946 resultados para Torque (Ortodontia)


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Aim To study osseointegration and bone-level changes at implants installed using either a standard or a reduced diameter bur for implant bed preparation. Material and methods In six Labrador dogs, the first and second premolars were extracted bilaterally. Subsequently, mesial roots of the first molars were endodontically treated and distal roots, including the corresponding part of the crown, were extracted. After 3 months of healing, flaps were elevated and recipient sites were prepared in all experimental sites. The control site was prepared using a standard procedure, while the test site was prepared using a drill with a 0.2 mm reduced diameter than the standard one used in the contra-lateral side. After 4 months of healing, the animals were euthanized and biopsies were obtained for histological processing and evaluation. Results With the exception of one implant that was lost, all implants were integrated in mineralized bone. The alveolar crest underwent resorption at control as well as at test sites (buccal aspect similar to 1 mm). The most coronal contact of bone-to-implant was located between 1.2 and 1.6 mm at the test and between 1.3 and 1.7 mm at the control sites. Bone-to-implant contact percentage was between 49% and 67%. No statistically significant differences were found for any of the outcome variables. Conclusions After 4 months of healing, lateral pressure to the implant bed as reflected by higher insertion torques (36 vs. 15 N cm in the premolar and 19 vs. 7 N cm in the molar regions) did not affect the bone-to-implant contact. To cite this article:Pantani F, Botticelli D, Garcia IR Jr., Salata LA, Borges GJ, Lang NP. Influence of lateral pressure to the implant bed on osseointegration: an experimental study in dogs.Clin. Oral Impl. Res. 21, 2010; 1264-1270.doi: 10.1111/j.1600-0501.2009.01941.x.

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P>This study aimed to verify the effect of modified section method and laser-welding on the accuracy of fit of ill-fitting commercially pure titanium (cp Ti) and Ni-Cr alloy one-piece cast frameworks. Two sets of similar implant-supported frameworks were constructed. Both groups of six 3-unit implant-supported fixed partial dentures were cast as one-piece [I: Ni-Cr (control) and II: cp Ti] and evaluated for passive fitting in an optical microscope with both screws tightened and with only one screw tightened. All frameworks were then sectioned in the diagonal axis at the pontic region (III: Ni-Cr and IV: cp Ti). Sectioned frameworks were positioned in the matrix (10-Ncm torque) and laser-welded. Passive fitting was evaluated for the second time. Data were submitted to anova and Tukey-Kramer honestly significant difference tests (P < 0 center dot 05). With both screws tightened, one-piece cp Ti group II showed significantly higher misfit values (27 center dot 57 +/- 5 center dot 06 mu m) than other groups (I: 11 center dot 19 +/- 2 center dot 54 mu m, III: 12 center dot 88 +/- 2 center dot 93 mu m, IV: 13 center dot 77 +/- 1 center dot 51 mu m) (P < 0 center dot 05). In the single-screw-tightened test, with readings on the opposite side to the tightened side, Ni-Cr cast as one-piece (I: 58 center dot 66 +/- 14 center dot 30 mu m) was significantly different from cp Ti group after diagonal section (IV: 27 center dot 51 +/- 8 center dot 28 mu m) (P < 0 center dot 05). On the tightened side, no significant differences were found between groups (P > 0 center dot 05). Results showed that diagonally sectioning ill-fitting cp Ti frameworks lowers misfit levels of prosthetic implant-supported frameworks and also improves passivity levels of the same frameworks when compared to one-piece cast structures.

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Background: Physical and bioceramic incorporation surface treatments at the nanometer scale showed higher means of bone-to-implant contact (BIC) and torque values compared with surface topography at the micrometer scale; however, the literature concerning the effect of nanometer scale parameters is sparse. Purpose: The aim of this study was to evaluate the influence of two different implant surfaces on the percentage bone-to-implant contact (BIC%) and bone osteocyte density in the human posterior maxilla after 2 months of unloaded healing. Materials and Methods: The implants utilized presented dual acid-etched (DAE) surface and a bioceramic molecular impregnated treatment (Ossean(R), Intra-Lock International, Boca Raton, FL, USA) serving as control and test, respectively. Ten subjects (59 1 9 years of age) received two implants (one of each surface) during conventional implant surgery in the posterior maxilla. After the non-loaded period of 2 months, the implants and the surrounding tissue were removed by means of a trephine and were non-decalcified processed for ground sectioning and analysis of BIC%, bone density in threaded area (BA%), and osteocyte index (Oi). Results: Two DAE implants were found to be clinically unstable at time of retrieval. Histometric evaluation showed significantly higher BIC% and Oi for the test compared to the control surface (p < .05), and that BA% was not significantly different between groups. Wilcoxon matched pairs test was used to compare the differences of histomorphometric variables between implant surfaces. The significance test was conducted at a 5% level of significance. Conclusion: The histological data suggest that the bioceramic molecular impregnated surface-treated implants positively modulated bone healing at early implantation times compared to the DAE surface.

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This report is a review of Darwin`s classical theory of bodily tides in which we present the analytical expressions for the orbital and rotational evolution of the bodies and for the energy dissipation rates due to their tidal interaction. General formulas are given which do not depend on any assumption linking the tidal lags to the frequencies of the corresponding tidal waves (except that equal frequency harmonics are assumed to span equal lags). Emphasis is given to the cases of companions having reached one of the two possible final states: (1) the super-synchronous stationary rotation resulting from the vanishing of the average tidal torque; (2) capture into the 1:1 spin-orbit resonance (true synchronization). In these cases, the energy dissipation is controlled by the tidal harmonic with period equal to the orbital period (instead of the semi-diurnal tide) and the singularity due to the vanishing of the geometric phase lag does not exist. It is also shown that the true synchronization with non-zero eccentricity is only possible if an extra torque exists opposite to the tidal torque. The theory is developed assuming that this additional torque is produced by an equatorial permanent asymmetry in the companion. The results are model-dependent and the theory is developed only to the second degree in eccentricity and inclination (obliquity). It can easily be extended to higher orders, but formal accuracy will not be a real improvement as long as the physics of the processes leading to tidal lags is not better known.

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It is generally assumed that the magnetic fields of millisecond pulsars (MSPs) are similar to 10(8) G. We argue that this may not be true and the fields may be appreciably greater. We present six evidences for this: (1) The similar to 10(8)G field estimate is based on magnetic dipole emission losses which is shown to be questionable; (2) The MSPs in low mass X-ray binaries (LMXBs) are claimed to have < 10(11) G on the basis of a Rayleygh-Taylor instability accretion argument. We show that the accretion argument is questionable and the upper limit 10(11) G may be much higher; (3) Low magnetic field neutron stars have difficulty being produced in LMXBs; (4) MSPs may still be accreting indicating a much higher magnetic field; (5) The data that predict similar to 10(8) G for MSPs also predict ages on the order of, and greater than, ten billion years, which is much greater than normal pulsars. If the predicted ages are wrong, most likely the predicted similar to 10(8) G fields of MSPs are wrong; (6) When magnetic fields are measured directly with cyclotron lines in X-ray binaries, fields a parts per thousand << 10(8) G are indicated. Other scenarios should be investigated. One such scenario is the following. Over 85% of MSPs are confirmed members of a binary. It is possible that all MSPs are in large separation binaries having magnetic fields > 10(8) G with their magnetic dipole emission being balanced by low level accretion from their companions.

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Aim. To verify the muscular force and resistance to the movement of the flexor and extensor muscles of the knee of patients with spasticity after treatment with neuromuscular electrical stimulation (NMES) and isotonic exercises. Patients and methods. The patients this study were divided into group I (NMES) and group 2 (isotonic exercises). Their muscular torque and resistance to the movement of the flexor and extensor knee muscles were measured by the isokinetic dynamometer and the degree of spasticity by the modified Ashworth scale before and after ten sessions. Results. Alterations in the scores of the modified Ashworth scale were not observed. An increase in the flexor torque in group 1 (p = 0.041) and in group 2 (p = 0.001) was verified. In the passive mode, group 1 presented a reduction of resistance to the flexion movement (p = 0.026), while in group 2, a reduction of resistance to both the flexion (p = 0,029) and extension movements (p = 0.019) was verified. Conclusions. The two therapeutical resources had their efficiency proven only for the increase of the force of the flexor muscles. The resistance to movement, the isotonic exercises were more effective because they promoted a reduction in the resistance of the flexor and extensor knee muscles.

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The objective with this study has been to build general models of the mechanics in tree felling with chain-saw and to compare felling torque for different tools. The theoretical models are completed and validated with a comparative study. The study includes a great number of felling tools of which some are used with different methods. Felling torque was measured using a naturally like measuring arrangement where a tree is cut at about 3.7 m height and then anchored with a dynamometer to a tree opposite to the felling direction. Notch and felling cut was made as ordinary with exception that the hinge was made extra thin to reduce bending resistance. The tree was consequently not felled during the trials and several combinations of felling tools and individuals could be used on the same tree.The results show big differences between tools, methods and persons. The differences were, however, not general, but could vary depending on conditions (first of all tree diameters). Tools and methods that push or pull on the stem are little affected by the size of the tree, while tools that press on the stump are very much dependent of a large stump-diameter. Hand force asserted on a simple pole is consequently a powerful tool on small trees. For trees of medium size there are several alternative methods with different sizes and brands of felling levers and wedges. Larger and more ungainly tools and methods like tree pusher, winch, etc. develop very high felling torque on all tree sizes. On large trees also the felling wedge and especially the use of several wedges together develop very high felling torque.

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This report presents a new way of control engineering. Dc motor speed controlled by three controllers PID, pole placement and Fuzzy controller and discusses the advantages and disadvantages of each controller for different conditions under loaded and unloaded scenarios using software Matlab. The brushless series wound Dc motor is very popular in industrial application and control systems because of the high torque density, high efficiency and small size. First suitable equations are developed for DC motor. PID controller is developed and tuned in order to get faster step response. The simulation results of PID controller provide very good results and the controller is further tuned in order to decrease its overshoot error which is common in PID controllers. Further it is purposed that in industrial environment these controllers are better than others controllers as PID controllers are easy to tuned and cheap. Pole placement controller is the best example of control engineering. An addition of integrator reduced the noise disturbances in pole placement controller and this makes it a good choice for industrial applications. The fuzzy controller is introduce with a DC chopper to make the DC motor speed control smooth and almost no steady state error is observed. Another advantage is achieved in fuzzy controller that the simulations of three different controllers are compared and concluded from the results that Fuzzy controller outperforms to PID controller in terms of steady state error and smooth step response. While Pole placement controller have no comparison in terms of controls because designer can change the step response according to nature of control systems, so this controller provide wide range of control over a system. Poles location change the step response in a sense that if poles are near to origin then step response of motor is fast. Finally a GUI of these three controllers are developed which allow the user to select any controller and change its parameters according to the situation.

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One of the first questions to consider when designing a new roll forming line is the number of forming steps required to produce a profile. The number depends on material properties, the cross-section geometry and tolerance requirements, but the tool designer also wants to minimize the number of forming steps in order to reduce the investment costs for the customer. There are several computer aided engineering systems on the market that can assist the tool designing process. These include more or less simple formulas to predict deformation during forming as well as the number of forming steps. In recent years it has also become possible to use finite element analysis for the design of roll forming processes. The objective of the work presented in this thesis was to answer the following question: How should the roll forming process be designed for complex geometries and/or high strength steels? The work approach included both literature studies as well as experimental and modelling work. The experimental part gave direct insight into the process and was also used to develop and validate models of the process. Starting with simple geometries and standard steels the work progressed to more complex profiles of variable depth and width, made of high strength steels. The results obtained are published in seven papers appended to this thesis. In the first study (see paper 1) a finite element model for investigating the roll forming of a U-profile was built. It was used to investigate the effect on longitudinal peak membrane strain and deformation length when yield strength increases, see paper 2 and 3. The simulations showed that the peak strain decreases whereas the deformation length increases when the yield strength increases. The studies described in paper 4 and 5 measured roll load, roll torque, springback and strain history during the U-profile forming process. The measurement results were used to validate the finite element model in paper 1. The results presented in paper 6 shows that the formability of stainless steel (e.g. AISI 301), that in the cold rolled condition has a large martensite fraction, can be substantially increased by heating the bending zone. The heated area will then become austenitic and ductile before the roll forming. Thanks to the phenomenon of strain induced martensite formation, the steel will regain the martensite content and its strength during the subsequent plastic straining. Finally, a new tooling concept for profiles with variable cross-sections is presented in paper 7. The overall conclusions of the present work are that today, it is possible to successfully develop profiles of complex geometries (3D roll forming) in high strength steels and that finite element simulation can be a useful tool in the design of the roll forming process.

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Introduction Researchers have, for decades, contributed to an increased collective understanding of the physiological demands in cross-country skiing; however, almost all of these studies have used either non-elite subjects and/or performances that emulate cross-country skiing. To establish the physiological demands of cross-country skiing, it is important to relate the investigated physiological variables to the competitive performance of elite skiers. The overall aim of this doctoral thesis was, therefore, to investigate the external validity of physiological test variables to determine the physiological demands in competitive elite cross-country skiing. Methods The subjects in Study I – IV were elite male (I – III) and female (III – IV) cross-country skiers. In all studies, the relationship between test variables (general and ski-specific) and competitive performances (i.e. the results from competitions or the overall ski-ranking points of the International Ski Federation (FIS) for sprint (FISsprint) and distance (FISdist) races) were analysed. Test variables reflecting the subject’s general strength, upper-body and whole-body oxygen uptake, oxygen uptake and work intensity at the lactate threshold, mean upper-body power, lean mass, and maximal double-poling speed were investigated. Results The ability to maintain a high work rate without accumulating lactate is an indicator of distance performance, independent of sex (I, IV). Independent of sex, high oxygen uptake in whole-body and upper-body exercise was important for both sprint (II, IV) and distance (I, IV) performance. The maximal double-poling speed and 60-s double-poling mean power output were indicators of sprint (IV) and distance performance (I), respectively. Lean mass was correlated with distance performance for women (III), whereas correlations were found between lean mass and sprint performance among both male and female skiers (III). Moreover, no correlations between distance performance and test variables were derived from tests of knee-extension peak torque, vertical jumps, or double poling on a ski-ergometer with 20-s and 360-s durations (I), whereas gross efficiency while treadmill roller skiing showed no correlation with either distance or sprint performance in cross-country skiing (IV). Conclusion The results in this thesis show that, depending on discipline and sex, maximal and peak oxygen uptake, work intensity at the lactate threshold, lean mass, double-poling mean power output, and double-poling maximal speed are all externally valid physiological test variables for evaluation of performance capability among elite cross-country skiers; however, to optimally indicate performance capability different test-variable expressions should be used; in general, the absolute expression appears to be a better indicator of competitive sprint performance whereas the influence of body mass should be considered when evaluating competitive distance performance capability of elite cross-country skiers.

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A treinabilidade de força em crianças tem sido bastante explorada, mas ainda existem alguns questionamentos: O quanto a força decresce quando a criança interrompe o treinamento? O objetivo deste estudo foi avaliar o comportamento da força muscular dinâmica isotônica (1-RM), pico de torque isocinético e pico de torque isométrico, na extensão de joelho (EJ) e na flexão de cotovelo (FC) de meninos durante 24 semanas, sendo 12 semanas de treinamento e 12 de destreinamento de força. Um grupo experimental (EX) de 7 meninos (9,4±1,6 anos) pré-púberes treinou de forma dinâmica, três vezes por semana, durante 12 semanas, com intensidade entre 60 e 85% do teste de 1-RM, obtendo um aumento de 78% e 67% na força de 1-RM da EJ e da FC respectivamente. No grupo controle (CO) participaram 7 meninos pré-púberes, pareados ao EX pela idade (9,7±1,7 anos). Eles não alteraram significativamente a força nas primeiras 12 semanas, mas, ao final das 24 semanas, aumentaram a força de 1-RM em 41% e 53% na EJ e FC, respectivamente. Após 12 semanas de destreinamento, a força absoluta de 1-RM da EJ e da FC do grupo EX apresentou uma queda estatisticamente não significativa de 33% e 21%, respectivamente. Quando corrigida pelo peso corporal e massa corporal magra (MCM), a força do grupo EX de 1-RM da EJ diminuiu 41% e 36% (p<0,05) respectivamente. Na FC, a força não apresentou redução significativa Os grupos EX e CO, não apresentaram alterações estatisticamente significativas (p>0,05) durantes as 24 semanas de estudo nos picos de torque isocinético e isométrico, os resultados foram os seguintes: no grupo EX a força isocinética de EJ em 60° e 90° foram 66,0±25,7 Nm para 79,8±26,1 Nm e 62,0±29,2 para 76,8±30,6 Nm respectivamente; e na FC em 60° e 90°, 16,0±8,9 para 13,3±8,2 Nm e 16,1±10,5 para 15,7±6,2 Nm respectivamente. Na força isométrica do grupo EX na EJ em 60° e 45° os resultados foram os seguintes: 96,9±35,6 para 108,3±61,9 Nm e 87,0±41,7 para 96,3±60,3 Nm respectivamente. Na FC em 60° e 90° de 20,3±7,1 para 22,5±8,2 Nm e de 21,7±6,7 para 21,5±9,1 Nm respectivamente. O grupo CO apresentou os seguintes resultados na força isocinética de EJ nos ângulos de 60° e 90°, de 55,1±14,4 para 76,6±15,4 Nm e 56,4±10,2 para 73,1±13,3 respectivamente. Na FC, de 13,1±3,9 para 13,9±3,6 Nm e 11,4±4,4 para 10,9±4,1 Nm em 60° e 90° respectivamente. Na força isométrica de EJ em 60° e 45° os resultados foram: 89,4±13,2 para 101,9±17,4 Nm e 73,7±10,5 para 84,1±10,8 respectivamente; e na FC em 60° e 90° foram de 16,1±4,8 para 17,7±4,7 e de 17,1±3,1 para 20,7±4,5 Nm respectivamente. Os resultados deste estudo mostram que, após 12 semanas de destreinamento, a queda de força de 1-RM, foi significativa quando expressada em valores corrigidos pelo peso corporal e MCM, apenas nos membrosinferiores. O processo de crescimento e maturação pode contribuir para tornar menos evidente a redução da força durante o destreinamento.

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O objetivo do presente estudo foi verificar a influência da força e da flexibilidade no batimento de pernas e sua relação com a performance de nadadores de 100 metros nado crawl. Os 23 melhores nadadores, na prova de 100 metros nado crawl, do Campeonato Estadual Júnior e Sênior de Inverno, do Estado do Rio Grande do Sul, foram selecionados para este estudo. Os nadadores foram submetidos a: (1) avaliação da flexibilidade (flexão plantar), (2) avaliação da capacidade de produção de força (torque) isométrica e isocinética dos músculos extensores e flexores do joelho, (3) avaliação do batimento de pernas na distância de 100 metros e (4) avaliação da performance do nado crawl na distância de 100 metros. Inicialmente, a influência da força e da flexibilidade no batimento de pernas, foi analisada. Em seguida, a influência do batimento de pernas na performance total dos nadadores foi analisada. Após este procedimento, a amostra foi dividida em três grupos, conforme o tempo obtido no teste de batimento de pernas (grupo I: do 1º ao 8º tempo; grupo II: do 9º ao 16º tempo; e grupo III:do 17º ao 23º tempo), com o objetivo de verificar diferenças entre os grupos nas variáveis testadas Os valores obtidos (n=23) para correlação entre flexão plantar e batimento de pernas não foram significativos. Já nos subgrupos da amostra, somente o grupo I obteve correlação significativa (r=0,70 - p<0,05) entre flexão plantar e batimento de pernas. Os valores obtidos da força (torque) isométrica, resultante da flexão e extensão do joelho em um ângulo de 60º e os valores da força (torque) isocinética obtidos na velocidade de 370º/s não se correlacionaram com os resultados obtidos no teste de batimento de pernas, tanto na análise do grupo todo, quanto nos grupos estratificados. Os tempos de batimento de pernas (n=23) mostraram correlação significativa (r=0,70 – p<0,05) com a performance total. A análise nos subgrupos mostrou valores significativos somente para o grupo III (r=0,85 – p<0,05), mas não mostrou valores significativos para os grupos I e II. Os resultados sugerem que a força (torque) resultante da flexão e extensão do joelho em 60º (isométrico) e na velocidade de 370º/s (isocinético) não tem influência no batimento de pernas, enquanto a flexibilidade esta influenciando no batimento de pernas somente no grupo I. O batimento de pernas tem importância significativa para a performance total de nadadores de 100 metros nado crawl.

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Este trabalho visou a determinação experimental de propriedades físicas básicas de materiais para pastilhas e discos de freio de diferentes composições químicas. Posteriormente, estas propriedades foram correlacionadas com resultados de avaliação de ruído de freio dos respectivos materiais. As propriedades físicas determinadas para os materiais de pastilhas de freio foram: dureza, densidade, porosidade, compressibilidade a frio, compressibilidade a quente, transmissão térmica, resistência à compressão, resistência à tração, resistência interna ao cisalhamento, módulo de elasticidade, freqüências de ressonância, índice de amortecimento, coeficiente de atrito em diferentes condições de frenagem, e taxas de desgaste. Medições incluem verificações do efeito do aumento da temperatura na variação de algumas das propriedades citadas. A avaliação de ruído de freio gerado com uso das diferentes composições de materiais foi realizada através do uso de um sistema de freio padrão, e o ensaio executado em um dinamômetro tipo inercial dotado de recursos como câmara para isolamento acústico de ruído externo e sistema de aquisição de sinais para monitoramento dos parâmetros de frenagem: tempo, torque, pressão, temperatura e espectro de ruído gerado em escala de tempo e freqüência. Os materiais de pastilhas de freios incluídos nesta verificação experimental foram selecionados de seis aplicações bastante distintas, como por exemplo: materiais para pastilhas de freio traseiro de veículos de passeio, pastilhas para freio dianteiro de veículos de passeio, pastilhas para caminhonetes, pastilhas para caminhões leves e microônibus Além da composição química bastante distinta, estudos da influência da alteração de parâmetros de processo de fabricação nas propriedades físicas do material de atrito foram considerados. Para a avaliação do efeito da variação de composição de materiais de discos de freio na geração de ruído, cinco diferentes tipos de discos foram selecionados. Dentre estas versões estão incluídas: a liga de ferro fundido cinzento do material tipo original do sistema de freio a disco padrão, uma versão de ferro fundido cinzento de baixo custo comprada no mercado de autopeças de reposição, um ferro fundido cinzento com alto de teor de carbono, um ferro fundido cinzento com adição de titânio como elemento de liga, e, finalmente, um ferro fundido vermicular. Propriedades físicas dos materiais de discos de freio não foram tão amplamente avaliadas como no caso dos materiais de pastilhas, mesmo assim dados de dureza, densidade, resistência à tração, índice de amortecimento e freqüências fundamentais de ressonância foram determinados para os diferentes materiais.Ao final do trabalho, foram definidas correlações entre ruído de freio e propriedades físicas dos materiais de pastilhas de freio que indicam que o material de atrito da pastilha é mais propenso a apresentar ruído quando: menos poroso, com maior resistência mecânica, maior módulo de elasticidade, maior dureza (valores mais baixos de dureza Gogan), e maior coeficiente de atrito. Também foram detectadas alterações significativas no comportamento de ruído com uso de diferentes materiais de discos de freio, mas não foram estabelecidas correlações conclusivas entre as propriedades dos discos de freio e sua propensão a ruído devido ao baixo número de versões avaliadas.