Eremina Galina, Smolin Alexey
Institute of Strength Physics and Materials Science of Siberian Branch Russian Academy of Sciences, 2/4, Pr. Akademicheskii, 634055 Tomsk, Russia.
Materials (Basel). 2021 Dec 13;14(24):7678. doi: 10.3390/ma14247678.
Arthritis is a degenerative disease that primarily affects the cartilage and meniscus of the knee joint. External acoustic stimulation is used to treat this disease. This article presents a numerical model of the knee joint aimed at the computer-aided study of the regenerative effects of shockwave treatment. The presented model was verified and validated. A numerical analysis of the conditions for the regeneration of the tissues of the knee joint under shockwave action was conducted. The results allow us to conclude that to obtain the conditions required for the regeneration of cartilage tissues and meniscus (compressive stresses above the threshold value of 0.15 MPa to start the process of chondrogenesis; distortional strains above the threshold value of 0.05% characterized by the beginning of the differentiation of the tissues in large volumes; fluid pressure corresponding to the optimal level of 68 kPa to transfer tissue cells in large volumes), the energy flux density of therapeutic shockwave loading should exceed 0.3 mJ/mm.
关节炎是一种主要影响膝关节软骨和半月板的退行性疾病。外部声学刺激被用于治疗这种疾病。本文提出了一个膝关节的数值模型,旨在对冲击波治疗的再生效果进行计算机辅助研究。所提出的模型经过了验证和确认。对冲击波作用下膝关节组织再生的条件进行了数值分析。结果使我们能够得出结论,为了获得软骨组织和半月板再生所需的条件(压缩应力高于0.15MPa的阈值以启动软骨形成过程;畸变应变高于0.05%的阈值,其特征是大量组织开始分化;流体压力对应于68kPa的最佳水平以大量转移组织细胞),治疗性冲击波加载的能量通量密度应超过0.3mJ/mm。