Lima Natzem, DeLeon Clarissa M, Sawyer Travis W
College of Optical Sciences, University of Arizona, Tucson, USA.
Biomed Opt Express. 2025 Mar 19;16(4):1483-1498. doi: 10.1364/BOE.554860. eCollection 2025 Apr 1.
Polarization measurements of tissue in ex vivo and in vivo rigid laparoscopy studies have shown promise for enhancing diagnosis, guiding biopsies, and improving biological contrast compared to conventional imaging. However, a technological gap exists in performing polarization measurements through flexible endoscopes. The depolarization inherent in the coherent fiber bundles commonly used in these endoscopes to relay images from within the body hinders polarization information retrieval. To address this, we propose a simple, compact, and low-cost architecture: a pixelated polarizer placed directly on the tip of the flexible, coherent imaging fiber bundle. We demonstrate this architecture's ability to retrieve the linear polarization properties of a scene.
在离体和活体硬腹腔镜检查研究中,组织的偏振测量已显示出与传统成像相比在增强诊断、指导活检和改善生物对比度方面的前景。然而,在通过柔性内窥镜进行偏振测量方面存在技术差距。这些内窥镜中常用的相干光纤束固有的去偏振会阻碍偏振信息的检索,而这些光纤束用于从体内中继图像。为了解决这个问题,我们提出了一种简单、紧凑且低成本的架构:将像素化偏振器直接放置在柔性相干成像光纤束的尖端。我们展示了这种架构检索场景线性偏振特性的能力。