Background Cardiac vagal preganglionic neurons (CVPN) are responsible for the tonic, reflex and respiratory modulation of heart rate (HR). Although CVPN receive GABAergic and glutamatergic inputs, likely involved in respiratory and reflex modulation of HR respectively, little else is known regarding the functions controlled by ionotropic inputs. Activation of g-protein coupled receptors (GPCR) alters these inputs, but the functional consequence is largely unknown. The present study aimed to delineate how ionotropic GABAergic, glycinergic and glutamatergic inputs contribute to the tonic and reflex control of HR and in particular determine which receptor subtypes were involved. Furthermore, we wished to establish how activation of the 5-HT1A ...
We sought to test the hypothesis that cardiovascular responses to activation of ionotropic, but not...
Background: The ventral tegmental area (VTA) is well known for its role in cardiovascular control. I...
The ventrolateral medulla contains presympathetic and vagal preganglionic neurons that control vasom...
The nuclei of the hypothalamus have been shown to be involved in central cardiovascular homeostasis....
KEY POINTS: To maintain appropriate blood flow to various tissues of the body under a variety of phy...
In the present study, we investigated the role played by the hypothalamic paraventricular nucleus (P...
We have previously shown that microinjection of drugs that impair gamma-aminobutyric acid (GABA)-med...
We report on the cardiovascular effects of L-glutamate (L-glu) microinjection into the hypothalamic ...
We report on the cardiovascular effects of L-glutamate (L-glu) microinjection into the hypothalamic ...
GABAergic, nitrergic and glutamatergic mechanisms in the PVN on the baseline mean arterial pressure ...
GABAergic, nitrergic and glutamatergic mechanisms in the PVN on the baseline mean arterial pressure ...
1. The caudal presser area (CPA) is a recently identified site within the ventrolateral medulla whic...
GABAergic, nitrergic and glutamatergic mechanisms in the PVN on the baseline mean arterial pressure ...
Synaptic inputs to cardiac vagal neurons (CVNs) regulate parasympathetic activity to the heart. Prev...
The paraventricular nucleus (PVN) of the hypothalamus is an important region of the brain involved i...
We sought to test the hypothesis that cardiovascular responses to activation of ionotropic, but not...
Background: The ventral tegmental area (VTA) is well known for its role in cardiovascular control. I...
The ventrolateral medulla contains presympathetic and vagal preganglionic neurons that control vasom...
The nuclei of the hypothalamus have been shown to be involved in central cardiovascular homeostasis....
KEY POINTS: To maintain appropriate blood flow to various tissues of the body under a variety of phy...
In the present study, we investigated the role played by the hypothalamic paraventricular nucleus (P...
We have previously shown that microinjection of drugs that impair gamma-aminobutyric acid (GABA)-med...
We report on the cardiovascular effects of L-glutamate (L-glu) microinjection into the hypothalamic ...
We report on the cardiovascular effects of L-glutamate (L-glu) microinjection into the hypothalamic ...
GABAergic, nitrergic and glutamatergic mechanisms in the PVN on the baseline mean arterial pressure ...
GABAergic, nitrergic and glutamatergic mechanisms in the PVN on the baseline mean arterial pressure ...
1. The caudal presser area (CPA) is a recently identified site within the ventrolateral medulla whic...
GABAergic, nitrergic and glutamatergic mechanisms in the PVN on the baseline mean arterial pressure ...
Synaptic inputs to cardiac vagal neurons (CVNs) regulate parasympathetic activity to the heart. Prev...
The paraventricular nucleus (PVN) of the hypothalamus is an important region of the brain involved i...
We sought to test the hypothesis that cardiovascular responses to activation of ionotropic, but not...
Background: The ventral tegmental area (VTA) is well known for its role in cardiovascular control. I...
The ventrolateral medulla contains presympathetic and vagal preganglionic neurons that control vasom...