Optimalisasi Alat Monitoring Tetes Infus Kristaloid Berbasis Mikrokontroler ATMega328

Hudi Prayoga Mokodompit, Asruddin Asruddin, Junindo Abdillah
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Abstract

In the medical world, supervision of intravenous devices is a priority and the main one to ensure proper and measurable fluid delivery to patients. This research focuses on the development of a crystalloid infusion drip monitoring device using a microcontroller. The background of this research arises from the need for a device that is able to monitor drip infusions automatically, reduce the workload of medical personnel and increase patient safety. The methods used in this study include designing, manufacturing, and testing on tools. Photodiode sensors are selected as the main component in detecting drops of crystalloid liquid. This tool is designed to optimize other supporting sensors to be integrated as instruction modules in counting infusion fluid drops. The application of microcontroller technology in affordable infusion monitoring devices has not been widely adopted in medical practice. This research is driven by the need for reliable monitoring tools in a fast-paced medical environment and requires precision. The results of this study showed that the developed tool succeeded in optimizing the function of the photodiode sensor in counting drops of 99% crystalloid liquid produced accurately. This tool is able to operate in accordance with its original purpose, namely as a monitoring tool as well as a reminder for patient safety. The conclusion is that this microcontroller-based crystalloid infusion drip monitoring device is an innovation and good practice in the medical field. This tool not only increases efficiency in infusion monitoring but also provides additional safety for patients.
基于 Mikrokontroller ATMega328 的最佳输液监控系统
在医疗领域,静脉输液设备的监管是首要任务,也是确保向病人提供适当和可测量液体的主要手段。本研究的重点是利用微控制器开发晶体液输注点滴监测设备。这项研究的背景是需要一种能够自动监测滴注情况的设备,减轻医务人员的工作量,提高病人的安全性。本研究采用的方法包括设计、制造和工具测试。光电二极管传感器被选为检测晶体液滴的主要部件。设计该工具的目的是优化其他辅助传感器,将其集成为计数输液液滴的指令模块。微控制器技术在经济实惠的输液监测设备中的应用尚未在医疗实践中广泛采用。在快节奏的医疗环境中,需要可靠的监测工具,并要求精确,因此推动了这项研究。研究结果表明,所开发的工具成功地优化了光电二极管传感器的功能,能够准确地计算所产生的 99% 晶体液滴数。该工具能够按照其初衷运行,即作为监测工具和患者安全提醒工具。结论是,这种基于微控制器的晶体液输液滴注监测装置是医疗领域的创新和良好实践。该工具不仅提高了输液监测的效率,还为病人提供了额外的安全保障。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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