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Portail Poly

Bayesian differentiation of multi-scale line-structures for model-free instrument segmentation in thoracoscopic images

bayesiandifferentiationofmultiscalelinestructuresformodelfreeinstrumentsegmentationinthoracoscopicimages CONFERENCE 2005 Windisch, L., Cheriet, F., &amp; Grimard, G. (septembre 2005). <em><a href="https://publications.polymtl.ca/23551/&q ...

https://www.polymtl.ca/liv4d/content/bayesian-differentiation-multi-scale-line-structures-model-free-instrument-segmentation-0

Portail Poly

Self-calibration of biplanar radiographs for a retrospective comparative study of the 3D correction of adolescent idiopathic scoliosis

selfcalibrationofbiplanarradiographsforaretrospectivecomparativestudyofthedcorrectionofadolescentidiopathicscoliosis CONFERENCE 2002 Novosad, J., Cheriet, F., Delorme, S., Poirier, S., Beauséjour, M., &amp; Labelle, H. (mai 2002). <em><a href ...

https://www.polymtl.ca/liv4d/content/self-calibration-biplanar-radiographs-retrospective-comparative-study-3d-correction-adolescent-0

Service des finances

Title Freeze-Dried Chitosan-Thrombin-Platelet-Rich Plasma Implants Improve Supraspinatus Tendon Regeneration in a Rabbit Rotator Cuff Repair Model

titlefreezedriedchitosanthrombinplateletrichplasmaimplantsimprovesupraspinatustendonregenerationinarabbitrotatorcuffrepairmodel JOURNAL 2025 Milano, F., Chevrier, A., De Crescenzo, G., &amp; Lavertu, M. (2025). <a href="https://publications.po ...

https://www.polymtl.ca/lbc/content/title-freeze-dried-chitosan-thrombin-platelet-rich-plasma-implants-improve-supraspinatus-tendon

Portail Poly

Mechanical characterization of an origami-inspired super deformable metamaterial with high tunability for tissue engineering

mechanicalcharacterizationofanorigamiinspiredsuperdeformablemetamaterialwithhightunabilityfortissueengineering JOURNAL 2025 Bagheri, M. A., Aubin, C.-É., Nault, M.-L., &amp; Villemure, I. (2025). <a href="https://publications.polymtl.ca/62639/ ...

https://www.polymtl.ca/lmp/content/mechanical-characterization-origami-inspired-super-deformable-metamaterial-high-tunability-tissue

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