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Efficient sweep buffering in swept source optical coherence tomography using a fast optical switch

机译:使用快速光学开关在扫频光源光学相干断层扫描中进行有效的扫描缓冲

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We describe a novel buffering technique for increasing the A-scan rate of swept source optical coherence tomography (SSOCT) systems employing low duty cycle swept source lasers. This technique differs from previously reported buffering techniques in that it employs a fast optical switch, capable of switching in 60 ns, instead of a fused fiber coupler at the end of the buffering stage, and is therefore appreciably more power efficient. The use of the switch also eliminates patient exposure to light that is not used for imaging that occurs at the end of the laser sweep, thereby increasing the system sensitivity. We also describe how careful management of polarization can remove undesirable artifacts due to polarization mode dispersion. In addition, we demonstrate how numerical compensation techniques can be used to modify the signal from a Mach-Zehnder interferometer (MZI) clock obtained from the original sweep to recalibrate the buffered sweep, thereby reducing the complexity of systems employing lasers with integrated MZI clocks. Combining these methods, we constructed an SSOCT system employing an Axsun technologies laser with a sweep rate of 100kHz and 6dB imaging range of 5.5mm. The sweep rate was doubled with sweep buffering to 200 kHz, and the imaging depth was extended to 9 mm using coherence revival. We demonstrated the feasibility of this system by acquiring images of the anterior segments and retinas of healthy human volunteers.
机译:我们描述了一种新颖的缓冲技术,用于提高采用低占空比扫频源激光器的扫频源光学相干断层扫描(SSOCT)系统的A扫描速率。该技术与先前报道的缓冲技术的不同之处在于,它使用了能够在60 ns内切换的快速光开关,而不是在缓冲阶段结束时使用熔融光纤耦合器,因此具有更高的功率效率。开关的使用还消除了患者暴露于激光扫描结束时未用于成像的光的风险,从而提高了系统灵敏度。我们还将描述对偏振的仔细管理如何消除由于偏振模色散而导致的不良伪像。此外,我们演示了如何使用数值补偿技术来修改从原始扫描获得的马赫曾德尔干涉仪(MZI)时钟的信号,以重新校准缓冲扫描,从而降低使用带有集成MZI时钟的激光器的系统的复杂性。结合这些方法,我们构建了一个采用Axsun技术激光器的SSOCT系统,该激光器的扫描速度为100kHz,成像范围为6dB,为5.5mm。扫描速率达到200 kHz时,扫描速率增加了一倍,并且使用相干恢复技术将成像深度扩展至9 mm。我们通过获取健康人类志愿者的前节段和视网膜的图像证明了该系统的可行性。

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