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Optic axis determination by fibre-based polarization-sensitive swept-source optical coherence tomography

机译:基于光纤的偏振敏感扫描源光学相干层析成像技术确定光轴

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We describe a fibre-based variable-incidence angle (VIA) polarization-sensitive swept-source optical coherence tomography (PS-SS-OCT) system to determine the 3D optical axis of birefringent biological tissues. Single-plane VIA-PS-OCT is also explored which requires measurement of the absolute fast-axis orientation. A state-of-the-art PS-SS-OCT system with some improvements both in hardware and software was used to determine the apparent optical birefringence of equine tendon for a number of different illumination directions. Polar and azimuthal angles of cut equine tendon were produced by the VIA method and compared with the nominal values. A quarter waveplate (QWP) and equine tendon were used as test targets to validate the fast-axis measurements using the system. Polar and azimuthal angles of cut equine tendon broadly agreed with the expected values within about 8% of the nominal values. A theoretical and experimental analysis of the effect of the sample arm fibre on determination of optical axis orientation using a proposed definition based on the orientation of the eigenpolarization ellipse experimentally confirms that this algorithm only works correctly for special settings of the sample arm fibre. A proposed algorithm based on the angle between Stokes vectors on the Poincar?? sphere is confirmed to work for all settings of the sample arm fibre. A calibration procedure is proposed to remove the sign ambiguity of the measured orientation and was confirmed experimentally by using the QWP. ? 2011 Institute of Physics and Engineering in Medicine.
机译:我们描述了一种基于光纤的可变入射角(VIA)偏振敏感后掠源光学相干断层扫描(PS-SS-OCT)系统,以确定双折射生物组织的3D光轴。还研究了单平面VIA-PS-OCT,它需要测量绝对快轴方向。使用在硬件和软件上都进行了一些改进的最新PS-SS-OCT系统,可以确定马肌腱在许多不同照明方向上的表观光学双折射。通过VIA方法产生马腱切断的极角和方位角,并将其与标称值进行比较。使用四分之一波片(QWP)和马腱作为测试目标,以验证使用该系统进行的快速轴测量。切开的马腱的极角和方位角大致与预期值相符,在大约名义值的8%之内。对样品臂光纤对光轴方向确定的影响进行了理论和实验分析,使用基于本征极化椭圆的方向的建议定义实验确定该算法仅适用于样品臂光纤的特殊设置。一种基于Poincar ??上斯托克斯矢量之间的角度的算法。确认球体适用于样品臂纤维的所有设置。提出了一种校准程序来消除测量方向的符号模糊度,并通过使用QWP在实验上得到了证实。 ? 2011医学物理与工程学院。

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