Ahmad H, Arshad Q, Siddiqui S, Nigmatullina Y, Patel M, Bronstein A M, Roberts R E
Department of Neuro-otology, Division of Brain Sciences, Charing Cross Hospital Campus, Imperial College London, London, UK.
J Vestib Res. 2014;24(5-6):453-8. doi: 10.3233/VES-140530.
Functional imaging, lesion studies and behavioural observations suggest that vestibular processing is lateralised to the non-dominant hemisphere. Moreover, disruption of interhemispheric balance via inhibition of left parietal cortex using transcranial direct current stimulation (tDCS) has been associated with an asymmetric suppression of the vestibulo-ocular reflex (VOR). However, the mechanism by which the VOR was modulated remains unknown. In this paper we review the literature on non-invasive brain stimulation techniques which have been used to probe vestibular function over the last decade. In addition, we investigate the mechanisms whereby tDCS may modulate VOR, e.g. by acting upon pursuit, VOR suppression mechanisms or direct VOR modulation. We applied bi-hemispheric parietal tDCS in 11 healthy subjects and only observed significant effects on VOR gain (tdcs * condition p=0.041) - namely a trend for VOR gain increase with right anodal/left cathodal stimulation, and a decrease with right cathodal/left anodal stimulation. Hence, we suggest that the modulation of the VOR observed both here and in previous reports, is directly caused by top-down cortical control of the VOR as a result of disruption to interhemispheric balance, likely parietal.
功能成像、病变研究和行为观察表明,前庭处理功能定位于非优势半球。此外,通过经颅直流电刺激(tDCS)抑制左顶叶皮层来破坏半球间平衡,与前庭眼反射(VOR)的不对称抑制有关。然而,VOR被调节的机制仍然未知。在本文中,我们回顾了过去十年中用于探究前庭功能的非侵入性脑刺激技术的相关文献。此外,我们研究了tDCS可能调节VOR的机制,例如通过作用于追踪、VOR抑制机制或直接调节VOR。我们对11名健康受试者进行了双侧顶叶tDCS,仅观察到对VOR增益有显著影响(tDCS*条件p=0.041)——即右侧阳极/左侧阴极刺激时VOR增益有增加趋势,而右侧阴极/左侧阳极刺激时VOR增益有下降趋势。因此,我们认为,此处及先前报告中观察到的VOR调节,是由于半球间平衡(可能是顶叶)受到破坏,由VOR的自上而下的皮层控制直接引起的。