TY - JOUR
T1 - A Systematic Literature Review on Intelligent Soft Hand Exoskeleton Robots
T2 - Artificial Intelligence-Enabled Personalisation, Adaptation, and Design Considerations
AU - Joseph, Seena
AU - Fung, Wai Keung
AU - Valayil, Tony Punnoose
AU - Prasad, Rajan
AU - Bashford, Tim
N1 - Publisher Copyright:
© 2026 by the authors.
PY - 2026/5/11
Y1 - 2026/5/11
N2 - In recent years, hand exoskeleton robots have attracted extensive attention from researchers and practitioners due to their potential to rehabilitate, assist, and enhance hand movements, particularly for stroke patients. With an ageing population increasingly affected by strokes, there is a growing demand for patient-centred interventions which place less demand on clinicians, especially wearable devices that can enhance hand function. Advances in artificial intelligence have opened new avenues for developing more reliable and adaptive assistive systems. This study presents a systematic literature review, following the PRISMA protocol on the design elements of hand exoskeleton robots, acknowledging the emerging perspectives on AI integration and ethical considerations. The study provides a comprehensive foundation for future research and development in rehabilitation technologies by systematically synthesising the current mechanical architecture, actuation, sensors, material, weight, and cost aspects of soft hand exoskeleton robots for rehabilitation. The results show important patterns and trade-offs in various design dimensions, providing useful information to direct the development of more accessible and efficient rehabilitation solutions in the future.
AB - In recent years, hand exoskeleton robots have attracted extensive attention from researchers and practitioners due to their potential to rehabilitate, assist, and enhance hand movements, particularly for stroke patients. With an ageing population increasingly affected by strokes, there is a growing demand for patient-centred interventions which place less demand on clinicians, especially wearable devices that can enhance hand function. Advances in artificial intelligence have opened new avenues for developing more reliable and adaptive assistive systems. This study presents a systematic literature review, following the PRISMA protocol on the design elements of hand exoskeleton robots, acknowledging the emerging perspectives on AI integration and ethical considerations. The study provides a comprehensive foundation for future research and development in rehabilitation technologies by systematically synthesising the current mechanical architecture, actuation, sensors, material, weight, and cost aspects of soft hand exoskeleton robots for rehabilitation. The results show important patterns and trade-offs in various design dimensions, providing useful information to direct the development of more accessible and efficient rehabilitation solutions in the future.
KW - artificial intelligence
KW - ethical consideration
KW - hand exoskeleton
KW - rehabilitation
KW - soft robotics
KW - systematic literature review
UR - https://www.scopus.com/pages/publications/105040205721
U2 - 10.3390/robotics15050099
DO - 10.3390/robotics15050099
M3 - Review article
AN - SCOPUS:105040205721
SN - 2218-6581
VL - 15
JO - Robotics
JF - Robotics
IS - 5
M1 - 99
ER -