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Practical nonlinear method for detection of respiratory and cardiac dysfunction in human subjects

机译:实用的检测人类呼吸道和心脏功能障碍的非线性方法

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Abstract: This research applies novel nonlinear signal detection techniques in studies of human subjects with respiratory and cardiac diseases. One of the studies concerns a breathing disorder during sleep, a disease called Obstructive Sleep Apnea (OSA). In a second study we investigate a disease of the heart, Atrial Fibrillation (AF). The former study involves nonlinear processing of the time sequences of sleep apnea recordings (cardio-respirograms) collected from patients with known obstructive sleep apnea, and from a normal control. In the latter study, we apply similar nonlinear metrics to Doppler flow measurements obtained by transesophageal echocardiography (TEE). One of our metrics, the 'chaotic radius' is used for tracking the position of points in phase space relative to some reference position. A second metric, the 'differential radius' provides a measure of the separation rate of contiguous (evolving) points in phase space. A third metric, the 'chaotic frequency' gives angular position of the phase space orbit as a function of time. All are useful for identifying change of physiologic condition that is not always apparent using conventional methods. !4
机译:摘要:本研究将新颖的非线性信号检测技术应用于对患有呼吸系统和心脏疾病的人类受试者的研究。其中一项研究涉及睡眠期间的呼吸系统疾病,称为阻塞性睡眠呼吸暂停(OSA)。在第二项研究中,我们调查了心脏疾病,即房颤(AF)。以前的研究涉及从已知阻塞性睡眠呼吸暂停患者和正常对照中收集的睡眠呼吸暂停记录(心脏呼吸图)的时间序列的非线性处理。在后者的研究中,我们将类似的非线性指标应用于经食管超声心动图(TEE)获得的多普勒血流测量。我们的指标之一,“混沌半径”用于跟踪相空间中点相对于某个参考位置的位置。第二个度量,“微分半径”提供了相空间中连续(演化)点的分离率的度量。第三个度量,“混沌频率”给出了相空间轨道的角位置作为时间的函数。所有这些都可用于识别使用传统方法并不总是显而易见的生理状况变化。 !4

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