An intelligent continuous bladder irrigation monitoring and control system: Development and preliminary assessment

Chunxia Liu, Lu Wang, Zhiqian Chen, Hongxian Zhang, Baohua Li
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Abstract

To design an intelligent continuous bladder irrigation monitoring and control system and preliminarily assess its sensitivity of the early warning of flushing anomalies. According to the principle of bladder irrigation, an intelligent continuous bladder irrigation monitoring and control system was designed. The Amesim fluid simulation software was used to establish a parameterized simulation model for the bladder perfusion process and simulate the dynamic changes of bladder pressure and volume under different perfusion speeds to assess the sensitivity of the early warning of flushing anomalies. The intelligent system consisted of 3 parts: the monitoring part (a flushing fluid inlet flow monitoring device, a flushing fluid outlet flow monitoring device, and a flushing fluid outlet color recognition sensor), the transition part (a control motherboard), and the regulation part (an alarm device, an electric control device for flushing fluid input speed, and a squeezing device for flushing waste fluid line). The data of the parameterized simulation model for the bladder perfusion process suggested that the sensitivity of the system was acceptable. The intelligent bladder irrigation system can automatically detect, report, and resolve signal abnormalities, thereby achieving the closed-loop management of bladder irrigation. The intelligent system might be used in clinical settings to reduce the burdens of nurses and promote patients’ recovery.
智能连续膀胱灌溉监测和控制系统:开发与初步评估
设计一种智能连续膀胱灌注监测和控制系统,并初步评估其对冲洗异常预警的灵敏度。 根据膀胱灌注原理,设计了智能连续膀胱灌注监测与控制系统。利用 Amesim 流体模拟软件建立膀胱灌注过程参数化模拟模型,模拟不同灌注速度下膀胱压力和容积的动态变化,评估冲洗异常预警的灵敏度。 该智能系统由三部分组成:监测部分(冲洗液入口流量监测装置、冲洗液出口流量监测装置和冲洗液出口颜色识别传感器)、过渡部分(控制主板)和调节部分(报警装置、冲洗液输入速度电控装置和冲洗废液管路挤压装置)。膀胱灌注过程参数化仿真模型的数据表明,系统的灵敏度是可以接受的。 智能膀胱灌注系统可自动检测、报告和解决信号异常问题,从而实现膀胱灌注的闭环管理。该智能系统可用于临床,减轻护士负担,促进患者康复。
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