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首页> 外文期刊>ACS nano >Optogenetic Mapping of Functional Connectivity in Freely Moving Mice via Insertable Wrapping Electrode Array Beneath the Skull
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Optogenetic Mapping of Functional Connectivity in Freely Moving Mice via Insertable Wrapping Electrode Array Beneath the Skull

机译:通过头骨下面的可插入包装电极阵列在自由移动小鼠中的功能连接性的光遗传学映射。

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Spatiotemporal mapping of neural interactions through electrocorticography (ECoG) is the key to understanding brain functions and disorders. For the entire brain cortical areas, this approach has been challenging, especially in freely moving states, owing to the need for extensive craniotomy. Here, we introduce a flexible microelectrode array system, termed iWEBS, which can be inserted through a small cranial slit and stably wrap onto the curved cortical surface. Using iWEBS, we measured dynamic changes of signals across major cortical domains, namely, somatosensory, motor, visual and retrosplenial areas, in freely moving mice. iWEBS robustly displayed somatosensory evoked potentials (SEPs) in corresponding cortical areas to specific somatosensory stimuli. We also used iWEBS for mapping functional interactions between cortical areas in the propagation of spike-and-wave discharges (SWDs), the neurological marker of absence seizures, triggered by optogenetic inhibition of a specific thalamic nucleus. This demonstrates that iWEBS represents a significant improvement over conventional ECoG recording methodologies and, therefore, is a competitive recording system for mapping wide-range brain connectivity under various behavioral conditions.
机译:通过脑皮质描记术(ECoG)进行神经交互作用的时空映射是了解脑功能和疾病的关键。对于整个大脑皮层区域,由于需要进行广泛的颅骨切开术,这种方法一直具有挑战性,特别是在自由移动状态下。在这里,我们介绍了一种称为iWEBS的柔性微电极阵列系统,该系统可以通过颅骨小缝隙插入并稳定地包裹在弯曲的皮质表面上。使用iWEBS,我们在自由移动的小鼠中测量了跨主要皮质区域(即体感,运动,视觉和脾后区域)的信号动态变化。 iWEBS会在特定皮质区域对特定的体感刺激稳健显示体感诱发电位(SEP)。我们还使用iWEBS绘制了尖峰和波放电(SWDs)传播过程中皮层区域之间的功能相互作用,SWD是由特定丘脑核的光遗传学抑制触发的失神发作的神经学标志。这表明iWEBS代表了对传统ECoG记录方法的重大改进,因此,它是一种竞争记录系统,可在各种行为条件下绘制宽范围的大脑连通性。

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