Numerical study of the shock wave effect on tumour in bone tissue

Galina Eremina , Alexey Smolin
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Abstract

Cancer diseases significantly worsen the quality of life of people. Recent studies have shown that relatively small values of compressive stress over 40 kPa lead to growth and migration of cancer cells, while large amplitude can lead to tumour growth arrest. In this work, a mesomodel of a spherical cancer tumour placed in a cubic bone matrix was developed. The influence of loads on the stress-strain state (hydrostatic pressure) is analyzed. The working range of therapy shock wave treatment for stopping tumor growth without damaging surrounding tissues has been determined.
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冲击波对骨组织肿瘤作用的数值研究
癌症疾病严重恶化了人们的生活质量。最近的研究表明,超过40 kPa的相对较小的压应力值会导致癌细胞的生长和迁移,而较大的压应力值会导致肿瘤的生长停滞。在这项工作中,一个球形肿瘤的中模型放置在立方骨基质被开发。分析了载荷对应力-应变状态(静水压力)的影响。冲击波治疗在不损伤周围组织的情况下阻止肿瘤生长的工作范围已经确定。
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