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Calcified lesion modeling for Excimer laser ablation

机译:准分子激光消融的钙化病变模型

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Objective: Develop a representative calcium target model to evaluate penetration of calcified plaque lesions during atherectomy procedures using 308 nm Excimer laser ablation.Materials and Methods: An in-vitro model representing human calcified plaque was analyzed using Plaster-of-Paris and cement based composite materials as well as a fibrinogen model. The materials were tested for mechanical consistency. The most likely candidate(s) resulting from initial mechanical and chemical screening was submitted for ablation testing. The penetration rate of specific multi-fiber catheter designs and a single fiber probe was obtained and compared to that in human cadaver calcified plaque. The effects of lasing parameters and catheter tip design on penetration speed in a representative calcified model were verified against the results in human cadaver specimens.Results'. In Plaster of Paris, the best penetration was obtained using the single fiber tip configuration operating at 100 Fluence, 120 Hz. Calcified human lesions are twice as hard, twice as elastic as and much more complex than Plaster of Paris. Penetration of human calcified specimens was highly inconsistent and varied significantly from specimen to specimen and within individual specimens.Conclusions'. Although Plaster of Paris demonstrated predictable increases in penetration with higher energy density and repetition rate, it can not be considered a totally representative laser ablation model for calcified lesions. This is in part due to the more heterogeneous nature and higher density composition of cadaver intravascular human calcified occlusions. Further testing will require a more representative model of human calcified lesions.
机译:目的:建立一个代表性的钙靶模型,以评估使用308 nm准分子激光消融术在斑块切除术过程中钙化斑块病变的穿透性。 材料和方法:使用巴黎石膏和水泥基复合材料以及纤维蛋白原模型分析了代表人钙化斑块的体外模型。测试了材料的机械一致性。最初的机械和化学筛选产生的最有可能的候选物已提交消融测试。获得了特定的多纤维导管设计和单个纤维探针的穿透率,并将其与人尸钙化斑块的穿透率进行了比较。针对人类尸体标本中的结果,验证了激光参数和导管尖端设计对代表性钙化模型中穿透速度的影响。 结果'。在巴黎石膏(Plaster of Paris)中,使用在100 Fluence,120 Hz下运行的单根光纤尖端配置可获得最佳的穿透力。钙化的人类病变的硬度是巴黎的石膏的两倍,弹性是其的两倍,并且要复杂得多。人类钙化标本的渗透率高度不一致,并且各个标本之间以及各个标本之间的差异都很大。 结论”。尽管巴黎石膏显示出较高的能量密度和重复率可预见的穿透增加,但不能认为它是钙化病变的完全代表性激光消融模型。部分原因是尸体血管内人钙化闭塞的性质更加异质,密度更高。进一步的测试将需要一个更具代表性的人类钙化病变模型。

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