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Micromirror-scanned dual-axis confocal microscope utilizing a gradient-index relay lens for image guidance during brain surgery

机译:微镜扫描双轴共聚焦显微镜,使用梯度折射率中继透镜在脑外科手术中进行图像引导

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摘要

A fluorescence confocal microscope incorporating a 1.8-mm-diam gradient-index relay lens is developed for in vivo histological guidance during resection of brain tumors. The microscope utilizes a dual-axis confocal architecture to efficiently reject out-of-focus light for high-contrast optical sectioning. A biaxial microelectromechanical system (MEMS) scanning mirror is actuated at resonance along each axis to achieve a large field of view with low-voltage waveforms. The unstable Lissajous scan, which results from actuating the orthogonal axes of the MEMS mirror at highly disparate resonance frequencies, is optimized to fully sample 500×500 pixels at two frames per second. Optically sectioned fluorescence images of brain tissues are obtained in living mice to demonstrate the utility of this microscope for image-guided resections.
机译:荧光共焦显微镜结合了一个1.8毫米直径的梯度指数中继透镜被开发用于在脑肿瘤切除术中的体内组织学指导。该显微镜采用双轴共焦架构,可以有效地抑制散焦光,以进行高对比度的光学切片。双轴微机电系统(MEMS)扫描镜沿每个轴共振致动,以低压波形实现大视野。不稳定的Lissajous扫描是由在高度不同的共振频率下驱动MEMS反射镜的正交轴引起的,经过优化可以以每秒两帧的速度对500×500像素进行完全采样。在活体小鼠中获得脑组织的光学切片荧光图像,以证明该显微镜在图像引导切除中的实用性。

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