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心脏信号在无意识状态下影响听觉规律性处理。

Cardiac signals inform auditory regularity processing in the absence of consciousness.

作者信息

Pelentritou Andria, Pfeiffer Christian, Iten Manuela, Haenggi Matthias, Zubler Frédéric, Schwartz Sophie, De Lucia Marzia

机构信息

Brain-Body and Consciousness Laboratory, Department of Clinical Neuroscience, Lausanne University Hospital, University of Lausanne, Lausanne 1011, Switzerland.

Vice-Presidency for Personnel Development and Leadership, Federal Institute of Technology Zurich, Zurich 8050, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 2025 May 20;122(20):e2505454122. doi: 10.1073/pnas.2505454122. Epub 2025 May 12.

Abstract

In healthy awake individuals, the neural processing of bodily signals is not only essential for survival but can also influence perception and compete with external stimulus processing. Yet, the mechanism underlying this bidirectional processing of bodily and external stimuli, as well as its persistence or modulation in unconscious states, remains largely unknown. Here, we investigated the role of cardiac activity on auditory regularity processing in coma. We recorded continuous electroencephalography and electrocardiography in 48 comatose patients on the first day after cardiac arrest during a closed-loop auditory paradigm. We tested whether sounds presented in synchrony with the ongoing heartbeat and sounds presented with fixed, isochronous intervals, would facilitate auditory processing, compared to an asynchronous sequence with variable heartbeat-to-sound and sound-to-sound intervals and a baseline without auditory stimulation. To assess sound prediction based on sequence regularity, we introduced sound omissions within the sequences, violating expected auditory patterns. In coma survivors only, the neural omission response differed in the synchronous against both control conditions. These results were corroborated by a multivariate decoding analysis of the single-trial neural responses to the synchronous omissions and baseline wherein survivors exhibited a higher degree of cardio-audio regularity encoding compared to nonsurvivors. Furthermore, omissions within the synchronous sequence elicited a heart rate deceleration exclusively in coma survivors, which was predictive of patient outcome. We show that the unconscious human brain infers on the temporal relationship across cardiac and auditory inputs and that the neural and cardiac correlates of cardio-audio regularity encoding are predictive of patient outcome.

摘要

在健康清醒的个体中,身体信号的神经处理不仅对生存至关重要,还会影响感知并与外部刺激处理相互竞争。然而,身体和外部刺激这种双向处理的潜在机制,以及其在无意识状态下的持续性或调节,在很大程度上仍然未知。在此,我们研究了心脏活动在昏迷患者听觉节律处理中的作用。我们在48名心脏骤停后第一天的昏迷患者中,在闭环听觉范式期间记录了连续脑电图和心电图。我们测试了与具有可变心跳与声音以及声音与声音间隔的异步序列和无听觉刺激的基线相比,与正在进行的心跳同步呈现的声音以及以固定等时间隔呈现的声音是否会促进听觉处理。为了基于序列规律性评估声音预测,我们在序列中引入了声音遗漏,从而违反预期的听觉模式。仅在昏迷幸存者中,同步条件与两种对照条件下的神经遗漏反应有所不同。这些结果通过对同步遗漏和基线的单次试验神经反应的多变量解码分析得到了证实,其中与非幸存者相比,幸存者表现出更高程度的心脏 - 听觉节律编码。此外,同步序列中的遗漏仅在昏迷幸存者中引发心率减速,这可预测患者的预后。我们表明,无意识的人类大脑能够推断心脏和听觉输入之间的时间关系,并且心脏 - 听觉节律编码的神经和心脏相关性可预测患者的预后。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/830f/12107109/f4799cdbb183/pnas.2505454122fig01.jpg

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