• DocumentCode
    1445537
  • Title

    Optimization of PET activation studies based on the SNR measured in the 3-D Hoffman brain phantom

  • Author

    Li, Henry H. ; Votaw, John R.

  • Author_Institution
    Center for PET, Emory Univ., Atlanta, GA, USA
  • Volume
    17
  • Issue
    4
  • fYear
    1998
  • Firstpage
    596
  • Lastpage
    605
  • Abstract
    This work investigates the noise properties of O-15 water positron emission tomography (PET) images in an attempt to increase the sensitivity of activation studies. A method for computing the amount of noise within a region of interest (ROI) from the uncertainty in the raw data was implemented for three-dimensional (3-D) PET. The method was used to study the signal-to-noise ratio (SNR) of regions-of-interest (ROIs) inside a 3-D Hoffman brain phantom. Saturation occurs at an activity concentration of 2.2 mCi/l, which corresponds to a 75-mCi O-15 water injection into a normal person of average weight. This establishes the upper limit for injections for human brain studies using 3-D PET on the Siemens ECAT 921 EXACT scanner. Data from human brain activation studies on four normal volunteers using two-dimensional (2-D) PET were analyzed. The biological variation was found to be 5% 1-ml ROIs. The variance for a complete activation study was calculated, for a variety of protocols, by combining the Poisson noise propagated from the raw data in the phantom experiments with the biological variation. A protocol that is predicted to maximize the SNR in dual-condition activation experiments while remaining below the radiation safety limit is: ten scans with 45 mCi per injection. The data should not be corrected for random or scatter events since they do not help in the identification of activation sites while they do add noise to the image. Due to the lower noise level of 3-D PET, the threshold for detecting a true change in activity concentration is 10%-20% lower than 2-D PET. Because of this, a 3-D activation experiment using the Siemens 921 scanner requires fewer subjects fur equal statistical power.
  • Keywords
    brain; noise; positron emission tomography; 3D PET; 45E-3 ci; 75E-3 ci; H/sub 2/O; O-15 water injection; Poisson noise; Siemens ECAT 921 EXACT scanner; biological variation; human brain studies; medical diagnostic imaging; normal person; normal volunteers; nuclear medicine; phantom experiments; radiation safety limit; Humans; Imaging phantoms; Noise level; Positron emission tomography; Protocols; Radiation safety; Scattering; Signal to noise ratio; Two dimensional displays; Water; Brain; Humans; Phantoms, Imaging; Sensitivity and Specificity; Tomography, Emission-Computed;
  • fLanguage
    English
  • Journal_Title
    Medical Imaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0062
  • Type

    jour

  • DOI
    10.1109/42.730404
  • Filename
    730404