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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Thermal dose optimization for ultrasound tissue ablation
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Thermal dose optimization for ultrasound tissue ablation

机译:超声组织消融的热剂量优化

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摘要

A formal and general thermal dose optimisation method is developed and tested. Prior methods require brute force searches wherein the temperature and dose distributions must be computed at each iteration by solving the bioheat transfer equation (BHTE) numerically. This is extremely time-consuming and can only be used to compare a few prespecified strategies instead of obtaining a more general optimal result. With the method developed here, dose distribution can be calculated without solving the BHTE numerically. This can be done in a matter of a few minutes compared with many hours. Moreover, general thermal dose optimization can now be performed to find the optimal strength and location of each focus so that an optimal dose distribution is obtained while the specified constraint is satisfied. The algorithm developed here consists of a closed-form solution to the BHTE, a Gaussian model for parameterizing a temperature distribution created by a power deposition pattern, and a two-step optimization technique for obtaining the model parameters that optimize the thermal dose distribution. Several examples are given to demonstrate the effectiveness of the algorithm and its robustness under different initial conditions and under assumptions of different sizes of the target region and different numbers of foci. The algorithm developed here provides an efficient and effective tool for treatment planning in ultrasound tissue ablation.
机译:开发并测试了正式的通用热剂量优化方法。现有方法需要蛮力搜索,其中必须通过数值求解生物热传递方程(BHTE)在每次迭代中计算温度和剂量分布。这非常耗时,只能用于比较一些预先指定的策略,而不能获得更一般的最佳结果。使用此处开发的方法,无需计算BHTE即可计算剂量分布。与许多小时相比,这只需几分钟即可完成。而且,现在可以执行一般的热剂量优化以找到每个焦点的最佳强度和位置,以便在满足指定约束的同时获得最佳剂量分布。此处开发的算法包括BHTE的闭式解决方案,用于参数化功率沉积图案创建的温度分布的高斯模型以及用于获得优化热剂量分布的模型参数的两步优化技术。给出了几个例子,以证明该算法的有效性及其在不同初始条件下以及在目标区域大小不同且焦点数量不同的假设下的鲁棒性。此处开发的算法为超声组织消融中的治疗规划提供了有效的工具。

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