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Topographical variations in the polarization sensitivity of articular cartilage as determined by polarization-sensitive optical coherence tomography and polarized light microscopy

机译:偏振敏感性光学相干断层扫描和偏振光显微镜确定的关节软骨的偏振敏感性的形貌变化

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摘要

To understand the influence of topographical variations in collagen fibril orientation of articular cartilage on optical phase images of polarization-sensitive optical coherence tomography (PS-OCT), we use polarized light microscopy (PLM) to quantify the orientation and phase retardation of the collagen architecture in cartilage at the same locations imaged by PS-OCT. The PS-OCT experiments demonstrate that articular cartilage has normal variations in polarization sensitivity at different locations over an intact bovine tibial plateau. Articular cartilage is not polarization sensitive along the vertical axis on the medial edge and central areas of the joint surface, but becomes polarization sensitive on the lateral edge of the tibia. This difference in optical phase retardation, as demonstrated by PS-OCT, is verified by PLM to be caused by differences in collagen fibril orientation at different locations of the tibial plateau. This study demonstrates that normal topographical variations in the collagen architecture of articular cartilage within a joint have a profound influence on the optical phase retardation detected by PS-OCT imaging, and therefore must be understood and mapped for specific joints before PS-OCT imaging can be used for the evaluation of the health status of individual joint surfaces.
机译:要了解关节软骨的胶原纤维原状的形貌变化对偏振敏感光学相干断层扫描(PS-OCT)的光学相图像的影响,我们使用偏振光显微镜(PLM)来量化胶原结构的方向和相位延迟在PS-OCT成像的相同位置处的软骨中。 PS-OCT实验表明,在整个完整的牛胫骨平台上,关节软骨在不同位置的极化敏感性具有正常变化。关节软骨在关节面的内侧边缘和中央区域沿垂直轴对极化不敏感,但在胫骨的外侧边缘对极化不敏感。如PS-OCT所示,光学相位差的这种差异已通过PLM验证,是由胫骨平台不同位置的胶原纤维取向不同引起的。这项研究表明,关节内关节软骨的胶原结构的正常形貌变化对PS-OCT成像检测到的光学相位延迟有深远影响,因此必须先了解并绘制特定关节的图像,然后才能进行PS-OCT成像用于评估各个关节表面的健康状况。

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