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Experimental evaluation of noise generated by grating lobes for a sparse 3D ultrasound computer tomography system

机译:稀疏3D超声电脑断层扫描系统光栅裂片产生的噪声实验评价

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3D ultrasound computer tomography (USCT) requires a large number of transducers approx. two orders of magnitude larger than in a 2D system. Technical feasibility limits the number of transducer positions to a much smaller number resulting in a sparse aperture and causing artifacts due to grating lobe effects in the images. Usually, grating lobes are suppressed by using a non-sparse geometry. Thus, there is no quantitative estimation method available how much the image contrast is degraded when a sparse aperture is applied and how much the contrast is improved when adding more transducers, changing the overall aperture or the object. In this paper the effect of the grating lobes on the image quality was analyzed for a spherical, a hemispherical and the semi-ellipsoidal USCT aperture: The background noise due to grating lobes is very similar for the three apertures and mainly influenced by the sparseness and the imaged object. A model for noise reduction was fitted to simulated and experimental data, and can be used to predict the peak-signal-to-noise-ratio for a given object and number of aperture positions.
机译:3D超声波计算机断层扫描(USCT)需要大量换能器。两个数量级大于2D系统。技术可行性将换能器位置的数量限制在较小的数字中,导致稀疏孔径并导致由于图像中的光栅凸瓣效应而导致伪影。通常,通过使用非稀疏几何形状来抑制光栅裂片。因此,没有定量估计方法可用图像对比度在施加稀疏孔时劣化的图像对比度以及在添加更多换能器时改善了对比度,改变整体孔或物体。在本文中,分析了光栅裂片对图像质量的影响,用于球形,半球形和半椭圆形USCT孔径:光栅引起的背景噪声对于三个孔非常相似,主要受到稀疏性的影响和影响成像对象。用于模拟和实验数据的降噪模型,可用于预测给定对象和孔径数的峰值信噪比。

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