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467 related items for PubMed ID: 12949222
1. Capsaicin-sensitive neurogenic sensory vasodilatation in the dura mater of the rat. Dux M, Sántha P, Jancsó G. J Physiol; 2003 Nov 01; 552(Pt 3):859-67. PubMed ID: 12949222 [Abstract] [Full Text] [Related]
2. Involvement of capsaicin-sensitive afferent nerves in the proteinase-activated receptor 2-mediated vasodilatation in the rat dura mater. Dux M, Rosta J, Sántha P, Jancsó G. Neuroscience; 2009 Jul 07; 161(3):887-94. PubMed ID: 19362118 [Abstract] [Full Text] [Related]
3. Loss of capsaicin-induced meningeal neurogenic sensory vasodilatation in diabetic rats. Dux M, Rosta J, Pintér S, Sántha P, Jancsó G. Neuroscience; 2007 Nov 30; 150(1):194-201. PubMed ID: 17920775 [Abstract] [Full Text] [Related]
4. Capsaicin-insensitive sensory-efferent meningeal vasodilatation evoked by electrical stimulation of trigeminal nerve fibres in the rat. Peitl B, Pethô G, Pórszász R, Németh J, Szolcsányi J. Br J Pharmacol; 1999 May 30; 127(2):457-67. PubMed ID: 10385246 [Abstract] [Full Text] [Related]
5. Vanilloid type 1 receptors (VR1) on trigeminal sensory nerve fibres play a minor role in neurogenic dural vasodilatation, and are involved in capsaicin-induced dural dilation. Akerman S, Kaube H, Goadsby PJ. Br J Pharmacol; 2003 Oct 30; 140(4):718-24. PubMed ID: 14534154 [Abstract] [Full Text] [Related]
6. Endovanilloids are potential activators of the trigeminovascular nocisensor complex. Dux M, Deák É, Tassi N, Sántha P, Jancsó G. J Headache Pain; 2016 Oct 30; 17():53. PubMed ID: 27189587 [Abstract] [Full Text] [Related]
7. Chronic adriamycin treatment impairs CGRP-mediated functions of meningeal sensory nerves. Deák É, Rosta J, Boros K, Kis G, Sántha P, Messlinger K, Jancsó G, Dux M. Neuropeptides; 2018 Jun 30; 69():46-52. PubMed ID: 29661478 [Abstract] [Full Text] [Related]
8. Female sex hormones and rat dural vasodilatation to CGRP, periarterial electrical stimulation and capsaicin. Gupta S, Villalón CM, Mehrotra S, de Vries R, Garrelds IM, Saxena PR, MaassenVanDenbrink A. Headache; 2007 Feb 30; 47(2):225-35. PubMed ID: 17300362 [Abstract] [Full Text] [Related]
9. Interaction of calcitonin gene-related peptide, nitric oxide and histamine release in neurogenic blood flow and afferent activation in the rat cranial dura mater. Schwenger N, Dux M, de Col R, Carr R, Messlinger K. Cephalalgia; 2007 Jun 30; 27(6):481-91. PubMed ID: 17441973 [Abstract] [Full Text] [Related]
10. Diet-Induced Obesity Enhances TRPV1-Mediated Neurovascular Reactions in the Dura Mater. Marics B, Peitl B, Pázmándi K, Bácsi A, Németh J, Oszlács O, Jancsó G, Dux M. Headache; 2017 Mar 30; 57(3):441-454. PubMed ID: 28133727 [Abstract] [Full Text] [Related]
11. Involvement of nitric oxide in the modulation of dural arterial blood flow in the rat. Messlinger K, Suzuki A, Pawlak M, Zehnter A, Schmidt RF. Br J Pharmacol; 2000 Apr 30; 129(7):1397-404. PubMed ID: 10742295 [Abstract] [Full Text] [Related]
12. Increase of meningeal blood flow after electrical stimulation of rat dura mater encephali: mediation by calcitonin gene-related peptide. Kurosawa M, Messlinger K, Pawlak M, Schmidt RF. Br J Pharmacol; 1995 Apr 30; 114(7):1397-402. PubMed ID: 7606344 [Abstract] [Full Text] [Related]
13. Plasma protein extravasation induced in the rat dura mater by stimulation of the parasympathetic sphenopalatine ganglion. Delépine L, Aubineau P. Exp Neurol; 1997 Oct 30; 147(2):389-400. PubMed ID: 9344563 [Abstract] [Full Text] [Related]
14. Local neurogenic regulation of rat hindlimb circulation: role of calcitonin gene-related peptide in vasodilatation after skeletal muscle contraction. Yamada M, Ishikawa T, Fujimori A, Goto K. Br J Pharmacol; 1997 Oct 30; 122(4):703-9. PubMed ID: 9375967 [Abstract] [Full Text] [Related]
15. CGRP and nitric oxide of neuronal origin and their involvement in neurogenic vasodilatation in rat skin microvasculature. Merhi M, Dusting GJ, Khalil Z. Br J Pharmacol; 1998 Mar 30; 123(5):863-8. PubMed ID: 9535014 [Abstract] [Full Text] [Related]
16. Nitric oxide releases calcitonin-gene-related peptide from rat dura mater encephali promoting increases in meningeal blood flow. Strecker T, Dux M, Messlinger K. J Vasc Res; 2002 Mar 30; 39(6):489-96. PubMed ID: 12566974 [Abstract] [Full Text] [Related]
17. Ethanol dilates coronary arteries and increases coronary flow via transient receptor potential vanilloid 1 and calcitonin gene-related peptide. Gazzieri D, Trevisani M, Tarantini F, Bechi P, Masotti G, Gensini GF, Castellani S, Marchionni N, Geppetti P, Harrison S. Cardiovasc Res; 2006 Jun 01; 70(3):589-99. PubMed ID: 16579978 [Abstract] [Full Text] [Related]
18. Sensory neuropeptides and nitric oxide in nasal vascular regulation. Rinder J. Acta Physiol Scand Suppl; 1996 Jun 01; 632():1-45. PubMed ID: 8800374 [Abstract] [Full Text] [Related]
19. Ethanol causes neurogenic vasodilation by TRPV1 activation and CGRP release in the trigeminovascular system of the guinea pig. Nicoletti P, Trevisani M, Manconi M, Gatti R, De Siena G, Zagli G, Benemei S, Capone JA, Geppetti P, Pini LA. Cephalalgia; 2008 Jan 01; 28(1):9-17. PubMed ID: 17888011 [Abstract] [Full Text] [Related]
20. Evidence for CGRP re-uptake in rat dura mater encephali. Gupta S, Amrutkar DV, Mataji A, Salmasi H, Hay-Schmidt A, Sheykhzade M, Messlinger K, Olesen J, Jansen-Olesen I. Br J Pharmacol; 2010 Dec 01; 161(8):1885-98. PubMed ID: 20804493 [Abstract] [Full Text] [Related] Page: [Next] [New Search]