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Michael I. Miga
Vanderbilt University
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Publications
18
Funding
0
Patents
0
Comprehensive mixed reality surgical navigation system for liver surgery
Journal of Medical Imaging
•
2025
Augmented Reality-Based Guidance with Deformable Registration in Head and Neck Tumor Resection
2025
Engineering in Clinical Practices: An Evidence-Based Review of Two-Course Sequence
2025
Nonrigid alignment of en bloc tissue specimen to resection bed to enhance correspondence for re-resection guidance
2025
Gravity: weighty attributes in surgical simulation
2025
Surgical navigation system for liver surgery based on HoloLens(R) 2
2025
Deformable Registration Framework for Augmented Reality-based Surgical Guidance in Head and Neck Tumor Resection
arXiv (Cornell University)
•
2025
Digital twin modeling and machine learning frameworks for forecasting multiple microwave ablation volumes
2025
More than meets the eye: Augmented reality in surgical oncology
Journal of Surgical Oncology
•
2024
Comparing regularized Kelvinlet functions and the finite element method for registration of medical images to sparse organ data
Medical Image Analysis
•
2024
Image reconstruction and tissue separation modeling with XFEM for surgical visualization and guidance
2024
Optimal hyperparameter selection in deformable image registration using information criterion and band-limited modal reconstruction
2024
Image guidance system for breast conserving surgery with integrated stereo camera monitoring and deformable correction
2024
LIBR+: Improving Intraoperative Liver Registration by Learning the Residual of Biomechanics-Based Deformable Registration
arXiv (Cornell University)
•
2024
Comparison study of intraoperative surface acquisition methods on registration accuracy for soft-tissue surgical navigation
2024
Supplementary Figure S3 from A Pilot Study on Patient-specific Computational Forecasting of Prostate Cancer Growth during Active Surveillance Using an Imaging-informed Biomechanistic Model
2024
Supplementary Figure S1 from A Pilot Study on Patient-specific Computational Forecasting of Prostate Cancer Growth during Active Surveillance Using an Imaging-informed Biomechanistic Model
2024
Supplementary Figure S2 from A Pilot Study on Patient-specific Computational Forecasting of Prostate Cancer Growth during Active Surveillance Using an Imaging-informed Biomechanistic Model
2024
Unclaimed
Michael I. Miga
Vanderbilt University
Work experience
Vanderbilt University
Top industry applications
Computer graphics & visualization
Medical diagnostics
Medical imaging
Expertise
Computational Biology
Medical Physics
Regenerative Medicine
Last updated Oct 2025
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