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手持式光学相干显微镜内窥镜的设计。

Design of a handheld optical coherence microscopy endoscope.

机构信息

University of Arizona, College of Optical Sciences, 1630 East University Boulevard, Tucson, Arizona 85721, USA.

出版信息

J Biomed Opt. 2011 Jun;16(6):066018. doi: 10.1117/1.3594149.

Abstract

Optical coherence microscopy (OCM) combines coherence gating, high numerical aperture optics, and a fiber-core pinhole to provide high axial and lateral resolution with relatively large depth of imaging. We present a handheld rigid OCM endoscope designed for small animal surgical imaging, with a 6-mm diam tip, 1-mm scan width, and 1-mm imaging depth. X-Y scanning is performed distally with mirrors mounted to micro galvonometer scanners incorporated into the endoscope handle. The endoscope optical design consists of scanning doublets, an afocal Hopkins relay lens system, a 0.4 numerical aperture water immersion objective, and a cover glass. This endoscope can resolve laterally a 1.4-μm line pair feature and has an axial resolution (full width half maximum) of 5.4 μm. Images taken with this endoscope of fresh ex-vivo mouse ovaries show structural features, such as corpus luteum, primary follicles, growing follicles, and fallopian tubes. This rigid handheld OCM endoscope can be useful for a variety of minimally invasive and surgical imaging applications.

摘要

光学相干显微镜(OCM)结合了相干门控、高数值孔径光学和光纤芯针孔,可提供高轴向和侧向分辨率,同时具有相对较大的成像深度。我们展示了一种用于小动物手术成像的手持式刚性 OCM 内窥镜,其尖端直径为 6 毫米,扫描宽度为 1 毫米,成像深度为 1 毫米。X-Y 扫描通过安装在微型旋转镜扫描器上实现,这些扫描器集成在内窥镜手柄中。内窥镜光学设计包括扫描双合透镜、无焦霍普金斯中继透镜系统、0.4 数值孔径水浸物镜和盖玻片。该内窥镜可以分辨出 1.4μm 线对特征,轴向分辨率(全宽半最大值)为 5.4μm。使用该内窥镜对新鲜的离体小鼠卵巢进行拍摄,可显示出黄体、初级卵泡、生长卵泡和输卵管等结构特征。这种刚性手持式 OCM 内窥镜可用于多种微创和手术成像应用。

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