Martin Both, PD Ph.D

Affiliations: 
Physiology and Pathophysiology Heidelberg University, Tiffin, OH, United States 
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"Martin Both"
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Stevens NA, Lankisch K, Draguhn A, et al. (2023) Increased interhemispheric connectivity of a distinct type of hippocampal pyramidal cells. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Draguhn A, Both M. (2022) Function follows form: how the structure of neurons determines cortical network activity : Comment on: Hodapp A, Kaiser ME, Thome C, Ding L, Rozov A, Klumpp M, Stevens N, Stingl M, Sackmann T, Lehmann N, Draguhn A, Burgalossi A, Engelhardt M, Both M (2022) Dendritic axon origin enables information gating by perisomatic inhibition in pyramidal neurons. Science 377:1448-1452. Pflugers Archiv : European Journal of Physiology
Hodapp A, Kaiser ME, Thome C, et al. (2022) Dendritic axon origin enables information gating by perisomatic inhibition in pyramidal neurons. Science (New York, N.Y.). 377: 1448-1452
Landeck L, Kaiser ME, Hefter D, et al. (2021) Enriched Environment Modulates Sharp Wave-Ripple (SPW-R) Activity in Hippocampal Slices. Frontiers in Neural Circuits. 15: 758939
Grube P, Heuermann C, Rozov A, et al. (2021) Transient oxygen-glucose deprivation causes region- and cell type-dependent functional deficits in the mouse hippocampus . Eneuro
Bertocchi I, Eltokhi A, Rozov A, et al. (2021) Author Correction: Voltage-independent GluN2A-type NMDA receptor Ca signaling promotes audiogenic seizures, attentional and cognitive deficits in mice. Communications Biology. 4: 187
Bertocchi I, Eltokhi A, Rozov A, et al. (2021) Voltage-independent GluN2A-type NMDA receptor Ca signaling promotes audiogenic seizures, attentional and cognitive deficits in mice. Communications Biology. 4: 59
Maurer J, Yanez A, Bengtson CP, et al. (2020) VEGF-D Downregulation in CA1 Pyramidal Neurons Exerts Asymmetric Changes of Dendritic Morphology without Correlated Electrophysiological Alterations. Neuroscience
Geschwill P, Kaiser ME, Grube P, et al. (2020) Synchronicity of excitatory inputs drives hippocampal networks to distinct oscillatory patterns. Hippocampus
Elzoheiry S, Lewen A, Schneider J, et al. (2019) Mild metabolic stress is sufficient to disturb the formation of pyramidal cell ensembles during gamma oscillations. Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism. 271678X19892657
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