The spherical harmonic based resolution increase and decrease method for cell mesh model with the vertex and face numbers consistency

Chin-Yi Cheng, Y. Heryanto, Ryo Yamada
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引用次数: 1

Abstract

To understand the life cycle, status and mechanisms of cells, the analyses of cell shape, morphology, deformation, features on the cell membrane and movement play very important roles in those studies. With the growth of imaging, scanning, microscopy, and computational technologies, we now can obtain the image data of the cells and then reconstruct the 3D mesh models of the cells in quicker and more convenient ways. However, due to some limitations, the high-resolution cell image cannot be obtained and it will cause the low-resolution of the 3D cell mesh model after the 3D mesh model reconstruction. On the other hand, too much high resolution of the cell image will turn out to be largely time-consuming when analyzing the membrane or morphology of the cells. To study the changes of cell membrane or morphology like protrusions in the different time points, the vertex and face numbers consistency of the 3D cell mesh models will greatly help to reduce the efforts of data preprocessing. In this study, we proposed the method that applied spherical harmonic, a widely applied method to cell morphology study, to increase and decrease the resolution of cell mesh model from the low- or high-resolution cell images, and reconstruct the 3D cell mesh models with the consistence numbers of vertex and face.
基于球面谐波的顶点数与面数一致的网格模型分辨率增减方法
为了了解细胞的生命周期、状态和机制,细胞的形状、形态、变形、细胞膜特征和运动的分析在这些研究中起着非常重要的作用。随着成像、扫描、显微镜和计算技术的发展,我们现在可以更快速、更方便地获取细胞的图像数据,然后重建细胞的三维网格模型。然而,由于某些限制,无法获得高分辨率的细胞图像,这将导致三维细胞网格模型重建后的低分辨率。另一方面,过高的细胞图像分辨率会在分析细胞的膜或形态时耗费大量时间。为了研究细胞膜或突起等形态在不同时间点的变化,三维细胞网格模型的顶点数和面数的一致性将大大减少数据预处理的工作量。在本研究中,我们提出了一种应用于细胞形态学研究的球面调和方法,从低分辨率或高分辨率的细胞图像中增加或减少细胞网格模型的分辨率,并重建具有顶点和面一致性数的三维细胞网格模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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