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Measuring Joint Cartilage Thickness Using Reflectance Spectroscopy Non-invasively and in Real-time

机译:使用反射光谱法无创地实时测量关节软骨厚度

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Joint cartilage thickness has been estimated using spatially resolved steady-state reflectance spectroscopy noninvasively and in-real time. The system consists of a miniature UV-VIS spectrometer, a halogen tungsten light source, and an optical fiber probe with six 400 um diameter fibers. The first fiber was used to deliver the light to the cartilage and the other five were used to detect back-reflected diffused light. Distances from the detector fibers to the source fiber were 0.8 mm, 1.6 mm, 2.4 mm, 3.2 mm and 4 mm. Spectra of back-reflected diffused light were taken on 40 bovine patella cartilages. The samples were grouped into four; the first group was the control group with undamaged cartilages, in the 2nd, 3 and 4* groups cartilage thickness was reduced approximately 25%, 50% and 100%, respectively. A correlation between cartilage thicknesses and hemoglobin absorption of light in the wavelength range of 500 nm- 600 nm for source-detector pairs was found. The proposed system with an optical fiber probe less than 4 mm in diameter has the potential for cartilage thickness assessment through an arthroscopy channel in real-time without damaging the cartilage.
机译:关节软骨厚度已使用空间分辨稳态反射光谱法无创且实时地进行了估计。该系统由一个微型UV-VIS光谱仪,一个卤素钨灯光源和一个具有六根400微米直径光纤的光纤探头组成。第一根光纤用于将光传递到软骨,而其他五根光纤用于检测向后反射的散射光。从检测器光纤到源光纤的距离为0.8 mm,1.6 mm,2.4 mm,3.2 mm和4 mm。向后反射的散射光的光谱是在40个牛骨软骨上拍摄的。样本分为四个部分。第一组是软骨未受损的对照组,在第二,第三和第四组,软骨厚度分别减少了约25%,50%和100%。对于源-检测器对,发现软骨厚度和在500nm-600nm的波长范围内的光的血红蛋白吸收之间的相关性。所提出的具有小于4毫米直径的光纤探头的系统具有通过关节镜通道实时评估软骨厚度而不损坏软骨的潜力。

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