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差分进化优化微波聚焦适形热疗相控阵激励以实现靶向乳腺癌加热。

Differential Evolution Optimization of Microwave Focused Hyperthermia Phased Array Excitation for Targeted Breast Cancer Heating.

机构信息

College of Information and Communication Engineering, Harbin Engineering University, Harbin 150000, China.

School of Cyberspace, Hangzhou Dianzi University, Hangzhou 310018, China.

出版信息

Sensors (Basel). 2023 Apr 7;23(8):3799. doi: 10.3390/s23083799.

Abstract

Microwave hyperthermia using the phased array applicator is a non-invasive treatment modality for breast cancer. Hyperthermia treatment planning (HTP) is critical to accurately treating breast cancer and avoiding damage to the patient's healthy tissue. A global optimization algorithm, differential evolution (DE) algorithm, has been applied to optimize HTP for breast cancer and its ability to improve the treatment effect was proved by electromagnetic (EM) and thermal simulation results. DE algorithm is compared to time reversal (TR) technology, particle swarm optimization (PSO) algorithm, and genetic algorithm (GA) in HTP for breast cancer in terms of convergence rate and treatment results, such as treatment indicators and temperature parameters. The current approaches in breast cancer microwave hyperthermia still have the problem of hotspots in healthy tissue. DE enhances focused microwave energy absorption into the tumor and reduces the relative energy of healthy tissue during hyperthermia treatment. By comparing the treatment results of each objective function used in DE, the DE algorithm with hotspot to target quotient (HTQ) as the objective function has outstanding performance in HTP for breast cancer, which can increase the focused microwave energy of the tumor and decrease the damage to healthy tissue.

摘要

采用相控阵辐射器的微波热疗是一种非侵入性的乳腺癌治疗方法。热疗计划(HTP)对于准确治疗乳腺癌和避免患者健康组织受损至关重要。一种全局优化算法,即差分进化(DE)算法,已被应用于优化乳腺癌的 HTP,并通过电磁场(EM)和热模拟结果证明了其提高治疗效果的能力。在 HTP 中,DE 算法在收敛速度和治疗效果(如治疗指标和温度参数)方面与时间反转(TR)技术、粒子群优化(PSO)算法和遗传算法(GA)进行了比较。目前乳腺癌微波热疗的方法仍存在健康组织热点的问题。DE 增强了聚焦微波能量在肿瘤中的吸收,并降低了热疗过程中健康组织的相对能量。通过比较 DE 中使用的每个目标函数的治疗结果,以热点到目标商(HTQ)为目标函数的 DE 算法在乳腺癌 HTP 中表现出色,它可以增加肿瘤的聚焦微波能量并减少对健康组织的损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8854/10144698/9f8c85b198f2/sensors-23-03799-g001.jpg

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