Dynamic Susceptibility Contrast Magnetic Resonance Imaging Protocol of the Normal Canine Brain

Krystina L Stadler1, Anthony P Pease1, Elizabeth A Ballegeer1

  • 1Department of Small Animal Clinical Sciences, Michigan State University College of Veterinary Medicine , East Lansing, MI , USA.

Insights

This study established specific dynamic susceptibility MRI (DSC-MRI) protocols for dogs, differentiating contrast dose and administration rates based on weight. These findings enable better evaluation of canine brain conditions using DSC-MRI.

Area of Science:

  • Veterinary Radiology
  • Neuroimaging
  • Medical Physics

Background:

  • Dynamic susceptibility MRI (DSC-MRI) is a standard neuroimaging technique in human medicine.
  • Its application and specific protocols in veterinary patients, particularly dogs, are not well-established.
  • Minimal data exists on DSC-MRI for intracranial pathologies in canines.

Purpose of the Study:

  • To describe and establish a DSC-MRI protocol for normal adult dogs.
  • To determine optimal contrast media dose and administration rate for canine DSC-MRI.
  • To enable future research into hemodynamic disturbances in canine intracranial diseases.

Main Methods:

  • Sixteen normal dogs (≥6 years) were scanned using a 1.5-T MRI.
  • An adjusted DSC-MRI protocol was employed with an automatic power injector for contrast media.
  • Protocols were stratified by dog weight: >11 kg received 0.1 mmol/kg at 3 ml/s, <11 kg received 0.2 mmol/kg at 1.5 ml/s, both with saline flush.

Main Results:

  • Usable arterial input function (AIF) graphs and perfusion maps were generated in all dogs >11 kg using the initial protocol.
  • The initial protocol failed in one small dog (<11 kg), necessitating a revised protocol.
  • The revised protocol (higher dose, slower rate) successfully generated usable AIF and perfusion maps in all remaining small dogs.

Conclusions:

  • A weight-dependent contrast media dose and administration rate protocol for canine DSC-MRI was successfully established.
  • The study provides distinct protocols for large (>11 kg) and small (<11 kg) dogs.
  • These established protocols can be utilized for future investigations of hemodynamic alterations in canine brain pathologies.