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用于热成像的相干空心波导束。

Coherent hollow-core waveguide bundles for thermal imaging.

作者信息

Gal Udi, Harrington James, Ben-David Moshe, Bledt Carlos, Syzonenko Nicholas, Gannot Israel

机构信息

Department of Biomedical Engineering, Faculty of Engineering,Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Appl Opt. 2010 Sep 1;49(25):4700-9. doi: 10.1364/AO.49.004700.

Abstract

There has been very little work done in the past to extend the wavelength range of fiber image bundles to the IR range. This is due, in part, to the lack of IR transmissive fibers with optical and mechanical properties analogous to the oxide glass fibers currently employed in the visible fiber bundles. Our research is aimed at developing high-resolution hollow-core coherent IR fiber bundles for transendoscopic infrared imaging. We employ the hollow glass waveguide (HGW) technology that was used successfully to make single-HGWs with Ag/AgI thin film coatings to form coherent bundles for IR imaging. We examine the possibility of developing endoscopic systems to capture thermal images using hollow waveguide fiber bundles adjusted to the 8-10?mum spectral range and investigate the applicability of such systems. We carried out a series of measurements in order to characterize the optical properties of the fiber bundles. These included the attenuation, resolution, and temperature response. We developed theoretical models and simulation tools that calculate the light propagation through HGW bundles, and which can be used to calculate the optical properties of the fiber bundles. Finally, the HGW fiber bundles were used to transmit thermal images of various heated objects; the results were compared with simulation results. The experimental results are encouraging, show an improvement in the resolution and thermal response of the HGW fiber bundles, and are consistent with the theoretical results. Nonetheless, additional improvements in the attenuation of the bundles are required in order to be able to use this technology for medical applications.

摘要

过去,将纤维图像束的波长范围扩展到红外波段的工作做得很少。部分原因在于缺乏具有与目前用于可见纤维束的氧化物玻璃纤维类似光学和机械性能的红外透射纤维。我们的研究旨在开发用于经内镜红外成像的高分辨率空心芯相干红外纤维束。我们采用空心玻璃波导(HGW)技术,该技术已成功用于制造带有Ag/AgI薄膜涂层的单根HGW,以形成用于红外成像的相干束。我们研究了开发使用调整到8 - 10微米光谱范围的空心波导纤维束来捕获热图像的内镜系统的可能性,并研究此类系统的适用性。我们进行了一系列测量以表征纤维束的光学特性。这些特性包括衰减、分辨率和温度响应。我们开发了理论模型和模拟工具,用于计算光通过HGW束的传播,并且可用于计算纤维束的光学特性。最后,HGW纤维束被用于传输各种加热物体的热图像;将结果与模拟结果进行了比较。实验结果令人鼓舞,显示出HGW纤维束在分辨率和热响应方面有所改善,并且与理论结果一致。尽管如此,为了能够将该技术用于医疗应用,还需要进一步改善束的衰减。

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