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Cardiac Output Measurement Using Ballistocardiogram

机译:使用鲍尔通信局的心输出测量

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Ballistocardiogram (BCG) is a non-invasive technique to measure cardiac parameters. It was popularized by Dr. Isaac Staar in 1940. The Ballistocardiogram signal is generated due to the vibrational activity of the heart. BCG was considered as a promising technique but was replaced by Electrocardiogram due to the difficulty involved in detecting and analysing the BCG waveforms. With the increase in processing power and better signal processing techniques over the last few decades, BCG has regained its prominence and is being con- -sidered to be used as a continuous patient monitoring system. The usability of BCG was limited in the earlier days due to the large size of the equipment and the lack of signal processing systems to analyse this complicated signal. Cardiac output is defined as the amount of blood pumped out by the heart in a minute. This parameter can be utilized to determine the state of the heart. One method to determine the cardiac output from BCG waveform has been discussed in section II of this paper. The sensor used for our experiment is a lightweight and flexible sheet type electromechanical film which is placed on the seat of the chair. The setup used has a two-stage amplifier which is connected to a data acquisition card which is in turn connected to a laptop. The signal processing is done using NI's software LabView. The BCG setup was made and the signal was successfully validated with ECG. The R-J interval, which is the interval between the R peak of the ECG signal and J peak of the BCG signal, was determined. Echocardiogram, another cardiac measurement instrument, was kept as a standard basis for determining the cardiac output from the BCG signal. Recording of 14 different subjects have been taken and the cardiac output has been determined for each case.
机译:滚珠球技术造影(BCG)是测量心脏参数的非侵入性技术。 1940年,它被Isaac Staar博士普及。由于心脏的振动活动,脉珠动画片信号是由于心脏的振动活动而产生的。 BCG被认为是一种有希望的技术,但由于检测和分析BCG波形的困难而被心电图所取代。随着在过去几十年中加工电量和更好的信号处理技术的增加,BCG已恢复其突出,并且被视为连续患者监测系统。由于设备尺寸的大尺寸和信号处理系统缺乏分析这种复杂信号,BCG的可用性在早期的情况下是有限的。心脏输出定义为心脏在一分钟内泵出的血液量。该参数可用于确定心脏的状态。本文的II部分讨论了确定来自BCG波形的心脏输出的一种方法。用于我们实验的传感器是一种轻质和柔性的薄片机电薄膜,放置在椅子的座椅上。所使用的设置具有双级放大器,其连接到数据采集卡,又连接到膝上型计算机。使用NI的软件LabVIEW进行信号处理。制作了BCG设置,并通过ECG成功验证了信号。确定R-J间隔,即ECG信号的R峰值与BCG信号的j峰之间的间隔。超声心动图,另一种心脏测量仪器作为确定来自BCG信号的心脏输出的标准依据。已经采取了14种不同受试者的录制,并确定了每种情况的心输出。

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