首页> 外文会议>Emerging Digital Micromirror Device Based Systems and Applications XI >Non-contact optical wavefront shaping for focusing light and highresolution imaging inside and behind biological scattering medium
【24h】

Non-contact optical wavefront shaping for focusing light and highresolution imaging inside and behind biological scattering medium

机译:非接触式光学波前整形,用于在生物散射介质内部和之后聚焦光和高分辨率成像

获取原文
获取原文并翻译 | 示例

摘要

Optical wavefront shaping is one of the most effective techniques in focusing light inside a scattering medium.Unfortunately, most of these techniques require direct access to the scattering medium or need to know the scatteringproperties of the medium beforehand. Through our scheme we develop a novel concept in which both the illuminationand the detection is on the same side of the inspected object and the imaging process is a real time fast convergingoperation that does not require to capture large plurality of images. We model the scattering medium being a biologicaltissue as a Matrix having mathematical properties matched to the physical and biological aspects of the sample. In ouradaptive optics scheme, we aim to estimate the scattering function and thus to encode the intensity of the illuminatinglaser light source using DMD (Digital Micromirror Device) with an inverse scattering function of the scattering medium,such that after passing its scattering function a focused beam is obtained. We optimize the pattern to be displayed on theDMD using Particle Swarm Algorithm (PSO). As first proof of concept we show validation via numerical MATLABsimulations where we obtain a focused spot behind a scattering medium in amplitude modulation scheme.
机译:光波前整形是将光聚焦在散射介质内部的最有效技术之一。\ r \ n不幸的是,这些技术中的大多数都需要直接进入散射介质,或者需要事先了解介质的散射特性。通过我们的方案,我们开发了一个新颖的概念,其中照明\ r \ n和检测都在被检对象的同一侧,并且成像过程是实时的快速会聚\ r \ n操作,不需要捕获大量物体。图片。我们将作为生物\ r \ n组织的散射介质建模为具有与样品的物理和生物学方面相匹配的数学特性的矩阵。在我们的\ n \自适应光学方案中,我们旨在估算散射函数,从而使用DMD(数字微镜设备)对散射\ r \ n激光光源的强度进行编码,并具有散射介质的反散射功能,\ r \ n这样,在通过其散射功能后,便获得了聚焦光束。我们使用粒子群算法(PSO)优化了要显示在\ r \ nDMD上的图案。作为概念的第一个证明,我们通过数值MATLAB \ r \ n模拟显示了验证,其中我们在振幅调制方案中获得了散射介质后面的焦点。

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