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Live video rate volumetric OCT imaging of the retina with multi-MHz A-scan rates

机译:视网膜的实时视频速率体积OCT成像具有数MHz A扫描速率

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摘要

Surgical microscopes are vital tools for ophthalmic surgeons. The recent development of an integrated OCT system for the first time allows to look at tissue features below the surface. Hence, these systems can drastically improve the quality and reduce the risk of surgical interventions. However, current commercial OCT-enhanced ophthalmic surgical microscopes provide only one additional cross sectional view to the standard microscope image and feature a low update rate. To present volumetric data at a high update rate, much faster OCT systems than the ones applied in today’s surgical microscopes need to be developed. We demonstrate live volumetric retinal OCT imaging, which may provide a sufficiently large volume size (330x330x595 Voxel) and high update frequency (24.2 Hz) such that the surgeon may even purely rely on the OCT for certain surgical maneuvers. It represents a major technological step towards the possible application of OCT-only surgical microscopes in the future which would be much more compact thus enabling many additional minimal invasive applications. We show that multi-MHz A-scan rates are essential for such a device. Additionally, advanced phase-based OCT techniques require 3D OCT volumes to be detected with a stable optical phase. These techniques can provide additional functional information of the retina. Up to now, classical OCT was to slow for this, so our system can pave the way to holographic OCT with a traditional confocal flying spot approach. For the first time, we present point scanning volumetric OCT imaging of the posterior eye with up to 191.2 Hz volume rate. We show that this volume rate is high enough to enable a sufficiently stable optical phase to a level, where remaining phase errors can be corrected. Applying advanced post processing concepts for numerical refocusing or computational adaptive optics should be possible in future with such a system.
机译:手术显微镜是眼科外科医生的重要工具。集成式OCT系统的最新开发首次使您能够查看表面以下的组织特征。因此,这些系统可以大大提高质量并降低手术干预的风险。然而,当前的商业增强型OCT眼科手术显微镜仅提供了标准显微镜图像的另一横断面图,并且更新率低。为了以高更新率显示体积数据,需要开发比当今手术显微镜所应用的OCT系统快得多的OCT系统。我们演示了实时的视网膜体积OCT成像,可以提供足够大的体积大小(330x330x595 Voxel)和高更新频率(24.2 Hz),以使外科医生甚至可以完全依靠OCT进行某些手术。它代表了未来可能仅使用OCT的手术显微镜的一项重大技术进步,它将更加紧凑,从而实现许多其他的微创应用。我们证明了多MHz A扫描速率对于这种设备至关重要。此外,先进的基于相位的OCT技术要求以稳定的光学相位检测3D OCT体积。这些技术可以提供视网膜的其他功能信息。到目前为止,传统的OCT对此一直很慢,因此我们的系统可以使用传统的共焦飞点方法为全息OCT铺平道路。首次,我们提出了后眼点扫描体积OCT成像,其体积率高达191.2 Hz。我们表明,该体积比足够高,可以使足够稳定的光学相位达到可以校正剩余相位误差的水平。这样的系统将来应该有可能将先进的后处理概念应用于数值重聚焦或计算自适应光学。

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