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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 1 Challenge the future Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model W.M. Boon Dr. ir. J. F. VermolenProf. dr. ir. C. VuikDr. ir. J. H. DubbeldamD. Koppenol, MSc
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 2 Challenge the future Opzet Onderzoeksdoel Biologisch proces Wiskundig model Componenten Contractie Resultaten Conclusies & aanbevelingen
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 3 Challenge the future Onderzoeksdoel Wondgenezing Vorming van nieuw weefsel Sterkte afhankelijk van de mate van isotropie Samentrekking van het weefsel (contractie) Contractuur vorming Modelleren van het volledige proces
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 4 Challenge the future Gebied Doorsnede huid Wondgebied 3 weken
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 5 Challenge the future Biologisch proces
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 6 Challenge the future Biologisch Proces Fibrine klont gevormd Afbraak door tPA PDGF verspreidt via diffusie Leukocyten arriveren TGF-β wordt uitgescheden Chemoattractant Fibroblasten arriveren Myofibroblasten Celdeling Collageen productie Contractie Fibroblasten en Myofibroblasten PDGF Leukocyten tPA Fibrine TGF-β Collageen
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 7 Challenge the future Wiskundig model
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 8 Challenge the future Componenten: Cellen Discrete schijven Receptoren Leukocyten Bloedsomloop Fibroblasten en myofibroblasten Omliggend gebied Celdeling Beweging Celdood
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 9 Challenge the future Componenten: Cytokines Diffusievergelijkingen tPA: Afbraak fibrine PDGF: Aantrekking leukocyten TGF-β: Aantrekking (myo)fibroblasten Grid
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 10 Challenge the future Componenten: Vezels Fibrine Collageen Dichtheid en oriëntatie Tensor
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 11 Challenge the future Contractie Samentrekking van het weefsel Tijdelijke krachten Fibroblasten en myofibroblasten Permanente krachten Myofibroblasten Vorming van contractuur Invloed op alle componenten Discreet Continu
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 12 Challenge the future Tijdelijke krachten Puntkracht Kromme rond cel Opsplitsen in lijnstukken Meerdere puntkrachten Formulering
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 13 Challenge the future Permanente krachten Contractuur vorming Elementsgewijs Timer per element
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 14 Challenge the future Resultaten
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 15 Challenge the future Celpopulaties
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 16 Challenge the future Resultaten cellen
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 17 Challenge the future Resultaten cytokines
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 18 Challenge the future Resultaten cytokines
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 19 Challenge the future Resultaten vezels
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 20 Challenge the future Resultaten vezels
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 21 Challenge the future Resultaten: Vezels
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 22 Challenge the future Contractie
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 23 Challenge the future Toename in tijdelijke krachten
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 24 Challenge the future Conclusies en aanbevelingen
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 25 Challenge the future Conclusies Hybride model: Discrete cellen en continue concentraties Verschillende stappen van wondgenezing Toevoeging van contractie Bewegend grid Invloed op alle componenten Vorming contractuur
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 26 Challenge the future Aanbevelingen Groter oppervlak Tensor representatie verder benutten Differentiatie tot myofibroblast Model als basis
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Incorporation of Contracture Formation during Dermal Wound Healing: a Mathematical Model 27 Challenge the future Vragen
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