Murali S, Lee K S, Rolland J P
Opt Express. 2007 Nov 26;15(24):15854-62. doi: 10.1364/oe.15.015854.
A primary limitation of optical coherence microscopy is the lack of sufficient lateral resolution over a usable imaging volume for diagnostic applications, even with high-numerical aperture imaging optics. In this paper, we first motivate the benefit of refocusing at multiple depths in a highly scattering biological sample using optical coherence microscopy, which experimentally shows invariant 2.5 mum axial and 6.5 mum lateral resolution throughout the sample. We then present the optical system design of a hand-held probe with the advanced capability to dynamically focus with no moving parts to a depth of 2 mm in skin-equivalent tissue at 3 mum resolution throughout an 8 cubic millimeter imaging volume. The built-in dynamic focusing ability is investigated with an addressable liquid crystal lens embedded in a custom-designed optics optimized for a Ti:Sa pulsed broadband laser source of bandwidth 100nm centered at 800nm. The design was developed not only to account for refocusing into the tissue but also to minimize and compensate for the varying on-axis and off-axis optical aberrations that would be introduced throughout a 2 mm thick and 2 mm wide skin imaging volume. The MTF contrast functions and distortion plots at three different skin depths are presented.
光学相干显微镜的一个主要局限性在于,即使使用高数值孔径成像光学器件,在用于诊断应用的可用成像体积上也缺乏足够的横向分辨率。在本文中,我们首先阐述了使用光学相干显微镜在高散射生物样品的多个深度进行重新聚焦的好处,实验表明在整个样品中轴向分辨率为2.5微米、横向分辨率为6.5微米保持不变。然后,我们展示了一种手持探头的光学系统设计,该探头具有先进的动态聚焦能力,无需移动部件,在8立方毫米的成像体积内,能以3微米的分辨率在等效皮肤组织中动态聚焦到2毫米的深度。通过将一个可寻址液晶透镜嵌入为中心波长800纳米、带宽100纳米的钛宝石脉冲宽带激光源优化的定制光学器件中,对内置的动态聚焦能力进行了研究。该设计不仅考虑了对组织进行重新聚焦,还尽量减少并补偿了在2毫米厚、2毫米宽的皮肤成像体积中会引入的变化的轴上和离轴光学像差。给出了三个不同皮肤深度处的调制传递函数对比度函数和畸变图。