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眼睛对强磁场的眼球震颤反应的动态模型。

A dynamic model of the eye nystagmus response to high magnetic fields.

作者信息

Glover Paul M, Li Yan, Antunes Andre, Mian Omar S, Day Brian L

机构信息

The Sir Peter Mansfield Magnetic Resonance Centre, University of Nottingham, Nottingham, NG7 2RD, UK.

出版信息

Phys Med Biol. 2014 Feb 7;59(3):631-45. doi: 10.1088/0031-9155/59/3/631. Epub 2014 Jan 17.

DOI:10.1088/0031-9155/59/3/631
PMID:24434733
Abstract

It was recently shown that high magnetic fields evoke nystagmus in human subjects with functioning vestibular systems. The proposed mechanism involves interaction between ionic currents in the endolymph of the vestibular labyrinth and the static magnetic field. This results in a Lorentz force that causes endolymph flow to deflect the cupulae of the semi-circular canals to evoke a vestibular-ocular reflex (VOR). This should be analogous to stimulation by angular acceleration or caloric irrigation. We made measurements of nystagmus slow-phase velocities in healthy adults experiencing variable magnetic field profiles of up to 7 T while supine on a bed that could be moved smoothly into the bore of an MRI machine. The horizontal slow-phase velocity data were reliably modelled by a linear transfer function incorporating a low-pass term and a high-pass adaptation term. The adaptation time constant was estimated at 39.3 s from long exposure trials. When constrained to this value, the low-pass time constant was estimated at 13.6 ± 3.6 s (to 95% confidence) from both short and long exposure trials. This confidence interval overlaps with values obtained previously using angular acceleration and caloric stimulation. Hence it is compatible with endolymph flow causing a cupular deflection and therefore supports the hypothesis that the Lorentz force is a likely transduction mechanism of the magnetic field-evoked VOR.

摘要

最近的研究表明,强磁场会使前庭系统功能正常的人体受试者出现眼球震颤。提出的机制涉及前庭迷路内淋巴中的离子电流与静磁场之间的相互作用。这会产生洛伦兹力,导致内淋巴流动,使半规管的壶腹偏斜,从而引发前庭眼反射(VOR)。这应该类似于角加速度或冷热灌注刺激。我们对健康成年人在高达7T的可变磁场分布下仰卧在床上时的眼球震颤慢相速度进行了测量,该床可以平稳地移入MRI机器的孔中。水平慢相速度数据通过包含低通项和高通适应项的线性传递函数进行可靠建模。从长时间暴露试验中估计适应时间常数为39.3秒。当限制在这个值时,从短期和长期暴露试验中估计低通时间常数为13.6±3.6秒(95%置信度)。这个置信区间与先前使用角加速度和冷热刺激获得的值重叠。因此,它与内淋巴流动导致壶腹偏斜相一致,从而支持了洛伦兹力可能是磁场诱发VOR的转导机制这一假设。

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