Noninvasive detection of radiation-induced optic neuropathy by manganese-enhanced MRI

Samuel Ryu1, Stephen L Brown, Andrew Kolozsvary

  • 1Department of Radiation Oncology, Henry Ford Hospital, Detroit, Michigan 48202, USA. sryul@hfhs.org

Radiation Research
|April 23, 2002
PubMed

Insights

This study demonstrates that manganese-enhanced MRI can noninvasively detect radiation-induced optic neuropathy in rats. The technique visualizes neuronal damage, including axonal loss and demyelination, offering a new method for assessing brain injury.

Area of Science:

  • Neuroimaging
  • Radiology
  • Neuro-oncology

Background:

  • Current imaging lacks sensitivity for detecting radiation-induced brain injury.
  • Noninvasive methods for structural or functional neuronal damage are unavailable.

Purpose of the Study:

  • To determine if MRI with manganese chloride (MnCl2) can detect radiation-induced optic neuropathy.
  • To establish a noninvasive method for visualizing neuronal damage.

Main Methods:

  • Fischer 344 rats received a single 35 Gy radiation dose to induce optic neuropathy.
  • T1-weighted MRI with vitreous MnCl2 injection was performed 6 months post-irradiation.
  • Histological analysis included H&E, GFAP, LFB/PAS, and Bielschowski silver stain.

Main Results:

  • Control rats showed optic nerve enhancement from orbit to optic chiasm with MnCl2.
  • Irradiated rats exhibited loss of MnCl2 enhancement at the irradiation site.
  • Histology confirmed axonal loss and demyelination correlating with MRI findings.

Conclusions:

  • Manganese-enhanced MRI noninvasively detects radiation-induced optic neuropathy.
  • The technique visualizes axonal degeneration and demyelination via negative contrast.
  • This method offers a potential tool for assessing neuronal pathway integrity after radiation exposure.