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关于自旋通过非均匀场扩散引起的横向弛豫率增强

On the transverse relaxation rate enhancement induced by diffusion of spins through inhomogeneous fields.

作者信息

Hardy P, Henkelman R M

机构信息

Department of Medical Biophysics, University of Toronto, Canada.

出版信息

Magn Reson Med. 1991 Feb;17(2):348-56. doi: 10.1002/mrm.1910170207.

Abstract

The design of magnetic particles as a magnetic resonance contrast agent will rely on the prediction of their ability to induce transverse relaxation among the surrounding protons. There exists several divergent predictions of the contribution of these agents to 1/T2. This article points out a problem, commonly overlooked, in the development of expressions for the relaxation enhancement which has led some workers to the derivation of results inappropriate for large magnetic particles. The size of the magnetic inhomogeneity created by the particle precludes the averaging of the interaction over a single proton unless it experiences an average field in the time tau between pulses. Computer simulations following the trajectories of diffusing water molecules in inhomogeneous fields are shown to be the correct approach to dealing with large inhomogeneities.

摘要

将磁性颗粒设计为磁共振造影剂将依赖于对其在周围质子中诱导横向弛豫能力的预测。对于这些造影剂对1/T2的贡献存在几种不同的预测。本文指出了在弛豫增强表达式的推导过程中一个普遍被忽视的问题,这导致一些研究人员得出了不适用于大尺寸磁性颗粒的结果。除非单个质子在脉冲之间的时间τ内经历平均场,否则由颗粒产生的磁不均匀性的大小会妨碍相互作用在单个质子上的平均。对不均匀场中扩散水分子轨迹进行的计算机模拟被证明是处理大尺寸不均匀性的正确方法。

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