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首页> 外文期刊>Biological psychiatry >Translating long-term potentiation from animals to humans: A novel method for noninvasive assessment of cortical plasticity
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Translating long-term potentiation from animals to humans: A novel method for noninvasive assessment of cortical plasticity

机译:从动物到人类的长期增强作用:皮层可塑性无创评估的新方法

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摘要

Long-term potentiation (LTP) is a synaptic mechanism underlying learning and memory that has been studied extensively in laboratory animals. The study of LTP recently has been extended into humans with repetitive sensory stimulation to induce cortical LTP. In this review article, we will discuss past results from our group demonstrating that repetitive sensory stimulation (visual or auditory) induces LTP within the sensory cortex (visual/auditory, respectively) and can be measured noninvasively with electroencephalography or functional magnetic resonance imaging. We will discuss a number of studies that indicate that this form of LTP shares several characteristics with the synaptic LTP described in animals: it is frequency dependent, long-lasting (> 1 hour), input-specific, depotentiates with low-frequency stimulation, and is blocked by N-methyl-D-aspartate receptor blockers in rats. In this review, we also present new data with regard to the behavioral significance of human sensory LTP. These advances will permit enquiry into the functional significance of LTP that has been hindered by the absence of a human model. The ability to elicit LTP with a natural sensory stimulus noninvasively will provide a model system allowing the detailed examination of synaptic plasticity in normal subjects and might have future clinical applications in the diagnosis and assessment of neuropsychiatric and neurocognitive disorders.
机译:长期增强(LTP)是基础学习和记忆的突触机制,已在实验动物中进行了广泛研究。对LTP的研究最近已经扩展到具有重复感觉刺激以诱导皮质LTP的人类。在这篇评论文章中,我们将讨论小组的过去结果,证明重复的感觉刺激(视觉或听觉)会在感觉皮层(分别是视觉/听觉)内诱发LTP,并且可以通过脑电图或功能磁共振成像进行无创测量。我们将讨论许多研究,这些研究表明这种形式的LTP与动物中描述的突触LTP具有几个特征:它是频率依赖性的,持久的(> 1小时),输入特定的,在低频刺激下会去势,在大鼠中被N-甲基-D-天冬氨酸受体阻滞剂阻断。在这篇综述中,我们还介绍了有关人类感觉LTP行为重要性的新数据。这些进步将使人们能够探讨LTP的功能意义,而LTP的功能意义由于缺乏人类模型而受到阻碍。无创地利用自然感觉刺激诱发LTP的能力将提供一个模型系统,允许对正常受试者的突触可塑性进行详细检查,并且可能在神经精神病和神经认知障碍的诊断和评估中具有未来的临床应用。

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