首页> 外文期刊>The Journal of the Acoustical Society of America >Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry
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Suppression of large intraluminal bubble expansion in shock wave lithotripsy without compromising stone comminution: Refinement of reflector geometry

机译:抑制冲击波碎石术中较大的管腔内气泡膨胀而不损害石块粉碎性:改进反射镜的几何形状

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Using the Hamilton model [Hamilton, J. Acoust. Soc. Am. 93, 1256-1266 (1993)], the effects of reflector geometry on the pulse profile and sequence of the shock waves produced by the original and upgraded reflector of an HM-3 lithotripter were evaluated qualitatively. Guided by this analysis, we have refined the geometry of the upgraded reflector to enhance its suppressive effect on intraluminal bubble expansion without compromising stone comminution in shock wave lithotripsy. using the original HM-3 reflector at 20 kV, rupture of a standard vessel phantom made of cellulose hollow fiber (i.d.= 0.2 mm), in which degassed water seeded with ultrasound contrast agents was circulated, was produced at the lithotripter focus after about 30 shocks. In contrast, using the upgraded reflector at 24 kV no rupture of the vessel phantom could be produced within a 20-mm diameter around the lithotripter focus even after 200 shocks. On the other hand, stone comminution was comparable between the two reflector configurations, although slightly larger fragments were produced by the upgraded reflector. After 2000 shocks, stone comminution efficiency produced by the original HM-3 reflector at 20 kV is 97.15 ± 1.92% (mean ± SD), compared to 90.35 ± 1.96% produced by the upgraded reflector at 24 kV (p<0.02). All together, it was found that the upgraded reflector could significantly reduce the propensity for vessel rupture in shock wave lithotripsy while maintaining satisfactory stone comminution.
机译:使用汉密尔顿模型[Hamilton,J. Acoust。 Soc。上午。 93,1256-1266(1993)],定性评估了反射器几何形状对HM-3碎石机原始和升级反射器产生的冲击波的脉冲轮廓和序列的影响。在此分析的指导下,我们改进了升级版反射镜的几何形状,以增强其对腔内气泡膨胀的抑制作用,而又不影响冲击波碎石术中的碎石作用。使用原始的HM-3反射器在20 kV下,在大约30秒钟后,在碎石机焦点上产生了由纤维素中空纤维(id = 0.2毫米)制成的标准容器模型的破裂,在该模型中循环了超声造影剂接种的脱气水。震惊。相反,在24 kV电压下使用升级版反射镜,即使经过200次电击,在碎石机焦点周围20毫米直径范围内也不会产生血管幻影的破裂。另一方面,尽管经过升级的反射镜会产生稍大的碎屑,但在两种反射镜配置之间,石材的粉碎程度是相当的。经过2000次电击后,原始HM-3反射器在20 kV时产生的碎石效率为97.15±1.92%(平均值±SD),而升级后的反射器在24 kV时产生的碎石效率为90.35±1.96%(p <0.02)。总之,发现升级的反射器可以显着降低冲击波碎石术中血管破裂的可能性,同时保持令人满意的碎石作用。

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