Highly Resilient 3D Aortic Hemodynamics derived directly from Aortic Geometry using AI

Highly Resilient 3D Aortic Hemodynamics derived directly from Aortic Geometry using AI

One-minute 3D ky-kz Centric FFE Thoracic Aorta Imaging with Real-Time Motion-Correction and High-Resolution Deep Learning Reconstruction

Fully Automated Segmentation of Brain and Scalp Blood Vessels on Multi-Parametric Magnetic Resonance Imaging Using Multi-view Cascaded Network

Fully Automated Segmentation of Brain and Scalp Blood Vessels on Multi-Parametric Magnetic Resonance Imaging Using Multi-view Cascaded Network

Denoising 4D-Flow using Self-Supervised Deep Learning and its effect on test-rest reproducibility

Denoising 4D-Flow using Self-Supervised Deep Learning and its effect on test-rest reproducibility

Large vessel occlusion detection on TOF images using deep learning

Identification of high-risk basilar artery plaque with HR-VWI-based radiomics and machine learning

Identification of high-risk basilar artery plaque with HR-VWI-based radiomics and machine learning

Deep Learning Based Algorithm to Identify Large Vessel Stenosis and Occlusion on Contrast Agent-free Magnetic Resonance Imaging

High Resolution TOF-MRA Using SmartSpeed-AI for the Visualization of Lenticulostriate Arteries at 3.0 T: a Preliminary Study

High Resolution TOF-MRA Using SmartSpeed-AI for the Visualization of Lenticulostriate Arteries at 3.0 T: a Preliminary Study

Deep learning-based segmentations challenge established link between stroke volume and functional outcome after thrombectomy

Deep learning-based segmentations challenge established link between stroke volume and functional outcome after thrombectomy

The Fuzzy MAD Stroke Conjecture, using Fuzzy C Means to classify Multimodal Apparent Diffusion for stroke stratification

Prediction of Ischemic Stroke Based on Carotid Plaque VW-HRMRI Radiomics

Prediction of Ischemic Stroke Based on Carotid Plaque VW-HRMRI Radiomics

Self-supervised Learning with Self-supervised Regularization Reconstruction for Accelerated Single- and Multiband Myocardial Perfusion MRI

Self-supervised Learning with Self-supervised Regularization Reconstruction for Accelerated Single- and Multiband Myocardial Perfusion MRI

A unified deep learning model for simultaneous cardiac cine MRI reconstruction, motion estimation and segmentation.

A unified deep learning model for simultaneous cardiac cine MRI reconstruction, motion estimation and segmentation.