论文标题
时期的光声指导的超声编码光学焦点
Time-reversed photoacoustic guided time-reversed ultrasonically encoded optical focusing
论文作者
论文摘要
深组织光学成像是散射限制的长期挑战。光学成像和处理都可以受益于在一个传输均值自由路径之外的深层组织中的聚焦中受益。基于时间转换的超声编码(真)光聚焦的波前塑形利用了超声焦点,该焦点比生物组织中的光散射得多,作为“导向星”。但是,传统的TRUE受到超声焦点区域和压力标记效率的限制,尤其是在声学异质介质中。即使是改进的迭代true版本也可以很大程度上消耗,这限制了真实的应用。为了解决这个问题,我们提出了一种称为时间转移的光声波引导的超声编码(TRPA-True)光学焦点的方法,该方法是通过将超声焦点整合为通过时间逆转的PA信号引导的,以及超声的超声模式与差异光的超声模式与光学相位相结合(OPC)的播种(OPC)散射为散射的动态,从而使动态散射到动态上。仿真结果表明,与常规TRUE相比,所提出方法的聚焦精度已得到显着提高,这更适合于严重的声学变形,例如经颅光聚焦。
Deep-tissue optical imaging is a longstanding challenge limited by scattering. Both optical imaging and treatment can benefit from focusing light in deep tissue beyond one transport mean free path. Wavefront shaping based on time-reversed ultrasonically encoded (TRUE) optical focusing utilizes ultrasound focus, which is much less scattered than light in biological tissues as the 'guide star'. However, the traditional TRUE is limited by the ultrasound focusing area and pressure tagging efficiency, especially in acoustically heterogeneous medium. Even the improved version of iterative TRUE comes at a large time consumption, which limits the application of TRUE. To address this problem, we proposed a method called time-reversed photoacoustic wave guided time-reversed ultrasonically encoded (TRPA-TRUE) optical focusing by integrating ultrasonic focus guided by time-reversing PA signals, and the ultrasound modulation of diffused coherent light with optical phase conjugation (OPC), achieving dynamic focusing of light into scattering medium. Simulation results show that the focusing accuracy of the proposed method has been significantly improved compared with conventional TRUE, which is more suitable for practical applications that suffers severe acoustic distortion, e.g. transcranial optical focusing.