Search Results - "Riaño, Daniela"

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    Test–retest reproducibility of cannabinoid-receptor type 1 availability quantified with the PET ligand [11C]MePPEP by Riaño Barros, Daniela A., McGinnity, Colm J., Rosso, Lula, Heckemann, Rolf A., Howes, Oliver D., Brooks, David J., Duncan, John S., Turkheimer, Federico E., Koepp, Matthias J., Hammers, Alexander

    Published in NeuroImage (Orlando, Fla.) (15-08-2014)
    “…Endocannabinoids are involved in normal cognition, and dysfunction in cannabinoid-receptor-mediated neurotransmission has been suggested in a variety of…”
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    Simplifying [18F]GE-179 PET: are both arterial blood sampling and 90-min acquisitions essential? by McGinnity, Colm J., Riaño Barros, Daniela A., Trigg, William, Brooks, David J., Hinz, Rainer, Duncan, John S., Koepp, Matthias J., Hammers, Alexander

    Published in EJNMMI research (11-06-2018)
    “…Introduction The NMDA receptor radiotracer [ 18 F]GE-179 has been used with 90-min scans and arterial plasma input functions. We explored whether (1) arterial…”
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    Aproximación a la valoración económica de los servicios ecosistémicos prestados por el humedal Las Tinguas by Riaño Morales, Daniela, Vásquez Traslaviña, Laura Daniela, Cita Velandia, Ángela Yolima

    Published in Apuntes contables (Bogotá) (30-05-2024)
    “…Colombia es un país de humedales. De acuerdo con Burbano Girón et al. (2020), el Instituto Humboldt emitió un informe en el que revela que el país cuenta con…”
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    Test-retest reproducibility of quantitative binding measures of [11C]Ro15-4513, a PET ligand for GABAAreceptors containing alpha5 subunits by McGinnity, Colm J, Riaño Barros, Daniela A, Rosso, Lula, Veronese, Mattia, Rizzo, Gaia, Bertoldo, Alessandra, Hinz, Rainer, Turkheimer, Federico E, Koepp, Matthias J, Hammers, Alexander

    Published in NeuroImage (Orlando, Fla.) (15-05-2017)
    “…Introduction Alteration of γ-aminobutyric acid “A” (GABAA) receptor-mediated neurotransmission has been associated with various neurological and psychiatric…”
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    Decreased GABA-A Receptor Binding in Association With β-Lactam Antibiotic Use by Flaus, Anthime, Riaño Barros, Daniela Alexandra, Hinz, Rainer, Myers, James F, Lingford-Hughes, Anne, Koepp, Matthias J, Hammers, Alexander, McGinnity, Colm Joseph

    Published in Clinical nuclear medicine (01-12-2019)
    “…ABSTRACTβ-Lactam antibiotics are proconvulsive. In laboratory animals, this effect seems to be predominantly mediated through inhibition of GABA-A receptors,…”
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    Acute induction of anxiety in humans by delta-9-tetrahydrocannabinol related to amygdalar cannabinoid-1 (CB1) receptors by Bhattacharyya, Sagnik, Egerton, Alice, Kim, Euitae, Rosso, Lula, Riano Barros, Daniela, Hammers, Alexander, Brammer, Michael, Turkheimer, Federico E., Howes, Oliver D., McGuire, Philip

    Published in Scientific reports (03-11-2017)
    “…Use of Cannabis, the most widely used illicit drug worldwide, is associated with acute anxiety, and anxiety disorders following regular use. The precise neural…”
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    Acute increases in synaptic GABA detectable in the living human brain: A [11C]Ro15-4513 PET study by Stokes, Paul R.A., Myers, Jim F., Kalk, Nicola J., Watson, Ben J., Erritzoe, David, Wilson, Sue J., Cunningham, Vincent J., Barros, Daniela Riano, Hammers, Alexander, Turkheimer, Federico E., Nutt, David J., Lingford-Hughes, Anne R.

    Published in NeuroImage (Orlando, Fla.) (01-10-2014)
    “…The inhibitory γ-aminobutyric acid (GABA) neurotransmitter system is associated with the regulation of normal cognitive functions and dysregulation has been…”
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    Initial evaluation of 18F-GE-179, a putative PET Tracer for activated N-methyl D-aspartate receptors by McGinnity, Colm J, Hammers, Alexander, Riaño Barros, Daniela A, Luthra, Sajinder K, Jones, Paul A, Trigg, William, Micallef, Caroline, Symms, Mark R, Brooks, David J, Koepp, Matthias J, Duncan, John S

    Published in The Journal of nuclear medicine (1978) (01-03-2014)
    “…N-methyl D-aspartate (NMDA) ion channels play a key role in a wide range of physiologic (e.g., memory and learning tasks) and pathologic processes (e.g.,…”
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