延髓
高碳酸血症
脑干
神经科学
中缝
中缝核
呼吸系统
到期
髓质
人口
生物
运动前神经元活动
呼吸
医学
麻醉
中枢神经系统
解剖
血清素
内科学
5-羟色胺能
环境卫生
受体
作者
Amol Bhandare,Joseph van de Wiel,Reno Roberts,Ingke Braren,Robert Huckstepp,Nicholas Dale
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2022-10-25
卷期号:11
被引量:21
摘要
Regulation of systemic PCO 2 is a life-preserving homeostatic mechanism. In the medulla oblongata, the retrotrapezoid nucleus (RTN) and rostral medullary Raphe are proposed as CO 2 chemosensory nuclei mediating adaptive respiratory changes. Hypercapnia also induces active expiration, an adaptive change thought to be controlled by the lateral parafacial region (pF L ). Here, we use GCaMP6 expression and head-mounted mini-microscopes to image Ca 2+ activity in these nuclei in awake adult mice during hypercapnia. Activity in the pF L supports its role as a homogenous neuronal population that drives active expiration. Our data show that chemosensory responses in the RTN and Raphe differ in their temporal characteristics and sensitivity to CO 2 , raising the possibility these nuclei act in a coordinated way to generate adaptive ventilatory responses to hypercapnia. Our analysis revises the understanding of chemosensory control in awake adult mouse and paves the way to understanding how breathing is coordinated with complex non-ventilatory behaviours.
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