期刊
IEEE SENSORS JOURNAL
卷 23, 期 12, 页码 12455-12469出版社
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSEN.2023.3273536
关键词
Health monitoring; medical rehabilitation; optical fiber sensing technology; physical parameters
With the increasing demand for rehabilitation of the elderly population and patients with limb injuries, it is essential to develop new wearable health monitoring systems and assistive rehabilitation equipment. Optical fiber sensing, with its advantages of lightweight, anti-electromagnetic interference, higher strain and elastic limit, safety, and dependableness, has been significantly used in engineering prospecting, building structure monitoring, and medical and health fields. However, the discussion and summary of the key theories and technologies of optical fiber sensing in medical rehabilitation are still insufficient. This review details the different types of optical fiber sensing mechanisms and devices, as well as the measurement of physical parameters and application examples in the field of medical rehabilitation. It also discusses the challenges and provides a research direction for the future realization of flexible, comfortable, safe, stable monitoring of human biomechanical parameters and real-time precise control of rehabilitation equipment.
With the increasing demand for rehabilitation of the elderly population and patients with limb injuries, it is imperative to develop new wearable health monitoring system and assistive rehabilitation equipment. Optical fiber sensing has the advantages of lightweight, anti-electromagnetic interference, higher strain and elastic limit, safety, and dependableness. It has been significantly used in engineering prospecting, building structure monitoring, and medical and health fields. At present, the application of optical fiber sensing in medical rehabilitation has been developed rapidly; however, the discussion and summary of its key theories and technologies are insufficient. This review details different types of optical fiber sensing mechanisms and devices, as well as the measurement of physical parameters using optical fiber sensors and application examples in the field of medical rehabilitation. This review systematically analyzes the advance of the sensitivity, flexibility, accuracy, and wearability of the optical fiber sensing in the monitoring of human body sign information. This review also discusses the challenges of making a new generation of optical fiber sensors that fit human joints, muscles, and rehabilitation equipment. Finally, this review provides a research direction for the realization of flexible, comfortable, safe, stable monitoring of human biomechanical parameters, and real-time precise control of rehabilitation equipment in the future.
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