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对负荷独立的左心室腔特性的探索:研究标准化压力相平面。

The quest for load-independent left ventricular chamber properties: Exploring the normalized pressure phase plane.

作者信息

Ghosh Erina, Kovács Sándor J

机构信息

Cardiovascular Biophysics Laboratory, Cardiovascular Division, Department of Internal Medicine, Washington University School of Medicine St. Louis, Missouri ; Department of Biomedical Engineering, School of Engineering and Applied Science, Washington University in St. Louis St. Louis, Missouri.

出版信息

Physiol Rep. 2013 Aug;1(3):e00043. doi: 10.1002/phy2.43. Epub 2013 Aug 22.

Abstract

The pressure phase plane (PPP), defined by dP(t)/dt versus P(t) coordinates has revealed novel physiologic relationships not readily obtainable from conventional, time domain analysis of left ventricular pressure (LVP). We extend the methodology by introducing the normalized pressure phase plane (nPPP), defined by 0 ≤ P ≤ 1 and -1 ≤ dP/dt ≤ +1. Normalization eliminates load-dependent effects facilitating comparison of conserved features of nPPP loops. Hence, insight into load-invariant systolic and diastolic chamber properties and their coupling to load can be obtained. To demonstrate utility, high-fidelity P(t) data from 14 subjects (4234 beats) was analyzed. PNR, the nPPP (dimensionless) pressure, where -dP/dtpeak occurs, was 0.61 and had limited variance (7%). The relative load independence of PNR was corroborated by comparison of PPP and nPPP features of normal sinus rhythm (NSR) and (ejecting and nonejecting) premature ventricular contraction (PVC) beats. PVCs had lower P(t)max and lower peak negative and positive dP(t)/dt values versus NSR beats. In the nPPP, +dP/dtpeak occurred at higher (dimensionless) P in PVC beats than in regular beats (0.44 in NSR vs. 0.48 in PVC). However, PNR for PVC versus NSR remained unaltered (PNR = 0.64; P > 0.05). Possible mechanistic explanation includes a (near) load-independent (constant) ratio of maximum cross-bridge uncoupling rate to instantaneous wall stress. Hence, nPPP analysis reveals LV properties obscured by load and by conventional temporal P(t) and dP(t)/dt analysis. nPPP identifies chamber properties deserving molecular and cellular physiologic explanation.

摘要

压力相平面(PPP)由dP(t)/dt与P(t)坐标定义,揭示了一些新颖的生理关系,这些关系难以从传统的左心室压力(LVP)时域分析中轻易获得。我们通过引入归一化压力相平面(nPPP)来扩展该方法,nPPP由0 ≤ P ≤ 1和-1 ≤ dP/dt ≤ +1定义。归一化消除了负荷依赖效应,便于比较nPPP环的保守特征。因此,可以深入了解负荷不变的收缩期和舒张期心室特性及其与负荷的耦合。为了证明其效用,分析了14名受试者(4234次搏动)的高保真P(t)数据。PNR是nPPP(无量纲)压力,即-dP/dtpeak出现时的压力,为0.61,且方差有限(7%)。通过比较正常窦性心律(NSR)和(射血和非射血)室性早搏(PVC)搏动的PPP和nPPP特征,证实了PNR相对负荷的独立性。与NSR搏动相比,PVC的P(t)max较低,负向和正向dP(t)/dt峰值较低。在nPPP中,PVC搏动中+dP/dtpeak出现时的(无量纲)P值高于正常搏动(NSR中为0.44,PVC中为0.48)。然而,PVC与NSR的PNR保持不变(PNR = 0.64;P > 0.05)。可能的机理解释包括最大横桥解偶联率与瞬时壁应力的(接近)负荷独立(恒定)比率。因此,nPPP分析揭示了被负荷以及传统的时间P(t)和dP(t)/dt分析所掩盖的左心室特性。nPPP识别出值得从分子和细胞生理学角度解释的心室特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fd2/3834999/b8a35ba9eda2/phy20001-e00043-f1.jpg

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