Potassium channel clustering: mechanisms shaping axonal excitability. [PDF]
Escobedo G, Rasband MN.
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Epilepsy as a Multiscale Network Disorder: Integrating Precision Therapeutics and Emerging Experimental Platforms. [PDF]
Chang W +5 more
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Muscle-Nerve Signaling and Neurogenic Inflammation in Temporomandibular Disorders: Potential Contributions of Occlusal Interference and Other Peripheral Triggers. [PDF]
Xia Y, Lu J, Feng X.
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The cornea-trigeminal axis: potassium channels as master regulators of ocular surface homeostasis and sensory transduction. [PDF]
Zhang J +7 more
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Editorial: Pathogenic potassium channel variants in neurological disorders: from functional analysis to personalized pharmacological approaches. [PDF]
Servettini I +3 more
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Editorial: Axon neurobiology: updates in functional and structural dynamics. [PDF]
Kamiya H, Debanne D.
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Comment on "The quercetin metabolite 4-methylcatechol causes vasodilation <i>via</i> voltage-gated potassium (Kv) channels" by Patrícia Dias, Rudy Salam, Jana Pourová, Marie Vopršalová, Lukáš Konečný, Eduard Jirkovský, Jurjen Duintjer Tebbens and Přemysl Mladěnka, <i>Food & Function</i>, 2024, <b>15</b>, 11047. [PDF]
Manville RW, Nguyen HA, Abbott GW.
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Vasorelaxant effects of 3-methoxycatechol are not via direct activation of voltage-gated potassium channels. [PDF]
Manville RW +4 more
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Encoding performance of cortical neurons critically depends on their morphological and neurophysiological properties. [PDF]
Revah O, Wolf F, Gutnick MJ, Neef A.
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Potassium channel-mediated NO-induced vasodilation during maturation: Dominance of Kv7 channels. [PDF]
Shvetsova AA +4 more
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