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Brain Research|April 17, 2007
The functional difference between transient and sustained K+ currents on the action potentials in tetrodotoxin-resistant adult rat trigeminal ganglion neuronsShinki Yoshida, Masayuki Takahashi, Jun Kadoi, et al.Brain Research Bulletin|July 18, 2002
Volume expansion suppresses the tooth-pulp evoked jaw-opening reflex related activity of trigeminal neurons in ratsMamoru Takeda, Takeshi Tanimoto, Toshimi Nishikawa, et al.Pain|November 28, 2006
Enhanced excitability of nociceptive trigeminal ganglion neurons by satellite glial cytokine following peripheral inflammationMamoru Takeda, Takeshi Tanimoto, Jun Kadoi, et al.Journal of Oral Biosciences|November 1, 2019
Dietary constituent genistein inhibits the hyperexcitability of trigeminal nociceptive neurons associated with mechanical hyperalgesia following orofacial inflammationShuho Arakawa, Mogami Inoue, Rina Kinouchi, et al.Brain Research Bulletin|November 27, 2015
Systemic administration of resveratrol suppress the nociceptive neuronal activity of spinal trigeminal nucleus caudalis in ratsShiori Takehana, Kenta Sekiguchi, Maki Inoue, et al.Brain Research Bulletin|June 12, 2016
Local administration of resveratrol inhibits excitability of nociceptive wide-dynamic range neurons in rat trigeminal spinal nucleus caudalisYoshihito Shimazu, Eri Shibuya, Shiori Takehana, et al.Neuropharmacology|December 5, 2006
Effect of 8-bromo-cAMP on the tetrodotoxin-resistant sodium (Nav 1.8) current in small-diameter nodose ganglion neuronsShigeji Matsumoto, Shinki Yoshida, Mizuho Ikeda, et al.The Journal of Physiological Sciences : JPS|March 30, 2016
Recent advances in basic research on the trigeminal ganglionTetsuya Goto, Seog Bae Oh, Mamoru Takeda, et al.The Journal of Pharmacology and Experimental Therapeutics|January 24, 2002
Excitatory mechanism of deflationary slowly adapting pulmonary stretch receptors in the rat lungShigeji Matsumoto, Mizuho Ikeda, Toshimi Nishikawa, et al.Journal of Neurophysiology|December 31, 2004
Temporomandibular joint inflammation potentiates the excitability of trigeminal root ganglion neurons innervating the facial skin in ratsMamoru Takeda, Takeshi Tanimoto, Mizuho Ikeda, et al.Pageof 9