首页> 外文会议>International Symposium on Therapeutic Ultrasound (2002-) >MR-Guided Unfocused Ultrasound Disruption of the Rat Blood-Brain Barrier
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MR-Guided Unfocused Ultrasound Disruption of the Rat Blood-Brain Barrier

机译:MR--IWEDECUDED的超声超声破坏​​大鼠血脑屏障的破坏

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Therapeutic ultrasound with microbubbles can temporarily disrupt the blood-brain barrier (BBB) for drug delivery. Contrast-enhanced MRI (CE-MRI) can visualize gadolinium passage into the brain, indicating BBB opening. Previous studies used focused ultrasound, which is appropriate for the targeted delivery of drugs. The purpose of this study was to investigate unfocused ultrasound for BBB opening across the whole brain. In 10 rats, gadolinium-based MR contrast agent (Gd; 0.25ml) was administered concurrent with ultrasound microbubbles (Optison, 0.25ml) and circulated for 20sec before sonication. A 753kHz planar PZT transducer, diameter 1.8cm, sonicated each rat brain with supplied voltage of 300, 400, or 500mVpp for 10sec in continuous wave mode, or at 500 mVpp at 20percent duty cycle at 10Hz for 30-300sec. After sonication, coronal T1-weighted FSE CE-MRI images were acquired with a 3in surface coil. The imaging protocol was repeated 3-5 times after treatment. One control animal was given Gd and microbubbles, but not sonicated, and the other was given Gd and sonicated without microbubbles. Signal change in ROIs over the muscle, mesencephalon/ventricles, and the cortex/striatum were measured at 3-5 time points up to 36min after sonication. Signal intensity was converted to percent signal change compared to the initial image. In the controls, CE-MRI showed brightening of surrounding structures, but not the brain. In the continuous wave subjects, cortex/striatum signal did not increase, but ventricle/mesenchephalon signal did. Those that received pulsed sonications showed signal increases in both the cortex/striatum and ventricles/mesenchephalon. In conclusion, after pulsed unfocused ultrasound sonication, the BBB is disrupted across the whole brain, including cortex and deep grey matter, while continuous wave sonication affects only the ventricles and possibly deeper structures, without opening the cortex BBB. As time passes, the timeline of Gd passage into the brain can be visualized.
机译:具有微泡的治疗超声可以暂时破坏血脑屏障(BBB)的药物递送。对比度增强的MRI(CE-MRI)可以使钆通道可视化到大脑中,表明BBB开放。以前的研究使用聚焦超声波,适用于靶向递送的药物。本研究的目的是调查在整个大脑中的BBB开放的未聚焦超声。在10只大鼠中,用超声微泡(OPTISON,0.25ml)向基于钆的MR造影剂(GD; 0.25ml)并发并在超声处理之前循环20秒。 753kHz平面PZT换能器,直径1.8cm,在连续波模式下提供300,400,或500mVPP的供应电压,或在连续波动的电压下,或在10Hz的20Hz的500mVPP下,在30-300秒的500mVPP下。在超声处理之后,使用3IN表面线圈获取冠状T1加权FSE CE-MRI图像。治疗后成像协议重复3-5次。一个对照动物被给予Gd和微泡,但没有超声处理,另一个是给予Gd并超声处理而没有微泡。在肌肉,中脑/心室和皮质/纹状体上的rOI中的信号变化在超声处理后3-5次高达36min的3-5次。与初始图像相比,信号强度转换为信号变化百分比。在对照中,CE-MRI表现出周围结构的亮光,但不是大脑。在连续波对象中,皮质/纹状体信号没有增加,但心室/间均蒙信号表现得。那些接受脉冲超声的人显示信号在皮质/纹状体和心室/间币酮中增加。总之,在脉冲未聚焦的超声超声处理之后,BBB在整个大脑中被破坏,包括皮质和深灰质,而连续波超声处理仅影响心室和可能更深的结构,而不打开皮质BBB。随着时间的推移,可以可视化GD通道进入大脑的时间表。

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