Diffractive hyperchromatic objective for chromatic confocal microscopy.

IF 2.9 2区 医学 Q2 BIOCHEMICAL RESEARCH METHODS
Biomedical optics express Pub Date : 2024-11-14 eCollection Date: 2024-12-01 DOI:10.1364/BOE.543322
Jiabin Chen, Shaobai Li, Wenjun Kang, Shuyuan Guan, Zhihan Hong, Rongguang Liang
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引用次数: 0

Abstract

The limited focal shift of conventional achromatic objectives constrains the maximum imaging depth of chromatic confocal microscopes. To address this, we designed a hyperchromatic confocal microscope using diffractive optical elements, which was fabricated by single-point diamond turning (SPDT). This design takes advantage of the small Abbe number of diffractive optical elements to introduce a significant longitudinal chromatic shift. The resulting chromatic confocal microscope achieved a maximum imaging depth of 750 µm and a lateral resolution of 0.78 µm across a wavelength range of 600-810 nm. The system's imaging capabilities were demonstrated by capturing detailed images of biological samples, including cucumber seed cavities, pig kidney, and human forearm skin. These results confirmed the microscope's effectiveness in visualizing key cellular structures, underscoring its potential for high-resolution biological imaging.

传统消色差物镜有限的焦距偏移限制了色差共聚焦显微镜的最大成像深度。为解决这一问题,我们设计了一种使用衍射光学元件的超色度共聚焦显微镜,该显微镜是通过单点金刚石车削(SPDT)制造的。这种设计利用了衍射光学元件阿贝数小的优势,引入了显著的纵向色移。由此产生的色度共焦显微镜在 600-810 纳米波长范围内的最大成像深度为 750 微米,横向分辨率为 0.78 微米。通过捕捉生物样本的详细图像,包括黄瓜种子腔、猪肾脏和人体前臂皮肤,展示了该系统的成像能力。这些结果证实了显微镜在观察关键细胞结构方面的有效性,突出了其在高分辨率生物成像方面的潜力。
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来源期刊
Biomedical optics express
Biomedical optics express BIOCHEMICAL RESEARCH METHODS-OPTICS
CiteScore
6.80
自引率
11.80%
发文量
633
审稿时长
1 months
期刊介绍: The journal''s scope encompasses fundamental research, technology development, biomedical studies and clinical applications. BOEx focuses on the leading edge topics in the field, including: Tissue optics and spectroscopy Novel microscopies Optical coherence tomography Diffuse and fluorescence tomography Photoacoustic and multimodal imaging Molecular imaging and therapies Nanophotonic biosensing Optical biophysics/photobiology Microfluidic optical devices Vision research.
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