交互式基于web的三维查看器多维显微镜成像模式

Yubraj Gupta, R. E. D. Guerrero, C. Costa, Rui Jesus, Eduardo Pinho, Luís Bastião
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引用次数: 0

摘要

最近在高通量技术的数字成像模式获取方面取得的进展,如共聚焦激光扫描显微镜(CLSM)和聚焦离子束扫描电子显微镜(FIB-SEM),为研究人员提供了前所未有的机会来收集大量的多维数据集。这些数据可用于可视化微小颗粒(主要是细胞和生物体)的内部结构或开发分析算法。将新获得的多维显微镜成像数据可视化超出了传统3D可视化软件包的能力,因为它以附加维度的形式携带了大量信息。通常,这些额外的维度对应于空间、时间和通道,这推动了新的可视化应用程序的开发。在这篇文章中,我们描述了一个交互式的基于web的多维三维可视化工具的设计和实现,用于CLSM和FIB-SEM显微镜成像模式。提出的3D可视化应用程序接受DICOM文件作为输入,并提供从3D体/表面渲染到多平面重建方法的各种可视化选择。通过上传和呈现不同形态的显微镜图像来测试溶液的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interactive Web-based 3D Viewer for Multidimensional Microscope Imaging Modalities
Recent advancements in the acquisition of digital imaging modalities with high-throughput technologies, such as confocal laser scanner microscopy (CLSM) and focused-ion beam scanning electron microscopy (FIB-SEM), are providing researchers with unprecedented opportunities to collect massive amounts of multidimensional datasets. This data can be used to visualize the internal structure of tiny particles (mostly cells and organisms) or to develop analytic algorithms. Visualizing newly obtained multidimensional microscope imaging data is beyond the capabilities of traditional 3D visualization packages, as it carries much information in the form of additional dimensions. Typically, these extra dimensions correspond to space, time, and channels, which has driven the development of new visualization applications. In this article, we describe the design and implementation of an interactive web-based multidimensional 3D visualization tool for CLSM and FIB-SEM microscope imaging modalities. The proposed 3D visualization application accepts DICOM files as input and provides a variety of visualization choices ranging from 3D volume/surface rendering to multiplanar reconstruction approaches. The solution performance was tested by uploading and rendering microscopy images of distinct modalities.
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