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Michaël B. Zugaro

Researcher at Collège de France

Publications -  33
Citations -  5751

Michaël B. Zugaro is an academic researcher from Collège de France. The author has contributed to research in topics: Head direction cells & Memory consolidation. The author has an hindex of 22, co-authored 31 publications receiving 4811 citations. Previous affiliations of Michaël B. Zugaro include Rutgers University & Centre national de la recherche scientifique.

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Selective suppression of hippocampal ripples impairs spatial memory.

TL;DR: It is found that selective elimination of SPW-Rs during post-training consolidation periods resulted in performance impairment in rats trained on a hippocampus-dependent spatial memory task, providing evidence for a prominent role of hippocampal SPW -Rs in memory consolidation.
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Entrainment of neocortical neurons and gamma oscillations by the hippocampal theta rhythm

TL;DR: It is hypothesized that temporal coordination of neocortical gamma oscillators by hippocampal theta is a mechanism by which information contained in spatially widespread neocorticals assemblies can be synchronously transferred to the associative networks of the hippocampus.
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Characterization of Neocortical Principal Cells and Interneurons by Network Interactions and Extracellular Features

TL;DR: High-density parallel recordings of neuronal activity, determination of their physical location and their classification into pyramidal and interneuron classes provide the necessary tools for local circuit analysis.
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Klusters, NeuroScope, NDManager: a free software suite for neurophysiological data processing and visualization.

TL;DR: The free software package described here was designed to help neurophysiologists process and view recorded data in an efficient and user-friendly manner and consists of several well-integrated applications.
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Hippocampo-cortical coupling mediates memory consolidation during sleep

TL;DR: These results provide the first direct evidence for a causal role of a hippocampo-cortical dialog during sleep in memory consolidation, and indicate that the underlying mechanism involves a fine-tuned coordination between sharp wave-ripples, delta waves and spindles.