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A 64-channel 3T array coil for accelerated brain MRI

机译:用于加速脑MRI的64通道3T阵列线圈

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摘要

A 64-channel brain array coil was developed and compared to a 32-channel array constructed with the same coil former geometry to precisely isolate the benefit of the 2-fold increase in array coil elements. The constructed coils were developed for a standard clinical 3T MRI scanner and used a contoured head-shaped curved former around the occipital pole and tapered in at the neck to both improve sensitivity and patient comfort. Additionally, the design is a compact, split-former design intended for robust daily use. Signal-to-noise ratio and noise amplification (G-factor) for parallel imaging were quantitatively evaluated in human imaging and compared to a size and shape-matched 32-channel array coil. For unaccelerated imaging, the 64-channel array provided similar signal-to-noise ratio in the brain center to the 32-channel array and 1.3-fold more signal-to-noise ratio in the brain cortex. Reduced noise amplification during highly parallel imaging of the 64-channel array provided the ability to accelerate at approximately one unit higher at a given noise amplification compared to the sized-matched 32-channel array. For example, with a 4-fold acceleration rate, the central brain and cortical signal-to-noise ratio of the 64-channel array was 1.2- and 1.4-fold higher, respectively, compared to the 32-channel array. The characteristics of the coil are demonstrated in accelerated brain imaging.
机译:开发了64通道脑阵列线圈,并将其与具有相同线圈架几何形状的32通道阵列进行比较,以精确隔离阵列线圈元件增加2倍的好处。构造好的线圈是为标准的临床3T MRI扫描仪开发的,并使用围绕枕骨的轮廓化的头形弯曲线圈架,并在颈部逐渐变细,以提高灵敏度和患者舒适度。此外,该设计是紧凑的,可拆分的设计,旨在用于日常使用。在人体成像中对并行成像的信噪比和噪声放大(G因子)进行了定量评估,并与尺寸和形状匹配的32通道阵列线圈进行了比较。对于不加速的成像,64通道阵列在大脑中部提供的信噪比与32通道阵列类似,并且在大脑皮层中提供1.3倍的信噪比。与尺寸匹配的32通道阵列相比,在64通道阵列的高度并行成像期间降低的噪声放大提供了在给定的噪声放大下以大约一个单位高的速度加速的能力。例如,以4倍的加速速率,与32通道阵列相比,64通道阵列的中央大脑和皮质的信噪比分别高1.2倍和1.4倍。线圈的特性在加速的大脑成像中得到了证明。

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