Graduate Institute of Biomedical Electronics and Bioinformatics, Department of Electrical Engineering, National Taiwan University, Taipei, Taiwan.
Phys Med Biol. 2013 Oct 7;58(19):6779-96. doi: 10.1088/0031-9155/58/19/6779. Epub 2013 Sep 10.
Pulsed high-intensity focused ultrasound (HIFU) is proposed as a new alternative treatment for contracture of dense fibrous tissue. It is hypothesized that the pulsed-HIFU can release the contracted tissues by attenuating tensile stiffness along the fiber axis, and that the stiffness reduction can be quantitatively monitored by change of B-mode images. Fresh porcine tendons and ligaments were adapted to an ex vivo model and insonated with pulsed-HIFU for durations ranging from 5 to 30 min. The pulse length was 91 µs with a repetition frequency of 500 Hz, and the peak rarefactional pressure was 6.36 MPa. The corresponding average intensities were kept around 1606 W cm(-2) for ISPPA and 72.3 W cm(-2) for ISPTA. B-mode images of the tissues were acquired before and after pulsed-HIFU exposure, and the changes in speckle intensity and organization were analyzed. The tensile stiffness of the HIFU-exposed tissues along the longitudinal axis was examined using a stretching machine. Histology examinations were performed by optical and transmission electron microscopy. Pulsed-HIFU exposure significantly decreased the tensile stiffness of the ligaments and tendons. The intensity and organization of tissue speckles in the exposed region were also decreased. The speckle changes correlated well with the degree of stiffness alteration. Histology examinations revealed that pulsed-HIFU exposure probably damages tissues via a cavitation-mediated mechanism. Our results suggest that pulsed-HIFU with a low duty factor is a promising tool for developing new treatment strategies for orthopedic disorders.
脉冲高强度聚焦超声(HIFU)被提议作为治疗致密纤维组织挛缩的一种新的替代治疗方法。据推测,脉冲-HIFU 可以通过沿纤维轴衰减拉伸刚度来释放挛缩的组织,并且刚度降低可以通过 B 模式图像的变化来定量监测。新鲜的猪肌腱和韧带被适应于离体模型,并以 5 至 30 分钟的时间间隔用脉冲-HIFU 照射。脉冲长度为 91µs,重复频率为 500Hz,峰值稀疏压力为 6.36MPa。相应的平均强度保持在 ISPPA 周围 1606 W cm(-2) 和 ISPTA 周围 72.3 W cm(-2)。在脉冲-HIFU 暴露前后获取组织的 B 模式图像,并分析散斑强度和组织的变化。使用拉伸机检查 HIFU 暴露组织的纵向拉伸刚度。通过光学和透射电子显微镜进行组织学检查。脉冲-HIFU 暴露显著降低了韧带和肌腱的拉伸刚度。暴露区域的组织散斑的强度和组织也降低了。散斑变化与刚度变化程度密切相关。组织学检查显示,脉冲-HIFU 暴露可能通过空化介导的机制损伤组织。我们的结果表明,具有低占空比的脉冲-HIFU 是开发骨科疾病新治疗策略的有前途的工具。