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Piecewise nonlinear mixed-effects models for modeling cardiac function and assessing treatment effects

机译:用于建模心功能和评估治疗效果的分段非线性混合效应模型

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摘要

Mixed-effects model is an efficient tool for analyzing longitudinal data. The random effects in a mixed-effects model can be used to capture the correlations among repeated measurements within a subject. Mixed effects model can be used to describe individual response profile as well as population response profile. In this manuscript, we apply mixed-effects models to the repeated measurements of cardiac function variables including heart rate, coronary flow, and left ventricle developed pressure (LVDP) in the isolated, Langendorff-perfused hearts of glutathione s-transferase P1/P2 (GSTP) gene knockout and wild-type mice. Cardiac function was measured before and during ischemia/reperfusion injury in these hearts. To describe the dynamics of each cardiac function variable during the entire experiment, we developed piecewise nonlinear mixed-effects models and a change point nonlinear mixed effect model. These models can be used to examine how cardiac function variables were altered by ischemia/reperfusion-induced injury and to compare the cardiac function variable between genetically engineered (null or transgenic) mice and wild-type mice. Hypothesis tests were constructed to evaluate the impact of deletion of GSTP gene for different cardiac function variables. These findings provide a new application for mixed-effects models in physiological and pharmacological studies of the isolated Langendorff-perfused heart.
机译:混合效应模型是分析纵向数据的有效工具。混合效应模型中的随机效应可用于捕获对象内重复测量之间的相关性。混合效应模型可用于描述个体反应谱以及人群反应谱。在本手稿中,我们将混合效应模型应用于心脏功能变量的重复测量,包括在谷胱甘肽s-转移酶P1 / P2的分离的Langendorff灌注心脏中分离的心率,冠状动脉血流和左心室发育压力(LVDP)( GSTP)基因敲除和野生型小鼠。在这些心脏的缺血/再灌注损伤之前和期间测量心脏功能。为了描述整个实验过程中每个心脏功能变量的动力学,我们开发了分段非线性混合效应模型和变化点非线性混合效应模型。这些模型可用于检查缺血/再灌注诱导的损伤如何改变心脏功能变量,并比较基因工程(无效或转基因)小鼠和野生型小鼠之间的心脏功能变量。构建假设检验以评估GSTP基因缺失对不同心脏功能变量的影响。这些发现为混合效应模型在孤立的Langendorff灌注心脏的生理和药理研究中提供了新的应用。

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