Department of Electrical and Computer Engineering, University of Texas at Austin, 1 University Station C0803, Austin, TX 78712, USA.
Biomed Microdevices. 2010 Apr;12(2):223-33. doi: 10.1007/s10544-009-9377-6.
A handheld, forward-imaging, laser-scanning confocal microscope (LSCM) demonstrating optical sectioning comparable with microtome slice thicknesses in conventional histology, targeted towards interventional imaging, is reported. Fast raster scanning (approximately 2.5 kHz line scan rate, 3.0-5.0 frames per second) was provided by a 2-axis microelectromechanical system (MEMS) scanning mirror fabricated by a method compatible with complementary metal-oxide-semiconductor (CMOS) processing. Cost-effective rapid-prototyped packaging combined the MEMS mirror with micro-optical components into a probe with 18 mm outer diameter and 54 mm rigid length. ZEMAX optical design simulations indicate the ability of the handheld optical system to obtain lateral resolution of 0.31 and axial resolution of 2.85 microm. Lateral and axial resolutions are experimentally measured at 0.5 microm and 4.2 microm respectively, with field of view of 200 x 125 microm. Results of reflectance imaging of ex vivo swine liver, and fluorescence imaging of the expression of cytokeratin and mammaglobin tumor biomarkers in epithelial human breast tissue from metastatic breast cancer patients are presented. The results indicate that inexpensive, portable handheld optical microscopy tools based on silicon micromirror technologies could be important in interventional imaging, complementing existing coarse-resolution techniques to improve the efficacy of disease diagnosis, image-guided excisional microsurgery, and monitored photodynamic therapy.
一种手持式、前向成像、激光扫描共聚焦显微镜(LSCM)被报道,它具有与传统组织学切片厚度相当的光学切片能力,针对介入成像。快速光栅扫描(约 2.5 kHz 线扫描速率,每秒 3.0-5.0 帧)由通过与互补金属氧化物半导体(CMOS)处理兼容的方法制造的 2 轴微机电系统(MEMS)扫描镜提供。具有成本效益的快速原型封装将 MEMS 反射镜与微光学元件组合成一个具有 18 毫米外径和 54 毫米刚性长度的探头。ZEMAX 光学设计模拟表明,手持式光学系统具有获得 0.31 侧向分辨率和 2.85 微米轴向分辨率的能力。分别在 0.5 微米和 4.2 微米处实验测量了横向分辨率和轴向分辨率,视场为 200 x 125 微米。展示了对来自转移性乳腺癌患者的上皮人乳腺组织中细胞角蛋白和乳球蛋白肿瘤生物标志物表达的荧光成像以及对离体猪肝的反射成像的结果。结果表明,基于硅微镜技术的廉价、便携式手持式光学显微镜工具可能在介入成像中非常重要,可补充现有的粗分辨率技术,以提高疾病诊断、图像引导切除微创手术和监测光动力疗法的效果。