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首页> 外文期刊>Magnetic Resonance in Medicine >Local specific absorption rate control for parallel transmission by virtual observation points
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Local specific absorption rate control for parallel transmission by virtual observation points

机译:通过虚拟观察点进行并行传输的局部特定吸收率控制

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The supervision of local specific absorption rate (SAR) in parallel transmission applications in MRI is crucial. One existing approach is to use electromagnetic simulations including human anatomical models and to precalculate the electric field distributions of each individual channel. These can be superposed later with respect to certain combined excitations under investigation, and the local SAR distribution can be evaluated. Local SAR maxima can be obtained by exhaustive search over all investigated subvolumes of the body model. Practical challenges arise for the adequate handling and comparing of precalculated field distributions as long as the expected combined radiofrequency excitations are still undetermined. Worst-case approximations for local SAR lead to significant radiofrequency pulse performance limitations. Optimizing local SAR in radiofrequency pulse design using constraints for each subvolume is impractical. A method is proposed to significantly reduce the complexity without restriction to particular radiofrequency excitations. By constructing several matrices, it becomes sufficient to consider only these so-called Virtual Observation Points for an adequate, conservative estimation of the maximum local SAR. The applied techniques involve concepts of vector optimization as well as semidefinite programming. Magn Reson Med, 2011. © 2011 Wiley Periodicals, Inc.
机译:MRI在并行传输应用中对局部比吸收率(SAR)的监控至关重要。一种现有方法是使用包括人体解剖模型的电磁仿真并预先计算每个单独通道的电场分布。以后可以将它们与正在研究的某些组合激励叠加,然后可以评估局部SAR分布。可以通过穷举搜索人体模型的所有子体积来获得局部SAR最大值。只要仍未确定预期的组合射频激励,充分处理和比较预先计算的场分布就会出现实际挑战。局部SAR的最坏情况近似会导致射频脉冲性能显着受限。使用每个子体积的约束来优化射频脉冲设计中的局部SAR是不切实际的。提出了一种在不限制特定射频激励的情况下显着降低复杂度的方法。通过构造几个矩阵,仅考虑这些所谓的虚拟观察点就足以对最大局部SAR进行适当的保守估计。所应用的技术涉及矢量优化以及半定规划的概念。 Magn Reson Med,2011年。©2011 Wiley Periodicals,Inc.。

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