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首页> 外文期刊>Magnetic Resonance in Medicine >Contrast-enhanced in vivo magnetic resonance microscopy of the mouse brain enabled by noninvasive opening of the blood-brain barrier with ultrasound
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Contrast-enhanced in vivo magnetic resonance microscopy of the mouse brain enabled by noninvasive opening of the blood-brain barrier with ultrasound

机译:通过超声非侵入性地打开血脑屏障使小鼠脑部对比度增强的体内磁共振显微镜

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The use of contrast agents for neuroimaging is limited by the blood-brain barrier (BBB), which restricts entry into the brain. To administer imaging agents to the brain of rats, intracarotid infusions of hypertonic mannitol have been used to open the BBB. However, this technically challenging approach is invasive, opens only a limited region of the BBB, and is difficult to extend to mice. In this work, the BBB was opened in mice, using unfocused ultrasound combined with an injection of microbubbles. This technique has several notable features: it (a) can be performed transcranially in mice; (b) takes only 3 min and uses only commercially available components; (c) opens the BBB throughout the brain; (d) causes no observed histologic damage or changes in behavior (with peak-negative acoustic pressures of 0.36 MPa); and (e) allows recovery of the BBB within 4 h. Using this technique, Gadopentetate Dimeglumine (Gd-DTPA) was administered to the mouse brain parenchyma, thereby shortening T1 and enabling the acquisition of high-resolution (52 × 52 × 100 micrometers3) images in 51 min in vivo. By enabling the administration of both existing anatomic contrast agents and the newer molecular/sensing contrast agents, this technique may be useful for the study of mouse models of neurologic function and pathology with MRI. Magn Reson Med, 2010. © 2010 Wiley-Liss, Inc.
机译:血脑屏障(BBB)限制了用于神经成像的造影剂的使用,从而限制了进入大脑的能力。为了向大鼠的大脑给药显像剂,高渗性甘露醇的颈动脉内输注已用于打开血脑屏障。但是,这种技术上具有挑战性的方法是侵入性的,只能打开BBB的有限区域,并且很难扩展到小鼠。在这项工作中,使用未聚焦的超声与微泡注射相结合,在小鼠体内打开了血脑屏障。该技术具有几个显着特征:(a)可以在小鼠中经颅颅执行; (b)仅需3分钟,并且仅使用市售组件; (c)打开整个大脑的血脑屏障; (d)不会引起观察到的组织学损伤或行为变化(峰值负声压为0.36 MPa); (e)允许在4小时内恢复血脑屏障。使用这种技术,将加多戊酸酯二甲胺(Gd-DTPA)应用于小鼠脑实质,从而缩短了T 1 并实现了高分辨率(52×52×100微米 3 < / sup>)在51分钟内的体内图像。通过既可以使用现有的解剖学造影剂,又可以使用较新的分子/传感造影剂,该技术可能对通过MRI研究神经功能和病理的小鼠模型有用。 Magn Reson Med,2010年。©2010 Wiley-Liss,Inc.。

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