Department of Radiology, Lucas Center for Imaging, Rm P270, 1201 Welch Rd, Stanford, CA 94305-5488, USA.
AJR Am J Roentgenol. 2011 Sep;197(3):547-55. doi: 10.2214/AJR.11.7364.
The purpose of this article is to review some of the basic principles of imaging and how metal-induced susceptibility artifacts originate in MR images. We will describe common ways to reduce or modify artifacts using readily available imaging techniques, and we will discuss some advanced methods to correct readout-direction and slice-direction artifacts.
The presence of metallic implants in MRI can cause substantial image artifacts, including signal loss, failure of fat suppression, geometric distortion, and bright pile-up artifacts. These cause large resonant frequency changes and failure of many MRI mechanisms. Careful parameter and pulse sequence selections can avoid or reduce artifacts, although more advanced imaging methods offer further imaging improvements.
本文旨在回顾一些成像的基本原理,以及金属引起的磁敏感伪影在磁共振图像中是如何产生的。我们将描述一些常见的方法,通过使用现成的成像技术来减少或修改伪影,并讨论一些纠正读出方向和层面方向伪影的高级方法。
金属植入物在 MRI 中会引起明显的图像伪影,包括信号丢失、脂肪抑制失败、几何变形和明亮的堆积伪影。这些会导致共振频率发生大的变化,并使许多 MRI 机制失效。通过仔细选择参数和脉冲序列可以避免或减少伪影,尽管更先进的成像方法可以提供进一步的成像改善。