25 research outputs found
The framing of product ideas in the making: a case study of the development of an energy saving pump
The global atmospheric electrical circuit and climate
Evidence is emerging for physical links among clouds, global temperatures, the global atmospheric electrical circuit and cosmic ray ionisation. The global circuit extends throughout the atmosphere from the planetary surface to the lower layers of the ionosphere. Cosmic rays are the principal source of atmospheric ions away from the continental boundary layer: the ions formed permit a vertical conduction current to flow in the fair weather part of the global circuit. Through the (inverse) solar modulation of cosmic rays, the resulting columnar ionisation changes may allow the global circuit to convey a solar influence to meteorological phenomena of the lower atmosphere. Electrical effects on non-thunderstorm clouds have been proposed to occur via the ion-assisted formation of ultra-fine aerosol, which can grow to sizes able to act as cloud condensation nuclei, or through the increased ice nucleation capability of charged aerosols. Even small atmospheric electrical modulations on the aerosol size distribution can affect cloud properties and modify the radiative balance of the atmosphere, through changes communicated globally by the atmospheric electrical circuit. Despite a long history of work in related areas of geophysics, the direct and inverse relationships between the global circuit and global climate remain largely quantitatively unexplored. From reviewing atmospheric electrical measurements made over two centuries and possible paleoclimate proxies, global atmospheric electrical circuit variability should be expected on many timescale
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Energetic particle influence on the Earth's atmosphere
This manuscript gives an up-to-date and comprehensive overview of the effects of energetic particle precipitation (EPP) onto the whole atmosphere, from the lower thermosphere/mesosphere through the stratosphere and troposphere, to the surface. The paper summarizes the different sources and energies of particles, principally
galactic cosmic rays (GCRs), solar energetic particles (SEPs) and energetic electron precipitation (EEP). All the proposed mechanisms by which EPP can affect the atmosphere
are discussed, including chemical changes in the upper atmosphere and lower thermosphere, chemistry-dynamics feedbacks, the global electric circuit and cloud formation. The role of energetic particles in Earth’s atmosphere is a multi-disciplinary problem that requires expertise from a range of scientific backgrounds. To assist with this synergy, summary tables are provided, which are intended to evaluate the level of current knowledge of the effects of energetic particles on processes in the entire atmosphere
Role of the multidisciplinary team in the diagnosis and treatment of hepatocellular carcinoma
It has long been appreciated that hepatocellular carcinoma (HCC) is a complex disease. HCC is typically preceded by liver cirrhosis, which is itself caused by various types of hepatitis of both viral and nonviral etiologies. Thus, the treatment of patients with HCC requires multiple healthcare professionals, including hepatologists, medical oncologists, surgical oncologists, transplantation surgeons, diagnostic radiologists, pathologists, nurses, nurse practitioners and interventional radiologists. These specialists should meet regularly to review patients' progress, ensure that treatments are individualized for each patient and agree on next steps. We review case presentations provided by the authors to illustrate the benefits and advantages of the multidisciplinary team matrix in the management of patients with HCC, including the effects of this treatment technique on patient outcome, survival and quality of life
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442 Entecavir 10 mg is consistently superior to lamivudine at 48 weeks across multiple baseline HBV disease characteristics in lamivudine-refractory patients
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