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International Review of Neurobiology
|
January 1, 1997
Autonomic and vasomotor regulation
D J Reis, E V Golanov
Brain Research
|
May 13, 1999
A role for KATP+-channels in mediating the elevations of cerebral blood flow and arterial pressure by hypoxic stimulation of oxygen-sensitive neurons of rostral ventrolateral medulla
E V Golanov, D J Reis
Brain Research
|
February 15, 2001
Neurons of nucleus of the solitary tract synchronize the EEG and elevate cerebral blood flow via a novel medullary area
E V Golanov, D J Reis
Neuroscience Letters
|
May 10, 1996
Cerebral cortical neurons with activity linked to central neurogenic spontaneous and evoked elevations in cerebral blood flow
E V Golanov, D J Reis
Zhurnal Vysshei Nervnoi Deiatelnosti Imeni I P Pavlova
|
May 1, 1981
[Response of neurons of the ventro- and dorsomedial nuclei of the hypothalamus to biologically heterogeneous stimuli]
E V Golanov, L V Kaliuzhnyĭ
The Journal of Physiology
|
August 15, 1996
Contribution of oxygen-sensitive neurons of the rostral ventrolateral medulla to hypoxic cerebral vasodilatation in the rat
E V Golanov, D J Reis
The American Journal of Physiology
|
February 1, 1995
Vasodilation evoked from medulla and cerebellum is coupled to bursts of cortical EEG activity in rats
E V Golanov, D J Reis
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism
|
May 1, 1994
Nitric oxide and prostanoids participate in cerebral vasodilation elicited by electrical stimulation of the rostral ventrolateral medulla
E V Golanov, D J Reis
Brain Research
|
March 20, 1999
Neuroprotective electrical stimulation of cerebellar fastigial nucleus attenuates expression of periinfarction depolarizing waves (PIDs) and inhibits cortical spreading depression
E V Golanov, D J Reis
Biulleten' Eksperimental'Noi Biologii I Meditsiny
|
June 1, 1980
[Disappearance of the electroacupuncture effect in rabbits following destruction of the dorsomedial hypothalamus]
E V Golanov, L V Kaliuzhnyĭ
Page
of 5
Search research articles
Search
Showing results (1-10 of 47) with videos related to
Sort By:
Page
of 5
International Review of Neurobiology
|
January 1, 1997
Autonomic and vasomotor regulation
D J Reis, E V Golanov
Brain Research
|
May 13, 1999
A role for KATP+-channels in mediating the elevations of cerebral blood flow and arterial pressure by hypoxic stimulation of oxygen-sensitive neurons of rostral ventrolateral medulla
E V Golanov, D J Reis
Brain Research
|
February 15, 2001
Neurons of nucleus of the solitary tract synchronize the EEG and elevate cerebral blood flow via a novel medullary area
E V Golanov, D J Reis
Neuroscience Letters
|
May 10, 1996
Cerebral cortical neurons with activity linked to central neurogenic spontaneous and evoked elevations in cerebral blood flow
E V Golanov, D J Reis
Zhurnal Vysshei Nervnoi Deiatelnosti Imeni I P Pavlova
|
May 1, 1981
[Response of neurons of the ventro- and dorsomedial nuclei of the hypothalamus to biologically heterogeneous stimuli]
E V Golanov, L V Kaliuzhnyĭ
The Journal of Physiology
|
August 15, 1996
Contribution of oxygen-sensitive neurons of the rostral ventrolateral medulla to hypoxic cerebral vasodilatation in the rat
E V Golanov, D J Reis
The American Journal of Physiology
|
February 1, 1995
Vasodilation evoked from medulla and cerebellum is coupled to bursts of cortical EEG activity in rats
E V Golanov, D J Reis
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism
|
May 1, 1994
Nitric oxide and prostanoids participate in cerebral vasodilation elicited by electrical stimulation of the rostral ventrolateral medulla
E V Golanov, D J Reis
Brain Research
|
March 20, 1999
Neuroprotective electrical stimulation of cerebellar fastigial nucleus attenuates expression of periinfarction depolarizing waves (PIDs) and inhibits cortical spreading depression
E V Golanov, D J Reis
Biulleten' Eksperimental'Noi Biologii I Meditsiny
|
June 1, 1980
[Disappearance of the electroacupuncture effect in rabbits following destruction of the dorsomedial hypothalamus]
E V Golanov, L V Kaliuzhnyĭ
Page
of 5