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Sökning: WFRF:(Raut M) > (2016)

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1.
  • Dittrich, Christian, et al. (författare)
  • ESMO / ASCO Recommendations for a Global Curriculum in Medical Oncology Edition 2016
  • 2016
  • Ingår i: ESMO Open. - : Elsevier BV. - 2059-7029. ; 1:5
  • Tidskriftsartikel (refereegranskat)abstract
    • The European Society for Medical Oncology (ESMO) and the American Society of Clinical Oncology (ASCO) are publishing a new edition of the ESMO/ ASCO Global Curriculum (GC) thanks to contribution of 64 ESMOappointed and 32 ASCO-appointed authors. First published in 2004 and updated in 2010, the GC edition 2016 answers to the need for updated recommendations for the training of physicians in medical oncology by defining the standard to be fulfilled to qualify as medical oncologists. At times of internationalisation of healthcare and increased mobility of patients and physicians, the GC aims to provide state-of-the-art cancer care to all patients wherever they live. Recent progress in the field of cancer research has indeed resulted in diagnostic and therapeutic innovations such as targeted therapies as a standard therapeutic approach or personalised cancer medicine specialised training for medical oncology trainees. Thus, several new chapters on technical contents such as molecular pathology, translational research or molecular imaging and on conceptual attitudes towards human principles like genetic counselling or survivorship have been integrated in the GC. The GC edition 2016 consists of 12 sections with 17 subsections, 44 chapters and 35 subchapters, respectively. Besides renewal in its contents, the GC underwent a principal formal change taking into consideration modern didactic principles. It is presented in a template-based format that subcategorises the detailed outcome requirements into learning objectives, awareness, knowledge and skills. Consecutive steps will be those of harmonising and implementing teaching and assessment strategies.
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3.
  • Ghosh, M., et al. (författare)
  • Can the hint of δCP from T2K also indicate the hierarchy and octant?
  • 2016
  • Ingår i: Springer Proceedings in Physics. - Cham : Springer. - 9783319256177 ; , s. 339-344
  • Konferensbidrag (refereegranskat)abstract
    • The T2K neutrino data has already given a hint for the best-fit value of the leptonic CP phase δCP as −90◦. In this paper we ask the question that if this hint is confirmed by the subsequent neutrino and anti-neutrino runs of T2K, then can it also give any information about the other two remaining unknown oscillation parameters—the neutrino mass hierarchy and octant of θ23. We find that if T2K runs in only neutrino mode with its full targeted exposure, then δCP = −90◦ would indicate the true hierarchy as normal and the true octant as higher. On the other hand if T2K runs in equal neutrino and anti-neutrino mode then the true hierarchy can be confirmed as normal but the octant will remain undetermined. We have also studied the effect of anti-neutrino runs on CP sensitivity of T2K.
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4.
  • Ghosh, M., et al. (författare)
  • Maximizing the DUNE early physics output with current experiments
  • 2016
  • Ingår i: European Physical Journal C. - : Springer-Verlag New York. - 1434-6044 .- 1434-6052. ; 76:3
  • Tidskriftsartikel (refereegranskat)abstract
    • The deep underground neutrino experiment (DUNE) is a proposed next generation superbeam experiment at Fermilab. Its aims include measuring the unknown neutrino oscillation parameters—the neutrino mass hierarchy, the octant of the mixing angle θ23, and the CP-violating phase δCP. The current and upcoming experiments T2K, NOνA, and ICAL@INO will also be collecting data for the same measurements. In this paper, we explore the sensitivity reach of DUNE in combination with these other experiments. We evaluate the least exposure required by DUNE to determine the above three unknown parameters with reasonable confidence. We find that for each case, the inclusion of data from T2K, NOνA, and ICAL@INO help to achieve the same sensitivity with a reduced exposure from DUNE thereby helping to economize the configuration. Further, we quantify the effect of the proposed near detector on systematic errors and study the consequent improvement in sensitivity. We also examine the role played by the second oscillation cycle in furthering the physics reach of DUNE. Finally, we present an optimization study of the neutrino–antineutrino running of DUNE.
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  • Resultat 1-4 av 4

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