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The Application of MRI for Depiction of Subtle Blood Brain Barrier Disruption in Stroke

机译:MRI在中风微血脑屏障破坏中的应用

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摘要

The development of imaging methodologies for detecting blood-brain-barrier (BBB) disruption may help predict stroke patient's propensity to develop hemorrhagic complications following reperfusion. We have developed a delayed contrast extravasation MRI-based methodology enabling real-time depiction of subtle BBB abnormalities in humans with high sensitivity to BBB disruption and high spatial resolution. The increased sensitivity to subtle BBB disruption is obtained by acquiring T1-weighted MRI at relatively long delays (~15 minutes) after contrast injection and subtracting from them images acquired immediately after contrast administration. In addition, the relatively long delays allow for acquisition of high resolution images resulting in high resolution BBB disruption maps. The sensitivity is further increased by image preprocessing with corrections for intensity variations and with whole body (rigid+elastic) registration. Since only two separate time points are required, the time between the two acquisitions can be used for acquiring routine clinical data, keeping the total imaging time to a minimum.
机译:用于检测血脑屏障(BBB)破坏的影像学方法的发展可能有助于预测中风患者在再灌注后发生出血性并发症的倾向。我们已经开发了一种基于MRI的延迟对比外渗法,能够实时描绘人类的细微BBB异常,并且对BBB破坏具有很高的敏感性,并且具有很高的空间分辨率。通过在对比剂注射后相对较长的延迟时间(约15分钟)内获取T1加权MRI并减去对比剂施用后立即获得的图像,可以提高对细微BBB破坏的敏感性。另外,相对长的延迟允许获取高分辨率图像,从而导致高分辨率BBB破坏图。通过对强度变化进行校正的图像预处理以及全身(刚性+弹性)配准,可以进一步提高灵敏度。由于仅需要两个单独的时间点,因此两次采集之间的时间可用于采集常规临床数据,从而将总成像时间保持在最短。

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