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Remote Control of Respiratory Neural Network by Spinal Locomotor Generators

机译:脊柱运动发生器对呼吸神经网络的远程控制

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摘要

During exercise and locomotion, breathing rate rapidly increases to meet the suddenly enhanced oxygen demand. The extent to which direct central interactions between the spinal networks controlling locomotion and the brainstem networks controlling breathing are involved in this rhythm modulation remains unknown. Here, we show that in isolated neonatal rat brainstem-spinal cord preparations, the increase in respiratory rate observed during fictive locomotion is associated with an increase in the excitability of pre-inspiratory neurons of the parafacial respiratory group (pFRG/Pre-I). In addition, this locomotion-induced respiratory rhythm modulation is prevented both by bilateral lesion of the pFRG region and by blockade of neurokinin 1 receptors in the brainstem. Thus, our results assign pFRG/Pre-I neurons a new role as elements of a previously undescribed pathway involved in the functional interaction between respiratory and locomotor networks, an interaction that also involves a substance P-dependent modulating mechanism requiring the activation of neurokinin 1 receptors. This neurogenic mechanism may take an active part in the increased respiratory rhythmicity produced at the onset and during episodes of locomotion in mammals.
机译:在运动和运动过程中,呼吸速度会迅速增加,以满足突然增加的氧气需求。在节律调节中,控制运动的脊柱网络和控制呼吸的脑干网络之间直接中枢相互作用的程度尚不清楚。在这里,我们显示在孤立的新生大鼠脑干-脊髓制剂中,在虚构运动期间观察到的呼吸频率增加与面旁呼吸组(pFRG / Pre-I)的吸气前神经元的兴奋性增加有关。另外,这种运动引起的呼吸节律调节通过pFRG区域的双侧病变和脑干中神经激肽1受体的阻滞而被阻止。因此,我们的结果为pFRG / Pre-I神经元赋予了新的作用,使其成为呼吸和运动网络之间的功能相互作用所涉及的先前未描述的途径的元素,该相互作用还涉及需要激活神经激肽1的P依赖物质的调节机制。受体。这种神经源性机制可以积极参与哺乳动物运动开始和发作期间产生的呼吸节律的增加。

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