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EN
Application of the holographic interferometry and speckle photography in the primary stability determination of a mandible undergoing the bilateral sagittal split osteotomy (BSSO) is described. Measurements were carried out on Synbone models of human mandibles representing three different techniques of stabilisation. The maximum value criterion of the cut edge displacement components was used for the evaluation of the devices applied (miniplates and bicortical screws). A hybrid technique (miniplate with bicortical screw) of the mandible stabilisation is proposed.
PL
W pracy przedstawiono wyniki próby zastosowania metody fotografii plamkowej do pomiarów przemieszczeń przekroju poprzecznego korzenia marchwi. Badania prowadzono na obiektach rzeczywistych. Omówiono podstawy metody pomiarowej, sposób przygotowania próbek oraz podano przykładowe wyniki pomiarów. Przeprowadzone badania wykazały przydatność fotografii plamkowej do analizy odkształcalności tkanki roślinnej, w tym w aspekcie wyznaczania stałych materiałowych.
EN
The carrot roots cross sections displacement measurements using speckle photography are presented. Real objects (carrot roots samples) were investigated. Basic information of the measurement method, preparation of the samples and examples of measurement results are shown. Presented experiment showed usefulness of the speckle photography method for deformability determination of the biological tissues, including determination of the material's constants.
3
Content available remote Optyczne metody eksperymentalne w badaniach maszyn
PL
W artykule przedstawiono możliwości zastosowań szeregu metod eksperymentalnych do analizy stanu przemieszczeń, odkształceń i naprężeń w badaniach elementów maszyn oraz w biomechanice. Opisano zastosowania takich metod jak: elastooptyka, interferometria holograficzna, fotografia plamkowa, elektroniczna interferometria plamkowa. Badania eksperymentalne prowadzone były na obiektach rzeczywistych oraz ich modelach.
EN
This paper presents different konds of experimental methods, which are often used in the structure of machine and biomechanics. The series of methods like photoelasticity, holographic interferometry, speckle photography method and ESPI enable make an analysis of deformations, strain and stress distributions. The real objects and models were used in the experimental investigation. Modern analytical and numerical methods, which have been introduced into mechanics in recent years, make it possible to solve highly complex problems encountered in the assesments of the strenght and reliability of bone structues and implants. But they usually require experimentalyly determined boundary conditions or courses of the involved phenomena. An experimental analysis of machine, which includes empirical activities aimed at determining throught experimentation (experiments, measurements) the relationship between the quantities that characterise a given object or process, can be divided into three basic stages: the design of an experiment, the realisation of the experiment and the analysis of obtained results. Depending on the goal of an investigation, e.g. the validation of hypotheses, assumptions or mathematical models or the identification of a model of an investigated object, the particular stage of an experiment are subject to modification. The following stages can be distinguished in identificaton: modelling, an experiment are subject to modification. The following stages can be distinguished in identification: modelling, an experiment, the estimation of parameters and the validation of the model. The analysis of the effort of structural components by calculation methods often encounters serious difficulties. The complicated shape, determined chiefly by the constraints imposed by the functions theses components have to fulfil, and the complex state of mechanical loads and purely thermal loads are the reasons why results of calculations should be verified through experiments. Assuming, besides the strenght criterion, that the structure should be characterized specified deformability which would ensure the proper collaboration of its members, the use of experimental methods taht make it possible to identify the state of effort and the state of strains acquires special importance. One should bear it in mind taht many important practical problems could be solved only through experiments. Structural component's strenght and deformability problems can be systematisedaccording to different criteria. One such attempt in the area of problems associated with the analysis of the structure's effort through experiments, particulary ones involving optical methods, is presented below.
4
Content available remote Experimental analysis of external fixators for femoral bone elongation
EN
The purposes of this study were to analyse the stability of the system formed by the Ilizarov fixator and the thigh being elongated. The research was conducted under laboratory (tests on physical models) and clinical (tests on real objects) conditions during the process of the elongation of the femur bone. The aim of the laboratory investigation was to determine the displacement of the bone fragments as a function of the external load and construction of the fixator. The aim of the clinical study on real objects was to determine the state of the load acting on the particular supported rods of the fixator and its changes during elongation of the lower limb in the thigh section. The investigations have demonstrated that the stability of system: the Ilizarov fixator-the thigh being elongated is a function of the mechanical properties of the adapted fixator structure and the forces acting on this system. Optimal spatial configuration of the fixator must be selected for the particular course of treatment.
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