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The effect of histotripsy on tissues with different mechanical properties

机译:组织变性对具有不同机械特性的组织的影响

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Histotripsy is a non-invasive mechanical tissue ablation method that depends on the initiation and maintenance of a cavitation bubble cloud to mechanically fractionate soft tissue. The effect of histotripsy on tissue has been observed to vary depending on their mechanical properties. Tissue fractionation induced by histotripsy is often self-limiting at anatomical boundaries of tougher tissue such as blood vessels. This paper studies how histotripsy affects tissue with different mechanical properties. The pressure threshold to initiate the cavitation bubble cloud in tissue with varying properties, including elastic modulus, water content, and density, was measured, and the resulting tissue fractionation was evaluated. Results demonstrate a significant increase in cavitation cloud initiation threshold and a significant decrease in the extent of tissue damage for tissues of increased mechanical strength. Cavitation cloud initiation threshold increased in tissues with higher ultimate strength, higher density, and lower water content. Resistance to histotripsy damage was shown to increase for tissues with higher ultimate strength and density. These results improve our understanding of the effect of histotripsy on tissue with different mechanical properties and provide a rational basis to tailor acoustic parameters for fractionation of specific tissues.
机译:组织碎裂术是一种非侵入性的机械组织消融方法,其取决于空化气泡云的启动和维持,以机械方式分离软组织。已经观察到组织曲霉对组织的作用根据其机械性质而变化。由组织变性引起的组织分级分离通常在较坚硬的组织如血管的解剖边界处是自限性的。本文研究了组织变性如何影响具有不同机械特性的组织。测量了在组织中引发气穴气泡云的压力阈值,这些组织具有各种特性,包括弹性模量,水含量和密度,并评估了所得的组织分级。结果表明,对于机械强度提高的组织,空化云开始阈值显着增加,并且组织损伤程度显着降低。在具有更高的极限强度,更高的密度和更低的含水量的组织中,空化云的起始阈值增加。对于具有更高的最终强度和密度的组织,显示出对组织曲张损伤的抵抗力增加。这些结果增进了我们对组织学对具有不同机械性能的组织的影响的理解,并提供了合理的基础来调整声学参数以用于特定组织的分级分离。

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