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Time Efficient 3D Radial UTE Sampling with Fully Automatic Delay Compensation on a Clinical 3T MR Scanner

机译:在临床3T MR扫描仪上具有全自动延迟补偿的省时3D径向UTE采样

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摘要

This work’s aim was to minimize the acquisition time of a radial 3D ultra-short echo-time (UTE) sequence and to provide fully automated, gradient delay compensated, and therefore artifact free, reconstruction. The radial 3D UTE sequence (echo time 60 μs) was implemented as single echo acquisition with center-out readouts and improved time efficient spoiling on a clinical 3T scanner without hardware modifications. To assess the sequence parameter dependent gradient delays each acquisition contained a quick calibration scan and utilized the phase of the readouts to detect the actual k-space center. This calibration scan does not require any user interaction. To evaluate the robustness of this automatic delay estimation phantom experiments were performed and 19 in vivo imaging data of the head, tibial cortical bone, feet and lung were acquired from 6 volunteers. As clinical application of this fast 3D UTE acquisition single breath-hold lung imaging is demonstrated. The proposed sequence allowed very short repetition times (TR~1ms), thus reducing total acquisition time. The proposed, fully automated k-phase based gradient delay calibration resulted in accurate delay estimations (difference to manually determined optimal delay −0.13 ± 0.45 μs) and allowed unsupervised reconstruction of high quality images for both phantom and in vivo data. The employed fast spoiling scheme efficiently suppressed artifacts caused by incorrectly refocused echoes. The sequence proved to be quite insensitive to motion, flow and susceptibility artifacts and provides oversampling protection against aliasing foldovers in all directions. Due to the short TR, acquisition times are attractive for a wide range of clinical applications. For short T2* mapping this sequence provides free choice of the second TE, usually within less scan time as a comparable dual echo UTE sequence.
机译:这项工作的目的是最大程度地减少径向3D超短回波时间(UTE)序列的采集时间,并提供全自动的,梯度延迟补偿的,因此无伪影的重建。径向3D UTE序列(回波时间为60μs)实现为具有中心向外读数的单回波采集,并在不进行硬件修改的情况下,在临床3T扫描仪上改进了时间有效的破坏效果。为了评估依赖于序列参数的梯度延迟,每个采集都包含快速校准扫描,并利用读数的相位来检测实际的k空间中心。此校准扫描不需要任何用户交互。为了评估此自动延迟估计模型的鲁棒性,进行了幻象实验,并从6名志愿者那里获得了19例头部,胫骨皮质骨,脚和肺的体内成像数据。作为这种快速3D UTE采集的临床应用,已证明了单屏屏气肺成像。提出的序列允许非常短的重复时间(TR〜1ms),从而减少了总的采集时间。提出的基于k相的全自动梯度延迟校准可实现精确的延迟估计(与手动确定的最佳延迟的差值为-0.13±0.45μs),并允许在无监督的情况下重建幻像和体内数据的高质量图像。所采用的快速破坏方案有效地抑制了由于错误地重新聚焦回声而导致的伪影。事实证明,该序列对运动,流动和磁化伪影非常不敏感,并提供了针对所有方向上的混叠折叠的过采样保护。由于TR较短,因此采集时间对于广泛的临床应用具有吸引力。对于较短的T2 *映射,此序列可提供第二TE的自由选择,通常可在可比的双回声UTE序列更少的扫描时间内完成。

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