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Theoretical and experimental characterization of a stationary low coherence interferometer for optical coherence tomography

机译:光学相干断层扫描的固定低相干干涉仪的理论与实验表征

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A stationary low coherence interferometer for optical coherence tomography (linear OCT, LOCT) based on Young's two-pinhole experiment is characterized theoretically. All OCT sensors either work in the time (TDOCT) or Fourier domain (FDOCT). In contrast to these setups, the interferometer described in this paper employs no moving parts in the reference arm and no spectrometers for depth profiling. Depth profiling is achieved by detecting the interference signal on a linear CCD-array. Different positions of the interference signal on the CCD-array correspond to different depths inside the sample. The interference signal of the setup and the sensitivity in the case of shot noise limited detection are derived theoretically and compared to sensors in the time domain. In-vitro images of porcine cornea demonstrate the clinical potential of the setup.
机译:理论上,基于杨两针孔实验的光学相干断层扫描(线性OCT,LOCT)的固定低相干干涉仪的特征在于理论上。所有OCT传感器都在时间(TDOCT)或傅里叶域(FDOCT)中工作。与这些设置相比,本文中描述的干涉仪在参考臂中不采用移动部件,没有用于深度分析的光谱仪。通过检测线性CCD阵列上的干扰信号来实现深度分析。 CCD阵列上的干扰信号的不同位置对应于样本内的不同深度。理论上地导出设置和拍摄噪声限制检测情况的情况的干扰信号和灵敏度,并与时域中的传感器相比。猪角膜的体外图像证明了设置的临床潜力。

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