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皮质骨的超短回波时间光谱成像(UTESI)

Ultrashort echo time spectroscopic imaging (UTESI) of cortical bone.

作者信息

Du Jiang, Hamilton Gavin, Takahashi Atsushi, Bydder Mark, Chung Christine B

机构信息

Department of Radiology, University of California, San Diego, San Diego, California 92103-8226, USA.

出版信息

Magn Reson Med. 2007 Nov;58(5):1001-9. doi: 10.1002/mrm.21397.

Abstract

Cortical bone in the mature skeleton has a short T(2)* and produces no detectable signal with conventional MR sequences. A two-dimensional ultrashort echo time (UTE) sequence employing half radio frequency (RF) pulse excitations and radial ramp sampling reduces the effective TE to 8 micros and is capable of detecting signals from cortical bone. We propose a time-efficient UTE spectroscopic imaging (UTESI) technique based on an interleaved variable TE acquisition, preceded by long T(2)* signal suppression using either a 90 degrees pulse and gradient dephasing or an inversion pulse and nulling. The projections were divided into multiple groups with the data for each group being collected with progressively increasing TE and interleaved projection angles. The undersampled projections within each group sparsely covered k-space. A view sharing and sliding window reconstruction algorithm was implemented to reconstruct images at each TE, followed by Fourier transformation in the time domain to generate spectroscopic images. T(2)* was quantified through either exponential fitting of the time domain images or line fitting of the magnitude spectrum. Relative water content and the resonance frequency shift due to bulk susceptibility were also evaluated. The feasibility of this technique was demonstrated with phantom and volunteer studies on a clinical 3T scanner.

摘要

成熟骨骼中的皮质骨具有短T(2)*,在传统磁共振序列中不产生可检测信号。一种采用半射频(RF)脉冲激发和径向斜坡采样的二维超短回波时间(UTE)序列可将有效回波时间缩短至8微秒,能够检测来自皮质骨的信号。我们提出了一种基于交错可变回波时间采集的高效UTE光谱成像(UTESI)技术,在使用90度脉冲和梯度去相或反转脉冲和归零进行长T(2)信号抑制之前。投影被分为多个组,每组数据在回波时间逐渐增加和交错投影角度的情况下采集。每组内欠采样的投影稀疏地覆盖k空间。实施了视图共享和滑动窗口重建算法,以在每个回波时间重建图像,然后在时域进行傅里叶变换以生成光谱图像。通过对时域图像进行指数拟合或对幅度谱进行线拟合来量化T(2)。还评估了相对含水量和由于体磁化率引起的共振频率偏移。在临床3T扫描仪上进行的体模和志愿者研究证明了该技术的可行性。

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