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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Accelerated whole‐brain perfusion imaging using a simultaneous multislice spin‐echo and gradient‐echo sequence with joint virtual coil reconstruction
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Accelerated whole‐brain perfusion imaging using a simultaneous multislice spin‐echo and gradient‐echo sequence with joint virtual coil reconstruction

机译:使用具有关节虚拟线圈重建的同时多层旋转回波和梯度回声序列加速全脑灌注成像

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Purpose Dynamic susceptibility contrast imaging requires high temporal sampling, which poses limits on achievable spatial coverage and resolution. Additionally, more encoding‐intensive multi‐echo acquisitions for quantitative imaging are desired to mitigate contrast leakage effects, which further limits spatial encoding. We present an accelerated sequence that provides whole‐brain coverage at an improved spatio‐temporal resolution, to allow for dynamic quantitative R 2 and R 2 * mapping during contrast‐enhanced imaging. Methods A multi‐echo spin and gradient‐echo sequence was implemented with simultaneous multislice acquisition. Complementary k‐space sampling between repetitions and joint virtual coil reconstruction were used along with a dynamic phase‐matching technique to achieve high‐quality reconstruction at 9‐fold acceleration, which enabled 2 × 2 × 5 mm whole‐brain imaging at TR of 1.5 to 1.7 seconds. The multi‐echo images from this sequence were fit to achieve quantitative R 2 and R 2 * maps for each repetition, and subsequently used to find perfusion measures including cerebral blood flow and cerebral blood volume. Results Images reconstructed using joint virtual coil show improved image quality and g‐factor compared with conventional reconstruction methods, resulting in improved quantitative maps with a 9‐fold acceleration factor and whole‐brain coverage during the dynamic perfusion acquisition. Conclusion The method presented shows the advantage of using a joint virtual coil–GRAPPA reconstruction to allow for high acceleration factors while maintaining reliable image quality for quantitative perfusion mapping, with the potential to improve tumor diagnostics and monitoring.
机译:目的动态敏感性对比度成像需要高时采样,这造成可实现的空间覆盖和分辨率的限制。另外,期望用于定量成像的更多编码密集型的多回波采集来减轻对比度泄漏效应,这进一步限制了空间编码。我们提出了一种加速序列,其以改进的时空分辨率提供全脑覆盖,以允许在对比度增强成像期间动态定量R 2和R 2 *映射。方法采用同时多层采集实现多回波旋转和梯度回波序列。重复和联合虚拟线圈重建之间的互补k空间采样和动态相位匹配技术一起使用,以实现9倍加速度的高质量重建,其在1.5的TR中启用2×2×5mm全脑成像。 1.7秒。来自该序列的多回波图像适合实现每次重复的定量R 2和R 2 *图,随后用于找到灌注措施,包括脑血流和脑血容量。结果使用关节虚拟线圈重建的图像显示出改善的图像质量和与传统重建方法相比的G型因子,导致在动态灌注采集期间具有9倍的加速度因子和全脑覆盖的改进的定量图。结论所提出的方法显示了使用联合虚拟线圈 - 格拉普重建的优点,以实现高加速因子,同时保持定量灌注测绘的可靠图像质量,有可能改善肿瘤诊断和监测。

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