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高热诱导的人脑网络功能连接破坏。

Hyperthermia-induced disruption of functional connectivity in the human brain network.

机构信息

Department of Medical Imaging, Jinan Military General Hospital, Jinan, Shandong, People's Republic of China.

出版信息

PLoS One. 2013 Apr 8;8(4):e61157. doi: 10.1371/journal.pone.0061157. Print 2013.

Abstract

BACKGROUND

Passive hyperthermia is a potential risk factor to human cognitive performance and work behavior in many extreme work environments. Previous studies have demonstrated significant effects of passive hyperthermia on human cognitive performance and work behavior. However, there is a lack of a clear understanding of the exact affected brain regions and inter-regional connectivities.

METHODOLOGY AND PRINCIPAL FINDINGS

We simulated 1 hour environmental heat exposure to thirty-six participants under two environmental temperature conditions (25 °C and 50 °C), and collected resting-state functional brain activity. The functional connectivities with a preselected region of interest (ROI) in the posterior cingulate cortex and precuneus (PCC/PCu), furthermore, inter-regional connectivities throughout the entire brain using a prior Anatomical Automatic Labeling (AAL) atlas were calculated. We identified decreased correlations of a set of regions with the PCC/PCu, including the medial orbitofrontal cortex (mOFC) and bilateral medial temporal cortex, as well as increased correlations with the partial orbitofrontal cortex particularly in the bilateral orbital superior frontal gyrus. Compared with the normal control (NC) group, the hyperthermia (HT) group showed 65 disturbed functional connectivities with 50 of them being decreased and 15 of them being increased. While the decreased correlations mainly involved with the mOFC, temporal lobe and occipital lobe, increased correlations were mainly located within the limbic system. In consideration of physiological system changes, we explored the correlations of the number of significantly altered inter-regional connectivities with differential rectal temperatures and weight loss, but failed to obtain significant correlations. More importantly, during the attention network test (ANT) we found that the number of significantly altered functional connectivities was positively correlated with an increase in executive control reaction time.

CONCLUSIONS/SIGNIFICANCE: We first identified the hyperthermia-induced altered functional connectivity patterns. The changes in the functional connectivity network might be a possible explanation for the cognitive performance and work behavior alteration.

摘要

背景

在许多极端工作环境中,被动性体温过高是影响人类认知表现和工作行为的潜在风险因素。先前的研究表明,被动性体温过高对人类认知表现和工作行为有显著影响。然而,对于确切受影响的大脑区域和区域间连通性,仍缺乏清晰的认识。

方法和主要发现

我们模拟了 36 名参与者在两种环境温度条件(25°C 和 50°C)下 1 小时的环境热暴露,并采集了静息状态的功能脑活动。使用预先选择的后扣带回皮层和楔前叶(PCC/PCu)的感兴趣区域(ROI)计算了与功能连通性,此外,还使用先前的解剖自动标记(AAL)图谱计算了整个大脑的区域间连通性。我们确定了与 PCC/PCu 相关的一组区域的相关性降低,包括内侧眶额皮层(mOFC)和双侧内侧颞叶,以及与眶额上回的部分区域的相关性增加,特别是在双侧。与正常对照组(NC)相比,高温组(HT)表现出 65 个功能连通性紊乱,其中 50 个减少,15 个增加。而减少的相关性主要涉及 mOFC、颞叶和枕叶,增加的相关性主要位于边缘系统内。考虑到生理系统的变化,我们探索了区域间连通性改变数量与直肠温度和体重减轻的相关性,但未获得显著相关性。更重要的是,在注意力网络测试(ANT)中,我们发现显著改变的功能连通性数量与执行控制反应时间的增加呈正相关。

结论/意义:我们首次确定了高温引起的功能连通性改变模式。功能连通性网络的变化可能是认知表现和工作行为改变的一个可能解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ac2/3620175/f8c77c6793c4/pone.0061157.g001.jpg

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