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Functional Brain Activation in Response to a Clinical Vestibular Test Correlates with Balance

机译:响应临床前庭测试的功能性大脑激活与平衡相关

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摘要

The current study characterizes brain fMRI activation in response to two modes of vestibular stimulation: Skull tap and auditory tone burst. The auditory tone burst has been used in previous studies to elicit either a vestibulo-spinal reflex [saccular-mediated colic Vestibular Evoked Myogenic Potentials (cVEMP)], or an ocular muscle response [utricle-mediated ocular VEMP (oVEMP)]. Research suggests that the skull tap elicits both saccular and utricle-mediated VEMPs, while being faster and less irritating for subjects than the high decibel tones required to elicit VEMPs. However, it is not clear whether the skull tap and auditory tone burst elicit the same pattern of brain activity. Previous imaging studies have documented activity in the anterior and posterior insula, superior temporal gyrus, inferior parietal lobule, inferior frontal gyrus, and the anterior cingulate cortex in response to different modes of vestibular stimulation. Here we hypothesized that pneumatically powered skull taps would elicit a similar pattern of brain activity as shown in previous studies. Our results provide the first evidence of using pneumatically powered skull taps to elicit vestibular activity inside the MRI scanner. A conjunction analysis revealed that skull taps elicit overlapping activation with auditory tone bursts in the canonical vestibular cortical regions. Further, our postural control assessments revealed that greater amplitude of brain activation in response to vestibular stimulation was associated with better balance control for both techniques. Additionally, we found that skull taps elicit more robust vestibular activity compared to auditory tone bursts, with less reported aversive effects, highlighting the utility of this approach for future clinical and basic science research.
机译:当前的研究表征了响应前庭刺激的两种模式的大脑功能磁共振成像激活:头骨水龙头和听觉爆裂。在先前的研究中,听觉猝发已被用来诱发前庭-脊髓反射[囊性介导的绞痛性前庭诱发的肌源性电位(cVEMP)]或眼肌反应[尿介导的眼部VEMP(oVEMP)]。研究表明,颅骨水龙头同时诱发囊状和囊性介导的VEMP,而对受试者的刺激比诱发VEMP所需的高分贝音调更快,更不刺激人。但是,尚不清楚颅骨水龙头和听觉爆裂是否引起相同形式的大脑活动。先前的影像学研究已记录了对前庭刺激的不同模式,在前,后岛突,颞上回,顶下小叶,额额下和前扣带回皮层中的活动。在这里,我们假设气动颅骨水龙头会引起类似于先前研究中所示的大脑活动模式。我们的结果提供了使用气动颅骨水龙头在MRI扫描仪内部引发前庭活动的第一个证据。联合分析显示,头骨水龙头在典型的前庭皮质区域引起听觉音爆裂的重叠激活。此外,我们的姿势控制评估表明,响应前庭刺激的大脑激活幅度更大与两种技术的更好平衡控制有关。此外,我们发现,与听觉猝发相比,颅骨水龙头可引发更强健的前庭活动,而厌恶效应较少,这突出了该方法在未来临床和基础科学研究中的实用性。

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