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Glomus caroticus
LE WE PMID CA
Glomus caroticus1017Glomus caroticus

Adenosine

AMP activated protein kinase

ATP

Baroreceptor (BASKET)

Baroreflex

Breathing (Neurophysiology)

Chemoreceptor (CNS)

Chemoreceptor (Non CNS)

Chemosensation

Glomus caroticus

Heart failure (chronical)

Hypoxia (systemic)

Hypoxic pulmonary vasoconstriction

NADPH oxidase

Neuroendocrine system (Neoplasia)

Neuroepithelial bodies

Neurogenesis (adult)

Nucleus tractus solitarius

Paraganglioma

Receptor (P2X)

Sleep apnea (obstructive)

2008  
1
Carotid body-mediated changes of sympathetic nerve and their relationships with hypertension.
[19024107] Chin Med J (Engl) 121(17): 1732-5 (2008)
1993  
2
Overall systems analysis of the carotid sinus baroreceptor reflex control of the circulation.
[8267213] Anesthesiology 79(6): 1402-12 (1993)
1983  
3
2006  
4
AMP-activated protein kinase and the regulation of Ca2+ signalling in O2-sensing cells.
[16709639] J Physiol 574(Pt 1): 113-23 (2006)
2008  
5
2010  
6
An interdependent model of central/peripheral chemoreception: evidence and implications for ventilatory control.
[20206717] Respir Physiol Neurobiol 173(3): 288-97 (2010)
2008  
7
Plasticity in glutamatergic NTS neurotransmission.
[18524694] Respir Physiol Neurobiol 164(1-2): 105-11 (2008)
2007  
8
The role of NADPH oxidase in carotid body arterial chemoreceptors.
[17223613] Respir Physiol Neurobiol 157(1): 45-54 (2007)
2007  
9
The influence of chronic hypoxia upon chemoreception.
[17291837] Respir Physiol Neurobiol 157(1): 154-61 (2007)
2007  
10
Carotid body function in heart failure.
[17374517] Respir Physiol Neurobiol 157(1): 171-85 (2007)
2007  
11
Purines, the carotid body and respiration.
[17383945] Respir Physiol Neurobiol 157(1): 123-9 (2007)
2003  
12
Acute oxygen sensing in cellular models: relevance to the physiology of pulmonary neuroepithelial and carotid bodies.
[12494488] Anat Rec A Discov Mol Cell Evol Biol 270(1): 41-50 (2003)
2009  
13
Paraganglioma: carotid body tumor.
[20016787] Head Neck Pathol 3(4): 303-6 (2009)
2010  
14
Surgical treatment of carotid body paragangliomas: outcomes and complications according to the shamblin classification.
[20607078] Clin Exp Otorhinolaryngol 3(2): 91-5 (2010)
2005  
15
How the carotid body works: different strategies and preparations to solve different problems.
[16579512] Biol Res 38(4): 315-28 (2005)
2005  
16
Cardiovascular and ventilatory acclimatization induced by chronic intermittent hypoxia: a role for the carotid body in the pathophysiology of sleep apnea.
[16579514] Biol Res 38(4): 335-40 (2005)
2005  
17
Chemical and electric transmission in the carotid body chemoreceptor complex.
[16579515] Biol Res 38(4): 341-5 (2005)
2010  
18
The carotid body, a neurogenic niche in the adult peripheral nervous system.
[20830972] Arch Ital Biol 148(2): 95-105 (2010)
PMC   
19
Long-term regulation of carotid body function: acclimatization and adaptation--invited article.
[19536494] Adv Exp Med Biol 648():307-17 (2009)
PMC   
20
Short-term hypoxia transiently increases dopamine beta-hydroxylase immunoreactivity in glomus cells of the rat carotid body.
[23019014] J Histochem Cytochem 61(1):55-62 (2013)
PMC   
21
Comparative embryology of the carotid body.
[22902512] Respir Physiol Neurobiol 185(1):3-8 (2013)
PMC   
22
Developmental programming of O(2) sensing by neonatal intermittent hypoxia via epigenetic mechanisms.
[22846496] Respir Physiol Neurobiol 185(1):105-9 (2013)
PMC   
23
Sex, hormones, and stress: how they impact development and function of the carotid bodies and related reflexes.
[22781657] Respir Physiol Neurobiol 185(1):75-86 (2013)
PMC   
24
The carotid body and arousal in the fetus and neonate.
[22684039] Respir Physiol Neurobiol 185(1):132-43 (2013)
PMC   
25
Chronic hyperoxia and the development of the carotid body.
[22640932] Respir Physiol Neurobiol 185(1):94-104 (2013)
PMC   
26
Carotid chemoreceptor development in mice.
[22634368] Respir Physiol Neurobiol 185(1):20-9 (2013)
PMC   
27
Peripheral chemoreceptors: function and plasticity of the carotid body.
[23728973] Compr Physiol 2(1):141-219 (2012)
PMC   
28
Responses of glomus cells to hypoxia and acidosis are uncoupled, reciprocal and linked to ASIC3 expression: selectivity of chemosensory transduction.
[23165770] J Physiol 591(Pt 4):919-32 (2013)
PMC   
29
Neurochemicals involved in medullary control of common carotid blood flow.
[24403875] Curr Neuropharmacol 11(5):513-20 (2013)

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