Categoria: Senza categoria

Bio-hybrid scaffolds combining polyvinyl alcohol and decellularized articular cartilage for the treatment of focal chondral lesions in hemophilic patients

Barbon, S., Confalonieri, M., Stocco, E., D’Osualdo, A., Contran, M., Parnigotto, P.P., De Caro, R., Todros, S., Macchi, V., Pavan, P.G., Porzionato, A., Bio-hybrid scaffolds combining polyvinyl alcohol and decellularized articular cartilage for the treatment of focal chondral lesions in hemophilic patients (2025), Frontiers in Pharmacology, 16 – 2025. DOI:10.3389/fphar.2025.1650467

Finite element modeling of the abdominal wall biomechanics after hernia repair: the effects of muscle contraction

Spadoni, S., Todros, S., Baldan, N., Pavan, P.G., Finite element modeling of the abdominal wall biomechanics after hernia repair: the effects of muscle contraction (2025), Journal of Mechanics in Medicine and Biology, accepted on 3rd June 2025. DOI: 10.1142/S021951942540055X

Mechanical insights into fat pads: a comparative study of infrapatellar and suprapatellar fat pads in osteoarthritis

Pettenuzzo, S., Berardo, A., Belluzzi, E., Pozzuoli, A., Ruggieri, P., Carniel, E. L., & Fontanella, C. G. (2025). Mechanical insights into fat pads: a comparative study of infrapatellar and suprapatellar fat pads in osteoarthritis. Connective Tissue Research, 66(4), 272–283. https://doi.org/10.1080/03008207.2025.2502591

A photonastic prototissue capable of photo-mechano-chemical transduction

Galanti A., Rosetti B., Valente S., Braidotti N., Sbacchi M., Todros S., Pavan P., Gobbo P., A Photonastic Prototissue Capable of Photo-Mechano-Chemical Transduction (2025) Advanced Materials, DOI: 10.1002/adma.202502830

Numerical modeling of the abdominal wall biomechanics and experimental analysis for model validation

Spadoni S., Todros S., Pavan P.G., Numerical modeling of the abdominal wall biomechanics and experimental analysis for model validation (2024), Frontiers in Bioengineering and Biotechnology, 12, 1472509. DOI: 10.3389/fbioe.2024.1472509

Mechanical Characterization of the Male Lower Urinary Tract: Comparison among Soft Tissues from the Same Human Case Study

Berardo, A., Mascolini, M. V., Fontanella, C. G., Contran, M., Todesco, M., Porzionato, A., Macchi, V., de Caro, R., Boscolo-Berto, R., & Carniel, E. L. (2024). Mechanical Characterization of the Male Lower Urinary Tract: Comparison among Soft Tissues from the Same Human Case Study. Applied Sciences (Switzerland), 14(4). https://doi.org/10.3390/app14041357

Mechanical Behaviour of Plantar Adipose Tissue: From Experimental Tests to Constitutive Analysis

Pettenuzzo, S., Belluzzi, E., Pozzuoli, A., Macchi, V., Porzionato, A., Boscolo-Berto, R., Ruggieri, P., Berardo, A., Carniel, E. L., & Fontanella, C. G. (2024). Mechanical Behaviour of Plantar Adipose Tissue: From Experimental Tests to Constitutive Analysis. Bioengineering, 11(1). https://doi.org/10.3390/bioengineering11010042

Design, implementation and effectiveness of human fascia lata biomechanics for tissue engineering

Bonaldi, L., Fontanella, C. G., Stecco, C., & Berardo, A. (2024). Design, implementation and effectiveness of human fascia lata biomechanics for tissue engineering. Journal of Biomechanics, 176, 112369. https://doi.org/10.1016/J.JBIOMECH.2024.112369

Quantifying mechanical forces during vertebrate morphogenesis

Maniou, E., Todros, S., Urciuolo, A., Moulding, D., Magnussen, M., Giomo, M., Pavan, P.G., Galea, G.L., Elvassore, N., Quantifying mechanical forces during vertebrate morphogenesis (2024), Nature Materials, accepted June 2024, DOI: 10.1038/s41563-024-01942-9

Partially oxidized polyvinyl alcohol + functionalized water soluble multiwalled carbon nanotubes: a new conductive nanocomposite material with promising implications for neuroregeneration

Stocco, S. Barbon, L. Ceroni, M. Confalonieri, G. Pulzato, S. Pressi, A. D’Osualdo, M. Contran, R. Boscolo-Berto, C. Tiengo, S. Todros, P.G. Pavan, V. Macchi, R. De Caro, L. Calvillo, E. Menna, A. Porzionato, Partially oxidized polyvinyl alcohol + functionalized water soluble multiwalled carbon nanotubes: a new conductive nanocomposite material with promising implications for neuroregeneration…
Leggi tutto