Efficient, gigapixel-scale, aberration-free whole slide scanner using angular ptychographic imaging with closed-form solution.

IF 2.9 2区 医学 Q2 BIOCHEMICAL RESEARCH METHODS Biomedical optics express Pub Date : 2024-09-06 eCollection Date: 2024-10-01 DOI:10.1364/BOE.538148
Shi Zhao, Haowen Zhou, Siyu Steven Lin, Ruizhi Cao, Changhuei Yang
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Abstract

Whole slide imaging provides a wide field-of-view (FOV) across cross-sections of biopsy or surgery samples, significantly facilitating pathological analysis and clinical diagnosis. Such high-quality images that enable detailed visualization of cellular and tissue structures are essential for effective patient care and treatment planning. To obtain such high-quality images for pathology applications, there is a need for scanners with high spatial bandwidth products, free from aberrations, and without the requirement for z-scanning. Here we report a whole slide imaging system based on angular ptychographic imaging with a closed-form solution (WSI-APIC), which offers efficient, tens-of-gigapixels, large-FOV, aberration-free imaging. WSI-APIC utilizes oblique incoherent illumination for initial high-level segmentation, thereby bypassing unnecessary scanning of the background regions and enhancing image acquisition efficiency. A GPU-accelerated APIC algorithm analytically reconstructs phase images with effective digital aberration corrections and improved optical resolutions. Moreover, an auto-stitching technique based on scale-invariant feature transform ensures the seamless concatenation of whole slide phase images. In our experiment, WSI-APIC achieved an optical resolution of 772 nm using a 10×/0.25 NA objective lens and captures 80-gigapixel aberration-free phase images for a standard 76.2 mm × 25.4 mm microscopic slide.

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利用角度层析成像的高效、千兆像素级、无像差全玻片扫描仪,并提供闭式解决方案。
全切片成像为活检或手术样本的横截面提供了宽视场(FOV),极大地促进了病理分析和临床诊断。这种能详细显示细胞和组织结构的高质量图像对于有效的病人护理和治疗计划至关重要。要在病理学应用中获得如此高质量的图像,就需要具有高空间带宽产品、无畸变且无需 Z 扫描的扫描仪。在此,我们报告了一种基于角平片成像的全玻片成像系统(WSI-APIC),该系统采用封闭式解决方案,可提供高效、数十万像素、大视场、无像差的成像。WSI-APIC 利用斜向非相干照明进行初始高级分割,从而绕过了对背景区域的不必要扫描,提高了图像采集效率。由 GPU 加速的 APIC 算法通过有效的数字像差校正和改进的光学分辨率分析重建相位图像。此外,基于尺度不变特征变换的自动缝合技术确保了整张玻片相位图像的无缝连接。在我们的实验中,WSI-APIC 使用 10×/0.25 NA 物镜实现了 772 nm 的光学分辨率,并为 76.2 mm × 25.4 mm 的标准显微载玻片捕获了 80 千兆像素的无像差相位图像。
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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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