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A novel biomechanical index for quality assessment of the upper-extremity movements in post-stroke patients
Abedi, M ; Sharif University of Technology | 2024
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- Type of Document: Article
- DOI: 10.1016/j.compbiomed.2024.108875
- Publisher: 2024
- Abstract:
- Background: While motor recovery is preferred to compensatory movements for stroke patients with mild to moderate motion impairment, current movement quality assessments rarely reflect the differences between a patient's pre- and post-stroke movement patterns. Such comparison can help therapists to identify the rate of the restoration of premorbid motion patterns and prescribe the most effective treatment. Methods: This paper attempted to present a new biomechanical metric for the quality of upper-limb movements which uses the subject's optimal movements as a reference to evaluate his/her UL movement quality. To this end, an inverse optimal control algorithm was applied to find an estimation of the patient's premorbid motion patterns. The new biomechanical index was then calculated as a measure of similarity between the optimal and actual movement trajectories. In the next part, various simulation and clinimetric investigations were performed to evaluate the responses of the new index to variations of the movement quality as well as its test-retest reliability and concurrent validity. Results: Simulation-based analyses demonstrated that the proposed index, in contrast to the previous popular biomechanical indices, can successfully detect a wide range of abnormalities in motion signals. In addition, it showed good test-retest reliability (ICC = 0.89) and moderate correlation with clinical indices, Fugl-Meyer Assessment (r = 0.66), Action Research Arm Test (r = 0.47), and ABILHAND (r = 0.27). Conclusions: Although the proposed index has the same degree of clinimetric properties as the previous metrics, the ability to identify the level of movement restoration and also various types and severities of motor disabilities may lead to better design and management of motor rehabilitation. © 2024
- Keywords:
- Biomechanical phenomena ; Stroke ; Stroke rehabilitation ; Upper extremity ; Clinical research ; Motion analysis ; Patient rehabilitation ; Time and motion study ; Biomechanical analyse of motion ; Biomechanical analysis ; Motion pattern ; Movement quality assessment ; Optimal controls ; Post stroke patients ; Quality assessment ; Upper extremity movements ; Abilhand ; Action research arm test ; Adult ; Aged ; Algorithm ; Cerebrovascular accident ; Clinical article ; Concurrent validity ; Controlled study ; Female ; Fugl-Meyer assessment ; Human ; Limb movement ; Male ; Middle aged ; Motion ; Motor dysfunction assessment ; Nomenclature ; Normalized optimality biomechanical index ; Quality control ; Simulation ; Stroke patient ; Test retest reliability ; Upper limb ; Velocity ; Biomechanics ; Movement (physiology) ; Pathophysiology ; Physiology ; Procedures ; Restoration
- Source: Computers in Biology and Medicine ; Volume 179 , 2024 ; 00104825 (ISSN)
- URL: https://www.sciencedirect.com/science/article/abs/pii/S0010482524009600
