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Ho-Quang Nguyen

Showing results (1-10 of 4) with videos related to

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Medical & Biological Engineering & Computing|July 26, 2020
A statistical shape modeling approach for predicting subject-specific human skull from head surfaceTan-Nhu Nguyen, Vi-Do Tran, Ho-Quang Nguyen, et al.
Medical & Biological Engineering & Computing|January 27, 2026
Advanced FE simulation coupled with statistical surrogate modeling toward a multifactorial view on the pelvic floor muscle damage and perineal tearing during childbirthTrieu-Nhat-Thanh Nguyen, Ho-Quang Nguyen, Tan-Nhu Nguyen, et al.
Medical & Biological Engineering & Computing|January 13, 2022
Enhanced head-skull shape learning using statistical modeling and topological featuresTan-Nhu Nguyen, Vi-Do Tran, Ho-Quang Nguyen, et al.
Computer Methods in Biomechanics and Biomedical Engineering|May 20, 2026
A multifactorial fracture risk analysis and vacuum-assisted delivery simulation across gestational ages using CT-derived finite element modeling with probabilistic material analysisTrieu-Nhat-Thanh Nguyen, Vi-Do Tran, Ho-Quang Nguyen, et al.
Pageof 1

Showing results (1-10 of 4) with videos related to

Sort By:
Pageof 1
Medical & Biological Engineering & Computing|July 26, 2020
A statistical shape modeling approach for predicting subject-specific human skull from head surfaceTan-Nhu Nguyen, Vi-Do Tran, Ho-Quang Nguyen, et al.
Medical & Biological Engineering & Computing|January 27, 2026
Advanced FE simulation coupled with statistical surrogate modeling toward a multifactorial view on the pelvic floor muscle damage and perineal tearing during childbirthTrieu-Nhat-Thanh Nguyen, Ho-Quang Nguyen, Tan-Nhu Nguyen, et al.
Medical & Biological Engineering & Computing|January 13, 2022
Enhanced head-skull shape learning using statistical modeling and topological featuresTan-Nhu Nguyen, Vi-Do Tran, Ho-Quang Nguyen, et al.
Computer Methods in Biomechanics and Biomedical Engineering|May 20, 2026
A multifactorial fracture risk analysis and vacuum-assisted delivery simulation across gestational ages using CT-derived finite element modeling with probabilistic material analysisTrieu-Nhat-Thanh Nguyen, Vi-Do Tran, Ho-Quang Nguyen, et al.
Pageof 1