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Low-Cost, Disposable, Flexible, and Smartphone Enabled Pressure Sensor for Monitoring Drug Dosage in Smart Medicine Applications

机译:低成本,一次性,灵活且支持智能手机的压力传感器,用于监控智能医疗应用中的药物剂量

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摘要

Due to the rising cases of a prescribed drug overdose and mishandling of the medication container there is an urgent need to devise a smart technological solution to assist this issue. One of the possible solutions to the above issue is the use of low-cost pressure sensor integrated with the medicine container whose data can be communicated to the dedicated smartphone Android application. Once the patient taps the medicine out, the pressure sensor sends the data to the smartphone which can be monitored by the patient's family and the sensor can then be discarded. In this work, a simple all paper based pressure sensor to monitor drug dosage is fabricated using Molybdenum disulfide (MoS2) grown on paper with an interdigitated electrode drawn using graphite pencil on paper as electrodes. The sensitivity of the fabricated pressure sensor was found to be 0.32 kPa(-1) which is comparable and even better than the pressure sensor fabricated using sophisticated techniques. Repeatability of the sensor over 2000 cycles indicates an excellent long-term stability. Bending cycle studies over 1000 cycles observes a negligible change in the performance suggesting the high reliability of the sensor. The fabricated pressure sensor was integrated successfully in the medicine package to monitor the real time pills intake by a patient which shows high promise for its use in health care industry. The successful demonstration of the smart drug dosage system is a step ahead in health care industry which opens up many avenues of research in the similar field.
机译:由于处方药过量和药物容器处理不当的情况不断增加,迫切需要设计一种智能技术解决方案来解决这一问题。解决上述问题的一种可能解决方案是使用与药物容器集成的低成本压力传感器,该传感器的数据可以传送到专用智能手机Android应用程序。一旦患者取出药物,压力传感器就会将数据发送到智能手机,该智能手机可以由患者家人进行监控,然后可以丢弃传感器。在这项工作中,使用在纸上生长的二硫化钼(MoS2)制作了一个简单的基于纸张的压力传感器,以监测药物剂量,并用石墨铅笔在纸上作叉指电极。发现制造的压力传感器的灵敏度为0.32 kPa(-1),与使用复杂技术制造的压力传感器相当,甚至更高。传感器在2000次循环中的可重复性表明其出色的长期稳定性。在超过1000个周期的弯曲周期研究中,观察到的性能变化可忽略不计,表明传感器具有很高的可靠性。预制的压力传感器已成功集成到药品包装中,以监控患者的实时药丸摄入量,这显示了其在医疗保健行业中的应用前景。智能药物剂量系统的成功演示是医疗保健行业的领先一步,为类似领域的研究开辟了许多渠道。

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