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The physics of MRI safety

机译:MRI安全的物理学

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The main risks associated with magnetic resonance imaging (MRI) have been extensively reported and studied; for example, everyday objects may turn into projectiles, energy deposition can cause burns, varying fields can induce nerve stimulation, and loud noises can lead to auditory loss. The present review article is geared toward providing intuition about the physical mechanisms that give rise to these risks. On the one hand, excellent literature already exists on the practical aspect of risk management, with clinical workflow and recommendations. On the other hand, excellent technical articles also exist that explain these risks from basic principles of electromagnetism. We felt that an underserved niche might be found between the two, ie, somewhere between basic science and practical advice, to help develop intuition about electromagnetism that might prove of practical value when working around MR scanners. Following a wide‐ranging introduction, risks originating from the main magnetic field, the excitation RF electromagnetic field, and switching of the imaging gradients will be presented in turn. Level of Evidence: 5 Technical Efficacy: 1 J. Magn. Reson. Imaging 2018;47:28–43.
机译:与磁共振成像(MRI)相关的主要风险已被广泛报道和研究;例如,日常物体可能变成射弹,能量沉积会导致灼伤,不同的田地可以引起神经刺激,大声噪音可能导致听觉损失。本审查文章旨在提供关于产生这些风险的物理机制的直觉。一方面,出色的文学已经存在于风险管理的实际方面,具有临床工作流程和建议。另一方面,还存在优质的技术文章,从而解释了来自电磁基本原则的这些风险。我们觉得两者之间可能会发现一个不足的利基,即基础科学和实际建议之间的某个地方,帮助发展在扫描仪MR扫描仪时可能证明实际价值的电磁。在宽范围的介绍之后,又将呈现出来自主磁场的风险,激励RF电磁场和成像梯度的切换。证据水平:5技术疗效:1 J. MANG。恢复。 2018年成像; 47:28-43。

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