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12篇 您的检索式:作者名="Gribova"
    题名 作者 年代 出处 被引量
1A material's point of view on recent developments of polymeric biomaterials:Control of mechanical and biochemical properties显示文摘Gribova V Crouzier T Picart C 0,,38:1
2Laser acupuncture in children with headache:a double-blind,randomized,bicenter,placebo-controlled trial显示文摘Gottschling S Meyer S Gribova I 2008Pain2008,137,2:1
3Calibrationofcurrentandvoltageprobesintheelectromagnetic-pulsetransmissionpathandneartheloadoftheAngara-5-1facility显示文摘GrabovskiiEV GribovA N OleinikG M 2008InstrumentsandExperimentalTechniques2008,51,5:1
4Effects of ultrasound on the extraction of antioxidants from bearberry(Arctostaphylos adans) leaves显示文摘Gribova N Y Filippenko T A Nikolaevakii A N 2008Pharmaceutical Chemistry Journal2008,42,10:1
5Neuronal populations in primary motor cortex encode bimanual arm movements显示文摘Steinberg O Donchin O Gribova A 2002Eur J Neurosci2002,15,8:1
6A material' s point of view on recent developments of polymeric biomaterials: control of mechanical and biochemical properties显示文摘Gribova V Crouzier T Picart C 2011J Mater Chem2011,21,38:1
7Laser acupuncture in children with headache: a doubleblind, randomized, bicenter, placebo-controlled trial显示文摘Gottschling S Meyer S Gribova I 2008Pain2008,137,2:1
8Ltser acu- puncture in children with headache a double blind, randomized, bicenter, placebo-controlled trial 显示文摘Gottsehling S Meyer S Gribova I 2008Pain2008,137,2:1
9Local field potentials related to bimanual movements in the primary and supplementary motor cortices 显示文摘DONCHIN O GRIBOVA A STEINBERG O 2001Experimental Brain Research2001,140,1:1
10Laser acupuncture in children with headache : A doub- le-blind, randomized, bitchier, placebo-controlled trial 显示文摘GOTYSCHLING SVEN MEYER SASCHA GRIBOVA INES- SA 2008Pain2008,137,2:1
11Effects of ultrasound on the extraction of antioxidants from bearberry (Arctostaphylos ad:ms) leaves显示文摘GRIBOVA N Y FILIPPENKO T A NIKOLAEVAKII A N 2008Pharmaceutical Chemistry Journal2008,42,10:1
12User Interface Development Based on Ontologies显示文摘The user interface is a central component of any mo de rn application program. It determines how well end users accept, learn, and effi ciently work with the application program. The user interface is very difficult to design, to implement, to modify. It takes approximately 70% of the time requ ired for designing an application program. All the existing tools for user interface design can be divided into two basic c ategories-Interface Builders and Model-based Interface development tools, whic h trace their roots from user interface management systems. Interface Builders a re the most widespread and excellent to create layouts and manipulate widgets. H owever, Interface Builders have the follow demerits. An interface designed using Interface Builders can contain hundreds of procedures. Interface Builders give us no possibility to develop different pieces of the same interface separately. They do not help us in managing user tasks and can be used only by programmers. Model-based interface development tools have attracted a high degree of interes t in last few years. The basic premise of model based technology is that the interface development can be fully supported by declarative models of all user interface characteristics such as their presen tation, dialogue, domain of application etc, and then the user interface develop ment can be centered around such models. The high potential of this technology has not been realized yet. This fact has the following reasons. The known interface models are partial representations of interfaces. They cannot be readily modified by developers, and are not publicly available to the HCI community. The central ingredient for success in model-ba sed systems is a declarative, complete, versatile interface model that can expre ss a wide variety of interface designs. Therefore tool developers have to avoid the following disadvantages of current interface models: inflexibility, system- dependence, and incompleteness. The main idea to achieve these model character istics mention above is to use ontologies. This broadened interest in ontologies is based on the fact that they provide ma chine-understandable representation of semantics for information, and a shared and common understanding of a domain that can be communicated between people and across application systems. Support in data, information, and knowledge exchang e becomes the key issue in current computer technology. At the moment we are on the brink of the second Web generation called Semantic Web or Knowledgeable Web. Given the increasing amount of information available on-line, this kind of sup port is becoming more important day by day. The main idea of the proposed approach is to replace interface models by appropr iate ontologies. Some parts of these ontologies will be available from the Inter net; the other parts will be built by developers. As a result of the Semantic We b development we will have increasing the number of ontologies formally describe d in the Internet. The terminology and content of these ontologies will be inter nationally standardized. Reusing these ontologies will bring down the cost of de velopment and improve the quality of user interface. The parts of a user interface model are-a domain ontology model, a dialog ontol ogy model, presentation ontology model, 'business- logic' variable ontology mod el and correspondences between these parts. Thus, the user interface development based on ontologies is an evolution of th e model-based approach, where appropriate ontologies are used instead of models .A S Kleshchev M Y Chernyakhovskaya V V Gribova 2002厦门大学学报(自然科学版)2002,41,S1:0
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