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Molecular and Cellular Neurosciences|July 3, 2002
Role of heparin-binding growth-associated molecule (HB-GAM) in hippocampal LTP and spatial learning revealed by studies on overexpressing and knockout miceIvan Pavlov, Vootele Võikar, Marko Kaksonen, et al.Neuroscience|October 12, 2025
Physiological and kainate-induced network activity of organotypic hippocampal slices depends on culture medium on multielectrode arrayTiina-Kaisa Kukko-Lukjanov, Tiina Savonlehto, Zoia Kharybina, et al.Neuron|May 6, 2006
Functional maturation of CA1 synapses involves activity-dependent loss of tonic kainate receptor-mediated inhibition of glutamate releaseSari E Lauri, Aino Vesikansa, Mikael Segerstråle, et al.Neurochemical Research|September 1, 2017
GluA4 Dependent Plasticity Mechanisms Contribute to Developmental Synchronization of the CA3-CA1 Circuitry in the HippocampusTsvetomira Atanasova, Zoya Kharybina, Tiina Kaarela, et al.Journal of Neuroscience Methods|November 6, 2012
A microfluidic chip for axonal isolation and electrophysiological measurementsVille Jokinen, Prasanna Sakha, Pia Suvanto, et al.Molecular Autism|January 6, 2026
Loss of the Mecp2 gene in parvalbumin interneurons leads to an inhibitory deficit in the amygdala and affects its functional connectivityMaj Liiwand, Joni Haikonen, Bojana Kokinovic, et al.Eneuro|July 7, 2017
NETO1 Guides Development of Glutamatergic Connectivity in the Hippocampus by Regulating Axonal Kainate ReceptorsEster Orav, Tsvetomira Atanasova, Alexandra Shintyapina, et al.Molecular Psychiatry|June 28, 2024
GluK1 kainate receptors are necessary for functional maturation of parvalbumin interneurons regulating amygdala circuit functionJoni Haikonen, Rakenduvadhana Szrinivasan, Simo Ojanen, et al.Molecular and Cellular Neurosciences|February 22, 2003
Activity blockade increases the number of functional synapses in the hippocampus of newborn ratsSari E Lauri, Karri Lamsa, Ivan Pavlov, et al.Elife|March 24, 2020
Kainate receptors regulate development of glutamatergic synaptic circuitry in the rodent amygdalaMaria Ryazantseva, Jonas Englund, Alexandra Shintyapina, et al.Pageof 6