952 resultados para Echo Cancellation
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Este trabalho apresenta o desenvolvimento de uma ferramenta computacional de apoio ao diagnóstico através de imagens ecocardiográficas, denominada de “Echo Offline”. O “Echo Offline” foi projetado para mensuração de grandezas lineares em imagens ecocardiográficas digitais, possibilitando a realização de diagnósticos pós-exame e a integração dos dados colhidos no banco de dados da instituição médica. Um estudo transversal contemporâneo e aleatório foi realizado com uma população de quarenta e nove pacientes submetidos a exames ecocardiográficos, as imagens resultantes deste exame foram digitalizadas e um médico especialista mensurou um conjunto de variáveis pré-definidas utilizando o método convencional, ou seja, usando as facilidades oferecidas pelo equipamento de ultra-som comercial. Um segundo médico especialista produziu outros dois conjuntos de dados utilizando o “Echo offline” e desta forma foi possível avaliar a exatidão e a repetibilidade das medidas realizadas pela ferramenta “Echo offline”. O “Echo offline” apresentou uma elevada concordância com o método convencional e apresentou significativa redução no tempo de realização das medidas.
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Echo music, empresa produtora de instrumentos musicais ecologicamente corretos
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We analyze double Higgs boson production at the Large Hadron Collider in the context of Little Higgs models. In double Higgs production, the diagrams involved are directly related to those that cause the cancellation of the quadratic divergence of the Higgs self-energy, providing a robust prediction for this class of models. We find that in extensions of this model with the inclusion of a so-called T-parity, there is a significant enhancement in the cross sections as compared to the Standard Model. © SISSA 2006.
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Here, a simplified dynamical model of a magnetically levitated body is considered. The origin of an inertial Cartesian reference frame is set at the pivot point of the pendulum on the levitated body in its static equilibrium state (ie, the gap between the magnet on the base and the magnet on the body, in this state). The governing equations of motion has been derived and the characteristic feature of the strategy is the exploitation of the nonlinear effect of the inertial force associated, with the motion of a pendulum-type vibration absorber driven, by an appropriate control torque [4]. In the present paper, we analyzed the nonlinear dynamics of problem, discussed the energy transfer between the main system and the pendulum in time, and developed State Dependent Riccati Equation (SDRE) control design to reducing the unstable oscillatory movement of the magnetically levitated body to a stable fixed point. The simulations results showed the effectiveness of the (SDRE) control design. Copyright © 2011 by ASME.
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Deutsche Forschungsgemeinschaft [SFB 858]
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To assess the feasibility and accuracy of a synthetic-echo time (TE) magnetic resonance (MR) postprocessing technique for the diagnostic evaluation of abnormalities of menisci and articular cartilage in the knee.
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To prospectively evaluate a 3-dimensional spoiled gradient-dual-echo (3D SPGR-DE) magnetic resonance imaging (MRI) sequence for the qualitative and quantitative analysis of liver fat content (LFC) in patients with the suspicion of fatty liver disease using histopathology as the standard of reference.
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To use a new approach which provides, based on the widely used three-dimensional double-echo steady-state (DESS) sequence, in addition to the morphological information, the generation of biochemical T2 maps in one hybrid sequence.
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To evaluate a new isotropic 3D proton-density, turbo-spin-echo sequence with variable flip-angle distribution (PD-SPACE) sequence compared to an isotropic 3D true-fast-imaging with steady-state-precession (True-FISP) sequence and 2D standard MR sequences with regard to the new 3D magnetic resonance observation of cartilage repair tissue (MOCART) score.