Quantitative and dynamic MRI of neuroprotection in experimental stroke

Y Pan1, E H Lo, K Matsumoto

  • 1Department of Radiology, Harvard Medical School, Massachusetts General Hospital, Charlestown 02129, USA.

Insights

This study demonstrates that MRI can effectively measure neuroprotection in stroke models. MK801, an NMDA antagonist, significantly reduced ischemic lesion volumes in rabbits, showing promise for stroke treatment.

Area of Science:

  • Neuroscience
  • Radiology
  • Pharmacology

Background:

  • Histological endpoints are traditional for measuring neuroprotection in experimental stroke models.
  • In vivo and dynamic MRI offer advanced quantitative assessment capabilities.

Purpose of the Study:

  • To quantify the neuroprotective effects of MK801 using in vivo and dynamic MRI in a rabbit stroke model.
  • To compare MRI-derived lesion volumes with histological infarct volumes.
  • To assess perfusion deficits using dynamic MRI.

Main Methods:

  • A rabbit model of focal cerebral ischemia was induced (4h occlusion, 6h reperfusion).
  • Spin-echo T2-weighted (T2W) MRI quantified ischemic lesion volumes.
  • Dynamic susceptibility-contrast MRI assessed perfusion deficits.
  • Tetrazolium staining provided histological correlates of infarction.

Main Results:

  • MK801 treatment significantly reduced T2W MRI-defined lesion volumes compared to controls (7.3% vs 20.7%, p < 0.05).
  • MRI lesion volumes strongly correlated with histological infarct volumes (r = 0.766, p = 0.004).
  • Dynamic MRI revealed delayed hypoperfusion, with MK801 showing a trend towards improvement (p = 0.128).

Conclusions:

  • In vivo and dynamic MRI are valuable tools for quantifying neuroprotection in experimental stroke.
  • MK801 demonstrated significant neuroprotective effects in this rabbit model.
  • MRI measurements of lesion volume are reliable and correlate well with histological outcomes.

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