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中重度创伤性脑损伤中自主神经功能与脑血管反应性的动态时间关系

Dynamic Temporal Relationship Between Autonomic Function and Cerebrovascular Reactivity in Moderate/Severe Traumatic Brain Injury.

作者信息

Froese Logan, Gomez Alwyn, Sainbhi Amanjyot Singh, Batson Carleen, Stein Kevin, Alizadeh Arsalan, Zeiler Frederick A

机构信息

Biomedical Engineering, Faculty of Engineering, University of Manitoba, Winnipeg, MB, Canada.

Section of Neurosurgery, Department of Surgery, Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, MB, Canada.

出版信息

Front Netw Physiol. 2022 Feb 16;2:837860. doi: 10.3389/fnetp.2022.837860. eCollection 2022.

Abstract

There has been little change in morbidity and mortality in traumatic brain injury (TBI) in the last 25 years. However, literature has emerged linking impaired cerebrovascular reactivity (a surrogate of cerebral autoregulation) with poor outcomes post-injury. Thus, cerebrovascular reactivity (derived through the pressure reactivity index; PRx) is emerging as an important continuous measure. Furthermore, recent literature indicates that autonomic dysfunction may drive impaired cerebrovascular reactivity in moderate/severe TBI. Thus, to improve our understanding of this association, we assessed the physiological relationship between PRx and the autonomic variables of heart rate variability (HRV), blood pressure variability (BPV), and baroreflex sensitivity (BRS) using time-series statistical methodologies. These methodologies include vector autoregressive integrative moving average (VARIMA) impulse response function analysis, Granger causality, and hierarchical clustering. Granger causality testing displayed inconclusive results, where PRx and the autonomic variables had varying bidirectional relationships. Evaluating the temporal profile of the impulse response function plots demonstrated that the autonomic variables of BRS, ratio of low/high frequency of HRV and very low frequency HRV all had a strong relation to PRx, indicating that the sympathetic autonomic response may be more closely linked to cerebrovascular reactivity, then other variables. Finally, BRS was consistently associated with PRx, possibly demonstrating a deeper relationship to PRx than other autonomic measures. Taken together, cerebrovascular reactivity and autonomic response are interlinked, with a bidirectional impact between cerebrovascular reactivity and circulatory autonomics. However, this work is exploratory and preliminary, with further study required to extract and confirm any underlying relationships.

摘要

在过去25年中,创伤性脑损伤(TBI)的发病率和死亡率几乎没有变化。然而,已有文献表明脑血管反应性受损(脑自动调节的一个替代指标)与损伤后不良预后相关。因此,脑血管反应性(通过压力反应指数;PRx得出)正成为一项重要的连续测量指标。此外,最近的文献表明自主神经功能障碍可能导致中度/重度TBI患者脑血管反应性受损。因此,为了更好地理解这种关联,我们使用时间序列统计方法评估了PRx与心率变异性(HRV)、血压变异性(BPV)和压力反射敏感性(BRS)等自主神经变量之间的生理关系。这些方法包括向量自回归积分移动平均(VARIMA)脉冲响应函数分析、格兰杰因果关系检验和层次聚类分析。格兰杰因果关系检验结果不明确,PRx与自主神经变量之间存在不同的双向关系。评估脉冲响应函数图的时间特征表明,BRS、HRV低频/高频比值和HRV极低频等自主神经变量均与PRx有很强的相关性,这表明交感神经自主反应可能比其他变量与脑血管反应性的联系更为紧密。最后,BRS始终与PRx相关,这可能表明其与PRx的关系比其他自主神经测量指标更为深入。综上所述,脑血管反应性和自主神经反应相互关联,脑血管反应性与循环自主神经之间存在双向影响。然而,这项工作具有探索性和初步性,需要进一步研究以提取和确认任何潜在关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/def7/10013014/1a60cd8a18c7/fnetp-02-837860-g001.jpg

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