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Michelle Bridi

West Virginia University · US
Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neuroscience and Neuropharmacology Research, Sleep and Wakefulness Research, Photoreceptor and optogenetics research, and Neural dynamics and brain function.
h-index
6
citations
488
works
22
NIH funding
primary concept
email

Recent publications

NPTX2 transfection improves synaptic E/I balance and performance in learning impaired aged rats
Progress in Neurobiology 2025cited by 3position: middledoi
Daily oscillation of the excitation/inhibition ratio is disrupted in two mouse models of autism
iScience 2024cited by 5position: firstdoi
Blockade of GluN2B-Containing NMDA Receptors Prevents Potentiation and Depression of Responses during Ocular Dominance Plasticity
Journal of Neuroscience 2024cited by 1position: firstdoi
STRENGTH OF LEC EXCITATORY INPUTS ONTO DENTATE GYRUS PV-INS CORRELATED WITH COGNITIVE PERFORMANCE IN AGED RATS
IBRO Neuroscience Reports 2023cited by 0position: middledoi
GluN2B-containing NMDA receptors are required for potentiation and depression of responses in ocular dominance plasticity
bioRxiv (Cold Spring Harbor Laboratory) 2022cited by 1position: firstdoi
All-or-none disconnection of pyramidal inputs onto parvalbumin-positive interneurons gates ocular dominance plasticity
Proceedings of the National Academy of Sciences 2021cited by 25position: middledoi
Daily oscillation of the excitation/inhibition ratio is disrupted in two mouse models of autism
bioRxiv (Cold Spring Harbor Laboratory) 2021cited by 1position: firstdoi
Daily Oscillation of the Excitation-Inhibition Balance in Visual Cortical Circuits
Neuron 2019cited by 167position: firstdoi
Reduced cognitive performance in aged rats correlates with increased excitation/inhibition ratio in the dentate gyrus in response to lateral entorhinal input
Neurobiology of Aging 2019cited by 30position: middledoi
Reduced Cognitive Performance in Aged Rats Correlates with Increased Excitation/Inhibition Ratio in the Dentate Gyrus in Response to Lateral Entorhinal Input
bioRxiv (Cold Spring Harbor Laboratory) 2019cited by 0position: middledoi
Anatomical correlates of rapid eye movement sleep-dependent plasticity in the developing cortex
SLEEP 2018cited by 20position: middledoi
Rapid eye movement sleep promotes cortical plasticity in the developing brain
Science Advances 2015cited by 159position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Alfredo Kirkwood · Johns Hopkins University10 papers (2019–2025)Daniel Severín · Kennedy Krieger Institute7 papers (2019–2025)Ming Teng Koh · Johns Hopkins University4 papers (2019–2025)Cristian Moreno · Allen Institute for Brain Science4 papers (2023–2025)Paul Worley · Johns Hopkins University3 papers (2021–2025)Su Z. Hong · Allen Institute for Brain Science3 papers (2021–2024)Trinh Tran · National Institutes of Health3 papers (2019–2019)Nancy Luo · Georgetown University3 papers (2019–2024)Jiechao Zhou · Xiamen University2 papers (2021–2023)Christian Wesselborg · Allen Institute for Brain Science2 papers (2024–2025)Marcos G. Frank · California University of Pennsylvania2 papers (2015–2018)Altagracia Contreras · Allen Institute for Brain Science2 papers (2024–2025)Ruchit V. Patel · Queen's University2 papers (2021–2024)Grace Kim · Johns Hopkins University2 papers (2021–2024)Sarah J. Bertrand · Louisiana State University in Shreveport2 papers (2021–2024) · 2 papers (2015–2018)Leslie Renouard · Université Claude Bernard Lyon 12 papers (2015–2018)Sujatha Kannan · Johns Hopkins University2 papers (2021–2024)Elizabeth M. Quinlan · University of Maryland, College Park1 papers (2021–2021) · 1 papers (2019–2019)