The Experts below are selected from a list of 270705 Experts worldwide ranked by ideXlab platform

Julien Maisonneuve - One of the best experts on this subject based on the ideXlab platform.

Ramón P. Otero - One of the best experts on this subject based on the ideXlab platform.

  • Integrating medical expert systems, patient data-bases and user interfaces
    Journal of Intelligent Information Systems, 1996
    Co-Authors: María Taboada, Roque Marín, J. Mira, Ramón P. Otero
    Abstract:

    Expert system Applications in the clinical domain have not been very popular for lack of an adequate integration with other Applications used in clinical environments. In the last few years, there is a growing trend towards the introduction of knowledge based systems as systems embedded in conventional Applications. In this paper we propose an integration strategy of an expert system in oncology therapy with a clinical history data base and a user interface adapted to the needs of the medical environment. Our objective has been to design a system that is easy to use and provides all functions needed by the medical staff. The final system has consisted in first integrating three development tools and then using them in order to construct the Complete Application. The result is a global tool for the development of clinical information systems with embedded intelligent modules.

Tim Patrick - One of the best experts on this subject based on the ideXlab platform.

  • Start-to-Finish Visual Basic 2005: Learn Visual Basic 2005 as You Design and Develop a Complete Application (The Addison-Wesley Microsoft Technology Series)
    2006
    Co-Authors: Tim Patrick
    Abstract:

    “I have never reviewed a book I enjoyed as much as this one. Excellent coverage, perfect for the intended audience. Concise, clear, accurate descriptions. This is a winner.”i? i? i? i? i? i? i??Ken Getz, MCW Technologies, LLCMaster Visual Basic 2005 by Building a Complete, Production-Quality Application from Start-to-Finish!This book is the fastest, best way for experienced programmers to truly master real-world Visual Basic 2005 development. You won't just learn syntax and features: you'll build a Complete, robust, data-driven Application. You'll put Visual Basic 2005 to work in solving real business problems, overcoming the practical challenges of building production systems, and you will learn to see Visual Basic 2005 projects as they were intendedi??as Complete, cohesive solutions. Patrick's engaging style and crystal-clear explanations will help you stay focused, learn fast, and apply what you've learned.· i? i? Master every stage of the Application lifecycle and every step in the development process· i? i? Walk through all facets of database design and ADO.NET data access· i? i? Create advanced Windows Applications with Windows Forms and Web Applications with ASP.NET 2.0· i? i? Make the most of classes, inheritance, and other object-oriented Visual Basic 2005 features· i? i? Effectively utilize data types, generics, error processing, XML, GDI+, and many other language and platform features· i? i? Learn how to personalize and restrict your Application's features based on user preferences· i? i? Determine the best way to license, localize, document, deploy, and support your ApplicationStart-to-Finish Visual Basic 2005 is the perfect tutorial for existing Visual Basic programmers moving to Visual Basic 2005, programmers moving from other traditional procedural languages, and experienced Visual Basic .NET/2005 programmers who want to deepen their skills in developing entire projects.Tim Patrick is a software architect and developer with nearly 25 years of experience in designing and building custom software solutions. As a Microsoft Certified Solution Developer, he spends his days writing Visual Basic 2005 Applications. Tim is the author of The Visual Basic Style Guide and The Visual Basic .NET Style Guide, and co-author of Visual Basic 2005 in a Nutshell and Visual Basic 2005 Cookbook.The companion website (www.awprofessional.com/titles/0321398009) contains the Complete software Application and source code for the book, plus chapter-specific versions showing each step of the sample project's construction.i? The code was written to work with every edition of Visual Studio 2005, Visual Basic 2005, and SQL Server 2005, including Microsoft's free Express editions.

María Taboada - One of the best experts on this subject based on the ideXlab platform.

  • Integrating medical expert systems, patient data-bases and user interfaces
    Journal of Intelligent Information Systems, 1996
    Co-Authors: María Taboada, Roque Marín, J. Mira, Ramón P. Otero
    Abstract:

    Expert system Applications in the clinical domain have not been very popular for lack of an adequate integration with other Applications used in clinical environments. In the last few years, there is a growing trend towards the introduction of knowledge based systems as systems embedded in conventional Applications. In this paper we propose an integration strategy of an expert system in oncology therapy with a clinical history data base and a user interface adapted to the needs of the medical environment. Our objective has been to design a system that is easy to use and provides all functions needed by the medical staff. The final system has consisted in first integrating three development tools and then using them in order to construct the Complete Application. The result is a global tool for the development of clinical information systems with embedded intelligent modules.

Salah Naili - One of the best experts on this subject based on the ideXlab platform.

  • Identification of a probabilistic model of the geometrical and mechanical properties for a nonhomegeneous cortical bone using in vivo measurements in ultrasonic range
    2009
    Co-Authors: Christophe Desceliers, Christian Soize, Q. Grimal, M. Talmant, Salah Naili
    Abstract:

    The purpose of this paper is the construction of an uncertain probabilistic model for the mechanical properties of the cortical bone. The main objective is firstly to propose a probabilistic simplified model adapted to the ultrasonic axial transmission technique and secondly to present an experimental identification using this technique. The simplified model is constructed as a fluid-solid semi-infinite multilayered system in which the solid layer (the cortical bone) is a homogeneous anisotropic elastic material and the two others semi-infinite layers are fluids. This model is a rough approximation of the real biomechanical model and it can be improved by taking into account the uncertainties related to the elasticity tensor with a probabilistic model. In this paper, the parameters of the probabilistic model are the mean elasticity tensor and a dispersion coefficient. A Complete Application is presented for the human cortical bone for which an experimental database is available.

  • Identification of the elasticity tensor of an uncertain biomechanical computational model using axial transmission
    2009
    Co-Authors: Christophe Desceliers, Christian Soize, Q. Grimal, M. Talmant, Salah Naili
    Abstract:

    The purpose of this paper is the construction of an uncertain probabilistic model for the mechanical properties of the cortical bone. The main objective is firstly to propose a probabilistic simplified model adapted to the ultrasonic axial transmission technique and secondly to present an experimental identification using this technique. The simplified model is constructed as a fluid-solid semi-infinite multilayered system in which the solid layer (the cortical bone) is a nonhomogeneous anisotropic elastic material and the two others semi-infinite layers are fluids. The uncertainties are related to the elasticity tensor and are taken into account with a probabilistic model. In this paper, the parameters of the probabilistic model are the mean elasticity tensor and a dispersion coefficient. A Complete Application is presented for the human cortical bone for which an experimental database is available.

  • Experimental identification in the ultrasonic range of a mechanical model for cortical bones
    2008
    Co-Authors: Christophe Desceliers, Christian Soize, Q. Grimal, M. Talmant, Salah Naili
    Abstract:

    This paper deals with the construction of a simplified elastoacoustic model which allows the ultrasonic wave propagation to be simulated in a complex biomechanical system. This simplified model consists in a fluid-solid multilayer System. In this simplified model, the main source of uncertainties is due to the constitutive equation for the solid layer which is chosen as a homogeneous transverse isotropic elastic medium. In order to improve this simplified model, a probabilistic model of the effective elasticity tensor of the solid medium is developped. A method is presented for the experimental identification in a statistical sense of the model parameters using the ultrasonic transmission technique. A Complete Application is presented for the human cortical bone for which an experimental database is available.

  • Stochastic inverse problem for the experimental identification in the ultrasonic range of a mechanical model for cortical bones
    2008
    Co-Authors: Christophe Desceliers, Christian Soize, Q. Grimal, M. Talmant, Salah Naili
    Abstract:

    This paper deals with the construction of a simplified elastoacoustic model which allows the ultrasonic wave propagation to be simulated in a complex biomechanical system. This simplified model consists in a fluid-solid multilayer system. In this simplified model, the main source of uncertainties is due to the constitutive equation for the solid layer which is chosen as a homogeneous transverse isotropic elastic medium. In order to improve this simplified model, a probabilistic model of the effective elasticity tensor of the solid medium is developped. A method is presented for the experimental identification in a statistical sense of the model parameters using the ultrasonic transmission technique. A Complete Application is presented for the human cortical bone for which an experimental database is available.