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代谢型可塑性:暗适应增强成人大脑皮层的局部兴奋性和视觉可塑性。

Metaplasticity: Dark exposure boosts local excitability and visual plasticity in adult human cortex.

机构信息

School of Ophthalmology & Optometry and Eye Hospital, Wenzhou Medical University, Wenzhou, China.

Center for Biomedical Imaging, University of Science and Technology of China, Anhui, China.

出版信息

J Physiol. 2023 Sep;601(18):4105-4120. doi: 10.1113/JP284040. Epub 2023 Aug 13.

Abstract

An interlude of dark exposure for about 1 week is known to shift excitatory/inhibitory (E/I) balance of the mammalian visual cortex, promoting plasticity and accelerating visual recovery in animals that have experienced cortical lesions during development. However, the translational impact of our understanding of dark exposure from animal studies to humans remains elusive. Here, we used magnetic resonance spectroscopy as a probe for E/I balance in the primary visual cortex (V1) to determine the effect of 60 min of dark exposure, and measured binocular combination as a behavioural assay to assess visual plasticity in 14 normally sighted human adults. To induce neuroplastic changes in the observers, we introduced 60 min of monocular deprivation, which is known to temporarily shift sensory eye balance in favour of the previously deprived eye. We report that prior dark exposure for 60 min strengthens local excitability in V1 and boosts visual plasticity in normal adults. However, we show that it does not promote plasticity in amblyopic adults. Nevertheless, our findings are surprising, given the fact that the interlude is very brief. Interestingly, we find that the increased concentration of the excitatory neurotransmitter is not strongly correlated with the enhanced functional plasticity. Instead, the absolute degree of change in its concentration is related to the boost, suggesting that the dichotomy of cortical excitation and inhibition might not explain the physiological basis of plasticity in humans. We present the first evidence that an environmental manipulation that shifts cortical E/I balance can also act as a metaplastic facilitator for visual plasticity in humans. KEY POINTS: A brief interlude (60 min) of dark exposure increased the local concentration of glutamine/glutamate but not that of GABA in the visual cortex of adult humans. After dark exposure, the degree of the shift in sensory eye dominance in favour of the previously deprived eye from short-term monocular deprivation was larger than that from only monocular deprivation. The neurochemical and behavioural measures were associated: the magnitude of the shift in the concentration of glutamine/glutamate was correlated with the boost in perceptual plasticity after dark exposure. Surprisingly, the increase in the concentration of glutamine/glutamate was not correlated with the perceptual boost after dark exposure, suggesting that the physiological mechanism of how E/I balance regulates plasticity is not deterministic. In other words, an increased excitation did not unilaterally promote plasticity.

摘要

一段为期约 1 周的暗光暴露被证实可以改变哺乳动物视觉皮层的兴奋抑制(E/I)平衡,促进发育过程中皮质损伤动物的可塑性并加速其视觉恢复。然而,我们从动物研究中对暗光暴露的理解在转化为人类方面的效果仍然难以捉摸。在这里,我们使用磁共振波谱(MRS)作为初级视觉皮层(V1)中 E/I 平衡的探针,以确定 60 分钟暗光暴露的影响,并通过双眼组合测量作为行为测定来评估 14 名正常视力成年人的视觉可塑性。为了在观察者中诱导神经可塑性变化,我们引入了 60 分钟的单眼剥夺,已知这种剥夺会暂时改变感官眼平衡,有利于以前被剥夺的眼睛。我们报告说,60 分钟的暗光暴露会增强 V1 的局部兴奋性,并增强正常成年人的视觉可塑性。然而,我们发现它并不能促进弱视成年人的可塑性。然而,考虑到这是一个非常短暂的插曲,我们的发现令人惊讶。有趣的是,我们发现兴奋性神经递质浓度的增加与增强的功能可塑性并没有很强的相关性。相反,其浓度变化的绝对值与增强程度相关,这表明皮层兴奋和抑制的二分法可能无法解释人类可塑性的生理基础。我们首次证明,改变皮层 E/I 平衡的环境干预也可以作为人类视觉可塑性的后效性促进剂。关键点: 60 分钟的暗光暴露短暂增加了成人视觉皮层中谷氨酰胺/谷氨酸的局部浓度,但对 GABA 没有影响。在暗光暴露后,从短期单眼剥夺中以前被剥夺的眼睛对感觉眼优势的转变程度大于仅从单眼剥夺中获得的转变程度。神经化学和行为测量结果相关:谷氨酰胺/谷氨酸浓度的变化幅度与暗光暴露后的感知可塑性增强相关。令人惊讶的是,谷氨酰胺/谷氨酸浓度的增加与暗光暴露后的感知增强无关,这表明 E/I 平衡调节可塑性的生理机制并非是确定性的。换句话说,兴奋性的增加并没有单方面促进可塑性。

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