Research teams and research areas

The Institut de la Vision brings together nearly 300 researchers in 18 research units specialized in ophthalmological pathologies. At the forefront of scientific innovation, these units conduct translational research aimed at developing cutting-edge technological solutions and therapeutic innovations for the prevention, diagnosis and treatment of these pathologies. Organized around five strategic research axes, the teams of the Institut de la Vision cover a wide range of topics, from the molecular physiology of vision to innovative therapeutic approaches.

Imaging of Sensory Information Processing and Neurovascular Coupling

Our group investigates how interactions between neurons and non-neuronal cells contribute to brain activity and to the vascular signals used in functional imaging of the human brain.

Serge Charpak Research director
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Presentation

When we think or perceive the world, blood rushes to activated brain regions through a process called neurovascular coupling (NVC), which underlies functional brain imaging in humans. In the grey matter, where synaptic transmission and signal processing occur, NVC is closely correlated with neural activity and metabolism; however, little is known about what happens in the white matter. Since its founding, my group has brought together neuroscientists and physicists to develop and adapt new imaging approaches for studying in vivo brain activity. Over the past decade, we have combined two-photon imaging, functional ultrasound imaging, and functional magnetic resonance imaging to link cellular and mesoscopic signals underlying brain activity in the neocortex, the olfactory bulb, and, more recently, the optic nerve. While the majority of this research has focused on the physiology of NVC, we also investigate NVC in pathological contexts.

Research areas

  • Neurovascular coupling
  • Cerebrovascular reactivity to hypercapnia.
  • Metabolic and vascular/tissue oxygenation dynamics during brain activation.
  • Two-photon imaging of the optic nerve in response to a visual stimulation.

Team members

Marine Tournissac Research scientist
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Emmanuel Than-Trong Postdoctoral researcher
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Manon Omnès Assistant engineer
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Emmanuelle Chaigneau Research engineer
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Scientific publications

Below you will find the latest scientific publications in this field: Imaging of Sensory Information Processing and Neurovascular Coupling.

Action potential propagation in the rodent myelinated optic nerve does not trigger neurovascular coupling

D. Esteban Suarez-Baquero, D. Boido, A. Assali, N. Renier, T. V. Esipova, L. Ciobanu & S. Charpak
2026 | Nature Communications

Saltatory propagation in the myelinated optic nerve is independent of neurovascular coupling.

Suarez-Baquero D.E., Boido D., Assali A., Renier N., Esipova T.V., Ciobanu, L., Charpak S.
Nature Communications In Press.

Neurovascular coupling and briefCO2 interrogate distinct vascular regulations.

Tournissac, M, Chaigneau, E, Pfister, S, Aydin, AK, Goulam Houssen, YA, O’Herron, P, Filosa, J, Collot, M, Joutel, A, Charpak, S.
Nature Communications volume 15, Article number: 7635 (2024)

The oxygen initial dip in the brain of anesthetized and awake mice.

Aydin A-K, Verdier C, Chaigneau E, Charpak S.
Proc Natl Acad Sci U S A. 2022 Apr 5; 119(14)

Cranial window for longitudinal and multimodal imaging of the whole mouse cortex

M. Tournissac, D. Boido, M. Omnès, Y. Goulam Houssen, L. Ciobanu & S. Charpak 1
2022 | Neurophotonics

The (ultra)sound of neurons firing

S. Charpak
2022 | Neuron

Diversity of neurovascular coupling dynamics along vascular arbors in layer II/III somatosensory cortex

R. L Rungta, M. Zuend, A.-K. Aydin, E. Martineau, D. Boido, B. Weber & S. Charpak
2021 | Communications Biology

Transfer functions linking neural calcium to single voxel functional ultrasound signal

A.-K. Aydin, W. D Haselden, Y. G. Houssen, C. Pouzat, R. L Rungta, C. Demené, M. Tanter, P. J Drew, S. Charpak & D. Boido
2020 | Nature Communications

Mesoscopic and microscopic imaging of sensory responses in the same animal.

Boido D, Rungta R L, Osmanski B-F, Roche M, Tsurugizawa T, Le Bihan D, Ciobanu L, Charpak S.
Nature Communications. Mar 7; 10(1): 1110

Light controls cerebral blood flow in naive animals

R. L. Rungta, B.-F. Osmanski, D. Boido, M. Tanter & S. Charpak
2017 | Nature Communications

Calcium dynamics in astrocyte processes during neurovascular coupling

Y. Otsu, K. Couchman, D. G Lyons, M. Collot, A. Agarwal, J.-M. Mallet, F. W Pfrieger, D. E Bergles & S. Charpak
2014 | Nature Neuroscience

Imaging local neuronal activity by monitoring PO₂ transients in capillaries

A. Parpaleix, Y. Goulam Houssen & S. Charpak
2013 | Nature Medecine

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