most citedA Deep Learning Framework for Spatiotemporal Ultrasound Localization Microscopy

98 citations · 111 across the 6 of their papers we have counts for

collaborators

6 papers

physics.med-ph20239 cited

Sparse channel sampling for ultrasound localization microscopy (SPARSE-ULM)

Erwan Hardy, Jonathan Poree, Hatim Belgharbi +3

Ultrasound Localization Microscopy (ULM) has recently enabled the mapping of the cerebral vasculature in vivo with a resolution ten times smaller than the wavelength used, down to…

physics.med-ph20233 cited

Equivalent Time Active Cavitation Imaging

Simon Blais, Jonathan Poree, Gerardo Ramos-Palacios +4

The development of neurologically active drugs faces a challenge in treating brain diseases due to the blood-brain barrier's impermeability. High-intensity focused ultrasound can o…

cs.CV202398 cited

A Deep Learning Framework for Spatiotemporal Ultrasound Localization Microscopy

Léo Milecki, Jonathan Porée, Hatim Belgharbi +6

Ultrasound Localization Microscopy can resolve the microvascular bed down to a few micrometers. To achieve such performance microbubble contrast agents must perfuse the entire micr…

physics.med-ph20231 cited

Ergodic encoding for single-element ultrasound imaging in vivo

Olivier Caron-Grenier, Jonathan Poree, Vincent Perrot +3

Conventional ultrasound imaging relies on the computation of geometric time delay from multiple sensors to detect the position of a scatterer. In this paper, we present Ergodic Rel…

physics.med-ph2023

Equivalent-Time-Active-Cavitation-Imaging Enables Vascular-Resolution Blood-Brain-Barrier-Opening-Therapy Planning

Samuel Desmarais, Gerardo Ramos-Palacios, Jonathan Poree +4

Linking cavitation and anatomy was found to be important for predictable outcomes in Focused-Ultrasound Blood-Brain-Barrier-Opening and requires high resolution cavitation mapping.…

physics.med-ph2023

Quantitative pulsatility measurements using 3D Dynamic Ultrasound Localization Microscopy

Chloé Bourquin, Jonathan Porée, Brice Rauby +11

A rise in blood flow velocity variations (i.e., pulsatility) in the brain, caused by the stiffening of upstream arteries, is associated with cognitive impairment and neurodegenerat…