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About the Marty model of blood-brain barrier closure after its disruption using focused ultrasound

机译:关于使用聚焦超声破坏后血脑屏障闭合的Marty模型

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Many studies have demonstrated that pulsed ultrasound combined with circulating microbubbles can permeate the blood-brain barrier in a reversible manner. In 2012, our group demonstrated that the BBB remains permeable to small MRI contrast agents up to 24 h after ultrasound application and also that this duration was dependent on nanoparticle size. We derived a simple theoretical model explaining these observations (Marty et al 2012 J. Cereb. Blood Flow Metab. 32 1948-58). However, in this original paper the expression of the BBB closure time (t(1/2)) as a function of the size of delivered contrast agents (d(H)) could not be mathematically derived from the model but rather from a guessed function that is fit to the numerical solution of the model. In this context, the two numeric parameters of this fitting function could not be related to the other physical parameters of the model. Here, we present a formal solution, finding the same expression of t(1/2) in already published and linking t(1/2) to relevant physical variables such as the molecular hydrodynamic diameter d(H), the BBB closure rate k and the standard deviation of the initial BBB gap sizes distribution sigma(0).
机译:许多研究已经证明,脉冲超声与循环微泡结合,可以以可逆的方式渗透血脑屏障。 2012年,我们的小组证明BBB在超声施用后的小MRI造影剂持续到24小时,并且该持续时间依赖于纳米粒子尺寸。我们派生了一个简单的理论模型,解释了这些观察结果(Marty等,2012 J.Cereb。血流元。32 1948-58)。然而,在该原始纸张中,BBB闭合时间(T(1/2))的表达式作为传递的造影剂的尺寸(D(h))不能从数学上衍生自模型,而是来自猜测的适合模型的数字解决方案的功能。在这种情况下,该拟合函数的两个数字参数不能与模型的其他物理参数有关。在这里,我们介绍了一个正式的解决方案,在已经公布和将T(1/2)中的T(1/2)的表达相同,以将T(1/2)连接到相关的物理变量,例如分子流体动力直径D(H),BBB闭合速率K.和初始BBB间隙尺寸分布Sigma(0)的标准偏差。

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