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Healthcare Industry performance

Simply monitoring quality performance is just not adequate. The effectiveness of quality management systems should be actively managed and performance improvement opportunities seized. Business benefits should more than compensate for any investment in quality. Senior management, system owners, project managers, and anyone else involved with computer projects need to appreciate this. This book will help explain what needs to be done to successfully achieve quality and compliance of computer systems in the pharmaceutical and healthcare industries. [Pg.7]

Like its popular predecessors, the book supplies a complete overview of hazard control, safety management, compliance, standards, and accreditation in the healthcare industry. This edition includes new information on leadership, performance improvement, risk management, organizational culture, behavioral safety, root cause analysis, and recent OSHA and Joint Commission Emergency Management requirements and regulatory changes. [Pg.551]

A methodological approach to develop a healthcare logistics KPI framework is presented. The framework provides the imphcation of a complex multi-criteria decision-making problem mainly related to qualitative judgments, which are necessary to evaluate different logistics components and their KPIs. The proposed framework illustrates the behavioral healthcare logistics, and dependency and independency of the components and KPIs. This is a good input for decision makers in healthcare industry and academic researchers. With the framework, decision makers can see the overview of the components performance priorities from suppliers to point of care. In addition to the components priorities, the decision makers are also able to get the overview of performances under each component. [Pg.47]

Mesut A (2009) A multi-level examination of quality-focused human resource practices and firm performance evidence from the US healthcare industry. Int J Human ResourManage 20(9) 1945-1964... [Pg.520]

Detlev Ruland is a principal at McKinsey based in Dusseldorf. He is a member of the Business Technology office and co-leads its global IT performance management practice. He has worked in various fields of IT in the process, pharmaceuticals, healthcare, and energy industries, focusing on IT-enabled operations and performance transformations. He studied mathematics and computer science at RWTH Aachen and holds a PhD in natural sciences. [Pg.504]

Electrospray ionization (ESI), a very powerful MS ionization mode, has been coupled with liquid chromatography becoming a popular tool in biomolecular analysis and drug analysis applications [1], Use of HPLC or ultra performance liquid chromatography (UPLC) combined with a mass spectrometry through the interface—ESI has become a powerful and routinely used analytical tool for many fields in scientific research, pharma industry, healthcare, and clinical diagnostic applications. [Pg.401]


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See also in sourсe #XX -- [ Pg.81 ]




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