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Labview based bowel-sounds monitoring system in realtime

机译:基于Labview的肠鸣音实时监测系统

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For the patient who just underwent a major operation after general anesthesia, the gastrointestine recovery would take several hours. Therefore, evaluation of bowel-sounds (BS) plays an important role to know when the patient can begin to take food. The objective of our work is to offer a usable BS monitoring system in real-time instead of a doctor's auscultation in the midst of pressing affairs. This report describes the performance of using a unidirectional microphone to detect BS in the right lower quadrant of the abdomen. In this paper, a measuring method based on the Laboratory Virtual Instrument Engineering Workbench (LabVIEW) techniques is proposed. We successfully eliminate the interference of the noise sources, which include of cardiac and pulmonary sounds, by means of filtering techniques. The experimental design was of using a stethoscope joined to a unidirectional microphone, and then using a data-acquisition (DAQ) interface to obtain the measured data via the LabVIEW software on a PC. Experimental results confirm the effectiveness of using digital infinite impulse responses (IIR) filter for processing signals in measuring BS real-time. We suggest that the designed system could make to being a portable device while we combine a ZigBee module with it for the purpose of wireless monitoring.
机译:对于仅在全身麻醉后进行大手术的患者,胃肠道恢复将需要几个小时。因此,肠鸣音(BS)评估在了解患者何时可以开始进食方面起着重要作用。我们的工作目标是提供实时可用的BS监视系统,而不是在紧急情况下进行医生的听诊。该报告介绍了使用单向麦克风检测腹部右下象限中的BS的性能。本文提出了一种基于实验室虚拟仪器工程工作台(LabVIEW)技术的测量方法。通过过滤技术,我们成功地消除了包括心音和肺音在内的噪声源的干扰。实验设计是使用听诊器连接单向麦克风,然后使用数据采集(DAQ)接口通过PC上的LabVIEW软件获得测量数据。实验结果证实了使用数字无限冲激响应(IIR)滤波器在实时测量BS中处理信号的有效性。我们建议设计的系统可以成为便携式设备,同时我们将ZigBee模块与其结合在一起以进行无线监控。

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