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高强度聚焦超声(HIFU)辐照频率与占空比组合参数优化对生物组织热损伤影响的仿真研究

Simulation Study on the Effect of HIFU Irradiation Frequency and Duty Cycle Combination Parameter Optimization on Thermal Lesion of Biological Tissue.

作者信息

Dong Hu, Liu Gang, Peng Gaofeng

机构信息

School of Information Science and Engineering, Changsha Normal University, Changsha 410100, China.

School of Information Science and Engineering, Xinyu University, Xinyu, 338004, China.

出版信息

J Biomed Phys Eng. 2025 Aug 1;15(4):341-352. doi: 10.31661/jbpe.v0i0.2412-1864. eCollection 2025 Aug.

Abstract

BACKGROUND

High-Intensity Focused Ultrasound (HIFU) represents a non-invasive treatment approach that utilizes non-ionizing radiation. This technique has found clinical utility in managing both benign and malignant solid tumors.

OBJECTIVE

This study aimed to investigate the variations in HIFU frequency and duty cycle influence thermal lesion formation in tissue to identify the optimal parameter combination for HIFU therapy in multi-layered tissues.

MATERIAL AND METHODS

In this theoretical framework, a model of HIFU application to multi-layer biological tissues was created. Four unique HIFU parameter sets, defined by combining high or low frequency with high or low duty cycle, were comprehensively examined. The study analyzed how these settings influenced temperature distributions and lesion area in the layered tissue to ascertain the ideal combination of frequency and duty cycle parameters.

RESULTS

Simulation results revealed that the former parameter set (high frequency, low duty cycle) was optimal for treating smaller, superficial tumours, whereas the latter combination (low frequency, high duty cycle) proved effective for deeper-seated lesions. Regarding thermal dose metrics, the high-energy setting (high frequency, high duty cycle) generated the most extensive lesion area and highest peak temperature, in contrast to the low-energy configuration (low frequency, low duty cycle), which produced the smallest coagulation zone and lowest focal temperature.

CONCLUSION

The study demonstrates that optimal HIFU therapeutic outcomes require frequency-duty cycle combinations tailored to tumour characteristics, with high-frequency/low-duty cycle for shallow small tumours and low-frequency/high-duty cycle for deep lesions, providing a framework for precision parameter selection in clinical applications.

摘要

背景

高强度聚焦超声(HIFU)是一种利用非电离辐射的非侵入性治疗方法。该技术在良性和恶性实体肿瘤的治疗中已得到临床应用。

目的

本研究旨在探讨HIFU频率和占空比的变化对组织内热损伤形成的影响,以确定多层组织中HIFU治疗的最佳参数组合。

材料与方法

在这个理论框架中,建立了一个将HIFU应用于多层生物组织的模型。综合研究了由高频或低频与高占空比或低占空比组合定义的四个独特的HIFU参数集。该研究分析了这些设置如何影响分层组织中的温度分布和损伤区域,以确定频率和占空比参数的理想组合。

结果

模拟结果表明,前一种参数集(高频、低占空比)最适合治疗较小的浅表肿瘤,而后一种组合(低频、高占空比)对深部病变有效。关于热剂量指标,高能量设置(高频、高占空比)产生的损伤区域最广,峰值温度最高,相比之下,低能量配置(低频、低占空比)产生的凝固区最小,焦点温度最低。

结论

该研究表明,最佳的HIFU治疗效果需要根据肿瘤特征调整频率-占空比组合,浅小肿瘤采用高频/低占空比,深部病变采用低频/高占空比,为临床应用中精确选择参数提供了框架。

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