872 resultados para midfacial fracture


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Affiliation: Pierre Dagenais : Hôpital Maisonneuve-Rosemont, Faculté de médecine, Université de Montréal

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Au cours des dernières années, le développement des connaissances au niveau de l’étiologie de la maladie ainsi que l’arrivée de nouveaux médicaments et de lignes directrices guidant la pratique clinique sont susceptibles d’avoir entraîné une meilleure gestion de la polyarthrite rhumatoïde (PAR) et de l’ostéoporose, une comorbidité fréquente chez ces patients. Dans cette thèse, trois questions de recherche sont étudiées à l’aide des banques de données administratives québécoises (RAMQ, MED-ÉCHO). Une première étude documente l’utilisation des médicaments pour la PAR au Québec. À ce jour, il s’agit de la seule étude canadienne à rapporter les tendances d’utilisation des DMARD (disease-modifying antirheumatic drug) biologiques depuis leur introduction dans la pratique clinique. Au cours de la période à l’étude (2002-2008), l’utilisation de DMARD (synthétiques et biologiques) a augmenté légèrement dans la population atteinte de PAR (1,9%, 95% CI : 1,1 - 2,8). Cependant, malgré la présence de recommandations cliniques soulignant l’importance de commencer un traitement rapidement, et la couverture de ces traitements par le régime général d’assurance médicaments, les résultats démontrent une initiation sous-optimale des DMARD chez les patients nouvellement diagnostiqués (probabilité d’initiation à 12 mois : 38,5%). L’initiation de DMARD était beaucoup plus fréquente lorsqu’un rhumatologue était impliqué dans la provision des soins (OR : 4,31, 95% CI : 3,73 - 4,97). Concernant les DMARD biologiques, le facteur le plus fortement associé avec leur initiation était l’année calendrier. Chez les sujets diagnostiqués en 2002, 1,2 sur 1 000 ont initié un DMARD biologique moins d’un an après leur diagnostic. Pour ceux qui ont été diagnostiqués en 2007, le taux était de 13 sur 1 000. Les résultats démontrent que si la gestion pharmacologique de la PAR s’est améliorée au cours de la période à l’étude, elle demeure tout de même sous-optimale. Assurer un meilleur accès aux rhumatologues pourrait, semble-t-il, être une stratégie efficace pour améliorer la qualité des soins chez les patients atteints de PAR. Dans une deuxième étude, l’association entre l’utilisation des DMARD biologiques et le risque de fractures ostéoporotiques non vertébrales chez des patients PAR âgés de 50 ans et plus a été rapportée. Puisque l’inflammation chronique résultant de la PAR interfère avec le remodelage osseux et que les DMARD biologiques, en plus de leur effet anti-inflammatoire et immunosuppresseur, sont des modulateurs de l’activité cellulaire des ostéoclastes et des ostéoblastes pouvant possiblement mener à la prévention des pertes de densité minérale osseuse (DMO), il était attendu que leur utilisation réduirait le risque de fracture. Une étude de cas-témoin intra-cohorte a été conduite. Bien qu’aucune réduction du risque de fracture suivant l’utilisation de DMARD biologiques n’ait pu être démontrée (OR : 1,03, 95% CI : 0,42 - 2,53), l’étude établit le taux d’incidence de fractures ostéoporotiques non vertébrales dans une population canadienne atteinte de PAR (11/1 000 personnes - années) et souligne le rôle d’importants facteurs de risque. La prévalence élevée de l’ostéoporose dans la population atteinte de PAR justifie que l’on accorde plus d’attention à la prévention des fractures. Finalement, une troisième étude explore l’impact de la dissémination massive, en 2002, des lignes directrices du traitement de l’ostéoporose au Canada sur la gestion pharmacologique de l’ostéoporose et sur les taux d’incidence de fractures ostéoporotiques non vertébrales chez une population de patients PAR âgés de 50 ans et plus entre 1998 et 2008. Étant donné la disponibilité des traitements efficaces pour l’ostéoporose depuis le milieu des années 1990 et l’évolution des lignes directrices de traitement, une réduction du taux de fractures était attendue. Quelques études canadiennes ont démontré une réduction des fractures suivant une utilisation étendue des médicaments contre l’ostéoporose et de l’ostéodensitométrie dans une population générale, mais aucune ne s’est attardée plus particulièrement sur une population adulte atteinte de PAR. Dans cette étude observationnelle utilisant une approche de série chronologique, aucune réduction du taux de fracture après 2002 (période suivant la dissémination des lignes directrices) n’a pu être démontrée. Cependant, l’utilisation des médicaments pour l’ostéoporose, le passage d’ostéodensitométrie, ainsi que la provision de soins pour l’ostéoporose en post-fracture ont augmenté. Cette étude démontre que malgré des années de disponibilité de traitements efficaces et d’investissement dans le développement et la promotion de lignes directrices de traitement, l’effet bénéfique au niveau de la réduction des fractures ne s’est toujours pas concrétisé dans la population atteinte de PAR, au cours de la période à l’étude. Ces travaux sont les premiers à examiner, à l’aide d’une banque de données administratives, des sujets atteints de PAR sur une période s’étalant sur 11 ans, permettant non seulement l’étude des changements de pratique clinique suivant l’apparition de nouveaux traitements ou bien de nouvelles lignes directrices, mais également de leur impact sur la santé. De plus, via l’étude des déterminants de traitement, les résultats offrent des pistes de solution afin de combler l’écart entre la pratique observée et les recommandations cliniques. Enfin, les résultats de ces études bonifient la littérature concernant la qualité des soins pharmacologiques chez les patients PAR et de la prévention des fractures.

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Investigations on the fracture behaviour of polymer blends is the topic of this thesis. The blends selected are PP/HDPE and PS/HIPS. PP/HDPE blend is chosen due to its commercial importance and PS/HIPS blend is selected to study the transition from brittle fracture to ductile fracture.PP/HDPE blends were prepared at different compositions by melt blending at 180°C and fracture failure process was investigated by conducting notch sensitivity test and tensile test at different strain rates. The effects of two types of modifiers (particulate and elastomer) on the fracture behaviour and notch sensitivity of PP/HDPE blends were studied. The modifiers used are calcium carbonate, a hard particulate filler commonly used in plastics and Ethylene Propylene Diene Monomer (EPDM). They were added in 2%, 4% and 6% by weight of the blends.The study shows that the mechanical properties of PP/HDPE blends can be optimized by selecting proper blend compositions. The selected modifiers are found to alter and improve the fracture behaviour and notch sensitivity of the blends. Particulate fillers like calcium carbonate can be used for making the mechanical behaviour more stable at the various blend compositions. The resistance to notch sensitivity of the blends is found to be marginally lower in the presence of calcium carbonate. The elastomeric modifier EPDM produces a better stability of the mechanical behaviour. A low concentration of EPDM is sufficient to effect such a change. EPDM significantly improves the resistance to notch sensitivity of the blends. The study shows that judicious selection of modifiers can improve the fracture behaviour and notch sensitivity of PP/HDPE blends and help these materials to be used for critical applications.For investigating the transition in fracture behaviour and failure modes, PS/HIPS blends were selected. The blends were prepared by melt mixing followed by injection moulding to prepare the specimens for conducting tensile, impact and flexure tests. These tests were used to simulate the various conditions which promote failure.The tensile behaviour of unnotched and notched PS/HIPS blend samples were evaluated at slow speeds. Tensile strengths and moduli were found to increase at the higher testing speed for all the blend combinations whereas maximum strain at break was found to decrease. For a particular speed of testing, the tensile strength and modulus show only a very slight decrease as HIPS content is increased up to about 40%. However, there is a drastic decrease on increasing the HIPS content thereafter.The maximum strain at break shows only a very slight change up to about 40% HIPS content and thereafter shows a remarkable increase. The notched specimens also follow a comparable trend even though the notch sensitivity is seen high for PS rich blends containing up to 40% HIPS. The notch sensitivity marginally decreases with increase in HIPS content. At the same time, it is found to increase with the increase in strain rate. It is observed that blends containing more than 40% HIPS fail in ductile mode.The impact characteristics of PSIHIPS blends studied were impact strength, the energy absorbed by the test specimen and impact toughness. Remarkable increase in impact strength is observed as HIPS content in the blend exceeds 40%. The energy absorbed by the test specimens and the impact toughness also show a comparable trend.Flexural testing which helps to characterize the load bearing capacity was conducted on PS/HIPS blend samples at the two different testing speeds of 5mmlmin and 10 mm/min. The flexural strength increases with increase in testing speed for all the blend compositions. At both the speeds, remarkable reduction in flexural strength is observed as HIPS content in the blend exceeds 40%. The flexural strain and flexural energy absorbed by the specimens are found to increase with increase in HIPS content. At both the testing speeds, brittle fracture is observed for PS rich blends whereas HIPS rich blends show ductile mode of failure.Photoelastic investigations were conducted on PS/HIPS blend samples to analyze their failure modes. A plane polariscope with a broad source of light was utilized for the study. The coloured isochromatic fringes formed indicate the presence of residual stress concentration in the blend samples. The coverage made by the fringes on the test specimens varies with the blend composition and it shows a reducing trend with the increase in HIPS content. This indicates that the presence of residual stress is a contributing factor leading to brittle fracture in PS rich blends and this tendency gradually falls with increase in HIPS content and leads to their ductile mode of failure.

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La present tesi proposa una metodología per a la simulació probabilística de la fallada de la matriu en materials compòsits reforçats amb fibres de carboni, basant-se en l'anàlisi de la distribució aleatòria de les fibres. En els primers capítols es revisa l'estat de l'art sobre modelització matemàtica de materials aleatoris, càlcul de propietats efectives i criteris de fallada transversal en materials compòsits. El primer pas en la metodologia proposada és la definició de la determinació del tamany mínim d'un Element de Volum Representatiu Estadístic (SRVE) . Aquesta determinació es du a terme analitzant el volum de fibra, les propietats elàstiques efectives, la condició de Hill, els estadístics de les components de tensió i defromació, la funció de densitat de probabilitat i les funcions estadístiques de distància entre fibres de models d'elements de la microestructura, de diferent tamany. Un cop s'ha determinat aquest tamany mínim, es comparen un model periòdic i un model aleatori, per constatar la magnitud de les diferències que s'hi observen. Es defineix, també, una metodologia per a l'anàlisi estadístic de la distribució de la fibra en el compòsit, a partir d'imatges digitals de la secció transversal. Aquest anàlisi s'aplica a quatre materials diferents. Finalment, es proposa un mètode computacional de dues escales per a simular la fallada transversal de làmines unidireccionals, que permet obtenir funcions de densitat de probabilitat per a les variables mecàniques. Es descriuen algunes aplicacions i possibilitats d'aquest mètode i es comparen els resultats obtinguts de la simulació amb valors experimentals.

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Context: Evidence is limited on the effects of different patterns of use of postmenopausal hormone therapy on fracture incidence and particularly on the effects of ceasing use. Objective: To investigate the effect of different patterns of hormone therapy use on fracture incidence. Design, Setting, and Participants: Prospective study of 138737 postmenopausal women aged 50 to 69 years recruited from the UK general population in 19961998 (the Million Women Study) and followed up for 1.9 to 3.9 years (average, 2.8 years) for fracture incidence. Main Outcome Measure: Adjusted relative risk (RR) for incident fracture (except fracture of the fingers, toes, and ribs) in hormone therapy users compared with never users at baseline. Results: A total of 5197 women (3.7%) reported 1 or more fractures, 79% resulting from falls. Current users of hormone therapy at baseline had a significantly reduced incidence of fracture (RR, 0.62; 95% confidence interval [CI], 0.58-0.66; P<.001). This protection was evident soon after hormone therapy began, and the RR decreased with increasing duration of use (P=.001). Among current users at baseline the RR of fracture did not vary significantly according to whether estrogen-only, estrogen-progestin, or other types of hormones were used (RR [95% CI], 0.64 [0.58-0.71], 0.58 [0.53-0.64], and 0.67 [0.56-0.80], respectively; P=19), nor did it vary significantly according to estrogen dose or estrogen or progestin constituents. The RR associated with current use of hormone therapy did not vary significantly according to 11 personal characteristics of study participants, including their age at menopause, body mass index, and physical activity. Past users of hormone therapy at baseline experienced no significant protection against fractures (RR, 1.07; 95% CI, 0.99-1.15); incidence rates returned to those of never-users within about a year of ceasing use. Conclusions: All types of hormone therapy studied confer substantial protection against fracture while they are used. This protection appears rapidly after use commences and wears off rapidly after use ceases. The older women are, the greater is their absolute reduction in fracture incidence while using hormone therapy.

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The assumption that negligible work is involved in the formation of new surfaces in the machining of ductile metals, is re-examined in the light of both current Finite Element Method (FEM) simulations of cutting and modern ductile fracture mechanics. The work associated with separation criteria in FEM models is shown to be in the kJ/m2 range rather than the few J/m2 of the surface energy (surface tension) employed by Shaw in his pioneering study of 1954 following which consideration of surface work has been omitted from analyses of metal cutting. The much greater values of surface specific work are not surprising in terms of ductile fracture mechanics where kJ/m2 values of fracture toughness are typical of the ductile metals involved in machining studies. This paper shows that when even the simple Ernst–Merchant analysis is generalised to include significant surface work, many of the experimental observations for which traditional ‘plasticity and friction only’ analyses seem to have no quantitative explanation, are now given meaning. In particular, the primary shear plane angle φ becomes material-dependent. The experimental increase of φ up to a saturated level, as the uncut chip thickness is increased, is predicted. The positive intercepts found in plots of cutting force vs. depth of cut, and in plots of force resolved along the primary shear plane vs. area of shear plane, are shown to be measures of the specific surface work. It is demonstrated that neglect of these intercepts in cutting analyses is the reason why anomalously high values of shear yield stress are derived at those very small uncut chip thicknesses at which the so-called size effect becomes evident. The material toughness/strength ratio, combined with the depth of cut to form a non-dimensional parameter, is shown to control ductile cutting mechanics. The toughness/strength ratio of a given material will change with rate, temperature, and thermomechanical treatment and the influence of such changes, together with changes in depth of cut, on the character of machining is discussed. Strength or hardness alone is insufficient to describe machining. The failure of the Ernst–Merchant theory seems less to do with problems of uniqueness and the validity of minimum work, and more to do with the problem not being properly posed. The new analysis compares favourably and consistently with the wide body of experimental results available in the literature. Why considerable progress in the understanding of metal cutting has been achieved without reference to significant surface work is also discussed.

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An exploratory model for cutting is presented which incorporates fracture toughness as well as the commonly considered effects of plasticity and friction. The periodic load fluctuations Been in cutting force dynamometer tests are predicted, and considerations of chatter and surface finish follow. A non-dimensional group is put forward to classify different regimes of material response to machining. It leads to tentative explanations for the difficulties of cutting materials such as ceramics and brittlo polymers, and also relates to the formation of discontinuous chips. Experiments on a range of solids with widely varying toughness/strength ratios generally agree with the analysis.

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A review is given of the mechanics of cutting, ranging from the slicing of thin floppy offcuts (where there is negligible elasticity and no permanent deformation of the offcut) to the machining of ductile metals (where there is severe permanent distortion of the offcut/chip). Materials scientists employ the former conditions to determine the fracture toughness of ‘soft’ solids such as biological materials and foodstuffs. In contrast, traditional analyses of metalcutting are based on plasticity and friction only, and do not incorporate toughness. The machining theories are inadequate in a number of ways but a recent paper has shown that when ductile work of fracture is included many, if not all, of the shortcomings are removed. Support for the new analysis is given by examination of FEM simulations of metalcutting which reveal that a ‘separation criterion’ has to be employed at the tool tip. Some consideration shows that the separation criteria are versions of void-initiation-growth-and-coalescence models employed in ductile fracture mechanics. The new analysis shows that cutting forces for ductile materials depend upon the fracture toughness as well as plasticity and friction, and reveals a simple way of determining both toughness and flow stress from cutting experiments. Examples are given for a wide range of materials including metals, polymers and wood, and comparison is made with the same properties independently determined using conventional testpieces. Because cutting can be steady state, a new way is presented for simultaneously measuring toughness and flow stress at controlled speeds and strain rates.