Yang Rongfeng, Wei Yixiang
Department of Engineering Physics, Tsinghua University, Beijing 100084, China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2005 Apr;22(2):367-70.
QRS-waves integral can reflect the activities of ventricular depolarization. In this paper are analyzed the nonlinear characters in QRS-waves integral: reconstructing state space with these integral signals after nonlinear noise reduction, calculating its attractor dimension and the largest Lyapunov exponents. With the results based on MIT-BIH database we proposed that QRS-waves integral is of chaos nature. When compased with HRV nonlinear analysis, QRS-waves integral analysis was found to be of more advantages in some cases such as premature ventricular contraction. This QRS-waves integral nonlinear analysis may be of use in evaluating clinical cardiac function.
QRS波积分能够反映心室去极化活动。本文分析了QRS波积分中的非线性特征:在进行非线性降噪后用这些积分信号重构状态空间,计算其吸引子维度和最大Lyapunov指数。基于麻省理工学院 - 贝斯以色列女执事医疗中心(MIT - BIH)数据库的结果,我们提出QRS波积分具有混沌特性。与心率变异性(HRV)非线性分析相比,发现QRS波积分分析在某些情况下具有更多优势,如室性早搏。这种QRS波积分非线性分析可能有助于评估临床心脏功能。