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Energy Efficient Monitoring of Metered Dose Inhaler Usage. | LitMetric

Energy Efficient Monitoring of Metered Dose Inhaler Usage.

J Med Syst

Electrical & Computer Engineering Department, University of Patras, Patras, Greece.

Published: December 2016

AI Article Synopsis

  • Life-long chronic inflammatory diseases like asthma and COPD are widespread and require effective management, particularly through proper medication adherence.
  • Wireless telemonitoring using an energy-efficient mHealth system can help in early diagnosis and management by accurately tracking how patients use their inhalers.
  • A novel solution utilizing low complexity audio compression and high accuracy classification has shown promising results, achieving 98% accuracy while using only 2% of audio data, indicating the potential for more efficient inhalers in respiratory care.

Article Abstract

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.

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Source
http://dx.doi.org/10.1007/s10916-016-0642-yDOI Listing

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