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REAL-TIME LOCAL AND GLOBAL SAR ESTIMATION FOR PATIENT SAFETY AND IMPROVED SCANNING PERFORMANCE

机译:实时局部和全局SAR估计以确保患者安全并改善扫描性能

摘要

In a method and apparatus to enable increased RF duty cycle in high field MR scans, a specific energy absorption rate (SAR) calculation processor (36) calculates the local and global SAR or even a spatial SAR map. The efficient implementation by using pre-averaged data (based on E-fields) makes a fast and accurate SAR estimation possible. By incorporating additional information as e.g. patient position the SAR calculation accuracy can be increased as well as by using more patient specific precalculated information (e.g. based on different bio meshes), the so called Q-matrices. Optionally, a sequence controller (24) creates a global SAR optimal RF pulse. After the optimal RF pulse is applied, the SAR and its spatial distribution are determined. SAR hotspots are also determined. Q-matrices within an appropriate radius around the hotspots are averaged and added to a global Q-matrix in a weighted fashion. After the global Q-matrix is updated, a new optimal RF pulse is created. One or more of the steps can be repeated to converge the SAR to a minimum.
机译:在一种能够在高场MR扫描中增加RF占空比的方法和装置中,比能量吸收率(SAR)计算处理器( 36 )计算局部和全局SAR甚至空间SAR图。通过使用预先平均的数据(基于电场)的有效实现,可以实现快速准确的SAR估计。通过合并其他信息,例如患者位置SAR的计算精度可以提高,也可以通过使用更多患者特定的预先计算信息(例如基于不同的生物网格)(即所谓的Q矩阵)来提高。可选地,序列控制器( 24 )创建一个全局SAR最佳RF脉冲。施加最佳RF脉冲后,即可确定SAR及其空间分布。 SAR热点也已确定。对热点周围适当半径内的Q矩阵求平均,然后以加权方式添加到全局Q矩阵。更新全局Q矩阵后,将创建一个新的最佳RF脉冲。可以重复一个或多个步骤,以将SAR收敛到最小。

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