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Wavelength-encoded tomography based on optical temporal Fourier transform

机译:基于光学时间傅里叶变换的波长编码层析成像

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摘要

We propose and demonstrate a technique called wavelength-encoded tomography (WET) for non-invasive optical cross-sectional imaging, particularly beneficial in biological system. The WET utilizes time-lens to perform the optical Fourier transform, and the time-to-wavelength conversion generates a wavelength-encoded image of optical scattering from internal microstructures, analogous to the interferometery-based imaging such as optical coherence tomography. Optical Fourier transform, in principle, comes with twice as good axial resolution over the electrical Fourier transform, and will greatly simplify the digital signal processing after the data acquisition. As a proof-of-principle demonstration, a 150 -μm (ideally 36 μm) resolution is achieved based on a 7.5-nm bandwidth swept-pump, using a conventional optical spectrum analyzer. This approach can potentially achieve up to 100-MHz or even higher frame rate with some proven ultrafast spectrum analyzer. We believe that this technique is innovative towards the next-generation ultrafast optical tomographic imaging application.
机译:我们提出并演示了一种称为波长编码断层扫描(WET)的技术,用于无创光学横截面成像,对生物系统特别有益。 WET利用时间透镜执行光学傅立叶变换,并且时间到波长的转换从内部微结构生成光散射的波长编码图像,类似于基于干涉仪的成像,例如光学相干断层扫描。原则上,光学傅立叶变换的轴向分辨率是电子傅立叶变换的两倍,并且将大大简化数据采集后的数字信号处理。作为原理验证的演示,使用传统的光谱分析仪,基于7.5 nm带宽的扫频泵,可获得150μm(理想情况下为36μm)的分辨率。使用一些经过验证的超快频谱分析仪,该方法可以潜在地实现高达100MHz甚至更高的帧速率。我们相信这项技术对于下一代超快速光学层析成像应用来说是创新的。

著录项

  • 来源
    《Applied Physics Letters》 |2014年第9期|1-5|共5页
  • 作者

    Zhang Chi; Wong Kenneth K.Y.;

  • 作者单位

    Photonic Systems Research Laboratory, Department of Electrical and Electronic Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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