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Biochemical Pharmacology|February 4, 1992
Homoanatoxin: a potent analogue of anatoxin-AS Wonnacott, K L Swanson, E X Albuquerque, et al.Applied Network Science|February 28, 2023
The persistent homology of genealogical networksZachary M Boyd, Nick Callor, Taylor Gledhill, et al.Journal of Medicinal Chemistry|November 22, 1996
Nudicauline and elatine as potent norditerpenoid ligands at rat neuronal alpha-bungarotoxin binding sites: importance of the 2-(methylsuccinimido)benzoyl moiety for neuronal nicotinic acetylcholine receptor bindingD J Hardick, I S Blagbrough, G Cooper, et al.Cellular and Molecular Neurobiology|December 10, 2002
The lesion of the rat substantia nigra pars compacta dopaminergic neurons as a model for Parkinson's disease memory disabilitiesClaudio Da Cunha, Miriam Elizabeth Mendes Angelucci, Newton S Canteras, et al.Molecular Therapy. Methods & Clinical Development|July 5, 2022
Impact of genetically modified organism requirements on gene therapy development in the EU, Japan, and the USGentaro Tajima, Seoan Huh, Natalie Anne Schmidt, et al.Frontiers in Neuroscience|September 28, 2020
The Bidirectional Relationship Between Sleep and Inflammation Links Traumatic Brain Injury and Alzheimer's DiseaseTabitha R F Green, J Bryce Ortiz, Sue Wonnacott, et al.The Journal of Pharmacology and Experimental Therapeutics|November 1, 1989
Agonist recognition site of the peripheral acetylcholine receptor ion channel complex differentiates the enantiomers of nicotineR Rozental, Y Aracava, G T Scoble, et al.Journal of Neurochemistry|December 22, 2006
Differential coupling of alpha7 and non-alpha7 nicotinic acetylcholine receptors to calcium-induced calcium release and voltage-operated calcium channels in PC12 cellsJane A Dickinson, Katharine E Hanrott, M H Selina Mok, et al.The European Journal of Neuroscience|March 4, 2008
Differential activation of PKC delta in the substantia nigra of rats following striatal or nigral 6-hydroxydopamine lesionsKatharine Hanrott, Tracey K Murray, Zeina Orfali, et al.Neuropharmacology|March 12, 2025
Electrophysiological analysis of paraventricular thalamic neurons co-expressing kappa and mu opioid receptorsE J Kuijer, S J Bailey, D J Heal, et al.Pageof 23