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Best results in : Research Potential Pokaż wszystkie wyniki (2)
Search results for: ORBITAL TRAUMA
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Katedra Mechaniki Budowli
Research PotentialAktualnie działalność naukowo-badawcza Katedry koncentruje się, na następujących zagadnieniach: modelowanie konstrukcji, identyfikacja modeli, mechanika konstrukcji cienkościennych, konstrukcje kompozytowe, nieliniowa statyka i dynamika, teoria niezawodności, problemy zniszczenia, optymalizacja konstrukcji, analiza wrażliwości, identyfikacja uszkodzeń konstrukcji, analiza wpływu drgań na budowlę, czy biomechanika.
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Zespół Biomateriałów
Research PotentialInżynieria i technologia biomateriałów, inżynieria powierzchni, wytwarzanie implantów metalowych, rozwój materiałów odpornych na korozję
Best results in : Business Offer Pokaż wszystkie wyniki (1)
Search results for: ORBITAL TRAUMA
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Centrum Civitroniki – Centrum Zaawansowanych Technologii
Business OfferCentrum Civitroniki działa na Wydziale Inżynierii Lądowej i Środowiska Politechniki Gdańskiej. W skład Centrum Cicitroniki wchodzą następujące pracownie:Pracownia DIM-Tefal, Pracownia defektorskopii, badań materiału i konstrukcji metalowych, Pracownia geodezyjnego monitorowania budowli inżynierskich, Pracownia badań drogowych, Pracownia fizyki budowli oraz Nazwa Civitronika jest wynikiem połączenia wyrażeń: „civil engineering”...
Other results Pokaż wszystkie wyniki (7)
Search results for: ORBITAL TRAUMA
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Orbital blowout trauma occurring at the workplace – clinical, biomechanical and legal aspects
PublicationIntroduction and objective: Craniofacial injury at the workplace may lead to orbital blowout fractures. The aim of the study is the development of own numerical model of the eye orbit, assessment of the damage zones, and comparing them with clinical examinations. In addition, the current legal status of patients after injuries is presented Material and methods: In laboratory tests performed on bones collected from the upper and...
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Static and dynamic modelling blow- out type trauma of orbital wall
PublicationAuthors of the paper present initial results of finite element analysis of a blow-out type trauma of orbital wall. The research is liked with laboratory tests for the Young’s modulus of bones evaluation. In the finite element analysis the neighbourhood of orbital wall is modelled by triangle thin shell finite elements. In the paper results of nonlinear static and transient dynamic analysis (including damping) are compared. The...
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Sophistication assessment of existing FEM models of orbital blowout trauma: Is models valuation justified?
PublicationAfter a thorough study of the work entitled “Development and validation of an optimized finite element model of the human orbit”, some doubts aroused concerning the sophistication assessment of the existing finite element method (FEM) models of orbital blow-out. Although the work was unquestionably innovative, and the results were not only fascinating but also invaluable, the authors stated that their model was the most sophisticated...
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Nonlinear dynamic analysis of the pure “buckling” mechanism during blow-out trauma of the human orbit
PublicationConsidering the interplay between orbital bones and intraorbital soft tissues, commonly accepted patterns of the blow-out type of trauma within the human orbit require more thorough investigation to assess the minimal health-threatening impact value. Two different three-dimensional finite element method (FEM) models of the human orbital region were developed to simulate the pure “buckling” mechanism of orbital wall fracture in...
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Destruction of shell structures under the dynamic load on the human skull trauma basis
PublicationThe main aim of this work is to investigate patterns of potential orbital bone fractures due to mechanical injuries. The solution of the main problem is followed by analysis of several testing examples having straight correlation with civil engineering structures, in which materials of wide range of stiffness are applied. To solve the main problem, the three-dimensional finite element method (FEM) model of the orbital region has...