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心率在呼吸周期内加速的百分比持续时间:一种评估心率不对称性的新方法。

Percent duration of heart rate acceleration within the respiratory cycle: a novel approach to assess heart rate asymmetry.

机构信息

Department of Anesthesiology, National Taiwan University Hospital, Taipei, Taiwan.

Department of Surgery, Chung Shan Medical University Hospital, Taichung, Taiwan.

出版信息

Am J Physiol Heart Circ Physiol. 2024 Jul 1;327(1):H255-H260. doi: 10.1152/ajpheart.00260.2024. Epub 2024 May 24.

Abstract

Accelerations and decelerations of heart rate are nonsymmetrical in the magnitude and number of beat-to-beat changes. The asymmetric features of heart rate variability are related to respiratory durations. To explore the link between respiration and heart rate asymmetry (HRA), we evaluated 14 seated, healthy young adults who breathed with nine combinations of inspiration duration () and expiration duration (), chosen respectively from 2, 4, and 6 s. A 5-min R-R interval (RRI) time series was obtained from each study period to construct an averaged pattern waveform relative to the respiratory cycle. We observed that the time interval between inspiration onset and RRI minimum progressively lengthened as and increased. The time interval between expiration onset and RRI maximum also lengthened when increased but shortened when increased. Consequently, and had different effects on the acceleration time (AT; from RRI maximum to RRI minimum) and deceleration time (DT; from RRI minimum to RRI maximum). The percentage of AT within the respiratory cycle showed a strong correlation with traditional Guzik's ( = 0.862, < 0.001) and Porta's ( = 0.878, < 0.001) indexes of HRA assessed in a Poincaré plot analysis. These findings suggest that, in addition to considering the magnitude and number of beat-to-beat changes, HRA can also be assessed based on another aspect: the duration of consecutive changes. The stepwise link between the duration of heart rate change and respiratory duration provides insight into the mechanisms connecting respiration to HRA. In healthy adults who regulated their breathing across nine combinations of inspiration and expiration durations, we used averaged pattern waveform technique to quantify the durations of heart rate acceleration and deceleration within the respiratory cycle. The percent duration of acceleration showed a strong correlation with traditional heart rate asymmetry indexes, which evaluate the magnitude and number of beat-to-beat changes. This new approach opens a window to explore the asymmetric features of heart rate variability.

摘要

心率的加速和减速在幅度和逐拍变化的数量上是不对称的。心率变异性的不对称特征与呼吸时间有关。为了探讨呼吸与心率不对称(HRA)之间的联系,我们评估了 14 名坐姿健康的年轻成年人,他们分别以 2、4 和 6 秒的吸气时间()和呼气时间()选择了 9 种吸气时间和呼气时间的组合进行呼吸。从每个研究期获得 5 分钟的 R-R 间隔(RRI)时间序列,以构建相对于呼吸周期的平均模式波形。我们观察到,随着和的增加,呼吸起始与 RRI 最小值之间的时间间隔逐渐延长。呼吸起始与 RRI 最大值之间的时间间隔也随着的增加而延长,但随着的增加而缩短。因此,和对加速时间(AT;从 RRI 最大值到 RRI 最小值)和减速时间(DT;从 RRI 最小值到 RRI 最大值)有不同的影响。在呼吸周期内的 AT 百分比与传统的 Guzik(=0.862,<0.001)和 Porta(=0.878,<0.001)的 HRA 指标在 Poincaré 图分析中具有很强的相关性。这些发现表明,除了考虑逐拍变化的幅度和数量外,还可以根据连续变化的持续时间来评估 HRA。在通过吸气和呼气时间的九种组合调节呼吸的健康成年人中,我们使用平均模式波形技术来量化呼吸周期内心率加速和减速的持续时间。加速持续时间的百分比与传统的心率不对称指标具有很强的相关性,这些指标评估逐拍变化的幅度和数量。这种新方法为探索心率变异性的不对称特征开辟了一个窗口。

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