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PreBötzinger complex neurons drive respiratory modulation of blood pressure and heart rate

机译:Prebötzinger复合神经元驱动血压和心率的呼吸调节

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摘要

Heart rate and blood pressure oscillate in phase with respiratory activity. A component of these oscillations is generated centrally, with respiratory neurons entraining the activity of pre-sympathetic and parasympathetic cardiovascular neurons. Using a combination of optogenetic inhibition and excitation in vivo and in situ in rats, as well as neuronal tracing, we demonstrate that preBötzinger Complex (preBötC) neurons, which form the kernel for inspiratory rhythm generation, directly modulate cardiovascular activity. Specifically, inhibitory preBötC neurons modulate cardiac parasympathetic neuron activity whilst excitatory preBötC neurons modulate sympathetic vasomotor neuron activity, generating heart rate and blood pressure oscillations in phase with respiration. Our data reveal yet more functions entrained to the activity of the preBötC, with a role in generating cardiorespiratory oscillations. The findings have implications for cardiovascular pathologies, such as hypertension and heart failure, where respiratory entrainment of heart rate is diminished and respiratory entrainment of blood pressure exaggerated.
机译:心率和血压与呼吸活动相振荡。这些振荡的组分是集中生成的,呼吸神经元夹带了前同情和副交感神经心血管神经元的活性。使用致敏抑制和激发的组合和在大鼠的原位中,以及神经元描绘,我们证明了预宾列骨(Prebötc)神经元,其形成鼓风肌的核,直接调节心血管活动。具体而言,抑制前毒性神经元调节心脏副交感神经神经元活性,同时兴奋性预博神经元调节交感神经激发神经元活性,以呼吸为相位产生心率和血压振荡。我们的数据揭示了预录制了预炸前的函数的功能,在产生心肺振荡方面具有作用。该研究结果对心血管病理有影响,如高血压和心力衰竭,其中呼吸夹带心率降低,呼吸夹带血压夸大。

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