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An aspherical microlens assembly for deep brain fluorescence microendoscopy

机译:用于深脑荧光微内窥镜检查的非球面微透镜组件

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Fluorescence microendoscopy is becoming a standard technique in neuroscience for visualizing neuronal activity in the deep brain. Gradient refractive index (GRIN) lenses are increasingly used for fluorescence microendoscopy; however, they inherently suffer from strong aberrations and distortion. Aspherical lenses change their radius of curvature with distance from the optical axis and can effectively eliminate spherical aberrations. The use of these lenses has not been fully explored in deep brain fluorescence microendoscopy due to technical difficulties in manufacturing miniature aspherical lenses. In this study, we fabricated a novel microendoscope lens assembly comprised two nested pairs of aspherical microlenses made by precision glass molding. This assembly, which was 0.6 mm in diameter and 7.06 mm in length, was assembled in a stainless steel tube of 0.7 mm outer diameter. This assembly exhibited marked improvements in monochromatic and chromatic aberrations compared with a conventional GRIN lens, and is useful for deep brain fluorescence microendoscopy, as demonstrated by two-photon microendoscopic calcium imaging of R-CaMP1.07-labeled mouse hippocampal CA1 neurons. Our aspherical-lens-based approach offers a non-GRIN-lens alternative for fabrication of microendoscopic lenses. (C) 2020 Elsevier Inc. All rights reserved.
机译:荧光微观镜检查是神经科学中的标准技术,用于在深脑中可视化神经元活动。梯度折射率(GRIN)镜片越来越多地用于荧光显微镜检查;然而,他们本身存在强烈的像差和扭曲。非球面镜片随着距光轴的距离而改变它们的曲率半径,可以有效地消除球面像差。由于制造微型非球面镜片的技术困难,在深脑荧光微观镜检查中尚未完全探索这些镜片。在这项研究中,我们制造了一种新颖的微通镜镜头组件,包括通过精密玻璃模制制造的两个嵌套的非球面微透镜。该组件直径为0.6毫米,长度为7.06毫米,在外径为0.7mm的不锈钢管中组装。该组件与常规静脉透镜相比,对单色和色差的显着改善,并且对于深脑荧光微观检查是有用的,如R-Camp1.07标记的小鼠海马CA1神经元的双光子微观透镜钙成像所证明。我们基于非球面镜头的方法提供了一种非散装镜片的制造微镜片透镜。 (c)2020 Elsevier Inc.保留所有权利。

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