用于将光聚焦到生物组织中的基于指南星的波前整形方法。
Guidestar-assisted wavefront-shaping methods for focusing light into biological tissue.
作者信息
Horstmeyer Roarke, Ruan Haowen, Yang Changhuei
机构信息
Department of Electrical Engineering, California Institute of Technology, Pasadena, California 91125, USA.
出版信息
Nat Photonics. 2015;9:563-571. doi: 10.1038/nphoton.2015.140. Epub 2015 Aug 27.
In the field of biomedical optics, optical scattering has traditionally limited the range of imaging within tissue to a depth of one millimetre. A recently developed class of wavefront-shaping techniques now aims to overcome this limit and achieve diffraction-limited control of light beyond one centimetre. By manipulating the spatial profile of an optical field before it enters a scattering medium, it is possible to create a micrometre-scale focal spot deep within tissue. To successfully operate , these wavefront-shaping techniques typically require feedback from within the biological sample. This Review summarizes recently developed 'guidestar' mechanisms that provide feedback for intra-tissue focusing. Potential applications of guidestar-assisted focusing include optogenetic control over neurons, targeted photodynamic therapy and deep tissue imaging.
在生物医学光学领域,传统上光散射将组织内的成像范围限制在一毫米深度。最近开发的一类波前整形技术旨在克服这一限制,并实现对一厘米以上光的衍射极限控制。通过在光场进入散射介质之前操纵其空间分布,可以在组织深处创建一个微米级的焦点。为了成功运行,这些波前整形技术通常需要来自生物样本内部的反馈。本综述总结了最近开发的为组织内聚焦提供反馈的“引导星”机制。引导星辅助聚焦的潜在应用包括对神经元的光遗传学控制、靶向光动力疗法和深部组织成像。