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视觉注意调节前庭皮质中的谷氨酸-谷氨酰胺水平:磁共振波谱的证据。

Visual Attention Modulates Glutamate-Glutamine Levels in Vestibular Cortex: Evidence from Magnetic Resonance Spectroscopy.

机构信息

Institute for Experimental Psychology, University of Regensburg, 93053 Regensburg, Germany

Department of Psychological and Brain Sciences, Dartmouth College, Hanover, New Hampshire 03755.

出版信息

J Neurosci. 2021 Mar 3;41(9):1970-1981. doi: 10.1523/JNEUROSCI.2018-20.2020. Epub 2021 Jan 15.

Abstract

Attending to a stimulus enhances the neuronal responses to it, while responses to nonattended stimuli are not enhanced and may even be suppressed. Although the neural mechanisms of response enhancement for attended stimuli have been intensely studied, the neural mechanisms underlying attentional suppression remain largely unknown. It is uncertain whether attention acts to suppress the processing in sensory cortical areas that would otherwise process the nonattended stimulus or the subcortical input to these cortical areas. Moreover, the neurochemical mechanisms inducing a reduction or suppression of neuronal responses to nonattended stimuli are as yet unknown. Here, we investigated how attention directed toward visual processing cross-modally acts to suppress vestibular responses in the human brain. By using functional magnetic resonance spectroscopy in a group of female and male subjects, we find that attention to visual motion downregulates in a load-dependent manner the concentration of excitatory neurotransmitter (glutamate and its precursor glutamine, referred to together as Glx) within the parietoinsular vestibular cortex (PIVC), a core cortical area of the vestibular system, while leaving the concentration of inhibitory neurotransmitter (GABA) in PIVC unchanged. This makes PIVC less responsive to excitatory thalamic vestibular input, as corroborated by functional magnetic resonance imaging. Together, our results suggest that attention acts to suppress the processing of nonattended sensory cues cortically by neurochemically rendering the core cortical area of the nonattended sensory modality less responsive to excitatory thalamic input. Here, we address a fundamental problem that has eluded attention research for decades, namely, how the brain ignores irrelevant stimuli. To date, three classes of solutions to this problem have been proposed: (1) enhancement of GABAergic interneuron activity in cortex, (2) downregulation of glutamatergic cell activity in cortex; and (3) downregulation of neural activity in thalamic projection areas, which would then provide the cortex with less input. Here, we use magnetic resonance spectroscopy in humans and find support for the second hypothesis, implying that attention to one sensory modality involves the suppression of irrelevant stimuli of another sensory modality by downregulating glutamate in the cortex.

摘要

注意刺激会增强神经元对其的反应,而对未注意刺激的反应则不会增强,甚至可能受到抑制。尽管对注意刺激的反应增强的神经机制已经被深入研究,但注意抑制的神经机制在很大程度上仍然未知。目前还不确定注意力是作用于抑制本来会处理未注意刺激的感觉皮层区域的加工,还是作用于这些皮层区域的皮质下输入。此外,诱导对未注意刺激的神经元反应减少或抑制的神经化学机制目前尚不清楚。在这里,我们研究了视觉处理的注意力如何跨模式地作用于抑制人类大脑中的前庭反应。通过在一组女性和男性受试者中使用功能磁共振波谱,我们发现,视觉运动的注意力以一种负载依赖的方式下调了前庭皮质区(PIVC)内兴奋性神经递质(谷氨酸及其前体谷氨酰胺,统称为 Glx)的浓度,PIVC 是前庭系统的核心皮层区域,而 PIVC 内抑制性神经递质(GABA)的浓度保持不变。这使得 PIVC 对兴奋性丘脑前庭输入的反应性降低,这一点得到了功能磁共振成像的证实。总之,我们的研究结果表明,注意力通过使非注意感觉模态的核心皮层区域对兴奋性丘脑输入的反应性降低,从而在神经化学水平上抑制了对非注意感觉线索的处理。在这里,我们解决了一个几十年来一直被忽视的注意力研究中的基本问题,即大脑如何忽略不相关的刺激。迄今为止,已经提出了三种解决这个问题的方法:(1)增强皮层中的 GABA 能中间神经元的活动;(2)降低皮层中谷氨酸能细胞的活性;(3)降低丘脑投射区的神经活动,从而减少皮层的输入。在这里,我们使用人类磁共振波谱并发现支持第二个假设的证据,这意味着对一种感觉模态的注意力涉及通过下调皮层中的谷氨酸来抑制另一种感觉模态的不相关刺激。

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