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双回波脉冲序列与三维超短回波时间在骨骼和关节磁共振成像中的初步应用。

Preliminary use of a double-echo pulse sequence with 3D ultrashort echo time in the MRI of bones and joints.

作者信息

Ma Liheng, Meng Quanfei, Chen Yingming, Zhang Zhaohui, Sun Haixing, Deng Demao

机构信息

The Medical Diagnostic Center, The Sixth Affiliated Hospital of Sun Yat-Sen University, Guangzhou, Guangdong 510080;

出版信息

Exp Ther Med. 2013 May;5(5):1471-1475. doi: 10.3892/etm.2013.993. Epub 2013 Mar 7.

Abstract

The aim of the present study was to investigate the application of a double-echo pulse sequence with 3D ultrashort echo time (UTE) in the magnetic resonance imaging (MRI) of bones and joints. In total, 7 healthy volunteers and 1 volunteer with a suspected tear of the lateral meniscus of the left knee joint underwent MRI with a double-echo pulse sequence and 3D UTE. The imaging was performed on the tibial diaphysis, knee joint and ankle of the volunteers and on a segment of porcine fibula . The echo time of echo 1 (TE1) of the UTE images for the achilles tendon of the ankle joint were set as 0.08, 0.16, 0.24 and 0.35 msec. The maximum intensity projection (MIP) of the difference images created from the primary double-echo images with a TE1 of 0.08 msec were performed on the tendons of the ankle to display their 3D structure. The data were analyzed with a one-way ANOVA and paired-sample t-test. The 3D distribution of the tendons was displayed through MIPs of the difference images created from the primary double-echo images. The cortical bones, periosteum, tendons and menisci of the 8 volunteers appeared as high signal intensities in the UTE pulse sequence. Multiplanar reconstruction followed by subtraction of the primary double-echo images raised the image signal-to-noise (S/N) ratio from 2.80±0.75 to 3.76±0.88 (t=-4.851, P<0.01). The artifacts appeared more marked as the TE1 was prolonged. A double pulse sequence MRI with 3D UTE may display the short T components which are not displayed with a conventional clinical MRI sequence, therefore creating a basis for the further quantification of these tissues.

摘要

本研究的目的是探讨具有三维超短回波时间(UTE)的双回波脉冲序列在骨骼和关节磁共振成像(MRI)中的应用。共有7名健康志愿者和1名疑似左膝关节外侧半月板撕裂的志愿者接受了采用双回波脉冲序列和三维UTE的MRI检查。成像在志愿者的胫骨干、膝关节和踝关节以及一段猪腓骨上进行。踝关节跟腱的UTE图像中回波1(TE1)的回波时间设置为0.08、0.16、0.24和0.35毫秒。对TE1为0.08毫秒的原始双回波图像所创建的差值图像进行最大强度投影(MIP),以显示踝关节肌腱的三维结构。数据采用单因素方差分析和配对样本t检验进行分析。肌腱的三维分布通过原始双回波图像所创建的差值图像的MIP来显示。8名志愿者的皮质骨、骨膜、肌腱和半月板在UTE脉冲序列中呈现为高信号强度。多平面重建并减去原始双回波图像后,图像信噪比(S/N)从2.80±0.75提高到3.76±0.88(t=-4.851,P<0.01)。随着TE1延长,伪影显得更明显。具有三维UTE的双脉冲序列MRI可能显示常规临床MRI序列未显示的短T成分,因此为这些组织的进一步定量分析奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbfa/3671832/d6e2319e4d06/ETM-05-05-1471-g00.jpg

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