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优化术后患者的成像技术。

Optimizing imaging techniques in the postoperative patient.

作者信息

Buckwalter Kenneth A

机构信息

Department of Radiology, Indiana University School of Medicine, University Hospital, Indianapolis, Indiana 46202, USA.

出版信息

Semin Musculoskelet Radiol. 2007 Sep;11(3):261-72. doi: 10.1055/s-2008-1038315.

Abstract

Postoperative patients may develop complications requiring imaging. Although any imaging technique can be used to investigate these patients, the presence of metal hardware in the region of interest may distort the image and interfere with diagnosis. It is important to understand why this distortion occurs and how to compensate for it. Because some of the most common cross-sectional imaging methods used to image this patient population are computed tomography (CT) and magnetic resonance imaging (MRI), this article focuses on these imaging methods. Metal-related artifacts on CT depend on the hardware alloy, the geometry of the hardware, and the location of the hardware relative to the region of interest. The artifacts may be reduced or eliminated by altering the scan technique, changing the patient position, selecting a smoother CT reconstruction algorithm, and by creating thicker slice multiplanar reformations. Like CT, metal artifacts at MR imaging depend on the type of hardware alloy. Hardware-related artifacts at MR imaging can be reduced by using appropriate pulse sequences, such as fast or turbo spin echo and inversion recovery. Additionally, important pulse sequence modifications that are addressed here include manipulation of the receiver bandwidth and orientation of the frequency encode axis.

摘要

术后患者可能会出现需要影像学检查的并发症。尽管任何影像学技术都可用于检查这些患者,但感兴趣区域存在金属植入物可能会使图像失真并干扰诊断。了解这种失真为何发生以及如何进行补偿很重要。由于用于对这一患者群体进行成像的一些最常见的横断面成像方法是计算机断层扫描(CT)和磁共振成像(MRI),本文重点关注这些成像方法。CT上与金属相关的伪影取决于硬件合金、硬件的几何形状以及硬件相对于感兴趣区域的位置。通过改变扫描技术、改变患者体位、选择更平滑的CT重建算法以及创建更厚层的多平面重建,可以减少或消除这些伪影。与CT一样,MRI上的金属伪影取决于硬件合金的类型。通过使用适当的脉冲序列,如快速或涡轮自旋回波以及反转恢复序列,可以减少MRI上与硬件相关的伪影。此外,本文讨论的重要脉冲序列修改包括对接收带宽的操作和频率编码轴的方向。

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