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Full-field swept-source optical coherence tomography with phase-shifting techniques for skin cancer detection

机译:全场扫描源光学相干断层扫描,具有相移型皮肤癌检测技术

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The EU-funded project VIAMOS1 proposes an optical coherence tomography system (OCT) for skin cancer detection, which combines full-field and full-range swept-source OCT in a multi channel sensor for parallel detection. One of the project objectives is the development of new fabrication technologies for micro-optics, which makes it compatible to Micro-Opto-Electromechanical System technology (MOEMS). The basic system concept is a wafer-based Mirau interferometer array with an actuated reference mirror, which enables phase shifted interferogram detection and therefore reconstruction of the complex phase information, resulting in a higher measurement range with reduced image artifacts. This paper presents an experimental one-channel on-bench OCT system with bulk optics, which serves as a proof-of-concept setup for the final VIAMOS micro-system. It is based on a Linnik interferometer with a wavelength tuning light source and a camera for parallel A-Scan detection. Phase shifting interferometry techniques (PSI) are used for the suppression of the complex conjugate artifact, whose suppression reaches 36 dB. The sensitivity of the system is constant over the full-field with a mean value of 97 dB. OCT images are presented of a thin membrane microlens and a biological tissue (onion) as a preliminary demonstration.
机译:欧盟资助的项目VIAMOS1提出了一种用于皮肤癌症检测的光学相干断层扫描系统(OCT),其将全场和全范围扫源OCT组合在多通道传感器中以进行平行检测。其中一个项目目标是开发用于微光学的新制造技术,这使得它与微光电机械系统技术(MOEMS)兼容。基本系统概念是一种基于晶圆的Mirau干涉仪阵列,其具有致动参考镜,它能够实现相移干扰图检测,因此重建复杂相信息,从而导致具有缩小图像伪像的测量范围。本文介绍了一个具有散装光学器件的实验单通道OCT系统,它是最终VIAMOS微系统的概念验证设置。它基于Linnik干涉仪,具有波长调谐光源和用于并行扫描检测的相机。相移干涉测量技术(PSI)用于抑制复杂的缀合物伪像,其抑制达到36dB。系统的灵敏度在平均值为97 dB的全场上恒定。 OCT图像呈现薄膜微透镜和生物组织(洋葱)作为初步示范。

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