Piccinini Filippo, Tesei Anna, Arienti Chiara, Bevilacqua Alessandro
Advanced Research Center on Electronic Systems (ARCES) for Information and Communication Technologies "E. De Castro", University of Bologna, Italy.
Istituto Scientifico Romagnolo per lo Studio e la Cura dei Tumori (IRST) s.r.l., IRCCS, Biosciences Laboratory, Meldola, FC, Italy.
Comput Methods Programs Biomed. 2015 Feb;118(2):95-106. doi: 10.1016/j.cmpb.2014.12.003. Epub 2014 Dec 23.
Volume is one of the most important features for the characterization of a tumour on a macroscopic scale. It is often used to assess the effectiveness of care treatments, thus making its correct evaluation a crucial issue for patient care. Similarly, volume is a key feature on a microscopic scale. Multicellular cancer spheroids are 3D tumour models widely employed in pre-clinical studies to test the effects of drugs and radiotherapy treatments. Very few methods have been proposed to estimate the tumour volume arising from a 2D projection of multicellular spheroids, and even fewer have been designed to provide a 3D reconstruction of the tumour shape. In this work, we propose Reconstruction and Visualization from a Single Projection (ReViSP), an automatic method conceived to reconstruct the 3D surface and estimate the volume of single cancer multicellular spheroids, or even of spheroid cultures. As the input parameter ReViSP requires only one 2D projection, which could be a widefield microscope image. We assessed the effectiveness of our method by comparing it with other approaches. To this purpose, we used a new strategy that allowed us to achieve accurate volume measurements based on the analysis of home-made 3D objects, built by mimicking the spheroid morphology. The results confirmed the effectiveness of our method for both 3D reconstruction and volume assessment. ReViSP software is distributed as an open source tool.
体积是在宏观尺度上表征肿瘤的最重要特征之一。它常被用于评估治疗效果,因此其准确评估对于患者护理而言是一个关键问题。同样,体积在微观尺度上也是一个关键特征。多细胞癌球体是广泛应用于临床前研究以测试药物和放射治疗效果的三维肿瘤模型。目前提出的用于从多细胞球体的二维投影估计肿瘤体积的方法非常少,而设计用于提供肿瘤形状三维重建的方法更少。在这项工作中,我们提出了单投影重建与可视化(ReViSP)方法,这是一种自动方法,旨在重建单个癌多细胞球体甚至球体培养物的三维表面并估计其体积。作为输入参数,ReViSP仅需要一个二维投影,它可以是宽场显微镜图像。我们通过将我们的方法与其他方法进行比较来评估其有效性。为此,我们使用了一种新策略,该策略使我们能够基于对通过模仿球体形态构建的自制三维物体的分析来实现精确的体积测量。结果证实了我们的方法在三维重建和体积评估方面的有效性。ReViSP软件作为开源工具分发。