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首页> 外文期刊>Nature Communications >Optogenetic rewiring of thalamocortical circuits to restore function in the stroke injured brain
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Optogenetic rewiring of thalamocortical circuits to restore function in the stroke injured brain

机译:丘脑皮质回路的光遗传学重新布线以恢复中风受伤大脑的功能

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摘要

To regain sensorimotor functions after stroke, surviving neural circuits must reorganize and form new connections. Although the thalamus is critical for processing and relaying sensory information to the cortex, little is known about how stroke affects the structure and function of these connections, or whether a therapeutic approach targeting these circuits can improve recovery. Here we reveal with in vivo calcium imaging that stroke in somatosensory cortex dampens the excitability of surviving thalamocortical circuits. Given this deficit, we hypothesized that chronic transcranial window optogenetic stimulation of thalamocortical axons could facilitate recovery. Using two-photon imaging, we show that optogenetic stimulation promotes the formation of new and stable thalamocortical synaptic boutons, without impacting axon branch dynamics. Stimulation also enhances the recovery of somatosensory cortical circuit function and forepaw sensorimotor abilities. These results demonstrate that an optogenetic approach can rewire thalamocortical circuits and restore function in the damaged brain.
机译:为了在中风后恢复感觉运动功能,幸存的神经回路必须重新组织并形成新的连接。尽管丘脑对于将感觉信息处理并传递到皮层至关重要,但对于中风如何影响这些连接的结构和功能,或针对这些电路的治疗方法是否可以改善恢复知之甚少。在这里,我们通过体内钙显像揭示了体感皮层的中风会抑制存活的丘脑皮质回路的兴奋性。鉴于这种缺陷,我们假设丘脑皮质轴突的慢性经颅窗光遗传学刺激可以促进恢复。使用双光子成像,我们表明光遗传学刺激促进新的和稳定的丘脑皮层突触钮扣的形成,而不会影响轴突分支动力学。刺激还增强了体感皮质电路功能和前爪感觉运动能力的恢复。这些结果表明,光遗传学方法可以重新连接丘脑皮质回路并恢复受损大脑的功能。

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