Telerehabilitation Technology Used for Remote Wrist/Finger Range of Motion Evaluation: A Scoping Review

Author:

Kuchtaruk Adrian1,Yu Sammie Sam Yee2,Iansavichene Alla3,Davidson Jacob4,Wilson Claire A.4,Symonette Caitlin4

Affiliation:

1. Schulich School of Medicine and Dentistry, Western University, London, Ontario, Canada

2. Faculty of Science, Western University, London, Ontario, Canada

3. Library Services, London Health Sciences Centre, London, Ontario, Canada

4. Department of Surgery, London Health Sciences Centre, London, Ontario, Canada.

Abstract

Background: Monitoring finger/wrist range of motion (ROM) is an important component of routine hand therapy after surgery. Telerehabilitation is a field that may potentially address various barriers of in-person hand therapy appointments. Therefore, the purpose of this scoping review is to identify telerehabilitation technologies that can be feasibly used in a patient’s home to objectively measure finger/wrist ROM. Methods: Following PRISMA-ScR guidelines for scoping reviews, we systematically searched MEDLINE and Embase electronic databases using alternative word spellings for the following core concepts: “wrist/hand,” “rehabilitation,” and “telemedicine.” Studies were imported into Covidence, and systematic two-level screening was done by two independent reviewers. Patient demographics and telerehabilitation information were extracted from the selected articles, and a narrative synthesis of the findings was done. Results: There were 28 studies included in this review, of which the telerehabilitation strategies included smartphone angle measurement applications, smartphone photography, videoconference, and wearable or external sensors. Most studies measured wrist ROM with the most accurate technologies being wearable and external sensors. For finger ROM, the smartphone angle application and photography had higher accuracy than sensor systems. The telerehabilitation strategies that had the highest level of usability in a remote setting were smartphone photographs and estimation during virtual appointments. Conclusions: Telerehabilitation can be used as a reliable substitute to in-person goniometer measurements, particularly the smartphone photography and motion sensor ROM measurement technologies. Future research should investigate how to improve the accuracy of motion sensor applications that are available on easy-to-access devices.

Funder

New Frontiers in Research Fund Exploration Grant

Internal Research Fund from Western University

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Surgery,General Medicine

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