969 resultados para Master


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The main aim of this project was to verify the possibility raised in the publication of new archival data in 1980 that the group of panel paintings attributed to the Master of the Rajhrad Altarpiece and his workshop were not created before 1420, as earlier academic opinion held, but in fact only around 1450. It included a detailed analysis of the 21 panels forming the group, including infrared reflectography research. This helped identify the highly personal underdrawing style of the "Rajhrad Master" as common to all the panels in the group, proving that they really form a coherent whole. Questions of the painter's education and the nature of Bohemian society around 1450 were also considered, as. Bartlova felt these had been neglected in earlier studies. She concludes that the Master studied in Prague in the late 1430s and then continued studying in Vienna and Munich from 1440. The new dating of the group of panels connected with this anonymous master and his workshop throws new light on Bohemian artistic production during the late Hussite period (c.1430-c.1470). It was generally thought that artistic activity moved out of Prague after the outbreak of the Hussite wars in the 1420s, but this research revealed considerable activity there throughout the period. Numerous painters listed in the Book of the Prague Painters' Guild for this period can now be linked with extant panels, although most of these have survived outside Prague, principally in South Bohemia. These findings have broad implications for studies of Bohemian art in this period.

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Prostate cancer is the most common cancer among men in industrialised countries. Most patients with prostate cancer, however, will not die of it. As a result, many of them will experience symptomatic metastasis during the course of the disease. Prostate cancer has a high propensity to metastasize to bone. Unlike many other cancers prostate cancer cells induce a rather osteosclerotic than osteolytic reaction in the bone marrow by interfering with physiological bone remodelling. A proper understanding of the mechanisms of tumour cell-induced bone alterations and exaggerated bone deposition in prostate cancer may open new and urgently needed therapeutic approaches in the field of palliative care for affected patients. In this review we focus on the central role of two major regulators of bone mass, the wingless type integration site family members (WNTs) and the bone morphogenetic proteins (BMPs), in the development of osteosclerotic bone metastases.

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Master production schedule (MPS) plays an important role in an integrated production planning system. It converts the strategic planning defined in a production plan into the tactical operation execution. The MPS is also known as a tool for top management to control over manufacture resources and becomes input of the downstream planning levels such as material requirement planning (MRP) and capacity requirement planning (CRP). Hence, inappropriate decision on the MPS development may lead to infeasible execution, which ultimately causes poor delivery performance. One must ensure that the proposed MPS is valid and realistic for implementation before it is released to real manufacturing system. In practice, where production environment is stochastic in nature, the development of MPS is no longer simple task. The varying processing time, random event such as machine failure is just some of the underlying causes of uncertainty that may be hardly addressed at planning stage so that in the end the valid and realistic MPS is tough to be realized. The MPS creation problem becomes even more sophisticated as decision makers try to consider multi-objectives; minimizing inventory, maximizing customer satisfaction, and maximizing resource utilization. This study attempts to propose a methodology for MPS creation which is able to deal with those obstacles. This approach takes into account uncertainty and makes trade off among conflicting multi-objectives at the same time. It incorporates fuzzy multi-objective linear programming (FMOLP) and discrete event simulation (DES) for MPS development.