activity
20162024
most citedPVR: Patch-to-Volume Reconstruction for Large Area Motion Correction of Fetal MRI

4 citations · 8 across the 5 of their papers we have counts for

collaborators

5 papers

physics.med-ph2024

Real-time fetAl brain and placental T2* mapping at 0.55T low-field MRI (RAT)

Jordina Aviles Verdera, Sara Neves Silva, Raphael Tomi-Tricot +6

Purpose: To provide real-time quantitative organ-specific information - specifically placental and brain T2* - to allow optimization of the MR examination to the individual patient…

physics.med-ph20241 cited

AutOmatic floW planning for fetaL MRI (OWL)

Sara Neves Silva, Tomas Woodgate, Sarah McElroy +11

Two subsequent deep learning networks, one localizing the fetal chest and one identifying a set of landmarks on a coronal whole-uterus balanced steady-state free precession scan, w…

physics.med-ph20242 cited

Fully automated planning for anatomical fetal brain MRI on 0.55T

Sara Neves Silva, Sarah McElroy, Jordina Aviles Verdera +11

Purpose: Widening the availability of fetal MRI with fully automatic real-time planning of radiological brain planes on 0.55T MRI. Methods: Deep learning-based detection of key bra…

eess.IV20231 cited

An automated pipeline for quantitative T2* fetal body MRI and segmentation at low field

Kelly Payette, Alena Uus, Jordina Aviles Verdera +9

Fetal Magnetic Resonance Imaging at low field strengths is emerging as an exciting direction in perinatal health. Clinical low field (0.55T) scanners are beneficial for fetal imagi…

cs.CV20164 cited

PVR: Patch-to-Volume Reconstruction for Large Area Motion Correction of Fetal MRI

Amir Alansary, Bernhard Kainz, Martin Rajchl +8

In this paper we present a novel method for the correction of motion artifacts that are present in fetal Magnetic Resonance Imaging (MRI) scans of the whole uterus. Contrary to cur…