Avdievich N I, Hoffmann J, Shajan G, Pfrommer A, Giapitzakis I A, Scheffler K, Henning A
High-Field MR Center, Max Planck Institute for Biological Cybernetics, Tübingen, Germany.
Department for Biomedical Magnetic Resonance, University of Tübingen, Tübingen, Germany.
NMR Biomed. 2017 Feb;30(2). doi: 10.1002/nbm.3680. Epub 2016 Dec 28.
Ultra-high field (UHF, ≥7 T) tight fit transceiver phased arrays improve transmit (Tx) efficiency (B /√P) in comparison with Tx-only arrays, which are usually larger to fit receive (Rx)-only arrays inside. One of the major problems limiting applications of tight fit arrays at UHFs is the anticipated increase of local tissue heating, which is commonly evaluated by the local specific absorption rate (SAR). To investigate the tradeoff between Tx efficiency and SAR when a tight fit UHF human head transceiver phased array is used instead of a Tx-only/Rx-only RF system, a single-row eight-element prototype of a 400 MHz transceiver head phased array was constructed. The Tx efficiency and SAR of the array were evaluated and compared with that of a larger Tx-only array, which could also be used in combination with an 18-channel Rx-only array. Data were acquired on the Siemens Magnetom whole body 9.4 T human MRI system. Depending on the head size, positioning and the RF shim strategy, the smaller array provides from 11 to 23% higher Tx efficiency. In general, the Tx performance, evaluated as B /√SAR, i.e. the safety excitation efficiency (SEE), is also not compromised. The two arrays provide very similar SEEs evaluated over 1000 random RF shim sets. We demonstrated that, in general, the tight fit transceiver array improves Tx performance without compromising SEE. However, in specific cases, the SEE value may vary, favoring one of the arrays, and therefore must be carefully evaluated.
与通常尺寸更大以便在内部容纳仅用于接收(Rx)的阵列的仅用于发射(Tx)的阵列相比,超高场(UHF,≥7 T)紧密贴合收发器相控阵提高了发射(Tx)效率(B /√P)。限制UHF紧密贴合阵列应用的主要问题之一是预期的局部组织加热增加,这通常通过局部比吸收率(SAR)来评估。为了研究当使用紧密贴合的UHF人体头部收发器相控阵代替仅用于发射/仅用于接收的射频系统时Tx效率与SAR之间的权衡,构建了一个400 MHz收发器头部相控阵的单排八元件原型。对阵列的Tx效率和SAR进行了评估,并与一个更大的仅用于发射的阵列进行了比较,该仅用于发射的阵列也可与一个18通道仅用于接收的阵列组合使用。数据是在西门子Magnetom全身9.4 T人体MRI系统上采集的。根据头部大小、定位和射频匀场策略,较小的阵列提供的Tx效率高11%至23%。一般来说,以B /√SAR评估的Tx性能,即安全激发效率(SEE),也不会受到影响。在1000个随机射频匀场设置上评估时,这两个阵列提供非常相似的SEE。我们证明,一般来说,紧密贴合的收发器阵列在不影响SEE的情况下提高了Tx性能。然而,在特定情况下,SEE值可能会有所不同,有利于其中一个阵列,因此必须仔细评估。