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Creation of 4D Imaging Data using Open Source Image Registration Software

机译:使用开源图像注册软件创建4D成像数据

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4D images (3 spatial dimensions plus time) using CT or MRI will play a key role in radiation medicine as techniques for respiratory motion compensation become more widely available. Advance knowledge of the motion of a tumor and its surrounding anatomy will allow the creation of highly conformal dose distributions in organs such as the lung, liver, and pancreas. However, many of the current investigations into 4D imaging rely on synchronizing the image acquisition with an external respiratory signal such as skin motion, tidal flow, or lung volume, which typically requires specialized hardware and modifications to the scanner. We propose a novel method for 4D image acquisition that does not require any specific gating equipment and is based solely on open source image registration algorithms. Specifically, we use the Insight Toolkit (ITK) to compute the normalized mutual information (NMI) between images taken at different times and use that value as an index of respiratory phase. This method has the advantages of (1) being able to be implemented without any hardware modification to the scanner, and (2) basing the respiratory phase on changes in internal anatomy rather than external signal. We have demonstrated the capabilities of this method with CT fluoroscopy data acquired from a swine model.
机译:使用CT或MRI的4D图像(3个空间尺寸加时间)将在放射性药中发挥关键作用,因为呼吸运动补偿的技术变得更广泛。提前了解肿瘤的运动及其周围解剖学将允许在肺,肝和胰腺等器官中产生高度保形剂量分布。然而,许多当前研究进入4D成像依赖于将图像采集与外部呼吸信号(如皮肤运动,潮汐流或肺量)同步,这通常需要专门的硬件和对扫描仪的修改。我们提出了一种用于4D图像采集的新方法,其不需要任何特定的门控设备,并且仅基于开源图像配准算法。具体而言,我们使用Insight Toolkit(ITK)计算在不同时间拍摄的图像之间的标准化互信息(NMI),并使用该值作为呼吸阶段的索引。该方法具有(1)能够实现的优点,而没有对扫描仪的任何硬件修改,并且(2)基于内部解剖结构的变化而不是外部信号的呼吸相位。我们已经证明了该方法的能力与从猪模型获取的CT透视数据。

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