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首页> 外文期刊>Journal of biomechanical engineering. >Measurement of the dynamic shear modulus of mouse brain tissue in vivo by magnetic resonance elastography
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Measurement of the dynamic shear modulus of mouse brain tissue in vivo by magnetic resonance elastography

机译:磁共振弹性成像法测量小鼠体内脑组织的动态剪切模量

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In this study, the magnetic resonance (MR) elastography technique was used to estimate the dynamic shear modulus of mouse brain tissue in vivo. The technique allows visualization and measurement of mechanical shear waves excited by lateral vibration of the skull. Quantitative measurements of displacement in three dimensions during. vibration at 1200 Hz were obtained by applying oscillatory magnetic field gradients at the same frequency during a MR imaging sequence. Contrast in the resulting phase images of the mouse brain is proportional to displacement. To obtain estimates of shear modulus, measured displacement fields were fitted to the shear wave equation. Validation of the, procedure was performed on gel characterized by independent rheometry tests and on data from finite element simulations. Brain tissue is, in reality, viscoelastic and nonlinear. The current estimates of dynamic shear modulus are strictly relevant only to small oscillations at a specific frequency; but these estimates may be obtained at high frequencies (and thus high deformation rates), noninvasively throughout the brain. These data complement measurements of nonlinear viscoelastic properties obtained by others at slower rates, either ex vivo or invasively.
机译:在这项研究中,磁共振(MR)弹性成像技术被用来估计体内小鼠脑组织的动态剪切模量。该技术允许可视化和测量由头骨的横向振动激发的机械剪切波。在此过程中三维位移的定量测量。通过在MR成像序列中以相同的频率施加振荡磁场梯度来获得1200 Hz的振动。鼠标大脑所产生的相位图像中的对比度与位移成正比。为了获得剪切模量的估计值,将测得的位移场拟合到剪切波方程中。该程序的验证是在以独立流变学测试为特征的凝胶上以及在有限元模拟数据中进行的。实际上,脑组织是粘弹性的和非线性的。当前对动态剪切模量的估计仅与特定频率下的小振荡严格相关;但是这些估算值可以在整个大脑中以非侵入性的高频方式获得(因此具有很高的变形率)。这些数据补充了其他人在离体或侵入性条件下以较慢的速率获得的非线性粘弹性的测量结果。

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