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Force-Interval Relationships of the Heart Measured With Photoplethysmography During Atrial Fibrillation

机译:心房颤动期间光电容积描记法测量心脏的力-间隔关系

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Force-interval relationships (FIRs) of the heart represent the relationships between inter-beat intervals (IBIs) and strength of the ventricular contractions. These relationships are typically measured invasively and are altered from normal in heart failure (HF). An unobtrusive and continuous measurement of FIRs could be beneficial when HF and atrial fibrillation (AF) coexist in order to understand if AF causes progression of HF. We hypothesize that FIRs could be assessed during AF with IBIs and hemodynamic changes captured unobtrusively by photo-plethysmography (PPG) at the wrist. FIRs were assessed by using Spearman's rank correlation between the pulse onset change in the PPG waveform and either the preceding or pre-preceding IBIs $(r_{pre} and r_{pre-pre})$ in 5-minute segments. 32 patients (14 continuous AF, 18 no AF) were measured during the night with PPG and electrocardiography as a reference. The mean and standard deviation of $r_{pre}$ were $-0.25pm 0.08$ and $0.05pm 0.12(p < 0.0001)$, and of $r_{pre-pre} 0.60pm 0.09$ and $0.16pm 0.14 (p < 0.0001)$, during AF and sinus rhythm, respectively. Areas under the Receiver Operating Characteristics curve were 0.987 and 0.998, respectively. Thus, during AF the IBIs correlate with the beat-to-beat changes of blood volume measured with PPG, likely to indicate that FIRs can be measured unobtrusively with the PPG signal.
机译:心脏的力间隔关系(FIR)代表心跳间隔(IBI)与心室收缩强度之间的关系。这些关系通常以侵入性方式进行测量,并且在心力衰竭(HF)中与正常情况有所不同。当心力衰竭和心房颤动(AF)并存时,对FIR进行不显眼且连续的测量可能是有益的,以便了解AF是否会导致心律失常的进展。我们假设可以在房颤期间使用IBI对FIR进行评估,并通过腕部的体积描记法(PPG)捕获血流动力学变化。通过使用PPG波形中的脉冲起始变化与之前或之前的IBI之间的Spearman等级相关性来评估FIR $(r_ {pre} \和\ r_ {pre-pre})$ 在5分钟内晚上以PPG和心电图为参考,对32例患者(14例连续房颤,18例无房颤)进行了测量。的均值和标准差 $ r_ {pre} $ < / tex> 是 $-0.25 \ pm 0.08 $ $ 0.05 \ pm 0.12(p < 0.0001)$ $ r_ {pre-pre} 0.60 \ pm 0.09 $ $ 0.16 \ pm 0.14(p < 0.0001)$ ,分别在房颤和窦性心律期间。接收器工作特性曲线下的面积分别为0.987和0.998。因此,在AF期间,IBI与PPG测量的逐次搏动的血量变化相关,这可能表明FIR可以通过PPG信号进行不显眼的测量。

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