• Title of article

    A Novel Remote Rehabilitation System with the Fusion of Noninvasive Wearable Device and Motion Sensing for Pulmonary Patients

  • Author/Authors

    Tey, Chuang-Kit Department of Electronic Engineering - Pukyong National University - Busan, Republic of Korea , An, Jinyoung Department of Electronic Engineering - Pukyong National University - Busan, Republic of Korea , Chung, Wan-Young Department of Electronic Engineering - Pukyong National University - Busan, Republic of Korea

  • Pages
    8
  • From page
    1
  • To page
    8
  • Abstract
    Chronic obstructive pulmonary disease is a type of lung disease caused by chronically poor airflow that makes breathing difficult. As a chronic illness, it typically worsens over time.Therefore, pulmonary rehabilitation exercises and patient management for extensive periods of time are required. This paper presents a remote rehabilitation system for a multimodal sensors-based application for patients who have chronic breathing difficulties. The process involves the fusion of sensory data—captured motion data by stereocamera and photoplethysmogram signal by a wearable PPG sensor—that are the input variables of a detection and evaluation framework. In addition, we incorporated a set of rehabilitation exercises specific for pulmonary patients into the system by fusing sensory data. Simultaneously, the system also features medical functions that accommodate the needs of medical professionals and those which ease the use of the application for patients, including exercises for tracking progress, patient performance, exercise assignments, and exercise guidance. Finally, the results indicate the accurate determination of pulmonary exercises from the fusion of sensory data. This remote rehabilitation system provides a comfortable and cost-effective option in the healthcare rehabilitation system.
  • Keywords
    Pulmonary , Novel , PPG , photoplethysmogram
  • Journal title
    Computational and Mathematical Methods in Medicine
  • Serial Year
    2017
  • Record number

    2608473