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Nonthermal ablation with microbubble-enhanced focused ultrasound close to the optic tract without affecting nerve function

机译:在不影响神经功能的情况下通过微泡增强聚焦超声进行非热消融

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摘要

ObjectTumors at the skull base are challenging for both resection and radiosurgery given the presence of critical adjacent structures, such as cranial nerves, blood vessels, and brainstem. Magnetic resonance imaging–guided thermal ablation via laser or other methods has been evaluated as a minimally invasive alternative to these techniques in the brain. Focused ultrasound (FUS) offers a noninvasive method of thermal ablation; however, skull heating limits currently available technology to ablation at regions distant from the skull bone. Here, the authors evaluated a method that circumvents this problem by combining the FUS exposures with injected microbubble-based ultrasound contrast agent. These microbubbles concentrate the ultrasound-induced effects on the vasculature, enabling an ablation method that does not cause significant heating of the brain or skull.
机译:考虑到颅骨神经,血管和脑干等关键性相邻结构的存在,颅骨底部的ObjectTumors对于切除和放射外科手术均具有挑战性。磁共振成像引导的通过激光或其他方法进行的热消融已被评估为对大脑中这些技术的微创替代。聚焦超声(FUS)提供了一种非侵入性的热消融方法。然而,颅骨加热限制了目前可用的技术来在远离颅骨的区域消融。在这里,作者评估了一种通过将FUS暴露与注射的基于微泡的超声造影剂相结合来解决该问题的方法。这些微气泡将超声诱导的作用集中在脉管系统上,从而实现了一种不会引起大脑或颅骨明显发热的消融方法。

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