Sathiyamoorthy Selladurai, Abhilash Verma, Arun K Thittai
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In a separate work, we reported the development of a compact handheld device to reduce inter- and intraoperator variability in freehand elastography. In this work, we have integrated the reference layer with a handheld controlled compression device and evaluate it for quantitative liver stiffness imaging application. The performance of this technique was assessed on ex vivo goat liver samples. The Young's modulus values obtained from indentation measurements of liver samples acted as the ground truth for comparison. The results from this work demonstrate that by combining the handheld device along with reference layer, the estimated Young's modulus value approaches the ground truth with less error compared with that obtained using freehand compression (8% vs. 15%). The results suggest that the intra- and interoperator reproducibility of the liver elasticity also improved when using the handheld device. 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引用次数: 2
摘要
众所周知,在弥漫性肝病的情况下,肝脏的弹性逐渐降低。目前,弥漫性肝病的诊断需要活检,这是一种侵入性手术。在本文中,我们评估并报告了一种非侵入性方法,可以使用准静态超声弹性成像方法来量化肝脏硬度。准静态弹性成像在临床应用中很受欢迎,因为对相对组织刚度的定性评估已经足够,然而,由于在弥漫性肝病的情况下缺乏局部刚度对比,它在肝脏成像中的潜力相对没有得到充分利用。最近,我们展示了一种在模拟和模拟实验中使用校准的参考层来产生目标组织的定量模量弹性图的方法。在另一项工作中,我们报道了一种紧凑的手持设备的开发,以减少徒手弹性成像中操作人员之间和内部的可变性。在这项工作中,我们将参考层与手持式控制压缩设备集成在一起,并评估其用于定量肝脏硬度成像的应用。在离体羊肝样品上评估了该技术的性能。从肝脏样品的压痕测量中获得的杨氏模量值作为比较的基础真理。这项工作的结果表明,通过将手持设备与参考层相结合,估计的杨氏模量值接近地面真实值,与使用徒手压缩获得的结果相比误差更小(8% vs. 15%)。结果表明,当使用手持设备时,肝脏弹性的内部和操作者之间的再现性也得到了改善。使用手持压缩设备和参考层的弹性成像是一种可靠而简单的技术,可以提供弹性的定量测量。
Toward Quantitative and Operator-independent Quasi-static Ultrasound Elastography: An Ex Vivo Feasibility Study.
It is known that the elasticity of liver reduces progressively in the case of diffuse liver disease. Currently, the diagnosis of diffuse liver disease requires a biopsy, which is an invasive procedure. In this paper, we evaluate and report a noninvasive method that can be used to quantify liver stiffness using quasi-static ultrasound elastography approach. Quasi-static elastography is popular in clinical applications where the qualitative assessment of relative tissue stiffness is enough, whereas its potential is relatively underutilized in liver imaging due to lack of local stiffness contrast in the case of diffuse liver disease. Recently, we demonstrated an approach of using a calibrated reference layer to produce quantitative modulus elastograms of the target tissue in simulations and phantom experiments. In a separate work, we reported the development of a compact handheld device to reduce inter- and intraoperator variability in freehand elastography. In this work, we have integrated the reference layer with a handheld controlled compression device and evaluate it for quantitative liver stiffness imaging application. The performance of this technique was assessed on ex vivo goat liver samples. The Young's modulus values obtained from indentation measurements of liver samples acted as the ground truth for comparison. The results from this work demonstrate that by combining the handheld device along with reference layer, the estimated Young's modulus value approaches the ground truth with less error compared with that obtained using freehand compression (8% vs. 15%). The results suggest that the intra- and interoperator reproducibility of the liver elasticity also improved when using the handheld device. Elastography with a handheld compression device and reference layer is a reliable and simple technique to provide a quantitative measure of elasticity.
期刊介绍:
Ultrasonic Imaging provides rapid publication for original and exceptional papers concerned with the development and application of ultrasonic-imaging technology. Ultrasonic Imaging publishes articles in the following areas: theoretical and experimental aspects of advanced methods and instrumentation for imaging