[体内核磁共振断层扫描对人体体感和视觉诱发电位的影响]。

Digitale Bilddiagnostik Pub Date : 1988-03-01
T Vogl, W Paulus, A Fuchs, K Krimmel, S Krafczyk
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引用次数: 0

摘要

在磁共振不同磁场和电磁场的影响下,通过体感(SSEP)和视觉(VEP)诱发电位的配准,研究了磁共振成像(MRI)对人体神经系统的影响(所有测量均使用1.0 T磁共振成像仪在静磁场内外、磁共振成像前后进行)。对20名健康志愿者的体内实验表明,SSEP和vep对神经传导没有可测量的影响。磁共振成像前后测得的潜伏期均在健康志愿者有效的标准值之内。在1.0特斯拉强度下的体内实验中,中枢和外周传导速度与人体没有明显的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effect of in vivo nuclear magnetic resonance tomography on somatosensory and visual evoked potentials in the human].

By means of registration of somatosensory (SSEP) and visual (VEP) evoked potentials under the influence of different magnetic and electromagnetic fields of Magnetic Resonance we investigated the influence of Magnetic Resonance Imaging (MRI) on human nervous system (all measurements with an 1.0 T MR imager are performed outside and inside the static magnetic field, before and after MR imaging). In vivo experiments on 20 healthy volunteers show in SSEP registrations as well as in VEP-registrations no measurable influence on nerve conduction. The measured latencies before and after MR imaging are found inside the standard values which are valid for healthy volunteers. In vivo experiments at field-strengthens up to 1.0 Tesla show no significant changes of the central and peripheral conduction velocity with human beings.

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