A Review of Wearable Optical Fiber Sensors for Rehabilitation Monitoring

Обзор носимых оптических волоконных датчиков для мониторинга реабилитации
Bo Liu, Chaohui Wang, Xiangmeng Li, Yongzhen Li, Huifen Wei
2024-06-03

Fabry-Perot optical fiber sensorFiber Bragg Grating (FBG) sensorrehabilitation monitoringself-luminescent stretchable optical fiber sensorwearable optical fiber sensors
As the global aging population increases, the demand for rehabilitation of elderly hand conditions has attracted increased attention in the field of wearable sensors. Owing to their distinctive anti-electromagnetic interference properties, high sensitivity, and excellent biocompatibility, optical fiber sensors exhibit substantial potential for applications in monitoring finger movements, physiological parameters, and tactile responses during rehabilitation. This review provides a brief introduction to the principles and technologies of various fiber sensors, including the Fiber Bragg Grating sensor, self-luminescent stretchable optical fiber sensor, and optic fiber Fabry-Perot sensor. In addition, specific applications are discussed within the rehabilitation field. Furthermore, challenges inherent to current optical fiber sensing technology, such as enhancing the sensitivity and flexibility of the sensors, reducing their cost, and refining system integration, are also addressed. Due to technological developments and greater efforts by researchers, it is likely that wearable optical fiber sensors will become commercially available and extensively utilized for rehabilitation.
1
Advances in technology and research efforts make commercial, widespread use of wearable optical fiber sensors for rehabilitation likely in the future.
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Current challenges include improving sensor sensitivity and flexibility, lowering cost, and enhancing system integration for wearable rehabilitation devices.
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Optical fiber sensors are promising for elderly hand rehabilitation monitoring due to anti-electromagnetic interference, high sensitivity, and biocompatibility.
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Optical fiber sensors can monitor finger movements, physiological parameters, and tactile responses relevant to rehabilitation applications.
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The review summarizes principles and technologies of Fiber Bragg Grating, self-luminescent stretchable optical fiber, and Fabry-Perot fiber sensors for wearable use.

Wearable optical fiber sensors for rehabilitation monitoring

Their application and performance for monitoring finger movements, physiological parameters, and tactile responses during elderly hand rehabilitation, including principles, sensor types (FBG, stretchable self-luminescent, Fabry–Perot), and challenges (sensitivity, flexibility, cost, system integration)

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2024-06-03
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Bo Liu
Chaohui Wang
Xiangmeng Li
Yongzhen Li
Huifen Wei
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