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首页> 外文期刊>Scientific reports. >Two-photon polymerisation 3D printed freeform micro-optics for optical coherence tomography fibre probes
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Two-photon polymerisation 3D printed freeform micro-optics for optical coherence tomography fibre probes

机译:用于光学相干断层扫描纤维探针的双光子聚合3D印刷自由形状微光学

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Miniaturised optical coherence tomography (OCT) fibre-optic probes have enabled high-resolution cross-sectional imaging deep within the body. However, existing OCT fibre-optic probe fabrication methods cannot generate miniaturised freeform optics, which limits our ability to fabricate probes with both complex optical function and dimensions comparable to the optical fibre diameter. Recently, major advances in two-photon direct laser writing have enabled 3D printing of arbitrary three-dimensional micro/nanostructures with a surface roughness acceptable for optical applications. Here, we demonstrate the feasibility of 3D printing of OCT probes. We evaluate the capability of this method based on a series of characterisation experiments. We report fabrication of a micro-optic containing an off-axis paraboloidal total internal reflecting surface, its integration as part of a common-path OCT probe, and demonstrate proof-of-principle imaging of biological samples.
机译:小型化光学相干断层扫描(OCT)光纤探针使高分辨率在体内深度横截面成像。然而,现有的OCT光纤探针制造方法不能产生小型化的自由形式光学器件,这限制了我们制造具有与光纤直径相当的复杂光学功能和尺寸的探针的能力。最近,双光子直接激光书写的主要进步使得具有用于光学应用的表面粗糙度的任意三维微/纳米结构的3D打印。在这里,我们展示了OCT探针的3D打印的可行性。我们基于一系列特征实验评估该方法的能力。我们报告了制造含有脱轴抛物面总内反射表面的微光学,其作为公共途径OCT探针的一部分的整合,并证明了生物样品的原则上的原则上成像。

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