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脑动态临界关闭压对平均动脉压变化反应的决定因素。

Determinants of the dynamic cerebral critical closing pressure response to changes in mean arterial pressure.

机构信息

Cerebral Haemodynamics in Ageing and Stroke Medicine (CHiASM), Department of Cardiovascular Sciences, University of Leicester, Leicester, United Kingdom.

NIHR Leicester Biomedical Research Centre, BHF Cardiovascular Research Centre, Glenfield Hospital, Leicester, United Kingdom.

出版信息

Physiol Meas. 2024 Jun 14;45(6). doi: 10.1088/1361-6579/ad548d.

Abstract

. Cerebral critical closing pressure (CrCP) represents the value of arterial blood pressure (BP) where cerebral blood flow (CBF) becomes zero. Its dynamic response to a step change in mean BP (MAP) has been shown to reflect CBF autoregulation, but robust methods for its estimation are lacking. We aim to improve the quality of estimates of the CrCP dynamic response.. Retrospective analysis of 437 healthy subjects (aged 18-87 years, 218 males) baseline recordings with measurements of cerebral blood velocity in the middle cerebral artery (MCAv, transcranial Doppler), non-invasive arterial BP (Finometer) and end-tidal CO(EtCO, capnography). For each cardiac cycle CrCP was estimated from the instantaneous MCAv-BP relationship. Transfer function analysis of the MAP and MCAv (MAP-MCAv) and CrCP (MAP-CrCP) allowed estimation of the corresponding step responses (SR) to changes in MAP, with the output in MCAv (SRV) representing the autoregulation index (ARI), ranging from 0 to 9. Four main parameters were considered as potential determinants of the SRVtemporal pattern, including the coherence function, MAP spectral power and the reconstruction error for SRV, from the other three separate SRs.. The reconstruction error for SRVwas the main determinant of SRVsignal quality, by removing the largest number of outliers (Grubbs test) compared to the other three parameters. SRVshowed highly significant (< 0.001) changes with time, but its amplitude or temporal pattern was not influenced by sex or age. The main physiological determinants of SRVwere the ARI and the mean CrCP for the entire 5 min baseline period. The early phase (2-3 s) of SRVresponse was influenced by heart rate whereas the late phase (10-14 s) was influenced by diastolic BP.. These results should allow better planning and quality of future research and clinical trials of novel metrics of CBF regulation.

摘要

. 脑临界关闭压 (CrCP) 代表动脉血压 (BP) 值,在此值下脑血流 (CBF) 为零。其对平均 BP (MAP) 阶跃变化的动态反应已被证明反映了 CBF 自动调节,但缺乏可靠的估计方法。我们旨在提高 CrCP 动态反应估计的质量。. 对 437 名健康受试者(年龄 18-87 岁,男性 218 名)的基线记录进行回顾性分析,测量大脑中动脉的脑血流速度 (MCAv,经颅多普勒)、无创动脉血压 (Finometer) 和呼气末 CO(EtCO,二氧化碳图)。对于每个心动周期,从瞬时 MCAv-BP 关系估计 CrCP。MAP 和 MCAv (MAP-MCAv) 和 CrCP (MAP-CrCP) 的传递函数分析允许估计 MAP 变化的相应阶跃响应 (SR),其中 MCAv 的输出 (SRV) 代表自动调节指数 (ARI),范围从 0 到 9。考虑了四个主要参数作为 SRV 时间模式的潜在决定因素,包括相干函数、MAP 谱功率和 SRV 的重建误差,来自其他三个单独的 SR。. SRV 的重建误差是 SRV 信号质量的主要决定因素,与其他三个参数相比,它去除了最多的异常值 (Grubbs 检验)。SRV 显示出与时间高度显著的 (< 0.001) 变化,但它的幅度或时间模式不受性别或年龄的影响。SRV 的主要生理决定因素是 ARI 和整个 5 分钟基线期的平均 CrCP。SRV 响应的早期阶段 (2-3 s) 受心率影响,而晚期阶段 (10-14 s) 受舒张压影响。. 这些结果应该可以更好地规划和提高未来对 CBF 调节新指标的研究和临床试验的质量。

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