Stony Brook University (SUNY), Department of Biomedical Engineering, Stony Brook, NY 11794, USA.
Opt Lett. 2012 Jun 15;37(12):2430-2. doi: 10.1364/OL.37.002430.
We present a miniature microelectromechanical systems-based dual-axis confocal microscope capable of spatially coregistered fluorescence and reflectance imaging at multiple wavelengths. This device has a 10 mm diameter scan head with a 2 mm diameter tip for convenient use during surgery to guide tumor resection. The microscope has an adjustable focal depth of 20-200 micrometers and is capable of imaging with an axial resolution of 9 micrometers and in-plane resolution of 4 micrometers over a field of view of 450×450 micrometers. Simultaneous two-color imaging of individual optical sections is achieved by using a pair of grating-prism assemblies to compensate for chromatic dispersion in the 2 mm diameter gradient index relay lens at the distal tip of the device. Experimental measurements of the axial response of the microscope, as well as two-color images of a reflective bar target and fresh mouse brain tissues, demonstrate the performance of our device and its potential for multicolor in vivo optical sectioning microscopy.
我们展示了一种基于微型机电系统的双轴共焦显微镜,它能够在多个波长下进行空间共定位的荧光和反射成像。该设备的扫描头直径为 10 毫米,探头直径为 2 毫米,便于在手术中使用,以引导肿瘤切除。该显微镜的可调焦深度为 20-200 微米,能够在 450×450 微米的视场中以 9 微米的轴向分辨率和 4 微米的面内分辨率进行成像。通过使用一对光栅-棱镜组件来补偿设备远端的 2 毫米直径梯度折射率中继透镜的色差,实现了单个光学切片的双色同时成像。对显微镜的轴向响应的实验测量,以及反射条形靶和新鲜小鼠脑组织的双色图像,证明了我们的设备的性能及其在多色活体光学切片显微镜中的潜力。