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Portable Urodynamics Monitoring System Using a Personal Digital Assistance

机译:使用个人数字援助的便携式磁力动力学监控系统

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The conventional urodynamic monitoring is performed by filling artificially the bladder with saline. It is difficult to evaluate the physiological functions of the storage and voiding of the bladder. In this study, we constructed an ambulatory urodynamic monitoring (AUM) system and proposed a novel method for estimating abdominal pressure by bio-impedance changes and EMG activity. The system was evaluated in 10 patients. As the intensity of the abdomen contraction increased, the amplitude of bio-impedance signal and the RMS value of EMG increased as compared to those observed during resting. The correlation coefficient was 0.72 for the "weak" contraction, 0.96 for "strong" contraction, 0.90 for "stronger" contraction, 0.84 for "vigorous" contraction and 0.78 for "maximal" contraction. Also, daily events such as coughing, sneezing and conversation, were sensitively monitored by observing the amplitude change of the bio-impedance signals. However, the EMG signals could not be used to detect these events, therefore, we determined that bio- impedance method was a more useful tool to measure the changes of abdominal pressure noninvasively for urodynamic monitoring.
机译:通过用盐水填充膀胱填充来进行常规尿动力学监测。难以评估膀胱储存和排出的生理功能。在这项研究中,我们构建了一种动态织机制监测(AUM)系统,并提出了通过生物阻抗变化和EMG活性估算腹部压力的新方法。该系统在10名患者中进行了评估。随着腹部收缩的强度增加,与在休息期间观察到的相比,生物阻抗信号的幅度和EMG的RMS值增加。 “弱”收缩的相关系数为0.72,“强”收缩为0.96,“强”收缩为0.90,“剧烈”收缩为0.84,“最大”收缩为0.78。而且,通过观察生物阻抗信号的幅度变化,敏感地监测诸如咳嗽,打喷嚏和对话的日常事件。然而,无法使用EMG信号来检测这些事件,因此,我们确定生物阻抗方法是一种更有用的工具,用于测量腹腔压力的变化,用于尿动动力学监测。

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