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The performance of steady-state harmonic magnetic resonance elastography when applied to viscoelastic materials

机译:稳态谐波磁共振弹性成像技术在粘弹性材料上的应用

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摘要

>Purpose: The clinical efficacy of breast elastography may be limited when the authors employ the assumption that soft tissues exhibit linear, frequency-independent isotropic mechanical properties during the recovery of shear modulus. Thus, the purpose of this research was to evaluate the degradation in performance incurred when linear-elastic MR reconstruction methods are applied to phantoms that are fabricated using viscoelastic materials.>Methods: To develop phantoms with frequency-dependent mechanical properties, the authors measured the complex modulus of two groups of cylindrical-shaped gelatin samples over a wide frequency range (up to 1 kHz) with the established principles of time-temperature superposition (TTS). In one group of samples, the authors added varying amounts of agar (1%–4%); in the other group, the authors added varying amounts of sucrose (2.5%–20%). To study how viscosity affected the performance of the linear-elastic reconstruction method, the authors constructed an elastically heterogeneous MR phantom to simulate the case where small viscoelastic lesions were surrounded by relatively nonviscous breast tissue. The breast phantom contained four linear, viscoelastic spherical inclusions (10 mm diameter) that were embedded in normal gelatin. The authors imaged the breast phantom with a clinical prototype of a MRE system and recovered the shear-modulus distribution using the overlapping-subzone-linear-elastic image-reconstruction method. The authors compared the recovered shear modulus to that measured using the TTS method.>Results: The authors demonstrated that viscoelastic phantoms could be fabricated by including sucrose in the gelation process and that small viscoelastic inclusions were visible in MR elastograms recovered using a linear-elastic MR reconstruction process; however, artifacts that degraded contrast and spatial resolution were more prominent in highly viscoelastic inclusions. The authors also established that the accuracy of the MR elastograms depended on the degree of viscosity that the inclusion exhibited.>Conclusions: The results demonstrated that reconstructing shear modulus from other constitutive laws, such as viscosity, should improve both the accuracy and quality of MR elastograms of the breast.
机译:>目的:当作者采用这样的假设:在剪切模量恢复过程中,软组织表现出线性且与频率无关的各向同性机械特性时,乳房弹性成像的临床疗效可能会受到限制。因此,本研究的目的是评估将线性弹性MR重建方法应用于使用粘弹性材料制造的体模时性能的下降。>方法:使用频率依赖的机械方法开发体模作者利用既定的时温叠加原理(TTS)测量了两组圆柱状明胶样品在很宽的频率范围(最高1 kHz)下的复数模量。在一组样品中,作者添加了不同量的琼脂(1%–4%);其他样品则添加了不同量的琼脂。在另一组中,作者添加了不同量的蔗糖(2.5%–20%)。为了研究粘度如何影响线性弹性重建方法的性能,作者构建了弹性异质MR体模,以模拟小的粘弹性病变被相对较不粘稠的乳腺组织包围的情况。乳房幻影包含四个线性的粘弹性球形夹杂物(直径10毫米),嵌入正常明胶中。作者使用MRE系统的临床原型对乳房模型进行成像,并使用重叠分区线性弹性图像重建方法恢复了剪切模量分布。作者将恢复的剪切模量与使用TTS方法测得的剪切模量进行了比较。>结果:作者证明,通过在胶凝过程中加入蔗糖可以制成粘弹性体模,并且在MR弹性图中可以看到小的粘弹性包裹体。使用线弹性MR重建过程进行恢复;然而,在高粘弹性夹杂物中,降低对比度和空间分辨率的伪像更为突出。作者还建立了MR弹性图的准确性取决于夹杂物表现出的粘度程度。乳房MR弹性图的准确性和质量。

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