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  • atmospheric surface layer  (1)
  • multi-compartment elimination  (1)
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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    European journal of clinical pharmacology 8 (1975), S. 439-444 
    ISSN: 1432-1041
    Keywords: Methotrexate ; overall elimination half-life ; multi-compartment elimination ; renal function ; serum creatinine ; age effect
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary The disappearance of methotrexate (MTX) from serum was studied using H3-MTX. The overall elimination half-life (MTX T 1/2) was well defined from one to about six hours after i.v. administration; in 25 patients it ranged from 102 min to 750 min and was inversely related to endogenous creatinine clearance, which ranged from 6 to 140 ml/min. The corresponding apparent volume of distribution, V, obtained by extrapolation tended to decrease at lower levels of renal function. The total clearance of MTX calculated in this period varied linearly with creatinine clearance. In patients with normal serum creatinine concentration, the half-life increased with advancing age, which reflects the concurrent age-dependent decrease in creatinine production and renal function. This illustrates the need for knowledge of renal function, not based solely on serum creatinine concentration, in patients treated with methotrexate or other drugs eliminated by the kidneys. In 9 patients the results were not affected by treatment with diuretics (furosemide, hydroflumethiazide). In four patients serum MTX concentration was measured for up to 24–72 hours. An increasing half-life of MTX with time was found, suggesting that the elimination kinetics of the drug would be most adequately described by a multi-compartment model.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of atmospheric chemistry 27 (1997), S. 249-269 
    ISSN: 1573-0662
    Keywords: atmospheric surface layer ; constant-flux layer ; ozone ; nitric oxide ; radon ; thoron ; thoron exhalation ; Damköhler ratio ; eddy diffusivity
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Geosciences
    Notes: Abstract We have discussed the behavior of a non-conserved scalar in the stationary, horizontally homogeneous, neutral surface-flux layer and, on the basis of conventional second-order closure, derived analytic expressions for flux and for mean concentration of a gas, subjected to a first-order removal process. The analytic flux solution showed a clear deviation from the constant flux, characterizing a conserved scalar in the surface-flux layer. It decreases with height and is reduced by an order of magnitude of the surface flux at a height equal to about the typical mean distance a molecule can travel before destruction. The predicted mean concentration profile, however, shows only a small deviation from the logarithmic behavior of a conserved scalar. The solution is consistent with assuming a flux-gradient relationship with a turbulent diffusivity corrected by the Damköhler ratio, the ratio of a characteristic turbulent time scale and the scalar mean lifetime. We show that if we use only first-order closure and neglect the effect of the Damköhler ratio on the turbulent diffusivity we obtain another analytic solution for the profiles of the flux and the mean concentration which, from an experimental point of view, is indistinguishable from the first analytic solution. We have discussed two cases where the model should apply, namely NO which, by night, is irreversibly destroyed by interaction with mainly O3 and the radioactive 220Rn. Only in the last case was it possible to find data to shed light on the validity of our predictions. The agreement seemed such that a falsification of our model was impossible. It is shown how the model can be used to predict the surface flux of 220Rn from measured concentration profiles.
    Type of Medium: Electronic Resource
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