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非人类灵长类动物的脑的无创超声手术。

Non-invasive ultrasonic surgery of the brain in non-human primates.

机构信息

Institut Langevin, ESPCI-ParisTech, CNRS UMR7587, INSERM U979, Paris, France.

出版信息

J Acoust Soc Am. 2013 Aug;134(2):1632-9. doi: 10.1121/1.4812888.

Abstract

High-intensity focused ultrasound causes selective tissue necrosis efficiently and safely, namely, in the prostate, liver, and uterine fibroid. Nevertheless, ablation of brain tissue using focused ultrasound remains limited due to strong aberrations induced by the skull. To achieve ultrasonic transcranial brain ablation, such aberrations have to be compensated. In this study, non-invasive therapy was performed on monkeys using adaptive correction of the therapeutic beam and 3D simulations of transcranial wave propagation based on 3D computed tomographic (CT) scan information. The aim of the study was two-fold: induce lesions in a non-human primate brain non-invasively and investigate the potential side effects. Stereotactic targeting was performed on five Macaca fascicularis individuals. Each hemisphere was treated separately with a 15-day interval and animals were sacrificed two days after the last treatment. The ultrasonic dose delivered at the focus was increased from one treatment location to the other to estimate the thermal dose for tissue alteration. Thermal doses in the brain were determined by numerical computations. Treatment efficiency and safety were evaluated histologically. The threshold for tissue damage in the brain was measured to be between 90 and 280 cumulative equivalent minutes at 43 °C. Intravenous injection of corticoids before the treatment limited the side effects.

摘要

高强度聚焦超声能高效且安全地导致组织坏死,例如在前列腺、肝脏和子宫肌瘤中。然而,由于颅骨引起的强烈像差,使用聚焦超声消融脑组织的方法仍然受到限制。为了实现经颅超声脑消融,必须对这些像差进行补偿。在这项研究中,使用治疗波束的自适应校正和基于三维计算机断层扫描 (CT) 扫描信息的颅外波传播的三维模拟,对猴子进行了非侵入性治疗。该研究的目的有两个:在非人类灵长类动物的大脑中进行非侵入性诱导损伤,并研究潜在的副作用。对五只猕猴进行了立体定向靶向。每只半球分开进行治疗,间隔 15 天,最后一次治疗后两天处死动物。在焦点处传递的超声剂量从一个治疗部位增加到另一个治疗部位,以估计组织改变的热剂量。通过数值计算确定大脑中的热剂量。通过组织学评估治疗的效率和安全性。在 43°C 时,测量到脑组织损伤的阈值为 90 至 280 累积等效分钟。在治疗前静脉注射皮质类固醇可以限制副作用。

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