TY - JOUR
T1 - An integrated approach to pharmacokinetic analysis for linear mammillary systems in which input and exit may occur in/from any compartment
AU - Nakashima, Emi
AU - Benet, Leslie Z.
PY - 1989/12
Y1 - 1989/12
N2 - The general treatment of linear mammillary models employing input and disposition functions and Laplace transforms is expanded to solve concentration-time equations AUC and AUMC in any compartment without restricting sites of input or output. In this integrated approach to noncompartmental pharmacokinetic analysis, the values of AUC and AUMC can be calculated from Laplace transforms with some very simplified treatments. Tables of input functions, disposition functions, Laplace transforms, and derivatives of the Laplace transforms are presented. The relationships between the integrated parameters and various mammillary model parameters are presented using several examples.
AB - The general treatment of linear mammillary models employing input and disposition functions and Laplace transforms is expanded to solve concentration-time equations AUC and AUMC in any compartment without restricting sites of input or output. In this integrated approach to noncompartmental pharmacokinetic analysis, the values of AUC and AUMC can be calculated from Laplace transforms with some very simplified treatments. Tables of input functions, disposition functions, Laplace transforms, and derivatives of the Laplace transforms are presented. The relationships between the integrated parameters and various mammillary model parameters are presented using several examples.
KW - area under the first moment curve
KW - disposition function
KW - input function
KW - integrated parameter
KW - mammillary models (linear)
KW - noncompartmental analysis
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U2 - 10.1007/BF01062124
DO - 10.1007/BF01062124
M3 - Article
C2 - 2635739
AN - SCOPUS:0024956330
SN - 0090-466X
VL - 17
SP - 673
EP - 686
JO - Journal of Pharmacokinetics and Biopharmaceutics
JF - Journal of Pharmacokinetics and Biopharmaceutics
IS - 6
ER -