Difference between revisions of "Support:Documents:Examples:Model Corrected Input Function"

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Here is an example of COMKAT GUI for estimating kinetic rate constants, and the MCIF method is used to estimate input function.
 
Here is an example of COMKAT GUI for estimating kinetic rate constants, and the MCIF method is used to estimate input function.
  
Step 1. Type "comkat" in Matlab commandwindow and "COMKAT_GUI" should be started.
+
Step 1. Type "comkat" in Matlab commandwindow and "COMKAT_GUI" (below figure) should be started.
  
 
[[Image:fig1.1.jpg]]
 
[[Image:fig1.1.jpg]]

Revision as of 17:23, 20 March 2009

Model-Corrected Input Function

Overview

For 18F-FDG PET studies, the estimation of kinetic rate constants required knowledge of the input function (i.e., 18F-FDG plasma time activity curve). The standard method to determine the input function is to measure 18F-FDG activity concentration in the arterial blood. However, this invasive procedure is limited by the small size of blood vessels and the limited blood volume. One alternative way is to estimate the input function non-invasively. One of non-invasive methods is image-derived input functions (IDIFs), which estimate input function from a region of interest (ROI) within the ventricular cavity. However, due to the limited spatial resolution and the cardiac and respiratory motion, cross-contamination from surrounding tissues to vascular structures affects the accuracy of estimated input function. To solve these problems, Fang proposed a model-corrected input function (MCIF), which used simultaneous estimation to correct the spillover and partial volume effect for IDIFs.

Example of Estimating Input Function Using MCIF

Here is an example of COMKAT GUI for estimating kinetic rate constants, and the MCIF method is used to estimate input function.

Step 1. Type "comkat" in Matlab commandwindow and "COMKAT_GUI" (below figure) should be started.

Fig1.1.jpg

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