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A new small-package super continuum light source for optical coherence tomography

机译:一种用于光学相干断层扫描的新型小包装超连续光源

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摘要

Broadband light sources provide a significant benefit for optical coherence tomography (OCT) imaging concerning the axial resolution. Light sources with bandwidths over 200 nm result in an axial resolution up to 2 microns. Such broad band OCT imaging can be achieved utilizing super continuum (SC) light sources. The main important disadvantage of commercial SC light sources is the overall size and the high costs. Therefore, the use of SC light sources in small OCT setups and applications is limited. We present a new small housing and cost-effective light source, which is suitable for OCT imaging. The used light source has dimensions of 110 × 160× 60 mm and covers a wavelength range from 390 nm up to 2500 nm. The light source was coupled in a dual band OCT system. The light is guided into the interferometer and split in reference and sample beam. The superimposed signal is guided to the spectrometer unit, which consists of two spectrometers. This spectrometer system separates the light. One band centered at 800 nm with a full bandwidth of 176 nm and a second band centered at 1250 nm with a full spectral width of 300 nm was extracted. The 800 nm interference signal is detected by a silicon line scan camera and the 1250 nm signal by an indium gallium arsenide linear image sensor. In this test measurement a plastic foil was used as a sample, which is composed of several plastic film layers. Three dimensional images were acquired simultaneous with the dual band OCT setup. The images were acquired at an A-scan rate of 1 kHz. The 1 kHz A-line rate was chosen because so far the optical power of the light source is not optimal for high speed OCT imaging. The source provides 2 mW in the range of 390 nm to 800 nm and 25 mW in the range from 390 nm to 1650 nm. Furthermore, we coupled the light source by a 50:50 optical fiber coupler, which also reduces the overall optical power of the light source within the OCT setup. Nevertheless, we demonstrated that this new small-package and cost-effective light source is very suitable to carry out OCT imaging. The use of this light source can open up new OCT applications, which require OCT setups with very high axial resolution and small footprint.
机译:宽带光源为轴向相干断层扫描(OCT)成像提供了显着优势。带宽超过200 nm的光源可产生高达2微米的轴向分辨率。这样的宽带OCT成像可以利用超连续(SC)光源来实现。商业SC光源的主要重要缺点是整体尺寸和高成本。因此,在小型OCT设置和应用中使用SC光源受到限制。我们提出了一种新的小型外壳和具有成本效益的光源,适用于OCT成像。使用的光源尺寸为110×160×60 mm,覆盖的波长范围为390 nm至2500 nm。光源被耦合在双频带OCT系统中。光被引导到干涉仪中,并分成参考光束和样品光束。叠加的信号被引导至光谱仪单元,该光谱仪单元由两个光谱仪组成。该光谱仪系统将光分离。提取一个以800 nm为中心,全带宽为176 nm的波段和另一个以1250 nm为中心,全光谱宽度为300 nm的波段。硅线扫描相机检测到800 nm干扰信号,砷化铟镓线性图像传感器检测到1250 nm信号。在该测试测量中,将塑料箔用作样品,该样品由数个塑料薄膜层组成。在双波段OCT设置的同时获取了三维图像。图像以1 kHz的A扫描速率获取。之所以选择1 kHz A线速率,是因为到目前为止,光源的光功率对于高速OCT成像并不是最佳的。光源在390 nm至800 nm范围内提供2 mW的功率,在390 nm至1650 nm范围内提供25 mW的功率。此外,我们通过50:50的光纤耦合器耦合了光源,这也降低了OCT设置中光源的总体光功率。尽管如此,我们证明了这种新型的小包装且经济高效的光源非常适合进行OCT成像。使用这种光源可以开拓新的OCT应用,这些应用要求OCT设置具有很高的轴向分辨率和较小的占地面积。

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  • 会议地点 San Francisco CA(US)
  • 作者单位

    Department of Clinical Sensoring and Monitoring, Medical Faculty Carl Gustav Cams,University of Technology, Dresden, Germany;

    Department of Clinical Sensoring and Monitoring, Medical Faculty Carl Gustav Cams,University of Technology, Dresden, Germany;

    Fraunhofer Institute for Non-Destructive Testing Dresden branch of IZFP, Dresden, Germany;

    Department of Physical Technology, University of Applied Science, Zwickau, Germany;

    Department of Physical Technology, University of Applied Science, Zwickau, Germany;

    Department of Physical Technology, University of Applied Science, Zwickau, Germany;

    Department of Clinical Sensoring and Monitoring, Medical Faculty Carl Gustav Cams,University of Technology, Dresden, Germany;

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  • 正文语种 eng
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  • 入库时间 2022-08-26 13:44:53

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