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Image fusion of CT and MRI for the visualization of the auditory and vestibular system.

机译:CT和MRI的图像融合,用于听觉和前庭系统的可视化。

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The aim of this study was to perform a realistic visualization of the auditory and vestibular system using volume data sets from high-resolution computed tomography (HR-CT) and high-resolution magnetic resonance imaging (HR-MRI). - In 10 patients with conductive and/or sensorineural hearing loss, vertigo and tinnitus, HR-CT and HR-MRI of the petrous bone were performed consecutively. CT was performed with a 16-slice computed tomography scanner using a high spatial resolution. MRI was performed with a 3.0 Tesla scanner using a three-dimensional-constructive interference in steady state (3D-CISS) gradient-echo, and T2-weighted, unenhanced and gadolinium (GD)-enhanced T1-weighted turbo spin-echo sequences. The middle ear structures were interactively segmented and visualized with a color-coded shaded-surface rendering method using the HR-CT volume data sets. The inner ear structures were interactively segmented and visualized with a color-coded shaded-surface rendering method using the high-resolution 3D-CISS MRI volume data sets. Finally, both shaded-surface rendered models were superimposed semi-automatically using a commercial available software program to visualize the auditory and vestibular system. - The representation of the middle and inner ear structures with image fusion of HR-CT and HR-MRI takes advantage of both the high bony contrast of HR-CT and the high soft tissue contrast discrimination and sensitivity to fluids of HR-MRI, as well as the high spatial resolution of both modalities. In comparison to the fused axial CT/MRI, the images of 3D CT/MRI fusion facilitates a clear representation and better spatial orientation. - The middle and inner ear consists of bony structures, soft tissue structures and fluid-filled spaces. For this reason, the image fusion of volume data sets from HR-CT and HR-MRI allowed an optimized and realistic visualization of the auditory and vestibular system.
机译:这项研究的目的是使用高分辨率计算机断层扫描(HR-CT)和高分辨率磁共振成像(HR-MRI)的体积数据集对听觉和前庭系统进行逼真的可视化。 -在10例传导性和/或感觉神经性听力丧失,眩晕和耳鸣患者中,连续进行了小骨的HR-CT和HR-MRI。 CT使用16层计算机断层扫描仪以高空间分辨率进行。 MRI是在3.0 Tesla扫描仪上进行的,其中使用了稳态的三维构造干涉(3D-CISS)梯度回波,以及T2加权,未增强和g(GD)增强的T1加权涡轮自旋回波序列。使用HR-CT体积数据集,以彩色编码的阴影表面渲染方法对中耳结构进行交互式分段和可视化。使用高分辨率的3D-CISS MRI体数据集,使用彩色编码的阴影表面渲染方法对内耳结构进行交互式分段和可视化。最后,使用商业上可用的软件程序将两个阴影表面渲染的模型半自动叠加,以可视化听觉和前庭系统。 -通过HR-CT和HR-MRI的图像融合来表示中耳和内耳结构,这既利用了HR-CT的高骨对比度,又具有对HR-MRI液的高软组织对比度辨别力和敏感性以及两种模式的高空间分辨率。与融合轴向CT / MRI相比,3D CT / MRI融合的图像有助于清晰表示和更好的空间方向。 -中耳和内耳由骨结构,软组织结构和充满液体的空间组成。因此,来自HR-CT和HR-MRI的体数据集的图像融合实现了听觉和前庭系统的优化和逼真的可视化。

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