MRI model generation and inverse tumor temperature, vascular flow and perfusion estimation during hyperthermia using a computational steering tool - SCIRun. Shelkey, J., Luke, E., Weinstein, D., Roemer, R., Clegg, S., & Johnson, C. In ASME Heat Transfer Div Publ HTD, volume 362, pages 7--10, 1998. ASME, Fairfield, NJ.
bibtex   
@InProceedings{RSM:She98,
  author =       "J.D. Shelkey and E.J. Luke and D. Weinstein and R.B.
                 Roemer and S.F. Clegg and C. Johnson",
  title =        "{MRI} model generation and inverse tumor temperature,
                 vascular flow and perfusion estimation during
                 hyperthermia using a computational steering tool -
                 {SCIR}un",
  booktitle =    "ASME Heat Transfer Div Publ HTD",
  year =         "1998",
  volume =       "362",
  pages =        "7--10",
  publisher =    "ASME, Fairfield, NJ",
  robnote =      "SCIRun paper. The first application of this package
                 will be to investigate the hypothesis that pretreatment
                 MR perfusion distribution measurements can be scaled to
                 accurately simulate hyperthermia treatment temperatures
                 using Pennes bio heat transfer equation.",
  bibdate =      "Sun Nov 19 18:20:45 2000",
}

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