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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >500-element ultrasound phased array system for noninvasive focal surgery of the brain: a preliminary rabbit study with ex vivo human skulls.
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500-element ultrasound phased array system for noninvasive focal surgery of the brain: a preliminary rabbit study with ex vivo human skulls.

机译:500元素超声相控阵系统,用于大脑的非侵入性局灶性手术:对离体人类头骨进行的初步兔子研究。

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The aim of this study was to test a prototype MRI-compatible focused ultrasound phased array system for trans-skull brain tissue ablation. Rabbit thigh muscle and brain were sonicated with a prototype, hemispherical 500-element ultrasound phased array operating at frequencies of 700-800 kHz. An ex vivo human skull sample was placed between the array and the animal tissue. The temperature elevation during 20-30-sec sonications was monitored using MRI thermometry. The induced focal lesions were observed in T2 and contrast-enhanced T1-weighted fast spin echo images. Whole brain histology evaluation was performed after the sonications. The results showed that sharp temperature elevations can be produced both in the thigh muscle and in the brain. High-power sonications (600-1080 W) produced peak temperatures up to 55 degrees C and focal lesions that were consistent with thermal tissue damage. The lesion size was found to increase with increasing peak temperature. The device was then modified to operate in the orientation that will be used in the clinic and successfully tested in phantom experiments. As a conclusion, this study demonstrates that it is possible to create ultrasound-induced lesions in vivo through a human skull under MRI guidance with this large-scale phased array.
机译:这项研究的目的是测试用于跨颅脑组织消融的原型MRI兼容的聚焦超声相控阵系统。用原型半球形500元素超声相控阵对兔大腿肌肉和大脑进行超声处理,该阵列以700-800 kHz的频率运行。将离体人类头骨样品放置在阵列和动物组织之间。使用MRI测温仪监测20-30秒超声处理期间的温度升高。在T2和对比增强的T1加权快速自旋回波图像中观察到了诱发的局灶性病变。超声处理后进行全脑组织学评估。结果表明,大腿肌肉和大脑均可产生急剧的温度升高。大功率超声(600-1080 W)产生的峰值温度高达55摄氏度,并且灶性病变与热组织损伤一致。发现病灶的大小随着峰值温度的升高而增加。然后将设备修改为可以在临床中使用的方向上运行,并在幻像实验中成功进行了测试。结论是,这项研究表明,使用这种大型相控阵在MRI的指导下,可以通过人的颅骨在体内产生超声诱发的病变。

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