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首页> 外文期刊>European Journal of Radiology >Spatio-temporal pattern of vestibular information processing after brief caloric stimulation.
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Spatio-temporal pattern of vestibular information processing after brief caloric stimulation.

机译:短暂热量刺激后前庭信息处理的时空模式。

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摘要

Processing of vestibular information at the cortical and subcortical level is essential for head and body orientation in space and self-motion perception, but little is known about the neural dynamics of the brain regions of the vestibular system involved in this task. Neuroimaging studies using both galvanic and caloric stimulation have shown that several distinct cortical and subcortical structures can be activated during vestibular information processing. The insular cortex has been often targeted and presented as the central hub of the vestibular cortical system. Since very short pulses of cold water ear irrigation can generate a strong and prolonged vestibular response and a nystagmus, we explored the effects of this type of caloric stimulation for assessing the blood-oxygen-level-dependent (BOLD) dynamics of neural vestibular processing in a whole-brain event-related functional magnetic resonance imaging (fMRI) experiment. We evaluated the spatial layout and the temporal dynamics of the activated cortical and subcortical regions in time-locking with the instant of injection and were able to extract a robust pattern of neural activity involving the contra-lateral insular cortex, the thalamus, the brainstem and the cerebellum. No significant correlation with the temporal envelope of the nystagmus was found. The temporal analysis of the activation profiles highlighted a significantly longer duration of the evoked BOLD activity in the brainstem compared to the insular cortex suggesting a functional de-coupling between cortical and subcortical activity during the vestibular response.
机译:皮质和皮质下水平的前庭信息的处理对于头部和身体在空间中的方向和自我运动知觉是必不可少的,但是对于涉及此任务的前庭系统的大脑区域的神经动力学知之甚少。使用电流和热量刺激的神经影像学研究表明,在前庭信息处理过程中可以激活几个不同的皮质和皮质下结构。岛状皮层经常被作为前庭皮层系统的中心枢纽。由于非常短的冷水耳冲洗脉冲会产生强烈而长时间的前庭反应和眼球震颤,因此我们探索了这种热量刺激对评估神经前庭加工过程中血氧水平依赖性(BOLD)动力学的影响。全脑事件相关功能磁共振成像(fMRI)实验。我们评估了在注射瞬间锁定时激活的皮层和皮层下区域的空间布局和时间动态,并能够提取涉及对侧小岛皮层,丘脑,脑干和小脑。未发现与眼球震颤的时间包膜有显着相关性。激活曲线的时间分析表明,与岛状皮层相比,脑干中诱发的BOLD活动的持续时间明显更长,这表明在前庭反应期间,皮层和皮层下活动之间存在功能去耦。

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