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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Local B1+ shimming for prostate imaging with transceiver arrays at 7T based on subject-dependent transmit phase measurements.
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Local B1+ shimming for prostate imaging with transceiver arrays at 7T based on subject-dependent transmit phase measurements.

机译:基于受检者相关的发射相位测量,在7T用收发器阵列对前列腺成像进行局部B1 +匀场。

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摘要

High-quality prostate images were obtained with transceiver arrays at 7T after performing subject-dependent local transmit B(1) (B(1) (+)) shimming to minimize B(1) (+) losses resulting from destructive interferences. B(1) (+) shimming was performed by altering the input phase of individual RF channels based on relative B(1) (+) phase maps rapidly obtained in vivo for each channel of an eight-element stripline coil. The relative transmit phases needed to maximize B(1) (+) coherence within a limited region around the prostate greatly differed from those dictated by coil geometry and were highly subject-dependent. A set of transmit phases determined by B(1) (+) shimming provided a gain in transmit efficiency of 4.2 +/- 2.7 in the prostate when compared to the standard transmit phases determined by coil geometry. This increased efficiency resulted in large reductions in required RF power for a given flip angle in the prostate which, when accounted for in modeling studies, resulted in significant reductions of local specific absorption rates. Additionally, B(1) (+) shimming decreased B(1) (+) nonuniformity within the prostate from (24 +/- 9%) to (5 +/- 4%). This study demonstrates the tremendous impact of fast local B(1) (+) phase shimming on ultrahigh magnetic field body imaging.
机译:在执行依赖于对象的本地传输B(1)(B(1)(+))匀场以最小化破坏性干扰导致的B(1)(+)损失后,在7T用收发器阵列获得高质量的前列腺图像。 B(1)(+)匀场是通过基于八个元素的带状线材线圈的每个通道在体内快速获得的相对B(1)(+)相图来更改单个RF通道的输入相位来执行的。使前列腺周围有限区域内的B(1)(+)相干性最大化所需的相对发射相位与线圈几何形状所决定的相对发射相位大不相同,并且与受试者高度相关。与由线圈几何形状确定的标准发射相相比,一组由B(1)(+)匀场确定的发射相在前列腺中的发射效率提高了4.2 +/- 2.7。效率的提高导致前列腺中给定翻转角所需的RF功率大大降低,在建模研究中考虑到这一点,导致局部比吸收率显着降低。此外,B(1)(+)匀场可将B(1)(+)前列腺内的不均匀性从(24 +/- 9%)降低至(5 +/- 4%)。这项研究表明快速局部B(1)(+)匀场对超高磁场人体成像的巨大影响。

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