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超声反向编码光聚焦技术穿透高度散射的人白内障离体晶状体。

Time-reversed ultrasonically encoded optical focusing through highly scattering ex vivo human cataractous lenses.

机构信息

California Institute of Technology, Department of Electrical Engineering, Pasadena, California, United States.

California Institute of Technology, Andrew and Peggy Cherng Department of Medical Engineering, Pasad, United States.

出版信息

J Biomed Opt. 2018 Jan;23(1):1-4. doi: 10.1117/1.JBO.23.1.010501.

Abstract

Normal development of the visual system in infants relies on clear images being projected onto the retina, which can be disrupted by lens opacity caused by congenital cataract. This disruption, if uncorrected in early life, results in amblyopia (permanently decreased vision even after removal of the cataract). Doctors are able to prevent amblyopia by removing the cataract during the first several weeks of life, but this surgery risks a host of complications, which can be equally visually disabling. Here, we investigated the feasibility of focusing light noninvasively through highly scattering cataractous lenses to stimulate the retina, thereby preventing amblyopia. This approach would allow the cataractous lens removal surgery to be delayed and hence greatly reduce the risk of complications from early surgery. Employing a wavefront shaping technique named time-reversed ultrasonically encoded optical focusing in reflection mode, we focused 532-nm light through a highly scattering ex vivo adult human cataractous lens. This work demonstrates a potential clinical application of wavefront shaping techniques.

摘要

婴儿视觉系统的正常发育依赖于清晰的图像被投射到视网膜上,而这一过程可能会被先天性白内障导致的晶状体混浊所干扰。如果在生命早期得不到矫正,这种干扰会导致弱视(即使白内障被移除后,视力仍会永久性下降)。医生可以通过在生命的头几周内移除白内障来预防弱视,但这种手术存在一系列并发症的风险,这些并发症同样会导致视力障碍。在这里,我们研究了通过高度散射的白内障晶状体非侵入性地聚焦光来刺激视网膜,从而预防弱视的可行性。这种方法可以延迟白内障晶状体移除手术,从而大大降低早期手术并发症的风险。我们采用了一种名为反向时间超声编码光聚焦反射模式的波前整形技术,通过高度散射的离体成人白内障晶状体聚焦 532nm 的光。这项工作展示了波前整形技术的一种潜在临床应用。

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