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Neuropharmacology|March 2, 2016
Gap junctions between CA3 pyramidal cells contribute to network synchronization in neonatal hippocampusSvetlana M Molchanova, Johanna Huupponen, Sari E Lauri, et al.Cerebral Cortex (New York, N.Y. : 1991)|September 4, 2012
Ongoing intrinsic synchronous activity is required for the functional maturation of CA3-CA1 glutamatergic synapsesJohanna Huupponen, Svetlana M Molchanova, Sari E Lauri, et al.Molecular Neurobiology|May 3, 2019
NETO1 Regulates Postsynaptic Kainate Receptors in CA3 Interneurons During Circuit MaturationEster Orav, Ilona Dowavic, Johanna Huupponen, et al.International Journal of Heart Failure|February 6, 2025
Worsening Heart Failure and Medication Use in HFrEF: A Finnish Retrospective Registry Study and Patient SurveyAino Vesikansa, Juha Mehtälä, Sarah Smith, 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.Elife|March 24, 2020
Kainate receptors regulate development of glutamatergic synaptic circuitry in the rodent amygdalaMaria Ryazantseva, Jonas Englund, Alexandra Shintyapina, et al.Neuropharmacology|May 10, 2016
Molecular mechanisms controlling synaptic recruitment of GluA4 subunit-containing AMPA-receptors critical for functional maturation of CA1 glutamatergic synapsesNatalia V Luchkina, Sarah K Coleman, Johanna Huupponen, et al.Proceedings of the National Academy of Sciences of the United States of America|March 7, 2014
Developmental switch in the kinase dependency of long-term potentiation depends on expression of GluA4 subunit-containing AMPA receptorsNatalia V Luchkina, Johanna Huupponen, Vernon R J Clarke, et al.Pageof 1