Time-reversed ultrasonically encoded optical focusing through highly scattering ex vivo human cataractous lenses
Yan Liu1, Yuecheng Shen2, Haowen Ruan1
1California Institute of Technology, Department of Electrical Engineering, Pasadena, California, United States.
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.
Related Concept Videos
Encoding
Automatic processing involves the encoding of details like time, space, frequency, and the meaning of words, usually done without conscious...
Scatter Plot
Reversible and Irreversible Processes
Diode: Reverse bias
Coping Strategies: Problem Focused
For example, consider a student who struggles to understand their...
Focusing of Light in the Eye


