Kolind Shannon H, MacKay Alex L, Munk Peter L, Xiang Qing-San
Department of Physics and Astronomy, University of British Columbia, Vancouver, Canada.
J Magn Reson Imaging. 2004 Sep;20(3):487-95. doi: 10.1002/jmri.20144.
To develop a technique to quantify artifact, and to use it to compare the effectiveness of several approaches to metal artifact reduction, including view angle tilting and increasing the slice select and image bandwidths (BWs), in terms of metal artifact reduction, noise, and blur.
Nonmetallic replicas of two metal implants (stainless steel and titanium/chromium-cobalt femoral prostheses) were fabricated from wax, and MR images were obtained of each component immersed in water. The differences between the images of each metal prosthesis and its wax counterpart were measured. The contributions from noise and blur were isolated, resulting in a measure of the metal artifact. Several off-resonance artifact reduction techniques were assessed in terms of metal artifact reduction capability, as well as signal to noise ratio and blur.
Increasing the image BW from +/-16 kHz to +/-64 kHz was found to reduce the artifact by an average of 60%, while employing view angle tilting (VAT) alone was found to reduce the artifact by an average of 63%. The metal artifact reduction sequence (MARS), which combines several susceptibility artifact reduction techniques, resulted in the least amount of image distortion, reducing the artifact by an average of 79%.
The results indicate that while VAT alone (with an image BW of +/-16 kHz) resulted in the smallest amount of total energy and no reduction in the signal-to-noise ratio compared to a conventional spin-echo pulse sequence, MARS resulted in significantly less artifact and dramatically less blur.
开发一种量化伪影的技术,并使用该技术比较几种减少金属伪影方法的有效性,包括视角倾斜以及增加层面选择和图像带宽(BW),比较内容涉及金属伪影减少、噪声和模糊情况。
用蜡制作了两种金属植入物(不锈钢和钛/铬钴合金股骨假体)的非金属复制品,并获取了每个浸在水中的部件的磁共振图像。测量了每种金属假体与其蜡制对应物图像之间的差异。分离出噪声和模糊的影响,从而得出金属伪影的度量值。根据金属伪影减少能力、信噪比和模糊情况对几种失谐伪影减少技术进行了评估。
发现将图像BW从+/-16kHz增加到+/-64kHz可使伪影平均减少60%,而单独采用视角倾斜(VAT)可使伪影平均减少63%。结合多种敏感性伪影减少技术的金属伪影减少序列(MARS)导致的图像失真最少,伪影平均减少79%。
结果表明,虽然单独的VAT(图像BW为+/-16kHz)与传统自旋回波脉冲序列相比导致的总能量最少且信噪比没有降低,但MARS导致的伪影明显更少,模糊也显著更少。