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Structural-functional lung imaging using a combined CT-EIT and a Discrete Cosine Transformation reconstruction method

机译:结合CT-EIT和离散余弦变换重建方法的结构功能性肺部成像

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摘要

Lung EIT is a functional imaging method that utilizes electrical currents to reconstruct images of conductivity changes inside the thorax. This technique is radiation free and applicable at the bedside, but lacks of spatial resolution compared to morphological imaging methods such as X-ray computed tomography (CT). In this article we describe an approach for EIT image reconstruction using morphologic information obtained from other structural imaging modalities. This leads to recon- structed images of lung ventilation that can easily be superimposed with structural CT or MRI images, which facilitates image interpretation. The approach is based on a Discrete Cosine Transformation (DCT) of an image of the considered transversal thorax slice. The use of DCT enables reduction of the dimensionality of the reconstruction and ensures that only conductivity changes of the lungs are reconstructed and displayed. The DCT based approach is well suited to fuse morphological image information with functional lung imaging at low computational costs. Results on simulated data indicate that this approach preserves the morphological structures of the lungs and avoids blurring of the solution. Images from patient measurements reveal the capabilities of the method and demonstrate benefits in possible applications.
机译:肺EIT是一种功能成像方法,利用电流重建胸腔内电导率变化的图像。该技术是无辐射的,可在床头使用,但与诸如X射线计算机断层扫描(CT)等形态成像方法相比,缺乏空间分辨率。在本文中,我们描述了一种使用从其他结构成像模态获得的形态学信息进行EIT图像重建的方法。这导致了重建的肺通气图像,可以很容易地与结构CT或MRI图像叠加,从而便于图像解释。该方法基于所考虑的横向胸部切片的图像的离散余弦变换(DCT)。 DCT的使用可以减少重建的维数,并确保仅重建和显示肺的电导率变化。基于DCT的方法非常适合以较低的计算成本将形态图像信息与功能性肺部成像融合在一起。模拟数据的结果表明,这种方法保留了肺部的形态结构,并避免了溶液的模糊。来自患者测量的图像揭示了该方法的功能并证明了在可能的应用中的益处。

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