Hemodynamics of coronary sinus occlusion: a linear model

A. Mo, Y. Sun
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Abstract

The coronary sinus occlusion pressure exhibits complicated frequency characteristics which can be modeled by either a nonlinear system approach or a high-order LTI (linear time-invariant) system approach. The LTI system presents a superior modeling methodology, due to the applicability of powerful analytical tools such as Fourier analysis. Using linear system identification techniques, a fifth-order LTI system was obtained to characterize coronary sinus occlusion pressure waveforms. Linear systems of lower order were found to have insufficient degree of freedom to model the hemodynamics of the coronary sinus occlusion. The resulting model from the systematic identification process was stable within a broad range of variations of heart rate and time constant of the coronary sinus occlusion pressure. This model provides a mathematical basis to study distributive properties in the coronary venous circulation and to optimize various treatment procedures of myocardium diseases via the coronary sinus.<>
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冠状窦闭塞血流动力学:线性模型
冠状窦闭塞压力具有复杂的频率特性,可以采用非线性系统方法或高阶线性时不变系统方法进行建模。由于傅立叶分析等强大的分析工具的适用性,LTI系统提供了优越的建模方法。利用线性系统识别技术,获得了一个五阶LTI系统来表征冠状窦闭塞压力波形。低阶线性系统被发现自由度不足以模拟冠状窦阻塞的血流动力学。系统识别过程得到的模型在心率和冠状窦闭塞压时间常数的大范围变化范围内是稳定的。该模型为研究冠状静脉循环的分布特性和优化经冠状静脉窦治疗心肌疾病的各种方法提供了数学基础
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