首页> 外文期刊>The Journal of Physiology >Brain circuits mediating baroreflex bradycardia inhibition in rats: an anatomical and functional link between the cuneiform nucleus and the periaqueductal grey.
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Brain circuits mediating baroreflex bradycardia inhibition in rats: an anatomical and functional link between the cuneiform nucleus and the periaqueductal grey.

机译:介导大鼠压力感受性心动过缓抑制的脑回路:楔形核与导水管周围灰色之间的解剖和功能联系。

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Defence responses triggered experimentally in rats by stimulation of the dorsomedial nucleus of the hypothalamus (DMH) and the dorsolateral periaqueductal grey matter (PAG) inhibit the cardiac baroreflex response (i.e. bradycardia). It has also been proposed that the midbrain cuneiform nucleus (CnF) is involved in active responses. Our aim was to identify the neurocircuitry involved in defence-induced baroreflex inhibition, with a particular focus on the link between DMH, CnF and dorsolateral PAG. Microinjection of the anterograde tracer Phaseolus vulgaris leucoaggutinin into the CnF revealed a dense projection to the dorsolateral PAG. Moreover, activation of neurons in the CnF induced increased expression of Fos protein in the dorsolateral PAG. Inhibition of neurons of the CnF or dorsolateral PAG prevented the inhibition of baroreflex bradycardia induced by DMH or CnF stimulation, respectively. These results provide a detailed description of the brain circuitry underlying acute baroreflex modulation by neurons of the DMH. Our data have shown for the first time that the CnF plays a key role in defence reaction-associated cardiovascular changes; its stimulation, from the DMH, activates the dorsolateral PAG, which, in turn, inhibits baroreflex bradycardia.
机译:实验上通过刺激下丘脑背侧核(DMH)和背外侧导水管周围灰质(PAG)触发的防御反应抑制了心脏压力反射反应(即心动过缓)。也有人提出中脑楔形核(CnF)参与主动反应。我们的目的是确定与防御诱导的压力感受器反射抑制有关的神经回路,尤其着重于DMH,CnF和背外侧PAG之间的联系。将顺行示踪剂菜豆白菜凝集素微注射到CnF中显示了对背外侧PAG的密集投射。此外,CnF中神经元的激活诱导了背外侧PAG中Fos蛋白的表达增加。抑制CnF或背外侧PAG的神经元分别抑制了DMH或CnF刺激引起的压力反射性心动过缓的抑制。这些结果提供了由DMH神经元进行的急性压力反射调节的脑回路的详细描述。我们的数据首次显示,CnF在与防御反应相关的心血管变化中起着关键作用。它从DMH产生的刺激激活了背外侧PAG,进而抑制了压力反射性心动过缓。

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