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Rapidly quantifying the relative distention of a human bladder

机译:快速量化人类膀胱的相对膨胀

摘要

A device and method was developed to rapidly quantify the relative distention of the bladder of a human subject. An ultrasonic transducer is positioned on the human subject near the bladder. A microprocessor controlled pulser excites the transducer by sending an acoustic wave into the human subject. This wave interacts with the bladder walls and is reflected back to the ultrasonic transducer where it is received, amplified, and processed by the receiver. The resulting signal is digitized by an analog to digital converter, controlled by the microprocessor again, and is stored in data memory. The software in the microprocessor determines the relative distention of the bladder as a function of the propagated ultrasonic energy. Based on programmed scientific measurements and the human subject's past history as contained in program memory, the microprocessor sends out a signal to turn on any or all of the available alarms. The alarm system includes and audible alarm, the visible alarm, the tactile alarm, and the remote wireless alarm.
机译:开发了一种装置和方法以快速定量人类受试者的膀胱的相对膨胀。超声换能器位于膀胱附近的人体上。微处理器控制的脉冲发生器通过将声波发送到人体中来激励换能器。该波与膀胱壁相互作用,并被反射回超声换能器,在超声换能器中被接收器接收,放大和处理。产生的信号由模数转换器数字化,再次由微处理器控制,并存储在数据存储器中。微处理器中的软件根据所传播的超声能量确定膀胱的相对膨胀。根据编程的科学测量结果和程序存储器中包含的人类过去的历史,微处理器发出信号以打开任何或所有可用警报。警报系统包括声音警报,可见警报,触觉警报和远程无线警报。

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