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A complex sum method of quantifying susceptibilities in cylindrical objects: the first step toward quantitative diagnosis of small objects in MRI

机译:定量圆柱物体中磁化率的复杂方法:迈向MRI小物体定量诊断的第一步

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摘要

A complex sum method of quantifying the magnetic susceptibility of a long, narrow cylinder embedded in a uniform medium has been developed. The radius of the cylinder can be as small as one pixel. The susceptibility inside the object is extracted from the magnetic resonance complex images, using two concentric circles around the axis of the cylinder. The numerical simulations of this complex sum method are in good agreement with the phantom studies. Specifically, the method was tested with a susceptibility difference of -9 ppm to mimic air/tissue interface in the human body at 1.5 T with an echo time of 5 ms. Phantom studies using an air-filled cylinder in a solidified gel have shown that the susceptibility of the gel cannot be determined by the usual least-squares-fit method but can be determined by the complex sum method to within 5-10% of the expected value. (C) 2007 Elsevier Inc. All rights reserved.
机译:已经开发出一种复杂的求和方法,用于量化嵌入均匀介质中的细长圆柱体的磁化率。圆柱体的半径可以小到一个像素。使用绕圆柱体轴的两个同心圆,从磁共振复合图像中提取对象内部的磁化率。这种复杂的求和方法的数值模拟与幻像研究非常吻合。具体来说,测试该方法的敏感度差为-9 ppm,以模拟人体在1.5 T下的空气/组织界面,回波时间为5 ms。使用充气的圆柱体在凝固的凝胶中进行的幻影研究表明,凝胶的磁化率无法通过通常的最小二乘拟合法确定,而可以通过复和法确定在预期值的5-10%之内值。 (C)2007 Elsevier Inc.保留所有权利。

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