首页> 外文期刊>Journal of Biophotonics >Mueller polarimetric imaging for surgical and diagnostic applications: a review
【24h】

Mueller polarimetric imaging for surgical and diagnostic applications: a review

机译:Mueller Polariemetric成像用于外科和诊断应用:综述

获取原文
获取原文并翻译 | 示例
       

摘要

Polarization is a fundamental property of light and a powerful sensing tool that has been applied to many areas. A Mueller matrix is a complete mathematical description of the polarization characteristics of objects that interact with light, and is known as a transfer function of Stokes vectors which characterise the state of polarization of light. Mueller polarimetric imaging measures Mueller matrices over a field of view and thus allows for visualising the polarization characteristics of the objects. It has emerged as a promising technique in recent years for tissue imaging, improving image contrast and providing a unique perspective to reveal additional information that cannot be resolved by other optical imaging modalities. This review introduces the basis of the Stokes-Mueller formulism, interpretation methods of Mueller matrices into fundamental polarization properties, polarization properties of biological tissues, and considerations in the construction of Mueller polarimetric imaging devices for surgical and diagnostic applications, including primary configurations, optimization procedures, calibration methods as well as the instrument polarization properties of several widelyused biomedical optical devices. The paper also reviews recent progress in Mueller polarimetric endoscopes and fibre Mueller polarimeters, followed by the future out-look in applying the technique to surgery and diagnostics. Tissue polarization properties convey morphological, micro-structural and compositional information of tissue with great potential for label free characterization of tissue pathological changes. Recent progress in tissue polarimetric imaging and polarization resolved endoscopy paved the way for translation of polarimetric imaging to surgery and tissue diagnosis.
机译:极化是光的基本属性,并强大的传感工具已应用于许多领域。穆勒矩阵是与光相互作用的物体的偏振特性的完整数学描述,并且被称为斯托克斯向量的传递函数,其表征光的偏振状态。 Mueller Polariemetric成像在视场上测量Mueller矩阵,因此允许可视化对象的偏振特性。近年来,它已成为组织成像,改善图像对比度并提供独特的视角来揭示其他光学成像模式不能解决的附加信息,因此它被出现为一个有希望的技术。本综述介绍了Stokes-Mueller Formulism的基础,穆勒矩阵的诠释方法是基本偏振特性,生物组织的偏振特性,以及用于外科和诊断应用的穆勒偏振成像装置的构建中的考虑因素,包括主要配置,优化程序,校准方法以及多个广泛使用的生物医学光学器件的仪器偏振特性。本文还审查了最近在穆勒偏振内窥镜和纤维穆勒比焦的进展,然后进行了未来的外观,将技术应用于手术和诊断。组织偏振性能传达组织的形态学,微结构和组成信息,具有巨大的标记无组织病理变化的自由表征。组织偏振成像和偏振分辨内镜的最新进展铺平了偏振成像与手术和组织诊断的翻译方式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号