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Contrast-enhanced ultrasound imaging for the detection of transient dynamics of blood-brain barrier opening induced by focused ultrasound

机译:对比增强的超声成像,用于检测聚焦超声诱导血脑屏障开口瞬态动力学

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Focused ultrasound (FUS) in the presence of circulating microbubbles (MBs) has been confirmed to temporarily and locally enhance the permeability of the blood-brain barrier (BBB). However, improper FUS sonication parameters not only achieve BBB destruction (BBBD) but also induce brain damages such as intracerebral hemorrhage (ICH), brain edema, transient blood-supply shortage. Therefore, it is essential to develop a real-time imaging system to assess the dynamic perfusion changes during FUS-induced BBBD process. Here, we proposed a high-frequency microultrasound imaging system with sigmoid-based destruction and replenishment (D/R) technique for the observation of brain microcirculation changes after performing BBBD with or without hemorrhage. The BBB was disrupted by a 2.25-MHz FUS probe with acoustic pressure of 0.5 MPa and 0.7 MPa (for without and with hemorrhage group, respectively), pulse repetition frequency of 1 Hz, pulse length of 1 ms, and sonication duration of 60 s following intravenous injection of MBs. The results showed that the velocity of blood flow decreased after BBBD. The location of slowing down of the local flow velocity was consistent with the BBBD area and also the local enhanced permeability region detected by MR Ktrans imaging. In addition, the variation of blood flow depended on the applied acoustic pressure, and the position where flow velocity became particularly slow was associated with the occurrence of hemorrhage. In conclusion, our proposed ultrasound D/R imaging technique provides a useful tool for monitoring both the region and degree of BBBD and the presence of hemorrhage during BBBD process. This novel method provides an immediate feedback for the control of BBBD and avoiding or minimizing bioeffect in the future.
机译:在存在循环微泡(MBS)的存在下聚焦超声(FUS)已经确认暂时和局部增强血脑屏障(BBB)的渗透性。然而,不当的Fus超声参数不仅实现了BBB破坏(BBBD),而且诱导脑出血(ICH),脑水肿,瞬态血液供应短缺等脑损伤。因此,必须开发一个实时成像系统,以评估Fus引起的BBBD过程中的动态灌注变化。在这里,我们提出了一种高频微型微型成像系统,具有基于血管基的破坏和补充(D / R)技术,用于观察在具有或没有出血的BBBD之后脑微循环变化。 BBB被2.25-MHz FUS探针中断,声压0.5MPa和0.7MPa(分别没有和出血基团),脉冲重复频率为1 Hz,脉冲长度为1 ms,超声持续时间为60秒静脉注射MBS后。结果表明,BBBD后血流速度下降。局部流速减慢的位置与BBBD区域一致,并且还通过Ktrans MR MR MR检测到的局部增强渗透性区域。此外,血流的变化依赖于施加的声压,并且流速变得特别慢的位置与出血的发生有关。总之,我们所提出的超声D / R成像技术提供了一种有用的工具,用于监测BBBD的区域和程度以及在BBBD过程中存在出血。这种新方法为控制BBBD的控制提供了立即反馈,并在将来避免或最小化生物效应。

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