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Uniqueness of poroelastic and viscoelastic nonlinear inversion MR elastography at low frequencies

机译:低频下孔隙弹性和粘弹性非线性反演MR弹性术的唯一性

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摘要

Intrinsic actuation MR elastography (IA-MRE) exploits natural pulsations of the brain as a motion source to estimate mechanical property maps. The low frequency motion of IA-MRE introduces new considerations for inversion algorithms relative to traditional external actuation MRE. Specifically, inertial forces become very small, which leaves low frequency viscoelastic inversions with a non-unique scalar multiplier. Biphasic poroelastic inversions include additional fluid-solid interaction forces to balance the elastic forces, which avoids the non-uniqueness. Analyzing the convergence behavior from different starting values using 1 Hz simulated data, IA-MRE data from a gelatin phantom and in vivo brain IA-MRE data reveal that higher frequency (50 Hz) viscoelastic inversion reaches the correct, unique solution regardless of initial property estimate; whereas, low frequency viscoelastic inversion recovers relative values of shear modulus. In the presence of measurement noise, the non-unique scalar multiplier is determined by the softest material reaching the prescribed lower bound on shear modulus. Poroelastic inversion produces a unique solution at both 50 Hz and 1 Hz; however, hydraulic conductivity must be known or accurately estimated in order to recover quantitatively accurate shear modulus maps at low frequency.
机译:固有致动MR弹性(IA-MRE)利用大脑作为运动源来估计机械属性映射的自然脉动。 IA-MRE的低频运动引入了相对于传统的致动外部MRE反演算法新的考虑。具体地,惯性力变得非常小,这使低频粘弹性反转与非唯一的标量乘数。双相多孔弹性反转包括额外的流体 - 固体相互作用力来平衡弹力,避免了非唯一性。分析从用1个赫兹的模拟数据,IA-MRE数据从明胶幻象和体内脑IA-MRE数据表明,无论初始属性的更高的频率(50赫兹)的粘弹性反转达到正确的,独特的解决方案不同的起始值的收敛行为估计;而,低频粘弹性反转恢复剪切模量的相对值。在测量噪声的存在下,非唯一的标量乘数由柔软的材料到达所确定的规定的下限剪切模量。多孔弹性反转产生在50 Hz和1赫兹的独特解决方案;然而,渗透系数必须是已知的,或者为了在低频恢复定量准确的剪切模量图精确地估算。

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