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Mobile three-dimensional visualisation technologies for clinician-led fall prevention assessments.
Julian Hamm, Arthur G Money1, Anita Atwal2
1Brunel University London, UK.
Health Informatics Journal
|August 18, 2017
Summary
A new 3D measurement aid prototype shows promise for improving assistive equipment fit. This technology could reduce abandonment rates and enhance patient safety in home environments.
Area of Science:
- Rehabilitation Engineering
- Human-Computer Interaction
- Occupational Therapy
Background:
- Assistive equipment provision aims to mitigate fall risks but suffers from over 50% abandonment due to poor patient fit.
- Current methods lack precision, leading to suboptimal equipment selection and patient dissatisfaction.
- Enhanced guidance is needed to improve the accuracy and effectiveness of assistive equipment fitting.
Purpose of the Study:
- To explore clinician perceptions of an early-stage 3D measurement aid prototype.
- To assess the usability and learnability of the 3D measurement aid for guiding assistive equipment provision.
- To identify potential improvements in the assistive equipment provision process using novel technology.
Main Methods:
- Ten occupational therapists participated in a trial of the 3D measurement aid prototype.
- Data collection involved think-aloud protocols and semi-structured interviews.
- System Usability Scale (SUS) was used to quantitatively measure usability.
Main Results:
- Participants rated the 3D measurement aid prototype as 'excellent' in usability.
- Strong agreement was found regarding the application's usability and learnability.
- Qualitative analysis revealed opportunities for improved measurement interpretation, recording, and collaborative practice.
Conclusions:
- The 3D measurement aid prototype demonstrates high usability and learnability among occupational therapists.
- The technology has the potential to enhance the assistive equipment provision process by improving fit and collaboration.
- Further research is required to compare the clinical utility of the 3D aid against traditional 2D methods.

