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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Signal processing technique for non-invasive real-time estimation of cardiac output by inductance cardiography (thoracocardiography).
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Signal processing technique for non-invasive real-time estimation of cardiac output by inductance cardiography (thoracocardiography).

机译:信号处理技术,用于通过感应心电图(胸腔造影)进行无创实时心输出量估计。

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Inductance cardiography (thoracocardiography) non-invasively monitors changes in stroke volume by recording ventricular volume curves with an inductive plethysmographic transducer encircling the chest at the level of the heart. Clinical application of this method has been hampered, as data analysis has not been feasible in real time. Therefore a novel, real-time signal processing technique for inductance cardiography has been developed. Its essential concept consists in performance of multiple tasks by several, logically linked signal processing modules that have access to common databases. Based on these principles, a software application was designed that performs acquisition, display, filtering and ECG-triggered ensemble averaging of inductance signals and separates cardiogenic waveforms from noise related to respiration and other sources. The resulting ventricular volume curves are automatically analysed. Performance of the technique for monitoring cardiac output in real time was compared with thermodilution in four patients in an intensive care unit. The bias (mean difference) among 76 paired thoracocardiographic and thermodilution derived changes in cardiac output was 0%; limits of agreement (+/- 2 SD of the bias) were +/- 25%. It is concluded that the proposed signal processing technique for inductance cardiography holds promise for non-invasive, real-time estimation of changes in cardiac output.
机译:感应心动描记法(心动描记法)通过在心脏水平处环绕胸部的感应式体积描记器记录心室容积曲线,从而无创地监测搏动量的变化。由于无法实时进行数据分析,因此该方法的临床应用受到了阻碍。因此,已经开发出一种用于电感心电图的新颖的实时信号处理技术。它的基本概念是由几个访问公共数据库的逻辑链接信号处理模块执行多个任务。基于这些原理,设计了一个软件应用程序,该程序执行电感信号的采集,显示,滤波和ECG触发的集合平均,并将心源波形与与呼吸和其他来源相关的噪声分离。自动分析所得的心室容积曲线。在重症监护病房的四名患者中,实时监测心输出量的技术与热稀释的性能进行了比较。在心电图和热稀释法配对产生的76对心电图变化之间的偏差(均值差)为0%;一致性极限(偏差的+/- 2 SD)为+/- 25%。结论是,所提出的用于感应心电图的信号处理技术为无创,实时估计心输出量的变化提供了希望。

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