• DocumentCode
    946756
  • Title

    Surface Reconstruction for Free-Space 360 ^{\\circ} Fluorescence Molecular Tomography and the Effects of Animal Motion

  • Author

    Lasser, Tobias ; Soubret, Antoine ; Ripoll, Jorge ; Ntziachristos, Vasilis

  • Author_Institution
    Munich Univ. of Technol., Garching
  • Volume
    27
  • Issue
    2
  • fYear
    2008
  • Firstpage
    188
  • Lastpage
    194
  • Abstract
    Complete projection (360deg) free-space fluorescence tomography of opaque media is poised to enable 3-D imaging through entire small animals in vivo with improved depth resolution compared to 360deg-projection fiber-based systems or limited-view angle systems. This approach can lead to a new generation of fluorescence molecular tomography (FMT) performance since it allows high spatial sampling of photon fields propagating through tissue at any projection, employing nonconstricted animal surfaces. Herein, we employ a volume carving method to capture 3-D surfaces of diffusive objects and register the captured surface in the geometry of an FMT 360deg-projection acquisition system to obtain 3-D fluorescence image reconstructions. Using experimental measurements we evaluate the accuracy of the surface capture procedure by reconstructing the surfaces of phantoms of known dimensions. We then employ this methodology to characterize the animal movement of anaesthetized animals. We find that the effects of animal movement on the FMT reconstructed image were within system resolution limits (~0.07 cm).
  • Keywords
    biomechanics; biomedical optical imaging; fluorescence; image reconstruction; medical image processing; optical tomography; phantoms; surface reconstruction; 3-D surfaces; animal motion; diffusive objects; fluorescence molecular tomography; free-space fluorescence tomography; image reconstruction; opaque media; optical tomography; phantoms; surface reconstruction; Fluorescence Molecular Tomography; Fluorescence molecular tomography (FMT); Optical tomography; Surface reconstruction from Silhouettes; optical tomography; surface reconstruction from silhouettes; Algorithms; Animals; Artificial Intelligence; Image Enhancement; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Microscopy, Fluorescence; Molecular Probe Techniques; Movement; Pattern Recognition, Automated; Phantoms, Imaging; Reproducibility of Results; Sensitivity and Specificity; Tomography, Optical;
  • fLanguage
    English
  • Journal_Title
    Medical Imaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0062
  • Type

    jour

  • DOI
    10.1109/TMI.2007.904662
  • Filename
    4359044