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Motion Correction of Intravital Microscopy of Preclinical Lung Tumour Imaging Using Multichannel Structural Image Descriptor

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Optical microscopy imaging techniques have enabled a wide spectrum of biomedical applications. Among visualization, a quantitative analysis of tumour cell growth in lungs is of great importance. The main challenges inherently linked with such data analysis are: local contrast changes related to tissue depth, lack of clear object boundaries due to the presence of noise, and cluttering with motion artefacts due to translational shift of the specimen and non-linear lung tissue collapse. This paper aims to address these problems by introducing a novel image registration framework specifically designed to correct for motion artefacts from optical microscopy of lung tumour cells imaging. For this purpose, a previously developed modality independent neighbourhood descriptor (MIND) was adapted to cope with multiple image channels for optical microscopy data. Two versions of this novel multichannel MIND (mMIND) are here presented. The proposed registration technique estimates both rigid transformations and non-linear deformations both common in the optical microscopy volumes and time-sequences acquisition. The performance of our registration technique based on a novel multichannel image representation is demonstrated using two distinctive optical imaging data sets of lung cells: 3D volumes with translation motion artefacts only, and time-sequences with both rigid and non-linear motion artefacts. Visual inspection of the registration outcomes and reported results of the qualitative evaluation show a promising improvement compared to images without correction.
机译:光学显微镜成像技术已启用广谱的生物医学应用。在可视化中,肺部肿瘤细胞生长的定量分析具有重要意义。与这种数据分析本质相关的主要挑战是:与组织深度相关的局部对比变化,由于存在噪声的存在而缺乏明显的物体边界,并且由于标本和非线性肺组织崩溃的平移偏移而与运动人工制作的杂波。本文旨在通过引入专门设计用于校正来自肺肿瘤细胞成像的光学显微镜的运动人工制品的新颖图像登记框架来解决这些问题。为此目的,先前开发的模态独立的邻域描述符(MINE)适于应对用于光学显微镜数据的多个图像信道。这里给出了这部新颖的多通道思想(MMIND)的两个版本。所提出的登记技术估计光学显微镜体积和时间序列采集中常见的刚性变换和非线性变形。使用两个独特的光学成像数据组来证明基于新型多通道图像表示的登记技术的性能:仅具有平移运动伪影的3D卷,以及具有刚性和非线性运动伪件的时间序列。对注册结果的目视检查和报告的定性评估结果表明,与没有校正的图像相比,有希望的改善。

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