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Search: WFRF:(Schiller A)

  • Result 1-10 of 70
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1.
  • Rajewsky, N., et al. (author)
  • LifeTime and improving European healthcare through cell-based interceptive medicine
  • 2020
  • In: Nature. - : Springer Nature. - 0028-0836 .- 1476-4687. ; 587:7834, s. 377-386
  • Journal article (peer-reviewed)abstract
    • LifeTime aims to track, understand and target human cells during the onset and progression of complex diseases and their response to therapy at single-cell resolution. This mission will be implemented through the development and integration of single-cell multi-omics and imaging, artificial intelligence and patient-derived experimental disease models during progression from health to disease. Analysis of such large molecular and clinical datasets will discover molecular mechanisms, create predictive computational models of disease progression, and reveal new drug targets and therapies. Timely detection and interception of disease embedded in an ethical and patient-centered vision will be achieved through interactions across academia, hospitals, patient-associations, health data management systems and industry. Applying this strategy to key medical challenges in cancer, neurological, infectious, chronic inflammatory and cardiovascular diseases at the single-cell level will usher in cell-based interceptive medicine in Europe over the next decade.
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2.
  • von Schiller, D., et al. (author)
  • Sediment Respiration Pulses in Intermittent Rivers and Ephemeral Streams
  • 2019
  • In: Global Biogeochemical Cycles. - : American Geophysical Union (AGU). - 0886-6236 .- 1944-9224. ; 33:10, s. 1251-1263
  • Journal article (peer-reviewed)abstract
    • Intermittent rivers and ephemeral streams (IRES) may represent over half the global stream network, but their contribution to respiration and carbon dioxide (CO2) emissions is largely undetermined. In particular, little is known about the variability and drivers of respiration in IRES sediments upon rewetting, which could result in large pulses of CO2. We present a global study examining sediments from 200 dry IRES reaches spanning multiple biomes. Results from standardized assays show that mean respiration increased 32-fold to 66-fold upon sediment rewetting. Structural equation modeling indicates that this response was driven by sediment texture and organic matter quantity and quality, which, in turn, were influenced by climate, land use, and riparian plant cover. Our estimates suggest that respiration pulses resulting from rewetting of IRES sediments could contribute significantly to annual CO2 emissions from the global stream network, with a single respiration pulse potentially increasing emission by 0.2-0.7%. As the spatial and temporal extent of IRES increases globally, our results highlight the importance of recognizing the influence of wetting-drying cycles on respiration and CO2 emissions in stream networks.
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3.
  • Datry, T., et al. (author)
  • A global analysis of terrestrial plant litter dynamics in non-perennial waterways
  • 2018
  • In: Nature Geoscience. - : Nature Publishing Group. - 1752-0894 .- 1752-0908. ; 11:7, s. 497-503
  • Journal article (peer-reviewed)abstract
    • Perennial rivers and streams make a disproportionate contribution to global carbon (C) cycling. However, the contribution of intermittent rivers and ephemeral streams (IRES), which sometimes cease to flow and can dry completely, is largely ignored although they represent over half the global river network. Substantial amounts of terrestrial plant litter (TPL) accumulate in dry riverbeds and, upon rewetting, this material can undergo rapid microbial processing. We present the results of a global research collaboration that collected and analysed TPL from 212 dry riverbeds across major environmental gradients and climate zones. We assessed litter decomposability by quantifying the litter carbon-to-nitrogen ratio and oxygen (O2) consumption in standardized assays and estimated the potential short-term CO2 emissions during rewetting events. Aridity, cover of riparian vegetation, channel width and dry-phase duration explained most variability in the quantity and decomposability of plant litter in IRES. Our estimates indicate that a single pulse of CO2 emission upon litter rewetting contributes up to 10% of the daily CO2 emission from perennial rivers and stream, particularly in temperate climates. This indicates that the contributions of IRES should be included in global C-cycling assessments.
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4.
  • Uy, G. L., et al. (author)
  • Contribution of chemotherapy mobilization to disease control in multiple myeloma treated with autologous hematopoietic cell transplantation
  • 2015
  • In: Bone Marrow Transplantation. - : Springer Science and Business Media LLC. - 0268-3369 .- 1476-5365. ; 50:12, s. 1513-1518
  • Journal article (peer-reviewed)abstract
    • In patients with multiple myeloma (MM) undergoing autologous hematopoietic cell transplantation (auto-HCT), peripheral blood progenitor cells may be collected following mobilization with growth factor alone (GF) or cytotoxic chemotherapy plus GF (CC+GF). It is uncertain whether the method of mobilization affects post-transplant outcomes. We compared these mobilization strategies in a retrospective analysis of 968 patients with MM from the Center for International Blood and Marrow Transplant Research database who received an auto-Ha in the US and Canada between 2007 and 2012. The kinetics of neutrophil engraftment (>= 0.5 x 10(9)/L) was similar between groups (13 vs 13 days, P=0.69) while platelet engraftment (>= 20 x 10(9)/L) was slightly faster with CC+GF (19 vs 18 days, P=0.006). Adjusted 3-year PFS was 43% (95% confidence interval (CI) 38-48) in GF and 40% (95% CI 35-45) in CC+GF, P=0.33. Adjusted 3-year OS was 82% (95% CI 78-86) vs 80% (95% CI 75-84), P=0.43 and adjusted 5-year OS was 62% (95% CI 54-68) vs 60% (95% CI 52-67), P=0.76, for GF and CC+GF, respectively. We conclude that MM patients undergoing auto-Ha have similar outcomes irrespective of the method of mobilization and found no evidence that the addition of chemotherapy to mobilization contributes to disease control.
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5.
  • Akiba, K., et al. (author)
  • The LHCb VELO Upgrade module construction
  • 2024
  • In: Journal of Instrumentation. - : Institute of Physics Publishing (IOPP). - 1748-0221. ; 19:6
  • Journal article (peer-reviewed)abstract
    • The LHCb detector has undergone a major upgrade for LHC Run 3. This Upgrade I detector facilitates operation at higher luminosity and utilises full-detector information at the LHC collision rate, critically including the use of vertex information. A new vertex locator system, the VELO Upgrade, has been constructed. The core element of the new VELO are the double-sided pixelated hybrid silicon detector modules which operate in vacuum close to the LHC beam in a high radiation environment. The construction and quality assurance tests of these modules are described in this paper. The modules incorporate 200 mu m thick, n -on -p silicon sensors bump-bonded to 130 nm technology ASICs. These are attached with high precision to a silicon microchannel substrate that uses evaporative CO 2 cooling. The ASICs are controlled and read out with flexible printed circuits that are glued to the substrate and wire -bonded to the chips. The mechanical support of the module is given by a carbon fibre plate, two carbon fibre rods and an aluminium plate. The sensor attachment was achieved with an average precision of 21 mu m, more than 99.5% of all pixels are fully functional, and a thermal figure of merit of 3 Kcm 2 W - 1 was achieved. The production of the modules was successfully completed in 2021, with the final assembly and installation completed in time for data taking in 2022.
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6.
  • Sungnak, W., et al. (author)
  • SARS-CoV-2 entry factors are highly expressed in nasal epithelial cells together with innate immune genes
  • 2020
  • In: Nature Medicine. - : Nature Research. - 1078-8956 .- 1546-170X. ; 26:5, s. 681-687
  • Journal article (peer-reviewed)abstract
    • We investigated SARS-CoV-2 potential tropism by surveying expression of viral entry-associated genes in single-cell RNA-sequencing data from multiple tissues from healthy human donors. We co-detected these transcripts in specific respiratory, corneal and intestinal epithelial cells, potentially explaining the high efficiency of SARS-CoV-2 transmission. These genes are co-expressed in nasal epithelial cells with genes involved in innate immunity, highlighting the cells’ potential role in initial viral infection, spread and clearance. The study offers a useful resource for further lines of inquiry with valuable clinical samples from COVID-19 patients and we provide our data in a comprehensive, open and user-friendly fashion at www.covid19cellatlas.org. 
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8.
  • Schiller, D, et al. (author)
  • The Human Affectome
  • 2024
  • In: Neuroscience and biobehavioral reviews. - 1873-7528. ; 158, s. 105450-
  • Journal article (peer-reviewed)
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9.
  • Keller, P. S., et al. (author)
  • Global CO2 emissions from dry inland waters share common drivers across ecosystems
  • 2020
  • In: Nature Communications. - : Nature Publishing Group. - 2041-1723. ; 11:1
  • Journal article (peer-reviewed)abstract
    • Many inland waters exhibit complete or partial desiccation, or have vanished due to global change, exposing sediments to the atmosphere. Yet, data on carbon dioxide (CO2) emissions from these sediments are too scarce to upscale emissions for global estimates or to understand their fundamental drivers. Here, we present the results of a global survey covering 196 dry inland waters across diverse ecosystem types and climate zones. We show that their CO2 emissions share fundamental drivers and constitute a substantial fraction of the carbon cycled by inland waters. CO2 emissions were consistent across ecosystem types and climate zones, with local characteristics explaining much of the variability. Accounting for such emissions increases global estimates of carbon emissions from inland waters by 6% (~0.12 Pg C y−1). Our results indicate that emissions from dry inland waters represent a significant and likely increasing component of the inland waters carbon cycle.
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  • Result 1-10 of 70
Type of publication
journal article (60)
conference paper (8)
reports (1)
research review (1)
Type of content
peer-reviewed (65)
other academic/artistic (5)
Author/Editor
Dillner, J (12)
Schiller, M. (10)
Eklund, Lars (9)
Alexander, M. (9)
Zunica, G. (8)
Douglas, L. (8)
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Grillo, L. (8)
Schiller, J (8)
Schiller, Elad, 1974 (8)
Aaij, R. (7)
Bobulska, D. (7)
Friday, D. A. (7)
Longstaff, I. (7)
McHugh, N. T. (7)
Petric, M. (7)
Soler, F. J. P. (7)
Spradlin, P. (7)
Whitehead, M. (7)
Kupsc, Andrzej (6)
Sapp, M (5)
Schiller, A. (5)
Lehtinen, M (4)
Schiller, JT (4)
Dolev, Shlomi (4)
Gomez-Gener, Lluis (4)
Casimiro, A.C. (4)
Gilbert, Seth (4)
Welch, Jennifer (4)
Adlarson, Patrik (3)
Paavonen, J (3)
Gomez, R. (3)
Lundeberg, Joakim (3)
Luostarinen, T (3)
Milz, Mathias (3)
Hagmar, B. (3)
von Heijne, Gunnar (3)
Amanat, S (3)
Schiller, C (3)
Arce, M. I. (3)
del Campo, R. (3)
von Schiller, D. (3)
Elosegi, A. (3)
Datry, T. (3)
Mendoza-Lera, C. (3)
Cauvy-Fraunie, S. (3)
Leigh, C. (3)
Sanchez-Montoya, M. ... (3)
Shvartsman, Alex A. (3)
Lynch, Nancy A. (3)
Schiller, Herbert B. (3)
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University
Karolinska Institutet (29)
Uppsala University (16)
Chalmers University of Technology (11)
Umeå University (5)
Stockholm University (5)
Lund University (5)
show more...
Royal Institute of Technology (4)
Luleå University of Technology (3)
Linköping University (3)
University of Gothenburg (1)
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Language
English (70)
Research subject (UKÄ/SCB)
Natural sciences (34)
Medical and Health Sciences (6)
Engineering and Technology (4)
Social Sciences (1)

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