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Experimental and numerical optimization modelling to reduce radiofrequency-induced risks of magnetic resonance examinations on leaded implants

机译:减少射频诱导磁共振检查对铅植入物的磁共振检测风险的实验和数值优化建模

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Convex formulations can be used to reduce the local specific absorption rate enhancement by active medical implants of radiofrequency fields in magnetic resonance examinations while minimizing the loss of image quality. This paper demonstrates that such an optimization methodology, previously presented for strictly computational models, can be extended to a hybrid scheme using experimentally determined implant models and pre-computed fields, which can enable quasi real-time exposure optimization. The methodology determines the optimum radiofrequency field shimming condition by considering both the reduction of specific absorption rate enhancement at the tip of the implant lead, created by the interaction of the radiofrequency fields tangential to the implant trajectory with the characteristic response of the implant, and the preservation of magnetic field homogeneity, which correlates to image quality. The inputs to this workflow are those required for each implant by standard ISO 10974 evaluation, namely the validated piece-wise transfer function of the implant, the clinical routing within the patient, and the pre-computed numerical estimation of patient exposure without the implant. Optimized incident field conditions were computed to meet a range of numerical targets for specific absorption rate reduction, stepping down percentagewise from the maximum field homogeneity to the minimum exposure enhancement, for a generic implant with a flexible wire in a standard benchtop radiofrequency coil and phantom. Measurements of the corresponding specific absorption rate enhancements validated the predictions from the optimization approach within the combined confidence interval.
机译:凸配方可用于通过磁共振检查中的射频场的活性医疗植入物降低局部特异性吸收率,同时最小化图像质量的损失。本文演示了这种优化方法,以前用于严格计算模型,可以使用实验确定的植入模型和预计字段扩展到混合方案,其可以实现准实时曝光优化。该方法通过考虑植入物铅尖端的特定吸收率增强的减少来确定最佳的射频场涂抹条件,由射频场与植入物的特征响应切向来的植入物轨迹的相互作用产生,以及保存磁场均匀性,其与图像质量相关。该工作流的输入是通过标准ISO 10974评估的每个植入物所需的输入,即植入物的验证的片断传递函数,患者内的临床路线以及患者暴露的预先计算的数值估计而没有植入物。计算优化的事件场条件以满足特定吸收率降低的一系列数值目标,从最大曝光增强到最大曝光增强的最大场均匀性,在标准台式射频线圈和幻影中具有柔性线的通用植入物。相应的特定吸收率增强的测量验证了从合并置信区间内的优化方法的预测。

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