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Magnetic-field-induced vertigo: a theoretical and experimental investigation.

机译:磁场引起的眩晕:理论和实验研究。

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摘要

Vertigo-like sensations or apparent perception of movement are reported by some subjects and operators in and around high field whole body magnetic resonance body scanners. Induced currents (which modulate the firing rate of the vestibular hair cell), magneto-hydrodynamics (MDH), and tissue magnetic susceptibility differences have all been proposed as possible mechanisms for this effect. In this article, we examine the theory underlying each of these mechanisms and explore resulting predictions. Experimental evidence is summarised in the following findings: 30% of subjects display a postural sway response at a field-gradient product of 1 T(2)m(-1); a determining factor for experience of vertigo is the total unipolar integrated field change over a period greater than 1 s; the perception of dizziness is not necessarily related to a high value of the rate of change of magnetic field; eight of ten subjects reported sensations ranging from mild to severe when exposed to a magnetic field change of the order of 4.7 T in 1.9 s; no subjects reported any response when exposed to 50 ms pulses of dB/dt of 2 Ts(-1) amplitude. The experimental evidence supports the hypothesis that magnetic-field related vertigo results from both magnetic susceptibility differences between vestibular organs and surrounding fluid, and induced currents acting on the vestibular hair cells. Both mechanisms are consistent with theoretical predictions.
机译:在高场全身磁共振人体扫描仪中及其周围,一些受试者和操作者报告了眩晕样的感觉或明显的运动感觉。感应电流(其调节前庭毛细胞的发射速率),磁流体动力学(MDH)和组织磁化率差异均被认为是产生这种效应的可能机制。在本文中,我们研究了每种机制的基础理论,并探讨了由此产生的预测。实验结果总结于以下发现中:30%的受试者在1 T(2)m(-1)的场梯度乘积上显示出姿势摇摆响应;眩晕经验的决定因素是在大于1 s的时间内总的单极积分场变化;头晕的感觉不一定与磁场变化率的高值有关。十名受试者中有八名在1.9秒内暴露于4.7 T量级的磁场中时,感觉从轻到重。没有受试者在暴露于50 ms的dB / dt 2 Ts(-1)振幅的脉冲时报告任何反应。实验证据支持以下假设:与磁场相关的眩晕是由前庭器官和周围液体之间的磁化率差异以及作用在前庭毛细胞上的感应电流产生的。两种机制均与理论预测一致。

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