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Energy Efficient Monitoring of Metered Dose Inhaler Usage

机译:计量吸入器使用的节能监测

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Life-long chronic inflammatory diseases of the airways, such as asthma and Chronic Obstructive Pulmonary Disease, are very common worldwide, affecting people of all ages, race and gender. One of the most important aspects for the effective management of asthma is medication adherence which is defined as the extent to which patients follow their prescribed action plan and use their inhaler correctly. Wireless telemonitoring of the medication adherence can facilitate early diagnosis and management of these diseases through the use of an accurate and energy efficient mHealth system. Therefore, low complexity audio compression schemes need to be integrated with high accuracy classification approaches for the assessment of adherence of patients that use of pressurized Metered Dose Inhalers (pMDIs). To this end, we propose a novel solution that enables the energy efficient monitoring of metered dose inhaler usage, by exploiting the specific characteristics of the reconstructed audio features at the receiver. Simulation studies, carried out with a large dataset of indoor & outdoor measurements have led to high levels of accuracy (98 %) utilizing only 2 % of the recorded audio samples at the receiver, demonstrating the potential of this method for the development of novel energy efficient inhalers and medical devices in the area of respiratory medicine.
机译:终生的气道慢性炎症性疾病,例如哮喘和慢性阻塞性肺疾病,在世界范围内非常普遍,影响着各个年龄段,种族和性别的人。有效控制哮喘的最重要方面之一是药物依从性,药物依从性是指患者遵循其规定的行动计划并正确使用其吸入器的程度。药物依从性的无线远程监控可通过使用准确且节能的mHealth系统促进对这些疾病的早期诊断和管理。因此,低复杂度的音频压缩方案需要与高精度分类方法集成在一起,以评估使用加压定量吸入器(pMDI)的患者的依从性。为此,我们提出了一种新颖的解决方案,该解决方案能够通过利用接收器处重构音频特征的特定特性来实现对计量剂量吸入器使用的节能监控。对室内和室外测量的大型数据集进行的仿真研究已导致仅在接收器处仅使用2%的已记录音频样本的高精度(98%),证明了该方法在开发新能源方面的潜力呼吸医学领域的高效吸入器和医疗设备。

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