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首页> 外文期刊>Journal of Therapeutic Ultrasound >Renal sympathetic denervation using MR-guided high-intensity focused ultrasound in a porcine model
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Renal sympathetic denervation using MR-guided high-intensity focused ultrasound in a porcine model

机译:MR引导下高强度聚焦超声在猪模型中的肾交感神经去神经

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Background Initial catheter-based renal sympathetic denervation (RSD) studies demonstrated promising results in showing a significant reduction of blood pressure, while recent data were less successful. As an alternative approach, the objective of this study was to evaluate the feasibility of using magnetic resonance-guided high-intensity focused ultrasound (MRgHIFU) to perform RSD in a porcine model. Methods An intravascular fiber optic temperature probe was used to confirm energy delivery during MRgHIFU. This technique was evaluated both in a vascular phantom and in a normotensive pig model. Five animals underwent unilateral RSD using MRgHIFU, and both safety and efficacy were assessed. MRI was used to evaluate the acoustic window, target sonications, monitor the near-field treatment region using MR thermometry imaging, and assess the status of tissues post-procedure. An intravascular fiber optic temperature probe verified energy delivery. Animals were sacrificed 6 to 9?days post-treatment, and pathological analysis was performed. The norepinephrine present in the kidney medulla was assessed post-mortem. Results All animals tolerated the procedure well with no observed complications. The fiber optic temperature probe placed in the target renal artery confirmed energy delivery during MRgHIFU, measuring larger temperature rises when the MRgHIFU beam location was focused closer to the tip of the probe. Following ablation, a significant reduction ( p =?0.04) of cross-sectional area of nerve bundles between the treated and untreated renal arteries was observed in all of the animals with treated nerves presenting increased cellular infiltrate and fibrosis. A reduction of norepinephrine ( p =?0.14) in the kidney medulla tissue was also observed. There was no indication of tissue damage in arterial walls. Conclusions Performing renal denervation non-invasively with MRgHIFU was shown to be both safe and effective as determined by norepinephrine levels in a porcine model. This approach may be a promising alternative to catheter-based strategies.
机译:背景最初的基于导管的肾脏交感神经去神经支配术(RSD)研究显示出可喜的结果,表明血压显着降低,而最近的数据则不太成功。作为替代方法,本研究的目的是评估在猪模型中使用磁共振引导的高强度聚焦超声(MRgHIFU)进行RSD的可行性。方法使用血管内光纤温度探头确认MRgHIFU期间的能量传递。在血管模型和正常血压的猪模型中都对这项技术进行了评估。五只动物使用MRgHIFU进行了单侧RSD,并评估了安全性和有效性。 MRI被用来评估声窗,目标超声,使用MR测温成像监测近场治疗区域以及评估手术后组织的状态。血管内光纤温度探头验证了能量传递。处理后6至9天处死动物,并进行病理分析。死后评估肾髓质中存在的去甲肾上腺素。结果所有动物对手术的耐受性都很好,没有观察到并发症。放置在目标肾动脉中的光纤温度探头在MRgHIFU期间确认了能量传递,当MRgHIFU束的位置更靠近探头尖端时,测量到较大的温度升高。消融后,在所有接受治疗的神经中表现出细胞浸润和纤维化增加的动物中,观察到治疗和未治疗的肾动脉之间的神经束横截面积均显着减少(p = 0.04)。还观察到肾髓质组织中去甲肾上腺素减少(p =?0.14)。没有迹象表明动脉壁组织受损。结论在猪模型中,用去甲肾上腺素水平确定,用MRgHIFU进行非侵入性肾脏去神经既安全又有效。这种方法可能是基于导管的策略的有前途的替代方法。

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