气压感受器
反射
医学
血容量
迷走神经
肺牵张感受器
血压
心率
机械感受器
感觉系统
神经科学
刺激
直立生命体征
光遗传学
心血管生理学
传出的
心脏病学
心跳
迷走神经反射
迷走神经张力
结节状神经节
内科学
压力反射
心脏周期
神经调节
麻醉
自主神经系统
受体
膨胀
立位不耐受
解剖
反射弧
刺激(心理学)
游离神经末梢
瓦萨尔瓦机动
血流动力学
电生理学
动脉血
作者
Zhikai Liu,Shan Lu,Isabela A. Haskell,Michael S. Schappe,Masa Josipovic,Soohong Min,AbdulRasheed A. Alabi,Jingyi Chi,Minseon Kim,Stephen D. Liberles
出处
期刊:Nature
[Springer Nature]
日期:2026-01-28
标识
DOI:10.1038/s41586-025-10010-4
摘要
Cranial nerves densely innervate the heart and vasculature, with sensory neurons reporting on blood pressure, respiratory gases and tissue damage1. The roles of arterial baroreceptors in systemic physiology are well appreciated2, but the functions of vagal cardiac mechanoreceptors have been more difficult to parse, in part due to the closed-loop structure of the cardiovascular system. Here we use genetic tools in mice to identify a small group of neurons that are acutely sensitive to circulating blood volume and initiate a reflex that compensates for decreased filling of the heart in an upright posture and haemorrhage. Vagal PIEZO2 neurons form characteristic end-net endings in the heart, lower blood pressure in response to optogenetic stimulation and display blood-volume-dependent responses with every heartbeat that are time-locked to atrial and ventricular systole. Knockout of Piezo2 and/or ablation of PIEZO2 neurons in vagal ganglia eliminates this heartbeat-coupled nerve activity, causes orthostatic hypotension and compromises cardiovascular stability during trauma-induced blood loss. Together, these findings demonstrate that vagal mechanoreceptors monitor the cardiac cycle and initiate a blood-volume-dependent reflex that defends the constancy of circulation.
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