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Nonthermal ablation in the rat brain using focused ultrasound and an ultrasound contrast agent: long-term effects

机译:使用聚焦超声和超声造影剂对大鼠大脑进行非热消融:长期效果

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摘要

OBJECTIVEThermal ablation with transcranial MRI-guided focused ultrasound (FUS) is currently under investigation as a less invasive alternative to radiosurgery and resection. A major limitation of the method is that its use is currently restricted to centrally located brain targets. The combination of FUS and a microbubble-based ultrasound contrast agent greatly reduces the ultrasound exposure level needed to ablate brain tissue and could be an effective means to increase the “treatment envelope” for FUS in the brain. This method, however, ablates tissue through a different mechanism: destruction of the microvasculature. It is not known whether nonthermal FUS ablation in substantial volumes of tissue can safely be performed without unexpected effects. The authors investigated this question by ablating volumes in the brains of normal rats.
机译:目的目前正在研究经颅MRI引导的聚焦超声(FUS)热消融术,作为放射外科和切除术的侵入性较小的替代方法。该方法的主要局限性在于,目前该方法的使用仅限于位于中心位置的大脑目标。 FUS和基于微泡的超声造影剂的组合大大降低了消融脑组织所需的超声暴露水平,并且可能是增加FUS在大脑中的“治疗范围”的有效手段。然而,该方法通过不同的机制消融组织:破坏微脉管系统。尚不清楚是否可以安全地在大量组织中进行非热性FUS消融而不会产生意想不到的效果。作者通过消融正常大鼠大脑中的体积来研究这个问题。

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