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基于线性偏振控制的镜面反射减少用于荧光诱导诊断评估

Reduction of Specular Reflection Based on Linear Polarization Control for Fluorescence-Induced Diagnostic Evaluation.

作者信息

Lee Sangyun, Yoon Kicheol, Kim Jungmin, Kim Kwang Gi

机构信息

Department of Health and Safety Convergence Sciences, Korea University, 145, Anam-ro, Seongbuk-gu, Seoul 02841, Korea.

Department of Health and Environmental Convergence Sciences, Korea University, 145, Anam-ro, Seongbuk-gu, Seoul 02841, Korea.

出版信息

Diagnostics (Basel). 2022 Aug 16;12(8):1990. doi: 10.3390/diagnostics12081990.

Abstract

The primary goal of cancer surgery is to completely eliminate tumors. A real-time diagnostic method uses a fluorescence contrast agent and a surgical microscope to assess the status of tumor resection and the patient's blood circulation. The biggest problem in imaging diagnostics using a microscope is the specular reflection phenomenon. While observing a lesion, the observation field may be obstructed due to specular reflection, making it difficult to obtain accurate results during the diagnostic process. Herein we propose a method to reduce specular reflection during tumor diagnosis by introducing a linearly polarized filter for a surgical microscope system. The method of angular direction adjustment of the filter ensures that only the horizontally polarized light passes through it, thereby obstructing the specular reflection. As a result of removing specular reflection, clear images were obtained at 90° and 270°. This experiment was conducted using phantoms and animals. Our results prove that the proposed method can be applied to imaging cameras used in internal medicine, surgery, and radiology for diagnosis.

摘要

癌症手术的主要目标是彻底清除肿瘤。一种实时诊断方法利用荧光造影剂和手术显微镜来评估肿瘤切除状况以及患者的血液循环。使用显微镜进行成像诊断时最大的问题是镜面反射现象。在观察病变时,观察视野可能会因镜面反射而受阻,导致在诊断过程中难以获得准确结果。在此,我们提出一种通过为手术显微镜系统引入线性偏振滤光片来减少肿瘤诊断过程中镜面反射的方法。滤光片的角度方向调整方法确保只有水平偏振光能够通过,从而阻挡镜面反射。由于去除了镜面反射,在90°和270°时获得了清晰的图像。本实验使用了模型和动物进行。我们的结果证明,所提出的方法可应用于内科、外科和放射学中用于诊断的成像相机。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e468/9407386/9287bb1d4fc7/diagnostics-12-01990-g001.jpg

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