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1.
Sci Total Environ ; 673: 218-229, 2019 Jul 10.
Artigo em Inglês | MEDLINE | ID: mdl-30991313

RESUMO

The Mekong delta is recognised as one of the world's most vulnerable mega-deltas, being subject to a range of environmental pressures including sea level rise, increasing population, and changes in flows and nutrients from its upland catchment. With changing climate and socioeconomics there is a need to assess how the Mekong catchment will be affected in terms of the delivery of water and nutrients into the delta system. Here we apply the Integrated Catchment model (INCA) to the whole Mekong River Basin to simulate flow and water quality, including nitrate, ammonia, total phosphorus and soluble reactive phosphorus. The impacts of climate change on all these variables have been assessed across 24 river reaches ranging from the Himalayas down to the delta in Vietnam. We used the UK Met Office PRECIS regionally coupled climate model to downscale precipitation and temperature to the Mekong catchment. This was accomplished using the Global Circulation Model GFDL-CM to provide the boundary conditions under two carbon control strategies, namely representative concentration pathways (RCP) 4.5 and a RCP 8.5 scenario. The RCP 4.5 scenario represents the carbon strategy required to meet the Paris Accord, which aims to limit peak global temperatures to below a 2 °C rise whilst seeking to pursue options that limit temperature rise to 1.5 °C. The RCP 8.5 scenario is associated with a larger 3-4 °C rise. In addition, we also constructed a range of socio-economic scenarios to investigate the potential impacts of changing population, atmospheric pollution, economic growth and land use change up to the 2050s. Results of INCA simulations indicate increases in mean flows of up to 24%, with flood flows in the monsoon period increasing by up to 27%, but with increasing periods of drought up to 2050. A shift in the timing of the monsoon is also simulated, with a 4 week advance in the onset of monsoon flows on average. Decreases in nitrogen and phosphorus concentrations occur primarily due to flow dilution, but fluxes of these nutrients also increase by 5%, which reflects the changing flow, land use change and population changes.

3.
Zentralbl Chir ; 121(7): 578-83, 1996.
Artigo em Alemão | MEDLINE | ID: mdl-8967198

RESUMO

Specially designed instruments for laparoscopic surgery with a pneumoperitoneum are expensive and delicate, and surgeons are initially not familiar with their handling. Beside restrictions of the surgeon's intraabdominal range of motion they lead to a loss of tactile sensation. In gasless laparoscopic procedures not only special laparoscopic instruments, but the standard conventional instruments, used in open surgery, can also be employed with simple valveless trocars. Still using these instruments can put up some difficulties, because ergonomic factors were not considered in their development. With regard to the instrument's length, shape and joint-position we developed a special instrument-set under the ergonomic criteria of gasless laparoscopy.


Assuntos
Laparoscópios , Instrumentos Cirúrgicos , Desenho de Equipamento , Humanos , Pneumoperitônio Artificial/instrumentação , Técnicas de Sutura/instrumentação
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