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Träfflista för sökning "WFRF:(Ansorge Christophe) "

Sökning: WFRF:(Ansorge Christophe)

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1.
  • de Jong, Roelof S., et al. (författare)
  • 4MOST-4-metre Multi-Object Spectroscopic Telescope
  • 2014
  • Ingår i: Ground-based and Airborne Instrumentation for Astronomy V. - : SPIE. - 0277-786X .- 1996-756X. ; 9147
  • Konferensbidrag (refereegranskat)abstract
    • 4MOST is a wide-field, high-multiplex spectroscopic survey facility under development for the VISTA telescope of the European Southern Observatory (ESO). Its main science drivers are in the fields of galactic archeology, high-energy physics, galaxy evolution and cosmology. 4MOST will in particular provide the spectroscopic complements to the large area surveys coming from space missions like Gaia, eROSITA, Euclid, and PLATO and from ground-based facilities like VISTA, VST, DES, LSST and SKA. The 4MOST baseline concept features a 2.5 degree diameter field-of-view with similar to 2400 fibres in the focal surface that are configured by a fibre positioner based on the tilting spine principle. The fibres feed two types of spectrographs; similar to 1600 fibres go to two spectrographs with resolution R> 5000 (lambda similar to 390-930 nm) and similar to 800 fibres to a spectrograph with R> 18,000 (lambda similar to 392-437 nm & 515-572 nm & 605-675 nm). Both types of spectrographs are fixed-configuration, three-channel spectrographs. 4MOST will have an unique operations concept in which 5 year public surveys from both the consortium and the ESO community will be combined and observed in parallel during each exposure, resulting in more than 25 million spectra of targets spread over a large fraction of the southern sky. The 4MOST Facility Simulator (4FS) was developed to demonstrate the feasibility of this observing concept. 4MOST has been accepted for implementation by ESO with operations expected to start by the end of 2020. This paper provides a top-level overview of the 4MOST facility, while other papers in these proceedings provide more detailed descriptions of the instrument concept[1], the instrument requirements development[2], the systems engineering implementation[3], the instrument model[4], the fibre positioner concepts[5], the fibre feed[6], and the spectrographs[7].
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2.
  • Tingstedt, Bobby, et al. (författare)
  • First results from the Swedish National Pancreatic and Periampullary Cancer Registry
  • 2019
  • Ingår i: HPB. - : Elsevier BV. - 1365-182X .- 1477-2574. ; 21:1, s. 34-42
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: Despite improvements in therapy regimens over the past decades, overall survival rates for pancreatic and periampullary cancer are poor. Specific cancer registries are set up in various nations to regional differences and to enable larger prospective trials. The aim of this study was to describe the Swedish register, including possibilities to improve diagnostic work-ups, treatment, and follow-up by means of the register.Methods: Since 2010, all patients with pancreatic and periampullary cancer (including also patients who have undergone pancreatic surgery due to premalignant or benign lesions) have been registered in the Swedish National Periampullary and Pancreatic Cancer registry.Results: In total 9887 patients are listed in the registry; 8207 of those have malignant periampullary cancer. Approximately one-third (3282 patients) have had resections performed, including benign/premalignant resections. 30-day and 90-day mortality after pancreatoduodenectomy is 1.5% and 3.5%, respectively. The overall 3-year survival for resected pancreatic ductal adenocarcinoma is 35%. Regional variations decreased over the studied period, but still exist.Conclusion: Results from the Swedish National Registry are satisfactory and comparable to international standards. Trends over time show increasing resection rates and some improved results. Better collaboration and openness within pancreatic surgeons is an important side effect.
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3.
  • Treasure, Anne M., et al. (författare)
  • Marine Mammals Exploring the Oceans Pole to Pole A Review of the MEOP Consortium
  • 2017
  • Ingår i: Oceanography. - : The Oceanography Society. - 1042-8275. ; 30:2, s. 132-138
  • Tidskriftsartikel (refereegranskat)abstract
    • Polar oceans are poorly monitored despite the important role they play in regulating Earth's climate system. Marine mammals equipped with biologging devices are now being used to fill the data gaps in these logistically difficult to sample regions. Since 2002, instrumented animals have been generating exceptionally large data sets of oceanographic CTD casts (>500,000 profiles), which are now freely available to the scientific community through the MEOP data portal (http://meop.net). MEOP (Marine Mammals Exploring the Oceans Pole to Pole) is a consortium of international researchers dedicated to sharing animal-derived data and knowledge about the polar oceans. Collectively, MEOP demonstrates the power and cost-effectiveness of using marine mammals as data-collection platforms that can dramatically improve the ocean observing system for biological and physical oceanographers. Here, we review the MEOP program and database to bring it to the attention of the international community.
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