首页> 外文期刊>Journal of neurosurgery. >In vivo transcranial brain surgery with an ultrasonic time reversal mirror.
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In vivo transcranial brain surgery with an ultrasonic time reversal mirror.

机译:超声时间反转镜在体内经颅脑手术。

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OBJECT: High-intensity focused ultrasonography is known to induce controlled and selective noninvasive destruction of tissues by focusing ultrasonic beams within organs, like a magnifying glass concentrating enough sunlight to burn a hole in paper. Such a technique should be highly interesting for the treatment of deep-seated lesions in the brain. Nevertheless, ultrasonic tissue ablation in the brain has long been hampered by the defocusing effect of the skull bone. METHODS: In this in vivo study, the authors used a high-power time-reversal mirror specially designed for noninvasive ultrasonic brain treatment to induce thermal lesions through the skulls of 10 sheep. The sheep were divided into three groups and, depending on group, were killed 1, 2, or 3 weeks after treatment. The thermal lesions were confirmed based on findings of posttreatment magnetic resonance imaging and histological examinations. After treatment, the basic neurological functions of the animals were unchanged: the animals recovered from anesthesia without any abnormal delay and did not exhibit signs of paralysis or coma. No major behavioral change was observed. CONCLUSIONS: The results provide striking evidence that noninvasive ultrasonographic brain surgery is feasible. Thus the authors offer a novel noninvasive method of performing local brain ablation in animals for behavioral studies. This technique may lead the way to noninvasive and nonionizing treatment of brain tumors and neurological disorders by selectively targeting intracranial lesions. Nevertheless, sheep do not represent a good functional model and extensive work will need to be conducted preferably on monkeys to investigate the effects of this treatment.
机译:目的:众所周知,高强度聚焦超声可以通过将超声波束聚焦在器官内来控制组织的选择性无创破坏,例如将放大镜集中在足够的阳光下以在纸上烧一个洞。这种技术对于治疗脑部深部病变应该非常有趣。然而,长期以来,颅骨的散焦作用阻碍了大脑中超声组织的消融。方法:在这项体内研究中,作者使用了专为无创超声脑部治疗设计的大功率时间反转镜,以通过10只绵羊的头骨诱发热损伤。将绵羊分为三组,并根据治疗组分别在治疗后1、2或3周处死。根据治疗后磁共振成像和组织学检查结果确认热损伤。治疗后,动物的基本神经功能没有改变:从麻醉中恢复的动物没有任何异常延迟,并且没有表现出麻痹或昏迷的迹象。没有观察到重大的行为变化。结论:结果提供了惊人的证据,表明无创超声脑外科手术是可行的。因此,作者为行为研究提供了一种在动物中进行局部脑消融的新型非侵入性方法。通过选择性地靶向颅内病变,该技术可以为脑肿瘤和神经系统疾病的非侵入性和非电离性治疗开辟道路。然而,绵羊并不能代表良好的功能模型,因此,最好对猴子进行大量研究以研究这种治疗方法的效果。

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