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The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 6, 2005
Endogenous activation of kainate receptors regulates glutamate release and network activity in the developing hippocampusSari E Lauri, Mikael Segerstråle, Aino Vesikansa, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|September 11, 2009
Brain-derived neurotrophic factor controls activity-dependent maturation of CA1 synapses by downregulating tonic activation of presynaptic kainate receptorsMarko Sallert, Tomi Rantamäki, Aino Vesikansa, et al.Translational Psychiatry|April 30, 2026
GluK1 kainate receptors in parvalbumin interneurons modulate cortico-hippocampal network dynamics during social behaviorJun Kyu Rhee, Simo Ojanen, Tiina Paakkunainen, et al.The Journal of Biological Chemistry|September 13, 2005
The two thrombospondin type I repeat domains of the heparin-binding growth-associated molecule bind to heparin/heparan sulfate and regulate neurite extension and plasticity in hippocampal neuronsErkki Raulo, Sarka Tumova, Ivan Pavlov, et al.Journal of Neuropathology and Experimental Neurology|November 16, 2011
Morphologic and functional correlates of synaptic pathology in the cathepsin D knockout mouse model of congenital neuronal ceroid lipofuscinosisSabine Koch, Svetlana M Molchanova, Ann K Wright, et al.Scientific Reports|March 14, 2012
Expression of GluK1c underlies the developmental switch in presynaptic kainate receptor functionAino Vesikansa, Prasanna Sakha, Juha Kuja-Panula, et al.Frontiers in Cellular Neuroscience|October 2, 2020
The Kainate Receptor Subunit GluK2 Interacts With KCC2 to Promote Maturation of Dendritic SpinesSebnem Kesaf, Stanislav Khirug, Emilie Dinh, et al.Experimental Neurology|November 2, 2025
Lgi2-deficient mice manifest epileptiform activity in the developing hippocampal network and ADHD-like behavioural comorbidity in adulthoodTiina Savonlehto, Elisa Nevalainen, Tiina-Kaisa Kukko-Lukjanov, et al.Iscience|December 30, 2022
Aberrant cortical projections to amygdala GABAergic neurons contribute to developmental circuit dysfunction following early life stressJoni Haikonen, Jonas Englund, Shyrley Paola Amarilla, et al.Plos One|March 4, 2014
Gene expression alterations in the cerebellum and granule neurons of Cstb(-/-) mouse are associated with early synaptic changes and inflammationTarja Joensuu, Saara Tegelberg, Eva Reinmaa, et al.Pageof 6