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Validity of microsphere model in cerebral blood flow measurement using N-isopropyl-p-(I-123) iodoamphetamine

K Murase1, S Tanada, H Mogami

  • 1Department of Radiology, Ehime University School of Medicine, Japan.

Medical Physics
|January 1, 1990
PubMed

Insights

The microsphere model overestimates cerebral blood flow (CBF) when using N-isopropyl-p-[I-123]iodoamphetamine (IMP) due to vascular activity. Accounting for IMP diffusion improves CBF quantification accuracy.

Area of Science:

  • Nuclear Medicine
  • Cerebrovascular Physiology
  • Radiopharmaceutical Kinetics

Background:

  • Cerebral blood flow (CBF) is crucial for diagnosing neurological conditions.
  • N-isopropyl-p-[I-123]iodoamphetamine (IMP) is a radiotracer used for CBF quantification.
  • The microsphere model, assuming no IMP washout, is commonly applied for CBF calculations.

Purpose of the Study:

  • To evaluate the accuracy of the microsphere model for CBF quantification using IMP.
  • To compare the microsphere model with a non-microsphere model that considers IMP diffusion.

Main Methods:

  • Investigated the validity of the microsphere model by comparing it to a non-microsphere model incorporating IMP diffusion.
  • Employed a look-up table method with recursion relations for pixel-by-pixel CBF calculation in the non-microsphere model.
  • Determined average diffusion rate constants for IMP from gray and white matter.

Main Results:

  • The microsphere model overestimated CBF by ~23% in the early phase (0-3.2 min) due to vascular IMP.
  • The microsphere model underestimated CBF by ~15% in a later phase (3.2-6.4 min) due to IMP diffusion.
  • Interpolated microsphere model values approximated non-microsphere model values around 4-5 min post-injection.

Conclusions:

  • The microsphere model's assumption of no IMP washout leads to significant quantification errors in CBF.
  • IMP diffusion from brain tissue to blood must be considered for accurate CBF quantification.
  • A non-microsphere model accounting for diffusion offers a more precise method for IMP-based CBF measurement.

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