ResearchTrend.AI
  • Papers
  • Communities
  • Events
  • Blog
  • Pricing
Papers
Communities
Social Events
Terms and Conditions
Pricing
Parameter LabParameter LabTwitterGitHubLinkedInBlueskyYoutube

© 2025 ResearchTrend.AI, All rights reserved.

  1. Home
  2. Papers
  3. 2403.04998
  4. Cited By
Robust automated calcification meshing for biomechanical cardiac digital
  twins

Robust automated calcification meshing for biomechanical cardiac digital twins

8 March 2024
Daniel H. Pak
Minliang Liu
Theodore Kim
C. Ozturk
Raymond McKay
Ellen T. Roche
Rudolph L. Gleason
James S. Duncan
    AI4CE
ArXivPDFHTML

Papers citing "Robust automated calcification meshing for biomechanical cardiac digital twins"

3 / 3 papers shown
Title
AI-powered multimodal modeling of personalized hemodynamics in aortic
  stenosis
AI-powered multimodal modeling of personalized hemodynamics in aortic stenosis
C. Ozturk
Daniel H. Pak
L. Rosalia
Debkalpa Goswami
Mary E. Robakowski
Raymond McKay
Christopher T. Nguyen
James S. Duncan
Ellen T. Roche
AI4CE
16
2
0
29 Jun 2024
Multi-view Hybrid Graph Convolutional Network for Volume-to-mesh Reconstruction in Cardiovascular MRI
Multi-view Hybrid Graph Convolutional Network for Volume-to-mesh Reconstruction in Cardiovascular MRI
Nicolás Gaggion
Benjamin A. Matheson
Yan Xia
Rodrigo Bonazzola
Nishant Ravikumar
Zeike A. Taylor
Diego H. Milone
Alejandro F. Frangi
Enzo Ferrante
16
3
0
22 Nov 2023
A Deep-Learning Approach For Direct Whole-Heart Mesh Reconstruction
A Deep-Learning Approach For Direct Whole-Heart Mesh Reconstruction
Fanwei Kong
N. Wilson
S. Shadden
MedIm
AI4CE
40
77
0
16 Feb 2021
1