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  • 1
    ISSN: 1573-904X
    Keywords: allometric scaling ; interspecies scaling ; pharmacokinetics
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract Purpose. To evaluate (1) allometric scaling of systemic clearance (CL)using unbound drug concentration, (2) the potential usage of brainweight (BRW) correction in allometric scaling of both CL and oralclearance (CL/F). Methods. Human clearance was predicted allometrically (CLu = a ·Wbiv) using unbound plasma concentration for eight Parke-Daviscompounds and 29 drugs from literature sources. When the exponent bivwas higher than 0.85, BRW was incorporated into the allometricrelationship (CLu*BRW = a · Wbiv). This approach was also applied tothe prediction of CLu/F for 10 Parke-Davis compounds. Human oralt1/2, Cmax, AUC, and bioavailability were estimated based onallometrically predicted pharmacokinetic (PK) parameters. Results. Human CL and CL/F were more accurately estimated usingunbound drug concentration and the prediction was further improvedwhen BRW was incorporated into the allometric relationship. ForParke-Davis compounds, the predicted human CL and CL/F werewithin 50-200% and 50-220% of the actual values, respectively. Theestimated human oral t1/2, Cmax, and AUC were within 82-220%,56-240%, and 73-190% of the actual values for all 7 compounds,suggesting that human oral PK parameters of those drugs could bereasonably predicted from animal data. Conclusions. Results from the retrospective analysis indicate thatallometric scaling of free concentration could be applied to orallyadministered drugs to gain knowledge of drug disposition in man, and to helpdecision-making at early stages of drug development.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 1974-01-01
    Print ISSN: 0021-4922
    Electronic ISSN: 1347-4065
    Topics: Physics
    Published by Institute of Physics
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  • 3
    Publication Date: 2019-07-27
    Description: Simultaneous measurement of the radiation and cloud fields on a global basis is a key component in the effort to understand and model the interaction between clouds and radiation at the top of the atmosphere, at the surface, and within the atmosphere. The NASA Clouds and Earth s Radiant Energy System (CERES) Project, begun in 1998, is meeting this need. Broadband shortwave (SW) and longwave radiance measurements taken by the CERES scanners at resolutions between 10 and 20 km on the Tropical Rainfall Measuring Mission (TRMM), Terra, and Aqua satellites are matched to simultaneous retrievals of cloud height, phase, particle size, water path, and optical depth OD from the TRMM Visible Infrared Scanner (VIRS) and the Moderate Resolution Imaging Spectroradiometer (MODIS) on Terra and Aqua. Besides aiding the interpretation of the broadband radiances, the CERES cloud properties are valuable for understanding cloud variations at a variety of scales. In this paper, the resulting CERES cloud data taken to date are averaged at several temporal scales to examine the temporal and spatial variability of the cloud properties on a global scale at a 1 resolution.
    Keywords: Meteorology and Climatology
    Type: Paper-6.10 , 13th AMS Conference on Satellite Meteorology and Oceanography; 20-24 Sept. 2004; Norfolk, VA; United States
    Format: application/pdf
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  • 4
    Publication Date: 2019-07-13
    Description: The Clouds and Earth's Radiant Energy System (CERES) Project is producing a suite of cloud properties from high-resolution imagers on several satellites and matching them precisely with broadband radiance data to study the influence of clouds and radiation on climate. The cloud properties generally compare well with independent validation sources. Distinct differences are found between the CERES cloud properties and those derived with other algorithms from the same imager data. CERES products will be updated beginning in late 2006.
    Keywords: Meteorology and Climatology
    Type: IGARSS 2006-2006 IEEE International Geoscience and Remote Sensing Symposium; Jul 31, 2006 - Aug 04, 2006; Denver, CO; United States
    Format: text
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