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Components of vestibular cortical function

机译:前庭皮质功能的组件

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It is known that the functional response (e.g., nystagmus) to caloric vestibular stimulation is delayed and prolonged compared with the stimulus-response timing of other sensory systems. Imaging studies have used different models to predict cortical responses and to determine the areas of the brain that are involved. These studies have revealed a widespread network of vestibular brain regions. However, there is some disagreement regarding the brain areas involved, which may partly be caused by differences in the models used. This disagreement indicates the possible existence of multiple cortical components with different temporal characteristics that underlie cortical vestibular processing. However, data-driven methods have yet to be used to analyze the underlying hemodynamic components during and after vestibular stimulation. We performed functional magnetic resonance imaging (fMRI) on 12 healthy subjects during caloric stimulation and analyzed these data using a model-free analysis method (ICA). We found seven independent stimulus-induced components that outline a robust pattern of cortical activation and deactivation. These independent components demonstrated significant differences in their time courses. No single-modeled response function was able to cover the entire range of these independent components. The response functions determined in the present study should improve model-based studies investigating vestibular cortical processing. (C) 2012 Elsevier B.V. All rights reserved.
机译:众所周知,与其他感官系统的刺激响应时序相比,延迟和延长了对卡路里前庭刺激的功能反应(例如,眼球震颤)。成像研究使用不同的模型来预测皮质反应并确定所涉及的大脑的区域。这些研究揭示了前庭脑区的广泛网络。然而,关于所涉及的大脑地区存在一些分歧,这可能部分是由所用模型的差异引起的。这种分歧表明,具有不同时间特征的多种皮质组件的可能存在,使皮质前庭处理具有不同的时间特征。然而,数据驱动的方法尚未用于分析前庭刺激期间和之后的下面的血液动力学组分。在热刺激期间,我们在12个健康受试者上进行了功能磁共振成像(FMRI),并使用无模型分析方法(ICA)分析了这些数据。我们发现了七个独立刺激诱导的组件,概述了一种稳健的皮质激活和失活模式。这些独立组件在其时间课程中表现出显着的差异。没有单模建模的响应功能能够覆盖这些独立组件的整个范围。本研究中确定的响应函数应改善基于模型的研究,调查前庭皮质加工。 (c)2012 Elsevier B.V.保留所有权利。

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