论文标题

脉冲超声辅助热治疗进行地下肿瘤消融:数值研究

Pulsed Ultrasound Assisted Thermo-therapy for Subsurface Tumor Ablation: A numerical investigation

论文作者

Singh, Gajendra, Paul, Anup, Shekhar, Himanshu, Paul, Abhijit

论文摘要

高强度聚焦超声(HIFU)是一种有前途的热消融和高温治疗疗法,其特征是无创,高渗透深度。有效的HIFU热疗法需要能够准确预测目标组织中温度升高和相应的热剂量分布的能力。我们报告了对超声响应生物组织中热剂量的热响应和对应的参数数值研究。我们将两层,三层和七层的组织模型的预测与超声诱导的税收循环范围为0.6和0.9时进行了比较。此外,考虑了两个肿瘤大小和换能器功率(10 W和15 W)。不均匀的Helmholtz方程与Penne的生物热方程相结合,以预测响应脉冲超声的加热。使用累积等效分钟(CEM)热剂量功能计算坏死病变的大小。用基于琼脂的组织幻像作为数值结果的初步验证进行体外实验。使用七个分层模型进行的模拟预测峰压力幅度高达33.5%,而三层模型则比三层模型低33.5%。随着超声脉冲宽度随着等效的超声处理时间的降低,峰温度的相应幅度和温度升高的幅度降低。脉冲超声导致超声处理时间增加了坏死病变的体积。这项研究的发现突出了HIFU诱导的加热对目标几何特性和声学特性的依赖性,并可以帮助指导选择合适的超声暴露参数以进行进一步研究。

High Intensity Focused Ultrasound (HIFU) is a promising therapy for thermal ablation and hyperthermia, characterised by it noninvasiveness, high penetration depth. Effective HIFU thermo-therapy requires the ability to accurately predict temperature elevation and corresponding thermal dose distribution in target tissues. We report a parametric numerical study of the thermal response and corresponding of thermal dose in a bio-tissue in response to ultrasound. We compared the predictions of tissue models with two, three and seven layers, to ultrasound induced heating at duty cycles ranging from 0.6 and 0.9. Further, two tumor sizes and transducer powers (10 W and 15 W) were considered. Inhomogeneous Helmholtz equation was coupled with Penne's bioheat equation to predict heating in response to pulsed ultrasound. Necrotic lesion size was calculated using the cumulative equivalent minute (CEM) thermal dose function. In-vitro experiments were performed with agar-based tissue phantoms as a preliminary validation of the numerical results. The simulations conducted with the seven layered model predicted up to 33.5% lower peak pressure amplitude than the three-layered model. As the ultrasound pulse width decreased with the equivalent sonication time fixed, the corresponding magnitude of the peak temperature and the rate of temperature rise decreased. Pulsed ultrasound resulted in increased the volume of necrotic lesions for equivalent time of sonication. The findings of this study highlight the dependence of HIFU-induced heating on target geometry and acoustic properties, and could help guide the choice of suitable ultrasound exposure parameters for further studies.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源