Designing an Automated System using Wearable Devices for Compliance Monitoring and Activity Detection in Scoliosis Patients
Scoliosis;Brace treatment;Data mining;Activity-monitoring;Context-aware;Wearables;Compliance-monitoring;Computer science;Computer and Information Science, College of Engineering & Computer Science
The use of wearable devices in healthcare and rehabilitation programs is growing exponentially. This thesis focuses on wearable sensors and technology used to monitor treatment compliance in patients with a medical condition known as Adolescent Idiopathic Scoliosis (AIS). Patients with AIS are prescribed to wear a thoracolumbosacral orthosis (TLSO) – a type of back brace, to help prevent worsening of their condition. Scoliosis is a medical condition which occurs in adolescents, where an individual;;s spine develops curvature. Adolescent Idiopathic Scoliosis (AIS) occurs in children aged 16 years or younger. Brace treatment with TLSO is known as one of the most effective non-surgical treatment for scoliosis. The brace is designed to be worn continuously for long periods oftime without any supervision. Therefore, it is vital to carry out the proper procedures for measuring the effectiveness of the treatment, and to accurately evaluate the amount oftime of the brace being worn. To successfully monitor compliance with brace treatment, awearable multi-modal sensor solution is to be embedded into the patient;;s brace. This thesis proposes an end-to-end system to help improve monitoring brace treatment bycontinuously observing the amount of force inside the brace. In addition to compliance monitoring, my research is extended to detecting the patient’s daily activities by implementing a novel data-mining method to identify different trends and patternsassociated with the activities performed by the patient. This thesis attempts to implementwearables in such an application, and anticipates realizing a successful relationship between monitoring and improving compliance.
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Designing an Automated System using Wearable Devices for Compliance Monitoring and Activity Detection in Scoliosis Patients