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Parallel frequency-domain optical coherence tomography scatter-mode imaging of the hamster cheek pouch using a thermal light source

机译:使用热光源对仓鼠脸颊袋进行平行频域光学相干层析成像散射模式成像

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We use a parallel frequency-domain optical coherence tomography (FDOCT) system to generate a scatter-mode image of the hamster cheek pouch epithelium. To our knowledge, this is the first optical coherence tomography (OCT) image of a biological sample obtained using a thermal light source in the frequency domain. The system employs an imaging spectrometer to acquire depth-resolved profiles from adjacent spatial points without the need for any scanning. To enable this imaging modality, we have considered that signals originating from multiple depths combine in a different manner in FDOCT compared to time-domain optical coherence tomography (TDOCT). Because a multicomponent FDOCT signal is a coherent sum, it is necessary to limit the number of modes that contribute to the detected signal. Conversely, multicomponent TDOCT signals can be represented as incoherent sums, where increasing the number of modes improves the signal.
机译:我们使用并行频域光学相干断层扫描(FDOCT)系统来生成仓鼠脸袋上皮的散射模式图像。据我们所知,这是在频域中使用热光源获得的生物样品的第一张光学相干断层扫描(OCT)图像。该系统采用成像光谱仪,无需任何扫描即可从相邻空间点获取深度解析轮廓。为了实现这种成像方式,我们已考虑到,与时域光学相干断层扫描(TDOCT)相比,源自多个深度的信号在FDOCT中的组合方式有所不同。由于多分量FDOCT信号是相干和,因此有必要限制有助于检测信号的模式数量。相反,多分量TDOCT信号可以表示为非相干和,其中增加模数可以改善信号。

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