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Investigation of parameters affecting treatment time in MRI-guided transurethral ultrasound therapy

机译:影响MRI引导经尿道超声治疗治疗时间的参数研究

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MRI-guided transurethral ultrasound therapy shows promise for minimally invasive treatment of localized prostate cancer. Real-time MR temperature feedback enables the 3D control of thermal therapy to define an accurate region within the prostate. Previous in-vivo canine studies showed the feasibility of this method using transurethral planar transducers. The aim of this simulation study was to reduce the procedure time, while maintaining treatment accuracy by investigating new combinations of treatment parameters. A numerical model was used to simulate a multi-element heating applicator rotating inside the urethra in 10 human prostates. Acoustic power and rotation rate were varied based on the feedback of the temperature in the prostate. Several parameters were investigated for improving the treatment time. Maximum acoustic power and rotation rate were optimized interdependently as a function of prostate radius and transducer operating frequency, while avoiding temperatures >90degC in the prostate. Other trials were performed on each parameter separately, with the other parameter fixed. The concept of using dual-frequency transducers was studied, using the fundamental frequency or the 3rd harmonic component depending on the prostate radius. The maximum acoustic power which could be used decreased as a function of the prostate radius and the frequency. Decreasing the frequency (9.7-3.0 MHz) or increasing the power (10-20 W.cm-2) led to treatment times shorter by up to 50% under appropriate conditions. Dual-frequency configurations, while helpful, tended to have less impact on treatment times. Treatment accuracy was maintained and critical adjacent tissues like the rectal wall remained protected. The interdependence between power and frequency may require integrating multi-parametric functions inside the controller for future optimizations. As a first approach, however, even slight modifications of key parameters can be sufficient to reduce treatment time.
机译:MRI引导的经尿道超声治疗显示了局部前列腺癌的微创治疗的承诺。实时MR温度反馈使热疗法的3D控制能够在前列腺内定义精确区域。以前的体内犬研究表明,使用经尿道平面换能器的这种方法的可行性。该模拟研究的目的是通过调查治疗参数的新组合来减少程序时间,同时保持治疗准确性。使用数值模型来模拟10人前列腺内尿道内的多元素加热涂抹器。基于前列腺中温度的反馈来改变声学功率和旋转速率。研究了几个参数以改善治疗时间。最大声功率和旋转速率相互优化,作为前列腺半径和换能器工作频率的函数,同时避免了前列腺的温度> 90degc。其他试验分别在每个参数上进行,另一个参数固定。使用基频或第3次谐波分量根据前列腺半径来研究使用双频传感器的概念。可以使用的最大声功率随着前列腺半径和频率的函数而降低。降低频率(9.7-3.0MHz)或增加功率(10-20 W.CM-2)在适当条件下导致较短的处理时间较短至50%。双频配置,虽然有用,但对治疗时间的影响越差。维持治疗准确度,并且像直肠壁一样临界邻近组织残留。功率和频率之间的相互依存可能需要将控制器内的多参数函数集成为未来的优化。然而,作为第一种方法,即使是关键参数的微小修改也足以减少治疗时间。

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