» Articles » PMID: 37050659

Involvement of Human Volunteers in the Development and Evaluation of Wearable Devices Designed to Improve Medication Adherence: A Scoping Review

Overview
Journal Sensors (Basel)
Publisher MDPI
Specialty Biotechnology
Date 2023 Apr 13
PMID 37050659
Authors
Affiliations
Soon will be listed here.
Abstract

Wearable devices designed to improve medication adherence can emit audible and vibrating alerts or send text messages to users. However, there is little information on the validation of these technologies. The aim of this scoping review was to investigate the involvement of human volunteers in the development and evaluation of wearable devices. A literature search was conducted using six databases (MEDLINE, Embase, Scopus, CINAHL, PsycInfo, and Web of Science) up to March 2020. A total of 7087 records were identified, and nine studies were included. The wearable technologies most investigated were smartwatches ( = 3), patches ( = 3), wristbands ( = 2), and neckwear ( = 1). The studies involving human volunteers were categorized into idea validation ( = 4); prototype validation ( = 5); and product validation ( = 1). One of them involved human volunteers in idea and prototype validation. A total of 782 participants, ranging from 6 to 252, were included. Only five articles reported prior approval by a research ethics committee. Most studies revealed fragile methodological designs, a lack of a control group, a small number of volunteers, and a short follow-up time. Product validation is essential for regulatory approval and encompasses the assessment of the effectiveness, safety, and performance of a wearable device. Studies with greater methodological rigor and the involvement of human volunteers can contribute to the improvement of the process before making them available on the market.

Citing Articles

Sea Horse Optimization-Deep Neural Network: A Medication Adherence Monitoring System Based on Hand Gesture Recognition.

Amirthalingam P, Alatawi Y, Chellamani N, Shanmuganathan M, Ali M, Alqifari S Sensors (Basel). 2024; 24(16).

PMID: 39204920 PMC: 11360803. DOI: 10.3390/s24165224.

References
1.
Abraham I, De Geest J, De Geest W, De Troy E, MacDonald K . Detectability and acceptability of continuous pulse signals for the MemoPatch(®) device, an electronic skin patch intended to deliver tactile medication reminder signals. Med Devices (Auckl). 2015; 8:119-29. PMC: 4327396. DOI: 10.2147/MDER.S72806. View

2.
Padash M, Enz C, Carrara S . Microfluidics by Additive Manufacturing for Wearable Biosensors: A Review. Sensors (Basel). 2020; 20(15). PMC: 7435802. DOI: 10.3390/s20154236. View

3.
Lorusso L, Lee J, Worden E . Design Thinking for Healthcare: Transliterating the Creative Problem-Solving Method Into Architectural Practice. HERD. 2021; 14(2):16-29. DOI: 10.1177/1937586721994228. View

4.
Fozoonmayeh D, Le H, Wittfoth E, Geng C, Ha N, Wang J . A Scalable Smartwatch-Based Medication Intake Detection System Using Distributed Machine Learning. J Med Syst. 2020; 44(4):76. DOI: 10.1007/s10916-019-1518-8. View

5.
Kvarnstrom K, Airaksinen M, Liira H . Barriers and facilitators to medication adherence: a qualitative study with general practitioners. BMJ Open. 2018; 8(1):e015332. PMC: 5786122. DOI: 10.1136/bmjopen-2016-015332. View