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Monitoring local temperature changes in soft tissues by time-reversal elastography

机译:通过逆时弹性成像技术监测软组织中的局部温度变化

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Elastography is a potential tool to evaluate local elasticity changes produced by thermal therapy ultrasound. The protein denaturation of tissue cells produces an irreversible increase in local stiffness. Thus elastographic methods are able to evaluate where and if this critical point has been reached. In previous works we have employed 1D transient elastography to monitor local changes in the shear elastic modulus in bovine skeletal muscle. In this work we include time-reversal elastography (TRE) experiments to evaluate temperature-induced changes created by a heat source whose position is known. TRE is currently a developing method in our laboratory. It is based on the time inversion of the low-frequency field recorded by speckle tracking methods. The low-frequency particle velocity field on the direction of the ultrasound beam is measured at the volume of the soft solid by the transient elastography technique. The time refocusing field of these mechanical waves is computed using spatio-temporal correlations equivalent to time-reversal experiments. Due to temperature increase, the refocusing time at each position is shifted. Since this is a cumulative effect with depth, the spatial derivation of the time shift is a direct visualization of heat-induced changes in tissue elasticity. The method has the advantages of time-reversal experiments: it is independent of boundary conditions, is applicable in non-homogeneous media and is robust as regard to the low-frequency source shape and position. Thus it overcomes some limitations of 1D transient elastography.
机译:弹性成像是评估热疗超声产生的局部弹性变化的潜在工具。组织细胞的蛋白质变性会导致不可逆的局部硬度增加。因此,弹性成像方法能够评估在何处以及是否达到该临界点。在以前的工作中,我们采用了一维瞬态弹性成像技术来监测牛骨骼肌剪切弹性模量的局部变化。在这项工作中,我们包括时间逆向弹性成像(TRE)实验,以评估由位置已知的热源产生的温度引起的变化。 TRE目前是我们实验室中的一种开发方法。它基于斑点跟踪方法记录的低频场的时间反转。通过瞬态弹性成像技术在软固体的体积上测量超声束方向上的低频粒子速度场。这些机械波的时间重聚焦场是使用与时间反向实验等效的时空相关来计算的。由于温度升高,每个位置的重新聚焦时间都发生了偏移。由于这是深度的累积效应,因此时间偏移的空间推导是热诱导的组织弹性变化的直接可视化。该方法具有时间逆转实验的优点:它不受边界条件的限制,适用于非均匀介质,并且对于低频源的形状和位置具有鲁棒性。因此,它克服了一维瞬态弹性成像的一些局限性。

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