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  4. A Randomized Controlled Trial of Augmented Reality with and Without Robotic Priming in Stroke Rehabilitation.
 
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A Randomized Controlled Trial of Augmented Reality with and Without Robotic Priming in Stroke Rehabilitation.

Journal
NeuroRehabilitation
Journal Volume
58
Journal Issue
2
Start Page
225
End Page
238
ISSN
1878-6448
Date Issued
2026-03
Author(s)
Tsai, Han-Ting
KEH-CHUNG LIN  
Li, Yi-Chun
Hsu, Wan-Ling
YI HSUAN WU  
Lo, Hsiang-Han
Lu, Yi-Chun
Tseng, Ju-Chun
Chen, An-Ju
YI-MIAU CHEN  
Lin, Chia-Jung
WEN-SHIANG CHEN  
YA-YUN LEE  
Kuo, Chih-Chieh
Chang, Ya-Ju
Chen, Chia-Ling
Horng, Yi Shiung
DOI
10.1177/10538135251410106
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/739223
Abstract
BackgroundRobotic therapy (RT) and augmented reality (AR) have each demonstrated benefits for stroke rehabilitation. Despite the potential priming effect of robotics, no study has investigated whether robotic priming of AR provides additive effects compared to AR or conventional therapy.ObjectiveThis study examined the effects of AR with and without robotic priming compared with dose-matched control.MethodsIn this exploratory trial (N = 33), participants were allocated to robotic-primed AR (RT + AR), AR, or conventional therapy (CT). Outcomes were the Fugl-Meyer Assessment-Upper Extremity (FMA-UE), Berg Balance Scale (BBS), Chedoke Arm and Hand Activity Inventory (CAHAI), and Stroke Impact Scale (SIS). Patient-reported pain and fatigue were recorded.ResultsAll groups improved in motor recovery and balance immediately after therapy. RT + AR exceeded AR (p = 0.037, η=0.19) and CT (p = 0.039, η=0.19) on FMA-UE at post-test and remained superior to CT at follow-up (p = 0.03, η=0.20). For the BBS, both RT + AR (p = 0.016, η=0.18) and AR (p = 0.004, η=0.24) outperformed CT at post-test, and AR retained superiority at follow-up (p = 0.02, η=0.21). RT + AR surpassed CT on CAHAI (p = 0.046, η=0.18) and SIS (p = 0.04, η=0.19) at post-test, with a trend favoring RT + AR on SIS at follow-up (p = 0.06, η=0.18). No severe adverse responses were observed.ConclusionRobotic priming of AR improved more than AR and CT in motor impairments. AR was beneficial for improving balance. Results of this study should be interpreted with caution and may not be generalized to stroke survivors with different characteristics. There was a lack of multiplicity adjustments in this small exploratory trial. Further research is needed to validate the findings based on larger multicenter trials.
Subjects
cerebrovascular accident
exergaming
postural balance
quality of life
randomized controlled trial
rehabilitation
robotics
upper extremity
Type
journal article

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