School of Psychology, Centre for Human Brain Health, University of Birmingham, Birmingham, United Kingdom
Ramesh Chelvarajah
School of Psychology, Centre for Human Brain Health, University of Birmingham, Birmingham, United Kingdom; Complex Epilepsy and Surgery Service, Neuroscience Department, Queen Elizabeth Hospital Birmingham, Birmingham, United Kingdom
David T Rollings
Complex Epilepsy and Surgery Service, Neuroscience Department, Queen Elizabeth Hospital Birmingham, Birmingham, United Kingdom
Vijay Sawlani
School of Psychology, Centre for Human Brain Health, University of Birmingham, Birmingham, United Kingdom; Complex Epilepsy and Surgery Service, Neuroscience Department, Queen Elizabeth Hospital Birmingham, Birmingham, United Kingdom
Hajo Hamer
Epilepsy Center, Department of Neurology, University Hospital Erlangen, Erlangen, Germany
Stephanie Gollwitzer
Epilepsy Center, Department of Neurology, University Hospital Erlangen, Erlangen, Germany
Gernot Kreiselmeyer
Epilepsy Center, Department of Neurology, University Hospital Erlangen, Erlangen, Germany
School of Psychology, Centre for Human Brain Health, University of Birmingham, Birmingham, United Kingdom; Department of Experimental Psychology, University of Oxford, Oxford, United Kingdom
School of Psychology, Centre for Human Brain Health, University of Birmingham, Birmingham, United Kingdom; School of Psychology and Neuroscience, Centre for Cognitive Neuroimaging, University of Glasgow, Glasgow, United Kingdom
Department of Vision and Cognition, Netherlands Institute for Neuroscience, an institute of the Royal Netherlands Academy of Art and Sciences, Amsterdam, Netherlands
School of Psychology, Centre for Human Brain Health, University of Birmingham, Birmingham, United Kingdom; School of Psychology and Neuroscience, Centre for Cognitive Neuroimaging, University of Glasgow, Glasgow, United Kingdom
Theta and gamma oscillations in the medial temporal lobe are suggested to play a critical role for human memory formation via establishing synchrony in neural assemblies. Arguably, such synchrony facilitates efficient information transfer between neurons and enhances synaptic plasticity, both of which benefit episodic memory formation. However, to date little evidence exists from humans that would provide direct evidence for such a specific role of theta and gamma oscillations for episodic memory formation. Here, we investigate how oscillations shape the temporal structure of neural firing during memory formation in the medial temporal lobe. We measured neural firing and local field potentials in human epilepsy patients via micro-wire electrode recordings to analyze whether brain oscillations are related to co-incidences of firing between neurons during successful and unsuccessful encoding of episodic memories. The results show that phase-coupling of neurons to faster theta and gamma oscillations correlates with co-firing at short latencies (~20–30 ms) and occurs during successful memory formation. Phase-coupling at slower oscillations in these same frequency bands, in contrast, correlates with longer co-firing latencies and occurs during memory failure. Thus, our findings suggest that neural oscillations play a role for the synchronization of neural firing in the medial temporal lobe during the encoding of episodic memories.