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基于低阶自适应光学的梯度折射率物镜像差校正的多光子荧光显微镜。

Multiphoton fluorescence microscopy with GRIN objective aberration correction by low order adaptive optics.

机构信息

Istituto Nazionale di Astrofisica, Osservatorio Astronomico di Padova, Padova, Italy.

出版信息

PLoS One. 2011;6(7):e22321. doi: 10.1371/journal.pone.0022321. Epub 2011 Jul 21.

Abstract

Graded Index (GRIN) rod microlenses are increasingly employed in the assembly of optical probes for microendoscopy applications. Confocal, two-photon and optical coherence tomography (OCT) based on GRIN optical probes permit in-vivo imaging with penetration depths into tissue up to the centimeter range. However, insertion of the probe can be complicated by the need of several alignment and focusing mechanisms along the optical path. Furthermore, resolution values are generally not limited by diffraction, but rather by optical aberrations within the endoscope probe and feeding optics. Here we describe a multiphoton confocal fluorescence imaging system equipped with a compact objective that incorporates a GRIN probe and requires no adjustment mechanisms. We minimized the effects of aberrations with optical compensation provided by a low-order electrostatic membrane mirror (EMM) inserted in the optical path of the confocal architecture, resulting in greatly enhanced image quality.

摘要

梯度折射率 (GRIN) 棒微透镜越来越多地应用于微内窥镜应用的光学探头组件中。基于 GRIN 光学探头的共焦、双光子和光学相干断层扫描 (OCT) 允许在体内成像,穿透深度可达厘米范围。然而,由于需要在光路中设置多个对准和聚焦机制,探头的插入可能会变得复杂。此外,分辨率值通常不受衍射限制,而是受内窥镜探头和馈送光学器件内的光学像差限制。在这里,我们描述了一种配备紧凑物镜的多光子共焦荧光成像系统,该物镜包含一个 GRIN 探头,不需要调整机制。我们通过在共焦结构的光路中插入低阶静电膜镜 (EMM) 来提供光学补偿,最大限度地减少了像差的影响,从而大大提高了图像质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4318/3141032/ec06509752ad/pone.0022321.g001.jpg

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