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AOSLO: from Benchtop to Clinic

机译:AOSLO:从台式到诊所

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摘要

We present a clinically deployable adaptive optics scanning laser ophthalmoscope (AOSLO) that features micro-electro-mechanical (MEMS) deformable mirror (DM) based adaptive optics (AO) and low coherent light sources. With the miniaturized optical aperture of a μDMS-Multi™ MEMS DM (Boston Micromachines Corporation, Watertown, MA), we were able to develop a compact and robust AOSLO optical system that occupies a 50 cm X 50 cm area on a mobile optical table. We introduced low coherent light sources, which are superluminescent laser diodes (SLD) at 680 nm with 9 nm bandwidth and 840 nm with 50 nm bandwidth, in confocal scanning ophthalmoscopy to eliminate interference artifacts in the images. We selected a photo multiplier tube (PMT) for photon signal detection and designed low noise video signal conditioning circuits. We employed an acoustic-optical (AOM) spatial light modulator to modulate the light beam so that we could avoid unnecessary exposure to the retina or project a specific stimulus pattern onto the retina. The MEMS DM based AO system demonstrated robust performance. The use of low coherent light sources effectively mitigated the interference artifacts in the images and yielded high-fidelity retinal images of contiguous cone mosaic. We imaged patients with inherited retinal degenerations including cone-rod dystrophy (CRD) and retinitis pigmentosa (RP). We have produced high-fidelity, real-time, microscopic views of the living human retina for healthy and diseased eyes.
机译:我们介绍了一种可临床部署的自适应光学扫描激光检眼镜(AOSLO),其特点是基于微机电(MEMS)可变形镜(DM)的自适应光学(AO)和低相干光源。借助μDMS-Multi™MEMS DM(波士顿微机公司,马萨诸塞州沃特敦)的微型光学孔径,我们能够开发出紧凑而坚固的AOSLO光学系统,该光学系统在移动光学平台上占据50 cm X 50 cm的面积。我们在共焦扫描检眼镜中引入了低相干光源,它们是在680 nm处具有9 nm带宽的超发光激光二极管(SLD),在840 nm处具有50 nm带宽的超发光激光二极管,以消除图像中的干扰伪影。我们选择了一个用于光子信号检测的光电倍增管(PMT),并设计了低噪声视频信号调节电路。我们采用了声光(AOM)空间光调制器来调制光束,这样我们就可以避免不必要地暴露于视网膜或将特定的刺激图案投射到视网膜上。基于MEMS DM的AO系统表现出强大的性能。低相干光源的使用有效地减轻了图像中的干扰伪影,并产生了连续圆锥体马赛克的高保真视网膜图像。我们对遗传性视网膜变性的患者进行了成像,包括锥体棒型营养不良(CRD)和色素性视网膜炎(RP)。我们已经为健康和患病的眼睛制作了高保真,实时,微观的人类视网膜图像。

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