Publication
A Prototype Head-Motion Monitoring System for In-Home Vestibular Rehabilitation Therapy
Downloadable Content
- Persistent URL
- Last modified
- 05/15/2025
- Type of Material
- Authors
-
-
Pamela Bhatti, Emory UniversitySusan Herdman, Emory UniversitySiddarth Datta Roy, Georgia Institute of TechnologyCourtney Hall, Emory UniversityRonald Tusa, Emory University
- Language
- English
- Date
- 2011
- Publisher
- OMICS International
- Publication Version
- Copyright Statement
- © 2012 Bhatti PT, et al.
- Final Published Version (URL)
- Title of Journal or Parent Work
- ISSN
- 2155-9538
- Volume
- Suppl 1
- Grant/Funding Information
- P. Bhatti was supported in part by PHS Grant KL2 RR025009 from the Clinical and Translational Science Award program, National Institutes of Health, National Center for Research Resources.
- This work was supported in part by National Science Foundation BRIGE Award 0927103 and by PHS Grant KL2 RR025009 from the Clinical and Translational Science Award program, National Institutes of Health, National Center for Research Resources.
- Abstract
- This work reports the use of a head-motion monitoring system to record patient head movements while completing in-home exercises for vestibular rehabilitation therapy. Based upon a dual-axis gyroscope (yaw and pitch, ± 500-degrees/sec maximum), angular head rotations were measured and stored via an on-board memory card. The system enabled the clinician to document exercises at home. Several measurements were recorded in one patient with unilateral vestibular hypofunction: The total time of exercise for the week (118 minutes) was documented and compared with expected weekly exercise time (140 minutes). For gaze stabilization exercises, execution time of 60 sec was expected, and observed times ranged from 75-100 sec. An absence of rest periods between each exercise instead of the recommended one minute rest period was observed. Maximum yaw head velocities from approximately 100-350 degrees/sec were detected. A second subject provided feedback concerning the ease of use of the HAMMS device. This pilot study demonstrates, for the first time, the capability to capture the head-motion "signature" of a patient while completing vestibular rehabilitation exercises in the home and to extract exercise regime parameters and monitor patient adherence. This emerging technology has the potential to greatly improve rehabilitation outcomes for individuals completing in-home gaze stabilization exercises.
- Author Notes
- Keywords
- Research Categories
- Health Sciences, Rehabilitation and Therapy
- Engineering, Electronics and Electrical
Tools
- Download Item
- Contact Us
-
Citation Management Tools
Relations
- In Collection:
Items
| Thumbnail | Title | File Description | Date Uploaded | Visibility | Actions |
|---|---|---|---|---|---|
|
|
Publication File - sq899.pdf | Primary Content | 2025-03-15 | Public | Download |