Two-Photon Lensless Endoscopes with Multicore Fibers

Fatima El Moussawi, Matthias Hofer, Siddharth Sivankutty, Andrea Bertoncini, D. Labat, A. Cassez, G. Bouwmans, Rosa Cossart, O. Vanvincq, C. Liberale, Hervé Rigneault, E. Andresen
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Abstract

The lensless endoscope represents the ultimate limit in miniaturization of imaging tools: an image can be transmitted by numerical or physical inversion of the mode scrambling process through a bare optical fiber. Lensless endoscopes featuring multicore fibers and spatial light modulators are well adapted for nonlinear imaging as they minimally distort ultrashort pulses in the time domain as opposed to multimode fibers [1]. And in earlier works, we had addressed the issues of imaging artifacts and bending sensitivity with an helically twisted multicore fiber with a sparse and aperiodic core layout in the transverse plane [2]. However sufficiently irradiating the sample plane remained a major challenge - particularly for the imaging of dim and challenging samples such as neurons in scattering media.
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多芯光纤双光子无透镜内窥镜
无透镜内窥镜代表了成像工具小型化的极限:图像可以通过裸光纤通过模式置乱过程的数值或物理反演来传输。采用多芯光纤和空间光调制器的无透镜内窥镜非常适合非线性成像,因为与多模光纤相比,它们在时域上的超短脉冲畸变最小[1]。在早期的工作中,我们已经解决了成像伪影和弯曲灵敏度的问题,采用螺旋扭曲的多芯光纤,在横向平面上具有稀疏和非周期的芯布局[2]。然而,充分照射样品平面仍然是一个主要的挑战-特别是对于昏暗和具有挑战性的样品的成像,如散射介质中的神经元。
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