A comparison of head movements tests in force plate and accelerometer based posturography in patients with balance problems due to vestibular dysfunction

Author:

Janc MagdalenaORCID,Sliwinska-Kowalska Mariola,Jozefowicz-Korczynska Magdalena,Marciniak Pawel,Rosiak Oskar,Kotas Rafal,Szmytke Zuzanna,Grodecka Joanna,Zamyslowska-Szmytke Ewa

Abstract

AbstractThis study compares HS posturography on inertial sensors (MediPost) with force platform posturography in patients with unilateral vestibular dysfunction. The study group included 38 patients (age 50.6; SD 11.6) with unilateral vestibular weakness (UV) and 65 healthy volunteers (48.7; SD 11.5). HS tests were performed simultaneously on the force plate and with MediPost sensor attached at L4. Four conditions applied: eyes open/closed, firm/foam. The tests were performed twice, with the head moving at the frequency of 0.3 Hz (HS 0.3) and 0.6 Hz (HS 0.6). Mean sway velocity was significantly lower for MediPost than force plate in 4th condition both in UV and healthy group. For HS 0.3 the differences between devices were marginal; the highest sensitivity (87%) and specificity (95%) were in 4th condition. For HS 0.6 MediPost revealed lower sensitivity than force plate although the surface parameter improved results. MediPost IMU device and force platform posturography revealed a similar ability to differentiate between patients with balance problems in course of vestibular pathology and healthy participants, despite the differences observed between measuring methods. In some tests surface parameter may be more appropriate than sway velocity in improving MediPost sensitivity.

Funder

The National Centre for Research and Development as part of "Prevention and treatment of civilization diseases” program

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The effect of increased listening effort on the balance performance of patients with compensated vestibular lesion;Auris Nasus Larynx;2024-06

2. Inertial Measurement Unit-Based Romberg Test for Assessing Adults With Vestibular Hypofunction;IEEE Journal of Translational Engineering in Health and Medicine;2024

3. Instrumental and Non-Instrumental Measurements in Patients with Peripheral Vestibular Dysfunctions;Sensors;2023-02-10

4. System for the analysis of human balance based on accelerometers and support vector machines;Computer Methods and Programs in Biomedicine Update;2023

5. Balance Evaluation by Inertial Measurement Unit;Proceedings of the International Conference on Ubiquitous Computing & Ambient Intelligence (UCAmI 2022);2022-11-21

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