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Träfflista för sökning "WFRF:(Palmqvist Richard) srt2:(2015-2019);lar1:(kth)"

Search: WFRF:(Palmqvist Richard) > (2015-2019) > Royal Institute of Technology

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1.
  • Glimelius, Bengt, et al. (author)
  • U-CAN : a prospective longitudinal collection of biomaterials and clinical information from adult cancer patients in Sweden.
  • 2018
  • In: Acta Oncologica. - : Taylor & Francis. - 0284-186X .- 1651-226X. ; 57:2, s. 187-194
  • Journal article (peer-reviewed)abstract
    • Background: Progress in cancer biomarker discovery is dependent on access to high-quality biological materials and high-resolution clinical data from the same cases. To overcome current limitations, a systematic prospective longitudinal sampling of multidisciplinary clinical data, blood and tissue from cancer patients was therefore initiated in 2010 by Uppsala and Umeå Universities and involving their corresponding University Hospitals, which are referral centers for one third of the Swedish population.Material and Methods: Patients with cancer of selected types who are treated at one of the participating hospitals are eligible for inclusion. The healthcare-integrated sampling scheme encompasses clinical data, questionnaires, blood, fresh frozen and formalin-fixed paraffin-embedded tissue specimens, diagnostic slides and radiology bioimaging data.Results: In this ongoing effort, 12,265 patients with brain tumors, breast cancers, colorectal cancers, gynecological cancers, hematological malignancies, lung cancers, neuroendocrine tumors or prostate cancers have been included until the end of 2016. From the 6914 patients included during the first five years, 98% were sampled for blood at diagnosis, 83% had paraffin-embedded and 58% had fresh frozen tissues collected. For Uppsala County, 55% of all cancer patients were included in the cohort.Conclusions: Close collaboration between participating hospitals and universities enabled prospective, longitudinal biobanking of blood and tissues and collection of multidisciplinary clinical data from cancer patients in the U-CAN cohort. Here, we summarize the first five years of operations, present U-CAN as a highly valuable cohort that will contribute to enhanced cancer research and describe the procedures to access samples and data.
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2.
  • DAWODY, JAZAER, 1959, et al. (author)
  • An integrated system for energy-efficient exhaust aftertreatment for heavy-duty vehicles
  • 2015
  • In: Renewable Energy in the Service of Mankind. - Cham : Springer International Publishing. - 9783319177779 - 9783319177762 ; , s. 133-143
  • Book chapter (other academic/artistic)abstract
    • © Springer International Publishing Switzerland 2015. This chapter presents a unique system approach applied in a joint academic- industrial research programme, E4 Mistra, to attain the goals of high energy efficiency and low emissions in an exhaust aftertreatment system for heavy-duty vehicles. The high energy efficiency is achieved by heat recuperation, onboard hydrogen production for NOx reduction, and by finding new solutions for making the aftertreatment system active at low exhaust temperatures. To reach low particulate emissions, a mechanical filter using a sintered metal powder is developed and coated with catalytic material to improve the soot oxidation efficiency. Low NOx emissions are achieved by an efficient NOx reduction catalyst. The integrated E4 Mistra system comprises four technological advances: thermoelectric (TE) materials for heat recuperation, catalytic reduction of NOx over innovative catalyst substrates using either the onboard diesel or biodiesel, H2 from a high-efficiency fuel reformer, and particulate filtration over a porous metal filter. The TE materials are used in a TE generator (TEG) which converts thermal energy into electricity. The TEG is used to recuperate heat from the exhaust-gas recirculation (EGR) circuit of heavy-duty trucks and is expected to generate ~1 kW electric power from 20 kW heat in the exhaust gas. The TEG is integrated in a plate heat exchanger (HEX) designed particularly for this application. Apart from the knowledge and experiences in TEG and heat exchange technologies, a thorough fluid dynamics and TE analysis are performed in this project to understand the governing processes and optimize the system accordingly. The components of the E4 Mistra system are explained in the chapter in addition to test results, which show the system's capacity for H2 production, NOx conversion, particulate matter filtration and soot oxidation, and finally electric power generation via heat recuperation from the exhaust gas using the developed TEG-HEX system.
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journal article (1)
book chapter (1)
Type of content
other academic/artistic (1)
peer-reviewed (1)
Author/Editor
Riklund, Katrine (1)
Claesson-Welsh, Lena (1)
Edqvist, Per-Henrik ... (1)
Pontén, Fredrik (1)
Glimelius, Bengt (1)
Pettersson, Lars (1)
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Helleday, Thomas (1)
Schwenk, Jochen M. (1)
Ahlström, Håkan (1)
DAWODY, JAZAER, 1959 (1)
Enblad, Gunilla (1)
Hultdin, Magnus (1)
Sundström, Christer (1)
Jonsson, Håkan (1)
Alafuzoff, Irina (1)
Häggman, Michael (1)
Bill-Axelson, Anna (1)
Bergh, Anders (1)
Andersson, Ronnie, 1 ... (1)
Thellenberg Karlsson ... (1)
Westermark, Bengt (1)
Nygren, Peter (1)
Hansson, Tony (1)
Rosenquist, Richard (1)
Stenling, Roger (1)
Hesselager, Göran (1)
Hellman, Per (1)
Palmqvist, Richard (1)
Ljuslinder, Ingrid (1)
Stålberg, Karin (1)
Lindman, Henrik (1)
Sjöblom, Tobias (1)
Höglund, Martin (1)
Sandin, Fredrik (1)
Melin, Beatrice (1)
Andersson, Lennart (1)
Palmqvist, Anders, 1 ... (1)
Högblom, Olle, 1983 (1)
Andreasson, Fredrik (1)
Stålberg, Peter (1)
Björ, Ove (1)
Härelind, Hanna, 197 ... (1)
Beskow, Anna H. (1)
Birgisson, Helgi (1)
Heijl, Richard, 1984 (1)
Gunnarsson, Fredrik, ... (1)
Holmgren, Lennart (1)
Larsson, Per-Olof (1)
Granlund, Moa Ziethè ... (1)
Henriksson, Kerstin (1)
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University
Umeå University (1)
Uppsala University (1)
Chalmers University of Technology (1)
Karolinska Institutet (1)
Language
English (2)
Research subject (UKÄ/SCB)
Engineering and Technology (1)
Medical and Health Sciences (1)

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