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Bilateral Pathways from the Basal Forebrain to Sensory Cortices May Contribute to Synchronous Sensory Processing

机译:从基底前脑到感觉皮层的双边途径可能有助于同步感觉处理。

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摘要

Sensory processing in the cortex should integrate inputs arriving from receptive fields located on both sides of the body. This role could be played by the corpus callosum through precise projections between both hemispheres. However, different studies suggest that cholinergic projections from the basal forebrain (BF) could also contribute to the synchronization and integration of cortical activities. Using tracer injections and optogenetic techniques in transgenic mice, we investigated whether the BF cells project bilaterally to sensory cortical areas, and have provided anatomical evidence to support a modulatory role for the cholinergic projections in sensory integration. Application of the retrograde tracer Fluor-Gold or Fast Blue in both hemispheres of the primary somatosensory (S1), auditory or visual cortical areas showed labeled neurons in the ipsi- and contralateral areas of the diagonal band of Broca and substantia innominata. The nucleus basalis magnocellularis only showed ipsilateral projections to the cortex. Optogenetic stimulation of the horizontal limb of the diagonal band of Broca facilitated whisker responses in the S1 cortex of both hemispheres through activation of muscarinic cholinergic receptors and this effect was diminished by atropine injection. In conclusion, our findings have revealed that specific areas of the BF project bilaterally to sensory cortices and may contribute to the coordination of neuronal activity on both hemispheres.
机译:皮层中的感觉处理应整合来自位于身体两侧的感受野的输入。 call体可以通过两个半球之间的精确投影来扮演这个角色。然而,不同的研究表明,基础前脑(BF)的胆碱能投射也可能有助于皮层活动的同步和整合。在转基因小鼠中使用示踪剂注射和光遗传学技术,我们调查了BF细胞是否向两侧投射到感觉皮层区域,并提供了解剖学证据来支持胆碱能投射在感觉整合中的调节作用。逆行示踪剂Fluor-Gold或Fast Blue在主要体感(S1),听觉或视觉皮层区域的两个半球中的应用显示,在Broca对角带的同侧和对侧区域中存在标记的神经元,并且存在无名状。基底细胞大细胞核仅向皮质显示同侧突起。 Broca对角带水平肢的光遗传刺激通过毒蕈碱型胆碱能受体的激活促进了两个半球S1皮质的晶须响应,阿托品注射减少了这种影响。总之,我们的发现表明,高炉的特定区域从两侧投射到感觉皮层,并且可能有助于协调两个半球的神经元活动。

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