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Central chemoreceptor modulation of breathing via multipath tuning in medullary ventrolateral respiratory column circuits

机译:通过多径调节在延髓腹侧呼吸柱回路中进行呼吸的中央化学感受器调节

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摘要

Ventrolateral respiratory column (VRC) circuits that modulate breathing in response to changes in central chemoreceptor drive are incompletely understood. We employed multielectrode arrays and spike train correlation methods to test predictions of the hypothesis that pre-Bötzinger complex (pre-BötC) and retrotrapezoid nucleus/parafacial (RTN-pF) circuits cooperate in chemoreceptor-evoked tuning of ventral respiratory group (VRG) inspiratory neurons. Central chemoreceptors were selectively stimulated by injections of CO2-saturated saline into the vertebral artery in seven decerebrate, vagotomized, neuromuscularly blocked, and artificially ventilated cats. Among sampled neurons in the Bötzinger complex (BötC)-to-VRG region, 70% (161 of 231) had a significant change in firing rate after chemoreceptor stimulation, as did 70% (101 of 144) of the RTN-pF neurons. Other responsive neurons (24 BötC-VRG; 11 RTN-pF) had a change in the depth of respiratory modulation without a significant change in average firing rate. Seventy BötC-VRG chemoresponsive neurons triggered 189 offset-feature correlograms (96 peaks; 93 troughs) with at least one responsive BötC-VRG cell. Functional input from at least one RTN-pF cell could be inferred for 45 BötC-VRG neurons (19%). Eleven RTN-pF cells were correlated with more than one BötC-VRG target neuron, providing evidence for divergent connectivity. Thirty-seven RTN-pF neurons, 24 of which were chemoresponsive, were correlated with at least one chemoresponsive BötC-VRG neuron. Correlation linkage maps and spike-triggered averages of phrenic nerve signals suggest transmission of chemoreceptor drive via a multipath network architecture: RTN-pF modulation of pre-BötC-VRG rostral-to-caudal excitatory inspiratory neuron chains is tuned by feedforward and recurrent inhibition from other inspiratory neurons and from “tonic” expiratory neurons.
机译:尚未完全了解响应中枢化学感受器驱动变化而调节呼吸的前外侧呼吸柱(VRC)回路。我们采用多电极阵列和穗序列相关方法来检验以下假设的预测:玻色子前体(pre-BötC)和梯形后核/界面(RTN-pF)电路在化学感受器诱发的腹侧呼吸组(VRG)吸气的调节中协同作用神经元。通过向七只去脑,迷走神经切断,神经肌肉阻滞和人工通气的猫的椎动脉中注入CO2饱和盐水,选择性刺激中枢化学感受器。在Bötzinger复合体(BötC)到VRG区域的采样神经元中,化学感受器刺激后70%(231的161)的放电速率有显着变化,RTN-pF神经元的70%(144的101)也是如此。其他反应性神经元(24BötC-VRG; 11 RTN-pF)的呼吸调节深度发生了变化,但平均放电速率没有明显变化。七十个BötC-VRG化学反应神经元触发了189个具有至少一个反应性BötC-VRG细胞的偏移特征相关图(96个峰; 93个谷)。对于45个BötC-VRG神经元,可以推断出至少一个RTN-pF细胞的功能输入(19%)。 11个RTN-pF细胞与一个以上的BötC-VRG目标神经元相关,为连接性的差异提供了证据。 37个RTN-pF神经元,其中24个具有化学反应性,与至少一个化学反应性BötC-VRG神经元相关。相关链接图和spike神经信号的尖峰触发平均值表明化学感受器驱动是通过多路径网络体系结构进行传输的:前馈和尾端兴奋性吸气神经元链的RTN-pF调制可通过前馈和递归抑制来调节其他吸气神经元和“强音”呼气神经元。

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