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Birefringence imaging in biological tissue using polarization sensitive optical coherent tomography

机译:使用偏振敏感光学相干断层扫描在生物组织中进行双折射成像

摘要

Employing a low coherence Michelson interferometer, two dimensional images of optical birefringence in turbid samples as a function of depth are measured. Polarization sensitive detection of the signal formed by interference of backscattered light from the sample and a mirror or reference plane in the reference arm which defines a reference optical path length, give the optical phase delay between light propagating along the fast and slow axes of the birefringence sample. Images showing the change in birefringence in response to irradiation of the sample are produced as an example of the detection apparatus and methodology. The technique allow rapid, noncontact investigation of tissue or sample diagnostic imaging for various medical or materials procedures.
机译:使用低相干性迈克尔逊干涉仪,测量混浊样品中光学双折射的二维图像作为深度的函数。对来自样品的反向散射光与参考臂中的反射镜或参考平面的干涉形成的信号进行偏振敏感检测,该反射臂或参考平面定义了参考光路长度,从而使沿双折射的快轴和慢轴传播的光之间的光学相位延迟样品。作为检测设备和方法的示例,产生了显示双折射响应于样品的照射而变化的图像。该技术允许对各种医学或材料程序进行组织或样品诊断成像的快速,非接触式调查。

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