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首页> 外文期刊>eLife journal >Stomach-brain synchrony reveals a novel, delayed-connectivity resting-state network in humans
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Stomach-brain synchrony reveals a novel, delayed-connectivity resting-state network in humans

机译:胃脑同步性揭示了人类的新型延迟连接静止状态网络

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摘要

Resting-state networks offer a unique window into the brain’s functional architecture, but their characterization remains limited to instantaneous connectivity thus far. Here, we describe a novel resting-state network based on the delayed connectivity between the brain and the slow electrical rhythm (0.05 Hz) generated in the stomach. The gastric network cuts across classical resting-state networks with partial overlap with autonomic regulation areas. This network is composed of regions with convergent functional properties involved in mapping bodily space through touch, action or vision, as well as mapping external space in bodily coordinates. The network is characterized by a precise temporal sequence of activations within a gastric cycle, beginning with somato-motor cortices and ending with the extrastriate body area and dorsal precuneus. Our results demonstrate that canonical resting-state networks based on instantaneous connectivity represent only one of the possible partitions of the brain into coherent networks based on temporal dynamics.
机译:静止状态网络为大脑的功能架构提供了一个独特的窗口,但是到目前为止,它们的特征仍然仅限于瞬时连接。在这里,我们描述了一种基于大脑与胃中产生的缓慢的电节律(0.05 Hz)之间的延迟连接的新型静止状态网络。胃部网络跨越经典的静息状态网络,并与自主调节区域部分重叠。该网络由具有聚合功能属性的区域组成,这些区域涉及通过触摸,动作或视觉映射人体空间,以及映射人体坐标中的外部空间。该网络的特征是在胃周期内以精确的时间顺序激活,从躯体运动皮层开始,到躯干外体区域和背部前突神经结束。我们的结果表明,基于瞬时连接的规范静止状态网络仅表示大脑可能划分为基于时间动力学的相干网络的一种。

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