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Development of On-Demand Controller for Continuous Positive Airways Pressure

机译:连续正气道按需控制器的开发

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Continuous Positive Airway Pressure (CPAP) is one of the primary treatments for sleep apnea. In a conventional CPAP, the device produces a constant air pressure to maintain the opening of the respiratory tract. The common problem found in the conventional CPAP is discomfort due to long term air pressure during sleep. Further, in subjects who undergo training to strengthen upper airways muscles, the application of high air pressure during non-apnea period may reduce the muscular strength. In this work, we propose to develop an on-demand CPAP controller that follows the normal respiratory pressure during non-apnea event and produce a pre-set positive air pressure during the sleep apnea event. Not only improve the comfortability of the subjects, our method also useful for patients who plan to discontinue using CPAP in the future. Our proposed model was developed using LabView software. We simulated breathing signal to represent normal breathing and apnea condition. Then a proportional and integral control system was developed for regulating the air pressure. The results show that in 60 trials with several setting points, our model achieved the average rise time 0.75s, overshoot 3.79%, and settling time 1.72s. The total accuracy of the method was 100% in detection of sleep apnea events. Our method can be developed into a low-cost device for sleep apnea treatment in Indonesia.
机译:持续气道正压通气(CPAP)是睡眠呼吸暂停的主要治疗方法之一。在常规的CPAP中,该装置产生恒定的气压以维持呼吸道的打开。在常规CPAP中发现的常见问题是由于睡眠期间长期气压而引起的不适。此外,在接受训练以增强上呼吸道肌肉的受试者中,在非呼吸暂停期间施加高气压可能会降低肌肉强度。在这项工作中,我们建议开发一种按需CPAP控制器,该控制器在非呼吸暂停事件期间遵循正常呼吸压力,并在睡眠呼吸暂停事件期间产生预设的正气压。我们的方法不仅可以提高受试者的舒适度,而且对于计划将来停止使用CPAP的患者也很有用。我们提出的模型是使用LabView软件开发的。我们模拟了呼吸信号来代表正常的呼吸和呼吸暂停状况。然后,开发了比例和积分控制系统来调节气压。结果表明,在60个具有多个设置点的试验中,我们的模型实现了平均上升时间0.75s,超调3.79%和稳定时间1.72s。该方法在检测睡眠呼吸暂停事件中的总准确度为100%。我们的方法可以发展成为印度尼西亚用于睡眠呼吸暂停治疗的低成本设备。

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