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首页> 外文期刊>Physics in medicine and biology. >Analysis of the local worst-case SAR exposure caused by an MRI multi-transmit body coil in anatomical models of the human body.
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Analysis of the local worst-case SAR exposure caused by an MRI multi-transmit body coil in anatomical models of the human body.

机译:在人体解剖模型中分析由MRI多发射体线圈引起的局部最坏情况SAR暴露。

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摘要

Multi-transmit coils are increasingly being employed in high-field magnetic resonance imaging, along with a growing interest in multi-transmit body coils. However, they can lead to an increase in whole-body and local specific absorption rate (SAR) compared to conventional body coils excited in circular polarization for the same total incident input power. In this study, the maximum increase of SAR for three significantly different human anatomies is investigated for a large 3 T (128 MHz) multi-transmit body coil using numerical simulations and a (generalized) eigenvalue-based approach. The results demonstrate that the increase of SAR strongly depends on the anatomy. For the three models and normalization to the sum of the rung currents squared, the whole-body averaged SAR increases by up to a factor of 1.6 compared to conventional excitation and the peak spatial SAR (averaged over any 10 cm(3) of tissue) by up to 13.4. For some locations the local averaged SAR goes up as much as 800 times (130 when looking only at regions where it is above 1% of the peak spatial SAR). The ratio of the peak spatial SAR to the whole-body SAR increases by a factor of up to 47 and can reach values above 800. Due to the potentially much larger power deposition, additional, preferably patient-specific, considerations are necessary to avoid injuries by such systems.
机译:在高场磁共振成像中越来越多地使用多发射线圈,并且对多发射体线圈的兴趣也越来越高。但是,与在相同的总入射输入功率下以圆极化激发的常规人体线圈相比,它们可以导致全身和局部比吸收率(SAR)的增加。在这项研究中,使用数值模拟和(基于特征值)的方法,针对大型3 T(128 MHz)多发射体线圈,研究了三种截然不同的人体解剖结构的SAR最大增加。结果表明,SAR的增加在很大程度上取决于解剖结构。对于这三个模型并标准化为梯级电流的平方,与传统的激励和峰值空间SAR(组织的任何10 cm(3)的平均值)相比,全身平均SAR最多可提高1.6倍。最高可达13.4。对于某些位置,本地平均SAR上升多达800倍(仅查看峰值SAR大于1%的区域时,则为130倍)。峰值空间SAR与全身SAR的比率最多增加47倍,并且可以达到800以上的值。由于潜在的更大功率沉积,为避免受伤,需要额外考虑(最好是针对患者)通过这样的系统。

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