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  • Sigma recognition sites  (1)
  • fusion reactors  (1)
  • neutron activation  (1)
  • 1
    ISSN: 1432-1912
    Keywords: Sigma recognition sites ; Human cerebellum ; Rat cerebellum ; [3H]haloperidol
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary The radioligand binding characteristics of [3H]haloperidol (in the presence of spiperone, 25 nmolL−1) were investigated in rat and human cerebellar membranes. In both rat and human cerebellar membrane preparations saturation studies with [3H]haloperidol (non-specific binding defined by pentazocine, 10 μmolL−1) demonstrated high affinity saturable specific binding to a homogenous population of binding sites (rat, Bmax 6693 ± 1242 fmol mg−1 protein, pKD 8.33 ± 0.08; human, Bmax 2550 ± 437 fmol mg−1 protein, pKD 8.59 ± 0.11; mean ± SEM, n = 3–6). Competition studies employing a wide range of structurally diverse competing compounds displayed that the [3H]haloperidol binding site was pharmacologically similar in both preparations and comparable to sigma recognition sites previously identified in various tissues originating from different species. In addition, with reference to the potential subtypes of sigma recognition sites, the labelling of these sites by low nanomolar concentrations of [3H]haloperidol provides evidence that they belong to the sigma-1 recognition site subtype. The present findings suggest that the pharmacology of the rat and human cerebellar sigma recognition site are directly comparable and provides further supporting evidence towards the use of [3H]haloperidol radioligand binding studies in the rat to detect sigma receptor ligands with potential therapeutic activity.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of fusion energy 2 (1982), S. 173-178 
    ISSN: 1572-9591
    Keywords: neutron activation ; neutral beam injectors ; fusion reactors ; doses rates
    Source: Springer Online Journal Archives 1860-2000
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Notes: Abstract The dose equivalent rates outside the Engineering Test Facility neutral beam injector shield from the induced radioactivity have been calculated for the reactor operating at 1140 MW for 1, 30, and 365 days. The dose rates at one day after shutdown are large even after one day of operation. Depending on the location and operating time, cooling times from 30 days to ∼ 5 years are required before the dose rates are sufficiently low to allow routine maintenance work in the vicinity of the NBI shield.
    Type of Medium: Electronic Resource
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