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Avalanche Photodiode based Optical Coherence Tomography

机译:基于雪崩光电二极管的光学相干断层扫描

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Optical Coherence Tomography (OCT) is used to perform in vivo high-resolution imaging of biological tissue microstructures. In the present study, we evaluate the optimum conditions to use Avalanche photodiodes (APDs) in OCT to achieve maximum signal-to-noise (S/N) ratios. The optical sources employed in OCT have a large bandwidth. Due to beating within the source line-width, excess photon noise (EPN) is generated in addition to shot noise (SN). Usually, high speed OCT requires large optical power, which makes the EPN to dominate over the SN. Therefore, balanced detection is used to reduce the EPN. We analyse the optimisation of the OCT configuration with respect to the APD noise performance. When using APDs, another parameter has to be considered in the S/N analysis: that of the voltage across the APDs, which determines, both, the gain and the noise.
机译:光学相干断层扫描(OCT)用于在生物组织微观结构的体内高分辨率成像中进行。在本研究中,我们评估在OCT中使用雪崩光电二极管(APDS)以实现最大信噪比(S / N)比率的最佳条件。 OCT中采用的光源具有大带宽。由于源线宽度内的跳动,除了拍摄噪声(SN)之外,还会产生过量的光子噪声(EPN)。通常,高速OCT需要大的光功率,这使得EPN在SN上占据主导地位。因此,使用平衡检测来减少EPN。我们在APD噪声性能方面分析了OCT配置的优化。当使用APD时,必须在S / N分析中考虑另一个参数:APDS上的电压的电压,这决定了,两者,增益和噪声。

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