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Novel input polarisation independent endoscopic cross-polarised optical coherence tomography probe

机译:新型输入偏振独立内窥镜交叉极化光学相干断层扫描探针

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Lead by the original idea to perform noninvasive optical biopsies of various tissues, optical coherence tomography found numerous medical applications within the last two decades. The interference based imaging technique opens the possibility to visualise subcellular morphology up to an imaging depth of 3 mm and up to micron level axial and lateral resolution. The birefringence properties of the tissue are visualised with enhanced contrast using polarisation sensitive or cross-polarised optical coherence tomography (OCT) techniques. Although, it requires strict control over the polarisation states, resulting in several polarisation controlling elements. In this work, we propose a novel input-polarisation independent endoscopic system based on cross-polarised OCT. We tested the feasibility of our approach by measuring the polarisation change from a quarter-wave plate for different rotational angles. Further performance tests reveal a lateral resolution of30 mu mand a sensitivity of 103 dB. Images of the human nail bed and cow muscle tissue demonstrate the potential of the system to measure structural and birefringence properties of the tissue endoscopically.
机译:在对各种组织进行无创光学活检的最初想法的引领下,光学相干断层扫描在过去二十年中发现了许多医学应用。基于干涉的成像技术为亚细胞形态的可视化提供了可能性,成像深度可达3mm,轴向和横向分辨率可达微米。使用偏振敏感或交叉偏振光学相干断层扫描(OCT)技术,通过增强对比度来显示组织的双折射特性。尽管如此,它需要对极化状态进行严格控制,从而产生多个极化控制元件。在这项工作中,我们提出了一种基于交叉极化OCT的新型输入偏振无关内窥镜系统。我们通过测量四分之一波片在不同旋转角度下的偏振变化来测试我们方法的可行性。进一步的性能测试显示横向分辨率为30μm,灵敏度为103 dB。人类甲床和牛肌肉组织的图像显示了该系统在内窥镜检查中测量组织结构和双折射特性的潜力。

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