Michael M. Kohl

Affiliations: 
2010-2012 Physiology, Development and Neuroscience University of Cambridge, Cambridge, England, United Kingdom 
 2012-2013 Molecular and Cell Biology University of California, Berkeley, Berkeley, CA, United States 
 2013- Physiology, Anatomy and Genetics University of Oxford, Oxford, United Kingdom 
Area:
Synaptic Plasticity, Sensory Processing, Systems Neuroscience
Website:
www.kohllab.org
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"Michael M Kohl"
Mean distance: 13.78 (cluster 6)
 
SNBCP

Parents

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Andrew M. Batchelor research assistant 2004-2005 UCL
Dimitri Kullmann grad student 2006-2006 UCL
Ole Paulsen grad student 2005-2009 Oxford
Ole Paulsen post-doc 2010-2012 Cambridge

Children

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Inês V. Barreiros research assistant 2015-2017 Oxford
Ana Carolina Bottura grad student 2015- Oxford
Suzanne Scott grad student 2015- Oxford
James M. Rowland grad student 2017- Oxford
Nils Nyberg grad student 2017-2017 Oxford
Severin A. Limal grad student 2016-2020 Oxford
Mariangela Panniello post-doc 2016- Oxford
Liad Jacob Baruchin post-doc 2017-
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Publications

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Panniello M, Gillon CJ, Maffulli R, et al. (2024) Stimulus information guides the emergence of behavior-related signals in primary somatosensory cortex during learning. Cell Reports. 43: 114244
Park K, Kohl MM, Kwag J. (2023) Memory encoding and retrieval by retrosplenial parvalbumin interneurons are impaired in Alzheimer's disease model mice. Current Biology : Cb
Akam T, Lustig A, Rowland JM, et al. (2022) Open-source, Python-based, hardware and software for controlling behavioural neuroscience experiments. Elife. 11
Baruchin LJ, Ghezzi F, Kohl MM, et al. (2021) Contribution of Interneuron Subtype-Specific GABAergic Signaling to Emergent Sensory Processing in Mouse Somatosensory Whisker Barrel Cortex. Cerebral Cortex (New York, N.Y. : 1991)
Prince LY, Tran MM, Grey D, et al. (2021) Neocortical inhibitory interneuron subtypes are differentially attuned to synchrony- and rate-coded information. Communications Biology. 4: 935
Jang HJ, Chung H, Rowland JM, et al. (2020) Distinct roles of parvalbumin and somatostatin interneurons in gating the synchronization of spike times in the neocortex. Science Advances. 6: eaay5333
Chung H, Park K, Jang HJ, et al. (2020) Dissociation of somatostatin and parvalbumin interneurons circuit dysfunctions underlying hippocampal theta and gamma oscillations impaired by amyloid β oligomers in vivo. Brain Structure & Function
Park K, Lee J, Jang HJ, et al. (2020) Optogenetic activation of parvalbumin and somatostatin interneurons selectively restores theta-nested gamma oscillations and oscillation-induced spike timing-dependent long-term potentiation impaired by amyloid β oligomers. Bmc Biology. 18: 7
Chong EZ, Panniello M, Barreiros I, et al. (2019) Quasi-simultaneous multiplane calcium imaging of neuronal circuits. Biomedical Optics Express. 10: 267-282
Park K, Chung H, Jang HJ, et al. (2019) Dissociation of parvalbumin-positive and somatostatin-positive interneurons’ contributions to frequency-selective impairments of synaptic inhibition to hippocampal pyramidal cells induced by Aβ oligomers in vitro Ibro Reports. 6
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