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首页> 外文期刊>The Journal of Physiology >Vasomotor and respiratory responses evoked from the dorsolateral periaqueductal grey are mediated by the dorsomedial hypothalamus.
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Vasomotor and respiratory responses evoked from the dorsolateral periaqueductal grey are mediated by the dorsomedial hypothalamus.

机译:背外侧周围导水管灰色诱发的血管舒缩运动和呼吸系统反应由背部丘脑下丘脑介导。

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Activation of neurons in the dorsomedial hypothalamus (DMH) evokes increases in mean arterial pressure (MAP), sympathetic activity, heart rate (HR) and respiratory activity. Results of previous studies suggest that the DMH-evoked increases in MAP and HR are mediated by neurons within the periaqueductal grey (PAG), but a recent study has proposed that the converse is also true, i.e. that increases in MAP and HR evoked from the PAG depend upon neuronal activity in the DMH. In this study in anaesthetized rats, we examined the functional relationship between the DMH and PAG in regulating renal sympathetic nerve activity (RSNA) and respiratory activity (determined by measuring phrenic nerve activity (PNA)). Bilateral microinjections of the neuronal inhibitor muscimol into the DMH virtually abolished the increases in MAP, RSNA and PNA burst rate and amplitude evoked from the dorsolateral (dl) PAG. In contrast, multiple bilateral injections of much larger (10 times) doses of muscimol or of the local anaesthetic lignocaine into sites in the dlPAG at three different rostrocaudal levels did not reduce the magnitude or duration of the sympathetic vasomotor and respiratory responses evoked by disinhibition of neurons in the DMH. Thus, sympathetic vasomotor and respiratory responses generated from the dlPAG are dependent upon neuronal activity in the DMH, but not the converse. The results of this study together with those of previous studies indicate that the PAG regulates cardiovascular and respiratory function via both ascending projections to the DMH and descending projections to the ventral medulla, that originate from different PAG subregions.
机译:背侧下丘脑(DMH)中神经元的激活引起平均动脉压(MAP),交感神经活动,心率(HR)和呼吸活动的增加。先前的研究结果表明,DMH引起的MAP和HR升高是由导水管周围灰色(PAG)内的神经元介导的,但最近的一项研究提出了相反的结论,即MAP和HR的升高是由导管周围灰质引起的。 PAG取决于DMH中的神经元活动。在这项对麻醉大鼠的研究中,我们研究了DMH和PAG在调节肾交感神经活动(RSNA)和呼吸活动(通过测量神经活动(PNA)确定)之间的功能关系。将神经元抑制剂麝香酚双侧显微注射到DMH中,实际上消除了由背外侧(dl)PAG引起的MAP,RSNA和PNA猝发率和振幅的增加。相反,在三个不同的头尾脑水平向dlPAG的部位多次双倍注射更大剂量(10倍)的muscimol或局部麻醉的利多卡因剂量,并不能减少因抑制作用而引起的交感性血管舒缩和呼吸反应的幅度或持续时间。 DMH中的神经元。因此,从dlPAG产生的交感性血管舒缩和呼吸反应取决于DMH中的神经元活性,但并非相反。这项研究的结果以及以前的研究结果表明,PAG通过DMH的上升投影和腹侧延髓的下降投影来调节心血管和呼吸功能,DMH的投影来自不同的PAG子区域。

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