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用于减少 3T MRI 中金属伪影的切片编码金属伪影校正(SEMAC)的实用性。

Usefulness of slice encoding for metal artifact correction (SEMAC) for reducing metallic artifacts in 3-T MRI.

机构信息

Department of Radiology, Research Institute of Radiological Science, Medical Convergence Research Institute, and Severance Biomedical Science Institute, Yonsei University College of Medicine, 250 Seongsanno, Seodaemun-gu, Seoul 120-752, Republic of Korea.

出版信息

Magn Reson Imaging. 2013 Jun;31(5):703-6. doi: 10.1016/j.mri.2012.11.004. Epub 2013 Jan 3.

Abstract

PURPOSE

The purpose of the study was to assess the usefulness of slice encoding for metal artifact correction (SEMAC) in 3.0-T magnetic resonance (MR) in minimizing metallic artifacts in patients with spinal prostheses.

MATERIALS AND METHODS

Institutional review board approval and informed consent were obtained for this study. Twenty-seven spine MR scans were performed with metal artifact reduction SEMAC between May 2011 and July 2012 in patients with metallic devices. The MR scans were performed on a 3-T MR system (Achieva; Philips Healthcare, Best, the Netherlands) including SEMAC-corrected T2-weighted axial/sagittal images and two-dimensional fast spin echo (FSE) axial/sagittal images. The SEMAC-corrected images were compared to conventional T2-weighted FSE images. Two musculoskeletal radiologists qualitatively analyzed the images in terms of visualization of the pedicle, vertebral body, dural sac, intervertebral disc, intervertebral neural foramina, screws and metallic artifacts. The paired images were rated using a 5-point scale. P values less than .05 were considered to indicate statistically significant differences.

RESULTS

The SEMAC-corrected MR images significantly reduced the metal-related artifacts. The T2-weighted images with SEMAC sequences enabled significantly improved periprosthetic visualizations of the pedicle, vertebral body, dural sac and neural foramina, with the exception of the intervertebral disc (P<.05). In addition, there was significant improvement in prosthesis visualization (P<.05).

CONCLUSION

MR images with SEMAC can reduce metal-related artifacts, providing improved delineation of the prosthesis and periprosthetic region. However, for the evaluation of the intervertebral disc, the SEMAC-corrected MR images showed no significant benefits.

摘要

目的

本研究旨在评估在 3.0T 磁共振(MR)中应用切片编码金属伪影校正(SEMAC)技术最小化脊柱假体患者金属伪影的作用。

材料与方法

本研究获得了机构审查委员会批准和患者知情同意。2011 年 5 月至 2012 年 7 月,对 27 例有金属植入物的脊柱患者进行了带金属伪影校正 SEMAC 的 MR 检查。MR 检查在一台 3.0T MR 系统(Achieva;飞利浦医疗保健,荷兰 Best)上完成,包括 SEMAC 校正的 T2 加权轴位/矢状位图像和二维快速自旋回波(FSE)轴位/矢状位图像。将 SEMAC 校正图像与常规 T2 加权 FSE 图像进行比较。两位肌肉骨骼放射科医生对图像的椎弓根、椎体、硬脑膜囊、椎间盘、椎间孔、螺钉和金属伪影的显示情况进行了定性分析。使用 5 分制对配对图像进行评分。P 值小于 0.05 被认为具有统计学意义。

结果

SEMAC 校正的 MR 图像显著降低了与金属相关的伪影。SEMAC 序列的 T2 加权图像显著改善了椎弓根、椎体、硬脑膜囊和椎间孔的假体周围显示,除了椎间盘(P<0.05)。此外,假体的显示也有显著改善(P<0.05)。

结论

SEMAC 可减少与金属相关的伪影,提供更好的假体和假体周围区域的勾画。然而,对于椎间盘的评估,SEMAC 校正的 MR 图像没有显示出明显的优势。

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