Caffeine Consumption Influences Lidocaine Action via Pain-Related Voltage-Gated Sodium Channels: An In Vivo Animal Study.
Alfaraj R, Alabdulsalam Z, Alfaraj Z, Alsunni H, Alhawaj H, Omar O, Abuohashish H.
Pain Res Manag. 2022 Jan 4;2022:6107292. doi: 10.1155/2022/6107292. eCollection 2022.
PMID:35027984
Preclinical study in a postoperative pain model to investigate the action of ketamine, lidocaine, and ascorbic acid in reversing fentanyl-induced, non-glutamate-dependent hyperalgesia.
Comparison of Anesthetic Efficacy of Lidocaine and Bupivacaine in Spinal Anesthesia in Chickens.
Khamisabadi A, Kazemi-Darabadi S, Akbari G.
J Avian Med Surg. 2021 Apr;35(1):60-67. doi: 10.1647/1082-6742-35.1.60.
PMID:33892590
Central Nervous System-Toxic Lidocaine Concentrations Unmask L-Type Ca2+ Current-Mediated Action Potentials in Rat Thalamocortical Neurons: An In Vitro Mechanism of Action Study.
Putrenko I, Ghavanini AA, Meyer Schöniger KS, Schwarz SK.
Blinded test in isolated female rabbit heart reliably identifies action potential duration prolongation and proarrhythmic drugs: importance of triangulation, reverse use dependence, and instability.
Mechanisms of lidocaine's action on subtypes of spinal dorsal horn neurons subject to the diverse roles of Na(+) and K(+) channels in action potential generation.
Wolff M, Schnöbel-Ehehalt R, Mühling J, Weigand MA, Olschewski A.