Optimization for Axial Resolution, Depth Range, and Sensitivity of Spectral Domain Optical Coherence Tomography at 1.3 µm.

@article{Lee2009OptimizationFA,
  title={Optimization for Axial Resolution, Depth Range, and Sensitivity of Spectral Domain Optical Coherence Tomography at 1.3 µm.},
  author={Soo-Youn Lee and Hyun-Woo Jeong and Beop-Min Kim and Yeh-chan Ahn and Woonggyu Jung and Zhongping Chen},
  journal={The journal of the Korean Physical Society},
  year={2009},
  volume={55 6},
  pages={2354-2360}
}
We have developed high-speed and high-resolution spectral domain optical coherence tomography at 1.3 µm using an InGaAs line-scan camera and a broadband light source with the bandwidth of 170 nm that produces a theoretical axial resolution of 4.4 µm in air. We compared axial resolutions from point spread functions (PSFs) and depth ranges while changing the full spectral bandwidth detected by the camera and describing the optimization process for the axial resolution, the depth range, and the… CONTINUE READING

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