Jung Gu-In, Kim Ji-Sun, Lee Tae-Hee, Choi Ju-Hyeon, Oh Han-Byeol, Kim A-Hee, Eom Gwang-Moon, Lee Jeong-Hwan, Chung Soon-Cheol, Park Jong-Rak, Lee Young-Jae, Park Hee-Jung, Jun Jae-Hoon
Department of Biomedical Engineering, College of Biomedical and Health Science, Konkuk University, Chungju, South Korea Department of Biomedical Engineering, Research Institute of Biomedical Engineering, Konkuk University, Chungju, South Korea.
Biomed Mater Eng. 2014;24(1):771-80. doi: 10.3233/BME-130867.
For diagnostic and therapeutic purposes, the joint angle measurement of a patient after an accident or a surgical operation is significant for monitoring and evaluating the recovering process. This paper proposed an optical fiber sensor for the measurement of angular displacement. The effect of beveled fiber angle on the detected light signal was investigated to find an appropriate mathematical model. Beveled fiber tips redirected the light over a range of angles away from the fiber axis. Inverse polynomial models were applied to directly obtain and display the joint angle change in real time with the Lab-VIEW program. The actual joint angle correlated well with the calculated LabVIEW output angle over the test range. The proposed optical sensor is simple, cost effective, small in size, and can evaluate the joint angle in real time. This method is expected to be useful in the field of rehabilitation and sport science.
出于诊断和治疗目的,事故或手术后患者的关节角度测量对于监测和评估恢复过程具有重要意义。本文提出了一种用于测量角位移的光纤传感器。研究了斜切光纤角度对检测光信号的影响,以找到合适的数学模型。斜切光纤尖端使光在远离光纤轴的一系列角度上发生重定向。应用逆多项式模型通过Lab-VIEW程序直接实时获取并显示关节角度变化。在测试范围内,实际关节角度与计算出的LabVIEW输出角度相关性良好。所提出的光学传感器结构简单、成本效益高、尺寸小,并且能够实时评估关节角度。该方法有望在康复和运动科学领域发挥作用。