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关于时域、傅里叶域和扫频源光学相干断层扫描检测性能的理论与实践考量

Theoretical and practical considerations on detection performance of time domain, Fourier domain, and swept source optical coherence tomography.

作者信息

Liu Bin, Brezinski Mark E

机构信息

Brigham and Women's Hospital, Department of Orthopedic Surgery, 75 Francis Street, Boston, Massachusetts 02115, USA.

出版信息

J Biomed Opt. 2007 Jul-Aug;12(4):044007. doi: 10.1117/1.2753410.

Abstract

Optical coherence tomography (OCT) based on spectral interferometry has recently been examined, with authors often suggesting superior performance compared with time domain approaches. The technologies have similar resolutions and the spectral techniques may currently claim faster acquisition rates. Contrary to many current opinions, their detection parameters may be inferior. The dynamic range and signal-to-noise ratio (SNR) correlate with image penetration, the contrast as a function of depth. This work examines the theoretical sensitivity, dynamic range, and SNR of the techniques, within the practical limits of optoelectronics, taking into account often ignored or misunderstood classical factors that affect performance, such as low frequency noise, analog to digital (AD) conversion losses, and methods for potentially improving sensitivity, including fast laser sweeping. The technologies are compared relative to these parameters. While Fourier domain OCT has some advantages such as signal integration, it appears unlikely that its disadvantages can ultimately be overcome for nontransparent tissue. Ultimately, time-domain (TD)-OCT appears to have the superior performance with respect to SNR and dynamic range. This may not be the case for transparent tissue of the eye. Certain positive aspects of swept source OCT leave the possibility open that its performance may approach that of (TD)-OCT in nontransparent tissue.

摘要

基于光谱干涉测量法的光学相干断层扫描(OCT)最近受到了研究,作者们常常认为其性能优于时域方法。这些技术具有相似的分辨率,并且光谱技术目前可能具有更快的采集速率。与许多当前观点相反,它们的检测参数可能较差。动态范围和信噪比(SNR)与图像穿透深度相关,即对比度随深度的变化。这项工作在光电子学的实际限制范围内,研究了这些技术的理论灵敏度、动态范围和信噪比,同时考虑了那些常常被忽视或误解的影响性能的经典因素,如低频噪声、模数(AD)转换损耗,以及包括快速激光扫描在内的潜在提高灵敏度的方法。并根据这些参数对这些技术进行了比较。虽然傅里叶域OCT具有诸如信号积分等一些优点,但对于非透明组织,其缺点似乎最终难以克服。最终,时域(TD)-OCT在信噪比和动态范围方面似乎具有更优的性能。对于眼部的透明组织可能并非如此。扫频源OCT的某些积极方面使得其在非透明组织中的性能有可能接近时域(TD)-OCT。

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