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Real-time eye motion compensation fot OCT imaging with tracking SLO

机译:具有跟踪SLO的OCT成像的实时眼动补偿

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摘要

Fixational eye movements remain a major cause of artifacts in optical coherence tomography (OCT) images despite the increases in acquisition speeds. One approach to eliminate the eye motion is to stabilize the ophthalmic imaging system in real-time. This paper describes and quantifies the performance of a tracking OCT system, which combines a phase-stabilized optical frequency domain imaging (OFDI) system and an eye tracking scanning laser ophthalmoscope (TSLO). We show that active eye tracking minimizes artifacts caused by eye drift and micro saccades. The remaining tracking lock failures caused by blinks and large saccades generate a trigger signal which signals the OCT system to rescan corrupted B-scans. Residual motion artifacts in the OCT B-scans are reduced to 0.32 minutes of arc (~1.6 μm) in an in vivo human eye enabling acquisition of high quality images from the optic nerve head and lamina cribrosa pore structure. © 2012 Optical Society of America.
机译:尽管获取速度有所提高,但注视眼的移动仍然是光学相干断层扫描(OCT)图像中伪影的主要原因。消除眼睛运动的一种方法是实时稳定眼科成像系统。本文描述并量化了跟踪OCT系统的性能,该系统结合了相位稳定的光频域成像(OFDI)系统和眼睛跟踪扫描激光检眼镜(TSLO)。我们显示,主动眼动追踪可最大程度地减少由眼动漂移和微扫视引起的伪影。由眨眼和大扫视引起的其余跟踪锁定故障会生成触发信号,该信号向OCT系统发出信号以重新扫描损坏的B扫描。在体内人眼中,OCT B扫描中的残留运动伪影可减少到0.32分钟的弧度(约1.6μm),从而能够从视神经头和筛板孔结构中获取高质量的图像。 ©2012美国眼镜学会。

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