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磁共振成像中的磁刺激

Magnetostimulation in MRI.

作者信息

Irnich W, Schmitt F

机构信息

Department of Medical Engineering, Justus-Liebig-University, Giessen, Germany.

出版信息

Magn Reson Med. 1995 May;33(5):619-23. doi: 10.1002/mrm.1910330506.

Abstract

In national and international bodies, there is active discussion of appropriate safety regulations of levels of magnetic field strength in MRI. Present limits are usually expressed in terms of the switching rate dB/dt, but the validity of this is open to debate. Application of the fundamental law of electrostimulation is well-established, both on theoretical and experimental grounds. Application of this law, in combination with Maxwell's law, yields a very simple equation that we call the fundamental law of magnetostimulation. This law has the hyperbolic form of a strength-duration curve and allows an estimation of the lowest possible value of the magnetic flux density capable of stimulating nerves and muscles. Calculations prove that the threshold for heart excitation is much higher than those for nerve and muscle stimulations. Experimental results from us and other authors confirm the correctness of the derived laws for magnetostimulation. In light of these findings, proposed safety limits should be reconsidered.

摘要

在国内和国际机构中,关于磁共振成像(MRI)中磁场强度水平的适当安全规定正在进行积极讨论。目前的限制通常以切换率dB/dt来表示,但这一规定的有效性仍有待商榷。基于理论和实验依据,电刺激基本定律的应用已得到充分确立。将该定律与麦克斯韦定律相结合,可得出一个非常简单的方程,我们称之为磁刺激基本定律。该定律具有强度 - 持续时间曲线的双曲线形式,并能够估算出能够刺激神经和肌肉的最低磁通密度值。计算表明,心脏兴奋的阈值远高于神经和肌肉刺激的阈值。我们和其他作者的实验结果证实了所推导的磁刺激定律的正确性。鉴于这些发现,应重新考虑提议的安全限制。

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