首页> 外文期刊>American Journal of Neuroradiology >Dynamic Sagittal Half-Fourier Acquired Single-Shot Turbo Spin-Echo MR Imaging of the Temporomandibular Joint: Initial Experience and Comparison with Sagittal Oblique Proton-Attenuation Images
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Dynamic Sagittal Half-Fourier Acquired Single-Shot Turbo Spin-Echo MR Imaging of the Temporomandibular Joint: Initial Experience and Comparison with Sagittal Oblique Proton-Attenuation Images

机译:动态矢状半傅里叶收购颞下颌关节的单发涡轮自旋回波MR成像:矢状斜质子衰减图像的初步经验和比较。

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摘要

BACKGROUND AND PURPOSE: Our aim was to assess dynamic half-Fourier acquired single-shot turbo spin-echo (HASTE) MR imaging of the temporomandibular joint (TMJ) using parallel imaging, in comparison with static proton density (Pd) imaging. MATERIALS AND METHODS: Thirty-four TMJs from 17 subjects (7 volunteers, 10 patients) were imaged in a multichannel head coil on a 1.5T magnet by using a 35-second dynamic sagittal HASTE acquisition (TR/TE, 1180/65 msec; matrix, 128 x 128; section thickness, 7 mm; 30 images) and sagittal oblique Pd in closed- and open-mouthed positions (TR/TE, 1800/12 msec; matrix, 256 x 256; section thickness, 2 mm; 15 sections). Images were reviewed by 3 readers and rated for confidence of disk position, presence of motion artifact, range of motion, and presence of disk displacement on a 5-point scale. Consensus review of cases was also performed to assess disk dislocation and limited range of motion. RESULTS: More static examinations were rated as having motion artifact (19.6% versus 6.9%, P = .016), limited range of motion (30.4% versus 17.7%, P = .016), and disk dislocations (31.4% versus 22.6%, P = .071). Confidence ratings were higher on dynamic examinations (4.11 versus 3.74, P = .018). Chi-squared tests demonstrated no significant difference in consensus reviews of the 2 examination types. CONCLUSION: Dynamic HASTE TMJ MR imaging is a time-efficient adjunct to standard MR imaging protocols, producing fewer motion artifacts, additional range of motion information, and a dynamic assessment of disk position, when compared with static imaging. Further study is needed to evaluate the role of this sequence in diagnosing disk displacement.
机译:背景与目的:我们的目的是使用平行成像技术评估动态的半傅里叶 颞下颌关节(TMJ)的单次涡轮自旋回波(HASTE)MR成像,与静态质子密度(Pd)成像相比。 材料和方法:来自17位受试者的34例TMJ(7名志愿者,10例患者) )通过使用35秒动态矢状 HASTE采集(TR / TE,1180/65毫秒;矩阵,128)在1.5T磁体上的多通道磁头线圈中成像。 x 128;截面 厚度,7毫米; 30张图像)和矢状斜Pd处于闭合 和张开位置(TR / TE,1800/12毫秒;矩阵, 256 x 256;切片厚度为2毫米; 15个切片)。通过3个阅读器对图像进行了 的评估,并对磁盘位置的置信度,运动伪影的存在性 ,运动范围和磁盘移位的存在性 进行了评级。 5分制。 还对病例进行了共识检查,以评估椎间盘脱位和活动受限范围。 结果:更多的静态检查被定为具有运动 伪像( 19.6%对6.9%,P = .016),有限运动范围(30.4%对17.7%,P = .016),磁盘脱位(31.4% 对) 22.6%,P = .071)。在动态 考试中的置信度更高(4.11对3.74,P = .018)。卡方检验 在两种检查类型的共识性评论 中没有显着差异。 结论:动态HASTE TMJ MR成像是省时的与标准MR成像协议相辅相成的 ,与之相比,产生的运动 伪像更少,运动信息的附加范围以及磁盘位置的动态 评估静态成像。 需要进一步研究以评估此序列 在诊断磁盘移位中的作用。

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    《American Journal of Neuroradiology》 |2007年第6期|00001126-00001132|共7页
  • 作者单位

    Department of Radiology, New York University School of Medicine, New York, NY;

    Department of Radiology, New York University Medical Center, New York, NY;

    Department of Radiology, New York University School of Medicine, New York, NY;

    Department of Radiology, New York University School of Medicine, New York, NY;

    Department of Radiology, New York University School of Medicine, New York, NY;

    Department of Oral and Maxillofacial Surgery, New York University College of Dentistry, New York, NY;

    Department of Oral and Maxillofacial Surgery, New York University College of Dentistry, New York, NY;

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