Baker Heart and Diabetes Institute, Melbourne, VIC, Australia.
Baker Department of Cardiometabolic Health, The University of Melbourne, Melbourne, VIC, Australia.
Exp Brain Res. 2023 Dec;241(11-12):2845-2853. doi: 10.1007/s00221-023-06722-6. Epub 2023 Oct 30.
The vestibular apparatus provides spatial information on the position of the head in space and with respect to gravity. Low-frequency sinusoidal galvanic vestibular stimulation (sGVS), a means of selectively changing the firing of vestibular afferents, induces a frequency-dependent perception of sway and, in some individuals, induces nausea. Given that vestibular afferents project to the insular cortex-which forms part of the vestibular cortex-and that the insula receives inputs from the dorsolateral prefrontal cortex (dlPFC), we tested the hypothesis that electrical stimulation of the dlPFC can modulate vestibular inputs. Sinusoidal electrical stimulation (± 2 mA, 0.08 Hz, 100 cycles) was delivered via surface electrodes over (1) the mastoid processes alone (sGVS), (2) electroencephalogram (EEG) site F4 (right dlPFC) and the nasion or (3) to each site concurrently (sGVS + dlPFC) in 23 participants. The same stimulation protocol was used in a separate study to investigate EEG site F3 (left dlPFC) instead of F4 in 13 participants. During sGVS, all participants reported perceptions of sway and 13 participants also reported nausea, neither sensation of which occurred as a result of dlPFC stimulation. Interestingly, when sGVS and dlPFC stimulations were delivered concurrently, vestibular perceptions and sensations of nausea were almost completely abolished. We conclude that the dlPFC provides top-down control of vestibular inputs and further suggests that dlPFC stimulation may provide a novel means of controlling nausea.
前庭器官提供头部在空间和重力方向上的位置信息。低频正弦电流前庭刺激(sGVS)是一种选择性改变前庭传入放电的方法,可引起摆动的频率依赖性感知,并且在某些个体中会引起恶心。鉴于前庭传入纤维投射到岛叶——它构成了前庭皮层的一部分——而岛叶接收来自背外侧前额叶皮层(dlPFC)的输入,我们测试了电刺激 dlPFC 可以调节前庭输入的假设。通过表面电极在(1)乳突部位单独(sGVS),(2)脑电图(EEG)位点 F4(右 dlPFC)和鼻根,或(3)同时到每个部位(sGVS + dlPFC)传递正弦电刺激(±2 mA,0.08 Hz,100 个周期)在 23 名参与者中。在另一项研究中,相同的刺激方案用于调查脑电图位点 F3(左 dlPFC)而不是 F4 的 13 名参与者。在 sGVS 期间,所有参与者均报告了摆动的感觉,并且有 13 名参与者还报告了恶心,但都不是由于 dlPFC 刺激引起的。有趣的是,当同时进行 sGVS 和 dlPFC 刺激时,前庭感知和恶心的感觉几乎完全被消除。我们得出结论,dlPFC 提供了前庭输入的自上而下的控制,并且进一步表明 dlPFC 刺激可能提供了一种控制恶心的新方法。