首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Online real-time reconstruction of adaptive TSENSE with commodity CPU/GPU hardware.
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Online real-time reconstruction of adaptive TSENSE with commodity CPU/GPU hardware.

机译:使用商用CPU / GPU硬件在线实时重建自适应TSENSE。

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摘要

Adaptive temporal sensitivity encoding (TSENSE) has been suggested as a robust parallel imaging method suitable for MR guidance of interventional procedures. However, in practice, the reconstruction of adaptive TSENSE images obtained with large coil arrays leads to long reconstruction times and latencies and thus hampers its use for applications such as MR-guided thermotherapy or cardiovascular catheterization. Here, we demonstrate a real-time reconstruction pipeline for adaptive TSENSE with low image latencies and high frame rates on affordable commodity personal computer hardware. For typical image sizes used in interventional imaging (128 x 96, 16 channels, sensitivity encoding (SENSE) factor 2-4), the pipeline is able to reconstruct adaptive TSENSE images with image latencies below 90 ms at frame rates of up to 40 images/s, rendering the MR performance in practice limited by the constraints of the MR acquisition. Its performance is demonstrated by the online reconstruction of in vivo MR images for rapid temperature mapping of the kidney and for cardiac catheterization.
机译:自适应时间灵敏度编码(TSENSE)已被建议作为一种鲁棒的并行成像方法,适用于MR介入程序的指导。然而,在实践中,利用大线圈阵列获得的自适应TSENSE图像的重建导致重建时间和潜伏期较长,因此阻碍了其在MR引导热疗或心血管导管治疗等应用中的使用。在这里,我们展示了价格适中的商用个人计算机硬件上具有低图像延迟和高帧频的自适应TSENSE实时重建管道。对于介入成像中使用的典型图像大小(128 x 96,16通道,灵敏度编码(SENSE)因子2-4),管线能够以高达40幅图像的帧频重建自适应延迟时间小于90 ms的TSENSE图像/ s,实际上使MR性能受到MR采集约束的限制。它的性能通过体内MR图像的在线重建来证明,该重建可快速绘制肾脏的温度并进行心脏导管插入术。

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