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Fiber-optic nonlinear endomicroscopy with focus scanning by using shape memory alloy actuation

机译:形状记忆合金驱动的聚焦扫描光纤非线性内窥镜

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摘要

A miniature fiber optic endomicroscope with built-in dynamic focus scanning capability is developed for the first time for 3-D two-photon fluorescence (TPF) imaging of biological samples. Fast 2-D lateral beam scanning is realized by resonantly vibrating a double-clad fiber cantilever with a tubular piezoactuator. Slow axial scanning is achieved by moving the distal end of the imaging probe with an extremely compact electrically driven shape memory alloy (SMA). The 10-mm-long SMA allows 150-μm contractions with a driving voltage varying only from 50 to 100 mV. The response of the SMA contraction with the applied voltage is nonlinear, but repeatable and can be accurately calibrated. Depth-resolved imaging of acriflavine-stained biological tissues and unstained white paper with the endomicroscope is performed, and the results demonstrate the feasibility of 3-D nonlinear optical imaging with the SMA-based scanning fiber-optic endomicroscope.
机译:首次开发了具有内置动态焦点扫描功能的微型光纤内窥镜,用于生物样品的3-D两光子荧光(TPF)成像。快速的二维横向束扫描是通过使用管状压电致动器共振振动双包层光纤悬臂来实现的。通过使用非常紧凑的电动形状记忆合金(SMA)移动成像探头的远端,可以实现缓慢的轴向扫描。 10毫米长的SMA允许150μm的收缩,而驱动电压仅在50至100 mV之间变化。 SMA收缩与施加电压的响应是非线性的,但可重复且可以精确校准。用内窥镜对a黄素染色的生物组织和未染色的白皮书进行深度分辨成像,结果证明了基于SMA的扫描光纤内窥镜对3D非线性光学成像的可行性。

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