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左心室辅助时振荡血流动力学参数的非线性数学分析

Nonlinear mathematical analysis of the hemodynamic parameters during left ventricular assistance with oscillated blood flow.

作者信息

Yambe T, Kobayashi S, Sonobe T, Naganuma S, Nanka S, Hashimoto H, Yoshizawa M, Tabayashi K, Takayasu H, Takeda H, Nitta S

机构信息

Department of Medical Engineering and Cardiology, Tohoku University, Sendai, Japan.

出版信息

Artif Organs. 1997 Jul;21(7):625-9. doi: 10.1111/j.1525-1594.1997.tb03711.x.

Abstract

For the development of a totally implantable ventricular assist system (VAS), we have been developing the vibrating flow pump (VFP), which can generate oscillated blood flow with a relatively high frequency (10-50 Hz) for a totally implantable system. In this study, effects of left ventricular assistance with this unique oscillated blood flow were analyzed by nonlinear mathematics for evaluation as the entire circulatory regulatory system, not as a separate part of the system. Left heart bypasses using VFPs from the left atriums to the descending aortas were performed in chronic animal experiments using healthy adult goats. Electrocardiogram (ECG), arterial blood pressure, VFP pump flow, and flow of the descending aorta data taken while the goats were awake were recorded in the data recorder and analyzed in the personal computer system through the AD convertor. Using nonlinear mathematics, time series data were embedded into the phase space, and the Lyapunov numerical method, fractal dimension analysis, and power spectrum analysis were performed to evaluate the nonlinear dynamics. During left ventricular assistance with the VFP, Mayer wave fluctuations were decreased in the power spectrum, the fractal dimension of the hemodynamics was significantly decreased, and peripheral vascular resistance was significantly decreased. These results suggest that nonlinear dynamics, which mediate the cardiovascular dynamics, may be affected during LV bypass with oscillated flow. Decreased power of the Mayer wave in the spectrum caused the limit cycle attractor of the hemodynamics and decreased the peripheral resistance. Decreased sympathetic discharges may be the origin of the decreased Mayer wave and fractal dimension. These nonlinear dynamical analyses may be useful to design the optimal VAS control.

摘要

为了开发一种完全可植入的心室辅助系统(VAS),我们一直在研发振动流泵(VFP),对于完全可植入系统而言,该泵能够产生频率相对较高(10 - 50 Hz)的振荡血流。在本研究中,运用非线性数学分析了这种独特振荡血流进行左心室辅助的效果,目的是将其作为整个循环调节系统来评估,而非该系统的一个单独部分。在使用健康成年山羊的慢性动物实验中,进行了从左心房到降主动脉的使用VFP的左心旁路手术。记录清醒状态下山羊的心电图(ECG)、动脉血压、VFP泵流量以及降主动脉流量数据,并通过AD转换器将其记录在数据记录器中,然后在个人计算机系统中进行分析。运用非线性数学方法,将时间序列数据嵌入相空间,并进行Lyapunov数值方法、分形维分析和功率谱分析以评估非线性动力学。在使用VFP进行左心室辅助期间,功率谱中Mayer波波动减小,血流动力学的分形维显著降低,外周血管阻力显著降低。这些结果表明,介导心血管动力学的非线性动力学在振荡流左心室旁路手术期间可能会受到影响。频谱中Mayer波功率降低导致血流动力学的极限环吸引子出现,并降低了外周阻力。交感神经放电减少可能是Mayer波和分形维降低的原因。这些非线性动力学分析可能有助于设计最佳的VAS控制。

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