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首页> 外文期刊>Frontiers in Cellular Neuroscience >Associations of Unilateral Whisker and Olfactory Signals Induce Synapse Formation and Memory Cell Recruitment in Bilateral Barrel Cortices: Cellular Mechanism for Unilateral Training Toward Bilateral Memory
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Associations of Unilateral Whisker and Olfactory Signals Induce Synapse Formation and Memory Cell Recruitment in Bilateral Barrel Cortices: Cellular Mechanism for Unilateral Training Toward Bilateral Memory

机译:单侧晶须和嗅觉信号的关联导致双边桶皮质中的突触形成和记忆细胞募集:单方面训练对双边记忆的细胞机制。

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摘要

Somatosensory signals and operative skills learned by unilateral limbs can be retrieved bilaterally. In terms of cellular mechanism underlying this unilateral learning toward bilateral memory, we hypothesized that associative memory cells in bilateral cortices and synapse innervations between them were produced. In the examination of this hypothesis, we have observed that paired unilateral whisker and odor stimulations led to odorant-induced whisker motions in bilateral sides, which were attenuated by inhibiting the activity of barrel cortices. In the mice that showed bilateral cross-modal responses, the neurons in both sides of barrel cortices became to encode this new odor signal alongside the innate whisker signal. Axon projections and synapse formations from the barrel cortex, which was co-activated with the piriform cortex, toward its contralateral barrel cortex (CBC) were upregulated. Glutamatergic synaptic transmission in bilateral barrel cortices was upregulated and GABAergic synaptic transmission was downregulated. The associative activations of the sensory cortices facilitate new axon projection, glutamatergic synapse formation and GABAergic synapse downregulation, which drive the neurons to be recruited as associative memory cells in the bilateral cortices. Our data reveal the productions of associative memory cells and synapse innervations in bilateral sensory cortices for unilateral training toward bilateral memory.
机译:单侧肢体学习到的体感信号和操作技能可以在两侧进行检索。关于这种单方面学习对双侧记忆的潜在细胞机制,我们假设双侧皮质中的联想记忆细胞和它们之间的突触神经支配产生了。在检查该假设时,我们观察到,单边晶须和气味刺激的配对导致了两侧的气味诱发的晶须运动,这些运动通过抑制桶状皮质的活性而减弱。在表现出双边交叉模态反应的小鼠中,桶状皮质两侧的神经元开始编码这种新的气味信号以及先天的晶须信号。从桶状皮层(与梨状皮层共同激活)到其对侧桶状皮层(CBC)的轴突投影和突触形成被上调。双边桶状皮质的谷氨酸能突触传递被上调,而GABA能突触传递被下调。感觉皮质的关联激活促进新的轴突投射,谷氨酸能突触形成和GABA能突触下调,这驱动神经元被招募为双侧皮质的关联记忆细胞。我们的数据揭示了单侧训练对双侧记忆的双侧感觉皮层联想记忆细胞的产生和突触神经支配。

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