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Multiresolution imaging in elastography

机译:弹性成像中的多分辨率成像

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摘要

The range of strains that can be imaged by any practical elastographic imaging system is inherently limited, and a performance measure is valuable to evaluate these systems from the signal and noise properties of their output images. Such a measure was previously formulated for systems employing cross-correlation based time-delay estimators through the strain filter. While the strain filter predicts the signal-to-noise ratio (SNR/sub e/) for each tissue strain in the elastogram and provides valuable insights into the nature of image noise, it understated the effects of image resolution (axial resolution, as determined by the cross-correlation window length) on the noise. In this work, the strain filter is modified to study the strain noise at multiple resolutions. The effects of finite window length on signal decorrelation and on the variance of the strain estimator are investigated. Long-duration windows are preferred for improved sensitivity, dynamic range, and SNR/sub e/. However, in this limit the elastogram is degraded due to poor resolution. The results indicate that for nonzero strain, a window length exists at which the variance of strain estimator attains its minima, and consequently the elastographic sensitivity, dynamic range and SNR/sub e/ are strongly affected by the selected window length. Simulation results corroborate the theoretical results, illustrating the presence of a window length where the strain estimation variance is minimized for a given strain value. Multiresolution elastography, where the strain estimate with the highest SNR/sub e/ obtained by processing the pre- and post-compression waveforms at different window lengths is used to generate a composite elastogram and is proposed to improve elastograms. All the objective elastogram parameters (namely: SNR/sub e/, dynamic range, sensitivity and the average elastographic resolution-defined as the cross-correlation window length) are improved with multiresolution elastography when compared to the traditional method of utilizing a single window length to generate the elastogram. Experimental results using a phantom with a hard inclusion illustrates the improvement in elastogram obtained using multiresolution analysis.
机译:可以由任何实际的弹性成像系统成像的应变范围固有地受到限制,并且性能度量对于根据其输出图像的信号和噪声属性评估这些系统很有价值。先前针对通过应变滤波器通过基于互相关的时延估计器的系统制定了这种措施。尽管应变滤波器可以预测弹性图中每个组织应变的信噪比(SNR / sub e /),并提供有关图像噪声本质的宝贵见解,但它却低估了图像分辨率(轴向分辨率,确定)的影响。通过互相关窗口长度)上的噪声。在这项工作中,对应变滤波器进行了修改,以研究多种分辨率下的应变噪声。研究了有限窗口长度对信号去相关和应变估计量方差的影响。最好使用长时窗,以提高灵敏度,动态范围和SNR / sub e /。但是,在此限制下,由于分辨率差,弹性图质量下降。结果表明,对于非零应变,存在一个窗口长度,应变估计值的方差达到其最小值,因此弹性成像灵敏度,动态范围和SNR / sub e /受所选窗口长度的影响很大。仿真结果证实了理论结果,说明了窗口长度的存在,其中对于给定的应变值,应变估计方差最小。多分辨率弹性成像技术,其中通过处理不同窗口长度的压缩前和压缩后波形获得的具有最高SNR / sub e /的应变估计可用于生成合成弹性图,并提出了改进弹性图的方法。与使用单一窗口长度的传统方法相比,多分辨率弹性成像法改善了所有客观弹性成像参数(即:SNR / sub e /,动态范围,灵敏度和平均弹性成像分辨率,定义为互相关窗口长度)。生成弹性图。使用带有硬夹杂物的体模的实验结果说明了使用多分辨率分析获得的弹性图的改进。

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