Sir Peter Mansfield Imaging Centre, University of Nottingham, Nottingham, NG7 2RD, UK.
Department of Physiology, University of Gothenburg, Gothenburg, 40530, Sweden.
J Neurosci Methods. 2017 Oct 1;290:69-78. doi: 10.1016/j.jneumeth.2017.07.016. Epub 2017 Jul 23.
Intra-neural microstimulation (INMS) is a technique that allows the precise delivery of low-current electrical pulses into human peripheral nerves. Single unit INMS can be used to stimulate individual afferent nerve fibres during microneurography. Combining this with neuroimaging allows the unique monitoring of central nervous system activation in response to unitary, controlled tactile input, with functional magnetic resonance imaging (fMRI) providing exquisite spatial localisation of brain activity and magnetoencephalography (MEG) high temporal resolution.
INMS systems suitable for use within electrophysiology laboratories have been available for many years. We describe an INMS system specifically designed to provide compatibility with both ultra-high field (7T) fMRI and MEG. Numerous technical and safety issues are addressed. The system is fully analogue, allowing for arbitrary frequency and amplitude INMS stimulation.
Unitary recordings obtained within both the MRI and MEG screened-room environments are comparable with those obtained in 'clean' electrophysiology recording environments. Single unit INMS (current <7μA, 200μs pulses) of individual mechanoreceptive afferents produces appropriate and robust responses during fMRI and MEG.
COMPARISON WITH EXISTING METHOD(S): This custom-built MRI- and MEG-compatible stimulator overcomes issues with existing INMS approaches; it allows well-controlled switching between recording and stimulus mode, prevents electrical shocks because of long cable lengths, permits unlimited patterns of stimulation, and provides a system with improved work-flow and participant comfort.
We demonstrate that the requirements for an INMS-integrated system, which can be used with both fMRI and MEG imaging systems, have been fully met.
神经内微刺激(INMS)是一种技术,可将低电流电脉冲精确输送到人体周围神经。单个单位 INMS 可用于在微神经生理学中刺激单个传入神经纤维。将其与神经影像学相结合,可以独特地监测中枢神经系统对单个、受控触觉输入的激活,功能磁共振成像(fMRI)提供脑活动的精细空间定位,而脑磁图(MEG)具有高时间分辨率。
适合在电生理学实验室使用的 INMS 系统已经存在多年。我们描述了一种专门设计的 INMS 系统,该系统与超高场(7T)fMRI 和 MEG 具有兼容性。解决了许多技术和安全问题。该系统完全模拟,允许任意频率和幅度的 INMS 刺激。
在 MRI 和 MEG 屏蔽室环境中获得的单元记录与在“清洁”电生理学记录环境中获得的记录相当。单个机械感受器传入神经的单个单位 INMS(电流<7μA,200μs 脉冲)在 fMRI 和 MEG 期间产生适当且稳健的反应。
这种定制的 MRI 和 MEG 兼容刺激器克服了现有 INMS 方法存在的问题;它允许在记录和刺激模式之间进行良好控制的切换,防止由于电缆长度长而发生电击,允许无限的刺激模式,并提供具有改进工作流程和参与者舒适度的系统。
我们证明了 INMS 集成系统的要求已经完全满足,该系统可与 fMRI 和 MEG 成像系统一起使用。