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磁共振声辐射力成像(MR-ARFI)用于监测各向异性组织中的高强度聚焦超声(HIFU)消融。

Magnetic Resonance Acoustic Radiation Force Imaging (MR-ARFI) for the monitoring of High Intensity Focused Ultrasound (HIFU) ablation in anisotropic tissue.

机构信息

Université de Strasbourg, CNRS, ICube, UMR 7357, Strasbourg, France.

Image Guided Therapy, Pessac, France.

出版信息

MAGMA. 2023 Oct;36(5):737-747. doi: 10.1007/s10334-023-01062-6. Epub 2023 Feb 1.

Abstract

OBJECTIVE

We introduce a non-invasive MR-Acoustic Radiation Force Imaging (ARFI)-based elastography method that provides both the local shear modulus and temperature maps for the monitoring of High Intensity Focused Ultrasound (HIFU) therapy.

MATERIALS AND METHODS

To take tissue anisotropy into account, the local shear modulus μ is determined in selected radial directions around the focal spot by fitting the phase profiles to a linear viscoelastic model, including tissue-specific mechanical relaxation time τ. MR-ARFI was evaluated on a calibrated phantom, then applied to the monitoring of HIFU in a gel phantom, ex vivo and in vivo porcine muscle tissue, in parallel with MR-thermometry.

RESULTS

As expected, the shear modulus polar maps reflected the isotropy of phantoms and the anisotropy of muscle. In the HIFU monitoring experiments, both the shear modulus polar map and the thermometry map were updated with every pair of MR-ARFI phase images acquired with opposite MR-ARFI-encoding. The shear modulus was found to decrease (phantom and ex vivo) or increase (in vivo) during heating, before remaining steady during the cooling phase. The mechanical relaxation time, estimated pre- and post-HIFU, was found to vary in muscle tissue.

DISCUSSION

MR-ARFI allowed for monitoring of viscoelasticity changes around the HIFU focal spot even in anisotropic muscle tissue.

摘要

目的

我们介绍了一种基于磁共振声辐射力成像(MR-ARFI)的无创弹性成像方法,该方法可提供局部剪切模量和温度图,用于监测高强度聚焦超声(HIFU)治疗。

材料和方法

为了考虑组织各向异性,通过将相位分布拟合到包括组织特异性力学松弛时间 τ 在内的线性粘弹性模型,在聚焦点周围的选定径向方向上确定局部剪切模量 μ。在校准的水模体上对 MR-ARFI 进行了评估,然后将其应用于凝胶模体、离体和活体猪肌肉组织中的 HIFU 监测,同时进行 MR 测温。

结果

正如预期的那样,剪切模量极图反映了水模体的各向同性和肌肉的各向异性。在 HIFU 监测实验中,随着每对获得的具有相反 MR-ARFI 编码的 MR-ARFI 相位图像的获取,剪切模量极图和测温图都得到了更新。在加热过程中,剪切模量降低(水模体和离体)或升高(活体),然后在冷却阶段保持稳定。在肌肉组织中,发现机械松弛时间在 HIFU 前后有所变化。

讨论

MR-ARFI 允许在高强度聚焦超声焦点周围监测粘弹性变化,即使在各向异性的肌肉组织中也是如此。

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