Patlak plot explained
A Patlak plot (sometimes called Gjedde–Patlak plot, Patlak–Rutland plot, or Patlak analysis)[1] [2] is a graphical analysis technique based on the compartment model that uses linear regression to identify and analyze pharmacokinetics of tracers involving irreversible uptake, such as in the case of deoxyglucose.[3] [4] It is used for the evaluation of nuclear medicine imaging data after the injection of a radioopaque or radioactive tracer.
The method is model-independent because it does not depend on any specific compartmental model configuration for the tracer, and the minimal assumption is that the behavior of the tracer can be approximated by two compartments - a "central" (or reversible) compartment that is in rapid equilibrium with plasma, and a "peripheral" (or irreversible) compartment, where tracer enters without ever leaving during the time of the measurements. The amount of tracer in the region of interest is accumulating according to the equation:
R(t)=K
Cp(\tau)d\tau+V0Cp(t)
where
represents time after tracer injection,
is the amount of tracer in
region of interest,
is the concentration of tracer in plasma or blood,
is the
clearance determining the rate of entry into the peripheral (irreversible) compartment, and
is the
distribution volume of the tracer in the central compartment. The first term of the right-hand side represents tracer in the peripheral compartment, and the second term tracer in the central compartment.
By dividing both sides by
, one obtains:
{R(t)\overCp(t)}=K
Cp(\tau)d\tau\overCp(t)}+V0
The unknown constants
and
can be obtained by
linear regression from a
graph of
against
.
See also
References
Further literature
External links
Notes and References
- C. S. Patlak . R. G. Blasberg . J. D. Fenstermacher . Graphical evaluation of blood-to-brain transfer constants from multiple-time uptake data . . 3 . 1 . 1–7 . March 1983 . 10.1038/jcbfm.1983.1 . 6822610. free .
- C.S. Patlak . R.G. Blasberg . Graphical evaluation of blood-to-brain transfer constants from multiple-time uptake data. Generalizations . . 5 . 4 . 584–590 . April 1985 . 10.1038/jcbfm.1985.87 . 4055928. free .
- A. Gjedde . High- and low-affinity transport of D-glucose from blood to brain . . 36 . 4 . 1463–1471 . April 1981 . 10.1111/j.1471-4159.1981.tb00587.x. 7264642 .
- A. Gjedde . Calculation of glucose phosphorylation from brain uptake of glucose analogs in vivo: A re-examination . . 4 . 2 . 237–274 . June 1982 . 10.1016/0165-0173(82)90018-2. 7104768 .