基于温度监测的可控光热疗法:理论与实验分析

A. Orrico, Leonard M. Bianchi, S. Korganbayev, M. Landrø, P. Saccomandi
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引用次数: 1

摘要

实时监测和温度控制有利于优化热消融治疗效果。本文通过仿真和实验研究了温度反馈控制系统在限制热损伤区域和维持设定值温度方面的有效性。所实现的控制系统根据光纤光栅传感器测得的最高温度值来调节激光源功率。该理论模型预测了不同控制参数下生物组织的热响应,并计算了产生的热损伤。在温度趋势和热损伤方面,选择43°C至60°C的不同设定点温度来评估其对辐照组织区域的影响。采用相同的控制策略得到的实验温度趋势验证了数值结果。最后,仿真结果和实验结果都表明,控制系统能够通过在设定温度下进行激光烧蚀来限制组织热损伤区域。
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Controlled photothermal therapy based on temperature monitoring: theoretical and experimental analysis
Real-time monitoring and temperature-based control are beneficial for optimizing the outcomes of thermal ablation treatments. In this paper, simulations and experiments were performed to investigate the efficacy of the temperature-feedback control system in confining the thermal damaged area and in maintaining the setpoint temperature. The implemented control system adjusts the laser source power based on the maximum temperature values measured by fiber Bragg grating sensors. The theoretical model predicts the thermal response of the biological tissue under different control parameters and allows calculating the produced thermal damage. Different setpoint temperatures ranging from 43 °C to 60 °C were chosen to evaluate their effects on the irradiated tissue region, in terms of temperature trend and thermal damage. The numerical results are validated by the experimental temperature trends obtained applying the same control strategy. Finally, both the simulation results and experiment outcomes show the capability of the control system to confine the tissue thermal damaged area by performing a laser ablation procedure almost at the set temperature.
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