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Mechanical and acoustic analysis in ultrasonic angioplasty

机译:超声血管成形术中的机械和声学分析

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Abstract: The goal of this study was to investigate the relationship between ultrasonic tissue ablation and passive mechanical elasticity. Experience with ultrasonic angioplasty in experimental settings (in-vivo and in-vitro) together with clinical experience in peripheral vascular disease is reported. A model composed exclusively of a hydroxyproline ballistic gelatin matrix showed a negative correlation between material elasticity and the rate of ultrasonic ablation. This model provided a means of studying the effects of collagen content on ablation, exclusive of other biologic components. Ballistic gelatin ablation (mg/sec) was found to increase logarithmically with decreasing protein concentration over the range studied (20.00 to 1.25%). Ablation as a function of gelatin elasticity behaved in a similar manner. Temperature of the material ablated was also demonstrated to affect the rate of ablation. We conclude that the previously reported differences in ablation between thrombi and blood vessel are predictable based on the large difference in their mechanical elasticity, and that this difference provides a wide margin of safety.!
机译:摘要:本研究的目的是研究超声组织消融与被动机械弹性之间的关系。据报道在实验环境(体内和体外)中进行超声血管成形术的经验以及周围血管疾病的临床经验。仅由羟脯氨酸弹道明胶基质组成的模型显示材料弹性与超声消融速率之间呈负相关。该模型提供了一种研究胶原蛋白含量对消融影响的方法,其中不包括其他生物成分。在所研究的范围内(20.00至1.25%),随着蛋白质浓度的降低,弹道明胶消融(mg / sec)对数增加。作为明胶弹性的函数的消融以相似的方式表现。还证明了烧蚀材料的温度会影响烧蚀速率。我们得出的结论是,先前报道的血栓和血管之间的消融差异是基于其机械弹性的巨大差异而可预测的,并且这种差异提供了很大的安全性。

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