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用于体内卵巢癌临床研究的体全息反射内窥镜

Volume Holographic Reflection Endoscope for In-Vivo Ovarian Cancer Clinical Studies.

作者信息

Howlett I D, Gordon M, Brownlee J W, Barton J K, Kostuk R K

机构信息

Photonic Systems Lab; Department of Electrical and Computer Engineering, University of Arizona, Tucson, AZ 85721 ; College of Optical Science, University of Arizona, Tucson, AZ 85721.

College of Optical Science, University of Arizona, Tucson, AZ 85721 ; Biomedical Engineering, University of Arizona, Tucson, AZ 85721.

出版信息

Proc SPIE Int Soc Opt Eng. 2014 Mar 4;2014. doi: 10.1117/12.2037859.

Abstract

We present the design for an endoscopic system capable of imaging tissues of the ovary at two selected imaging depths simultaneously. The method utilizes a multiplexed volume hologram to select wavefronts from different depths within the tissue. It is the first demonstration of an endoscopic volume holographic imaging system. The endoscope uses both gradient index (GRIN) optical components and off the shelf singlet lenses to relay an image from the distal tip to the proximal end. The endoscope has a minimum diameter of 3.75 mm. The system length is 30 cm which is connected to a handle that includes the holographic components and optics that relay the image to a camera. Preliminary evaluation of the endoscope was performed with tissue phantoms and calibrated targets, which shows lateral resolution ≈ 4 μm at an operating wavelength of 660 nm. The hologram is recorded in phenanthraquinone doped poly methacrylate and is designed to produce images from two tissue depths. One image is obtained at the tissue surface and the second 70 μm below the surface. This method requires no mechanical scanning and acquires an image at the camera frame rate. The preliminary ex-vivo results show good correlation with histology sections of the same tissue sections.

摘要

我们展示了一种能够同时对卵巢组织在两个选定成像深度进行成像的内窥镜系统设计。该方法利用复用体全息图从组织内不同深度选择波前。这是内窥镜体全息成像系统的首次展示。内窥镜使用梯度折射率(GRIN)光学元件和现成的单透镜将图像从远端传递到近端。内窥镜的最小直径为3.75毫米。系统长度为30厘米,连接到一个手柄,手柄包含将图像中继到相机的全息组件和光学器件。使用组织模型和校准目标对内窥镜进行了初步评估,结果表明在660纳米的工作波长下横向分辨率约为4微米。全息图记录在菲醌掺杂的聚甲基丙烯酸酯中,设计用于从两个组织深度生成图像。一个图像在组织表面获得,另一个在表面下方70微米处获得。该方法无需机械扫描,并以相机帧率获取图像。初步的离体结果与相同组织切片的组织学切片显示出良好的相关性。

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Speckle illumination holographic non-scanning fluorescence endoscopy.散斑照明全息无扫描荧光内窥镜。
J Biophotonics. 2018 Nov;11(11):e201800010. doi: 10.1002/jbio.201800010. Epub 2018 Jul 9.

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