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Functional connectivity and responses to chemoreceptor stimulation of medullary ventrolateral respiratory column neurons.

机译:功能连接性和对延髓腹外侧呼吸柱神经元化学感受器刺激的反应。

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摘要

Ventrolateral medullary neurons have important roles in cardiorespiratory coordination. A rostral extension of the ventral respiratory column (RVRC), including the retrotrapezoid nucleus (RTN), has neurons responsive to local perturbations of CO2/pH. Respiratory-modulated firing patterns of RVRC neurons are attributed to influences of more caudal (CVRC) neurons. These circuits remain poorly understood. This study addressed the hypothesis that both local interactions and influences from the CVRC shape rostral neuron discharge patterns and responses. Spike trains from 294 rostral and 490 caudal neurons were recorded with multi-electrode arrays along with phrenic nerve activity in 14 decerebrate, vagotomized cats. Overall, 214 rostral and 398 caudal neurons were respiratory-modulated 124 and 95, respectively, were cardiac-modulated. Subsets of these neurons were evaluated for responses to sequential, selective, transient stimulation of central and peripheral chemoreceptors and arterial baroreceptors. In 5 experiments, Mayer wave-related oscillations (MWROs) in neuronal firing rates were evoked, enhanced, or reduced following central chemoreceptor stimulation. Overall, 174 of the rostral neurons (59.5%) had short-time scale correlations with other RVRC neurons. Of these, 49 triggered cross-correlograms with RVRC targets yielding 330 offset features indicative of paucisynaptic actions from a total of 2,884 rostral pairs evaluated. Forty-nine of the CVRC neurons (10.0%) were triggers in 142 CVRC-RVRC correlograms---from a total of 8,490---with offset features indicative of actions on RVRC neurons. Correlation linkage maps support the hypothesis that local circuit mechanisms contribute to the respiratory and cardiac modulation of RVRC neurons and their responses to chemoreceptor and baroreceptor challenges.
机译:前外侧延髓神经元在心肺协调中起重要作用。腹侧呼吸柱(RVRC)的延展性包括梯形后核(RTN),其神经元对CO2 / pH的局部扰动有反应。 RVRC神经元的呼吸调节激发模式归因于更多尾神经(CVRC)神经元的影响。这些电路仍然知之甚少。这项研究提出了一个假设,即局部相互作用和来自CVRC的影响都会塑造延髓神经元放电模式和反应。用多电极阵列记录了来自294个尾部神经元和490个尾神经元的尖峰序列,以及14神经,迷走神经切断的14只猫的神经活动。总体而言,分别对214个鼻端神经元和398个尾神经元进行了呼吸调节,并对95个进行了心脏调节。评估这些神经元的亚群对中枢和外周化学感受器和动脉压力感受器的顺序,选择性,瞬时刺激的反应。在5个实验中,在中央化学感受器刺激后,诱发,增强或降低了神经元放电速率中的Mayer波相关振荡(MWRO)。总体上,有174个眼部神经元(59.5%)与其他RVRC神经元具有短时尺度相关性。其中,有RVRC目标的49个触发互相关图产生了330个偏移特征,这些特征来自评估的总共2884个对位的对突触动作。 142个CVRC-RVRC相关图中有49个CVRC神经元(占10.0%)是触发信号-总共有8,490个-具有抵消功能,指示RVRC神经元上的作用。相关链接图支持以下假设:局部回路机制有助于RVRC神经元的呼吸和心脏调节及其对化学感受器和压力感受器挑战的反应。

著录项

  • 作者

    Ott, Mackenzie M.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Health Sciences Pharmacology.Biology Physiology.Health Sciences Pathology.Biology Neurobiology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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