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Development of Matlab Algorithm to Process Pressure Waveforms from Isolated Perfused Heart Experiments

机译:MATLAB算法的开发方法从孤立的灌注心脏实验过程压力波形

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The Langendorff isolated heart preparation allows for the collection of pressure waveforms in animal heart specimens. The data obtained provides information on physiological parameters such as left ventricular systolic pressure, rate of contractility, rate of relaxation, heart rate, and aortic pressure. Processing this data allows researchers to assess and monitor heart function in a close-to-physiological environment, but data processing may be time-consuming. Commercial software packages are available to process the data collected from the isolated heart experiment, but these packages are expensive and may not be adaptable to the exact application that researchers need. Our group has developed an easily customizable Matlab algorithm which includes a graphical user interface for intuitive processing. The algorithm reads text files containing raw aortic and left ventricular pressure data. From this information, it extracts and plots values for maximum dP/dt, minimum dP/dt, peak left ventricular end systolic pressure (LVSP), left ventricular end diastolic pressure (LVEDP), left ventricular developed pressure (LVDP), mean time from LVEDP to LVSP, heart rate, and mean aortic pressure. The output information includes the standard deviation of the measurements. The input of the algorithm can vary from one to multiple files of data at a time, which allows for comparison of data collected at different time intervals in the experiment. This feature is very useful to monitor the progression of heart function during the experiment and the reproducibility of the experiments. The applicability of the algorithm is beyond the isolated heart experiment, because it could be modified for use in any application that requires processing of pressure waveforms.
机译:Langendorff孤立的心脏准备允许在动物心脏标本中收集压力波形。所获得的数据提供有关生理参数的信息,例如左心室收缩压,收缩力,松弛率,心率和主动脉压力。处理此数据允许研究人员在近生理环境中评估和监控心脏功能,但数据处理可能是耗时的。商业软件包可用于处理从孤立的心脏实验中收集的数据,但这些包装昂贵,可能无法适应研究人员需要的精确应用程序。我们的小组开发了一种易于定制的MATLAB算法,包括用于直观处理的图形用户界面。该算法读取包含原始主动脉和左心室压力数据的文本文件。从该信息中,它提取和绘制最大DP / DT的值,最小DP / DT,峰左心室最终收缩压(LVSP),左心室舒张压(LVEDP),左心室发育压力(LVDP),平均时间LVEDP至LVSP,心率和平均主动脉压力。输出信息包括测量的标准偏差。算法的输入可以一次从一个到多个数据文件不同,这允许在实验中以不同时间间隔收集的数据进行比较。此功能非常有用,无法在实验期间监控心功能的进展和实验的再现性。该算法的适用性超出了孤立的心脏实验,因为它可以被修改用于需要处理压力波形的任何应用。

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