眠引起的意识丧失过程中,以脑后区域为中心的系统中Φ也会局部减少。将功能网络视为系统单元,我们发现大脑的综合信息(Φ)与意识水平的波动有关。这些发现表明,在大规模的功能网络中,意识和综合信息之间存在着强烈的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Decrease and recovery of integrated information Φ during anesthesia and sleep on human functional magnetic resonance imaging.

Decrease and recovery of integrated information Φ during anesthesia and sleep on human functional magnetic resonance imaging.

Decrease and recovery of integrated information Φ during anesthesia and sleep on human functional magnetic resonance imaging.

Decrease and recovery of integrated information Φ during anesthesia and sleep on human functional magnetic resonance imaging.

Integrated information theory (IIT) offers an axiomatic framework based on phenomenological properties, allowing the quantification and characterization of consciousness through a measure known as Φ. According to IIT, Φ reflects the level of consciousness and is expected to decrease with loss of consciousness, although empirical data supporting this claim remain limited. In this study, we analyzed two functional magnetic resonance imaging (fMRI) datasets acquired during anesthesia (propofol-induced) and natural sleep to determine whether Φ changes with the loss and recovery of consciousness. Our analysis was conducted using the fourth version of IIT. We constructed systems composed of five functional brain networks, computed transition probability matrices from fMRI time series data, and derived Φ values based on these matrices. As predicted by IIT, Φ decreased during anesthesia-induced loss of consciousness at both global and local levels. Similarly, Φ was locally reduced within a system centered on posterior brain regions during sleep-induced loss of consciousness. Considering functional networks as system units, we found that the integrated information (Φ) of the brain is linked to fluctuations in consciousness levels. These findings indicate a strong association between consciousness and integrated information within the large-scale functional networks.

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来源期刊
Neuroscience of Consciousness
Neuroscience of Consciousness Psychology-Clinical Psychology
CiteScore
6.90
自引率
2.40%
发文量
16
审稿时长
19 weeks
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