首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >3D ultrasound computer tomography: Hardware setup, reconstruction methods and first clinical results
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3D ultrasound computer tomography: Hardware setup, reconstruction methods and first clinical results

机译:3D超声计算机断层扫描:硬件设置,重建方法和初步临床结果

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A promising candidate for improved imaging of breast cancer is ultrasound computer tomography (USCT). Current experimental USCT systems are still focused in elevation dimension resulting in a large slice thickness, limited depth of field, loss of out-of-plane reflections, and a large number of movement steps to acquire a stack of images. 3D USCT emitting and receiving spherical wave fronts overcomes these limitations. We built an optimized 3D USCT, realizing for the first time the full benefits of a 3D system. The point spread function could be shown to be nearly isotropic in 3D, to have very low spatial variability and fit the predicted values. The contrast of the phantom images is very satisfactory in spite of imaging with a sparse aperture. The resolution and imaged details of the reflectivity reconstruction are comparable to a 3 T MR1 volume. Important for the obtained resolution are the simultaneously obtained results of the transmission tomography. The KIT 3D USCT was then tested in a pilot study on ten patients. The primary goals of the pilot study were to test the USCT device, the data acquisition protocols, the image reconstruction methods and the image fusion techniques in a clinical environment. The study was conducted successfully; the data acquisition could be carried out for all patients with an average imaging time of six minutes per breast. The reconstructions provide promising images. Overlaid volumes of the modalities show qualitative and quantitative information at a glance. This paper gives a summary of the involved techniques, methods, and first results.
机译:超声计算机断层扫描(USCT)是改善乳腺癌成像的有希望的候选者。当前的实验性USCT系统仍将重点放在高程尺寸上,从而导致较大的切片厚度,有限的景深,平面外反射损失以及获取图像堆栈的大量移动步骤。 3D USCT发射和接收球面波阵面克服了这些限制。我们构建了优化的3D USCT,首次实现了3D系统的全部优势。点扩散函数可以显示为在3D中几乎各向同性,具有非常低的空间变异性并适合预测值。尽管以稀疏光圈成像,但幻像图像的对比度还是非常令人满意的。反射率重建的分辨率和成像细节可媲美3 T MR1体积。对于获得的分辨率而言,重要的是同时获得透射层析成像的结果。然后在一项针对10名患者的初步研究中对KIT 3D USCT进行了测试。初步研究的主要目标是在临床环境中测试USCT设备,数据采集协议,图像重建方法和图像融合技术。研究成功进行;可以对所有患者进行数据采集,每个乳房的平均成像时间为6分钟。重建提供有希望的图像。模式的叠加量一目了然地显示了定性和定量信息。本文对所涉及的技术,方法和初步结果进行了总结。

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