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Experimental Validation of a Novel MRI-Compatible HIFU Device for the Treatment ofSuperficial Venous Insufficiency

机译:一种新型MRI相容性HIFU装置治疗血清静脉功能不全的实验验证

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A novel High Intensify Focused Ultrasound (HIFU) probe has been designed for minimally-invasive treatment of valvular dysfunction in the saphenous vein, which is known to be the cause of superficial venous insufficiency (SVI) and varicose veins. Treating SVI with HIFU is possible, since venous tissue undergoes localized partial shrinkage when subjected to high temperature elevation. In a previous study in vitro we demonstrated that diameter shrinkage should be sufficient to restore valvular function, as this is done in the more aggressive approach known as external valvuloplasty. Numerical optimization using fast simulations of pressure field have led to a non-spherically shaped probe design with two HIFU elements that focus ultrasound uniformly over a line of length 7 mm, at a depth of 15 mm from the skin. A MR-compatible prototype of the probe has been constructed and this was characterized 1). by electroacustical mapping of the pressure field in water, and 2). by fast, high resolution MR thermal mapping ex vivo on fresh meat samples. Results were in good agreement with those predicted by an analytical approach and numerical simulations. Available experimental data suggest that a short sonication (less than 10 sec duration) should permit sufficient temperature elevation to obtain vein shrinkage. Further studies will be performed on surgically excised samples of human veins under MR thermal mapping in order to determine the optimal sonication parameters (duration and power level).
机译:一种新型高强化聚焦超声(HIFU)探针设计用于微外侵入静脉静脉静脉静脉功能障碍的侵入性,已知是浅表静脉功能不全(SVI)和静脉曲张的原因。用HIFU处理SVI是可能的,因为当受到高温升高时静脉组织经历局部部分收缩。在先前的研究中,我们证明了直径收缩应该足以恢复瓣膜功能,因为这是以更具侵蚀的方法所做的,所谓的外部胰腺成形术。使用快速模拟压力场的数值优化已经导致非球形探头设计,其具有两个HIFU元件,其在长度为7mm的长度为7mm的线上均匀地聚焦超声波,深度为15mm。已经构建了探针的MR兼容原型,其特征在于1)。通过水中的电压映射,水中的压力场和2)。通过快速,高分辨率MR热映射在新鲜肉类样品上的exvivo。结果与分析方法和数值模拟预测的结果吻合良好。可用的实验数据表明,短暂的超声处理(少于10秒持续时间)应允许足够的温度升高以获得静脉收缩。进一步的研究将在MR热映射下对人体静脉的手术切除样品进行,以便确定最佳超声处理参数(持续时间和功率水平)。

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