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在高场强磁共振成像和多排螺旋CT中克服金属骨科植入物产生的伪影

Overcoming artifacts from metallic orthopedic implants at high-field-strength MR imaging and multi-detector CT.

作者信息

Lee Mi-Jung, Kim Sungjun, Lee Sung-Ah, Song Ho-Taek, Huh Yong-Min, Kim Dae-Hong, Han Seung Hwan, Suh Jin-Suck

机构信息

Department of Diagnostic Radiology and Research Institute of Radiological Science and Brain Korea 21 Project for Medical Science, Yonsei University College of Medicine, 134 Sincheon-Dong Seodaemun-Gu, Seoul 120-752, Republic of Korea.

出版信息

Radiographics. 2007 May-Jun;27(3):791-803. doi: 10.1148/rg.273065087.

Abstract

At magnetic resonance (MR) imaging and multidetector computed tomography (CT), artifacts arising from metallic orthopedic hardware are an obstacle to obtaining optimal images. Although various techniques for reducing such artifacts have been developed and corroborated by previous researchers, a new era of more powerful MR imaging and multidetector CT modalities has renewed the importance of a systematic consideration of methods for artifact reduction. Knowledge of the factors that contribute to artifacts, of related theories, and of artifact reduction techniques has become mandatory for radiologists. Factors that affect artifacts on MR images include the composition of the metallic hardware, the orientation of the hardware in relation to the direction of the main magnetic field, the strength of the magnetic field, the pulse sequence type, and other MR imaging parameters (mainly voxel size, which is determined by the field of view, image matrix, section thickness, and echo train length). At multidetector CT, the factors that affect artifacts include the composition of the hardware, orientation of the hardware, acquisition parameters (peak voltage, tube charge, collimation, and acquired section thickness), and reconstruction parameters (reconstructed section thickness, reconstruction algorithm used, and whether an extended CT scale was used). A comparison of images obtained with different hardware and different acquisition and reconstruction parameters facilitates an understanding of methods for reducing or overcoming artifacts related to metallic implants.

摘要

在磁共振(MR)成像和多排螺旋计算机断层扫描(CT)中,金属骨科植入物产生的伪影是获取最佳图像的障碍。尽管先前的研究人员已经开发并证实了各种减少此类伪影的技术,但更强大的MR成像和多排螺旋CT模式的新时代重新凸显了系统考虑伪影减少方法的重要性。对于放射科医生来说,了解导致伪影的因素、相关理论以及伪影减少技术已成为必需。影响MR图像伪影的因素包括金属植入物的成分、植入物相对于主磁场方向的取向、磁场强度、脉冲序列类型以及其他MR成像参数(主要是体素大小,它由视野、图像矩阵、层厚和回波链长度决定)。在多排螺旋CT中,影响伪影的因素包括植入物的成分、植入物的取向、采集参数(峰值电压、管电荷、准直和采集层厚)以及重建参数(重建层厚、使用的重建算法以及是否使用了扩展CT标尺)。比较使用不同植入物以及不同采集和重建参数获得的图像,有助于理解减少或克服与金属植入物相关伪影的方法。

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