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Published on: September 7, 2018
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.
Abstract:
Perfusion magnetic resonance imaging (MRI), specifically dynamic susceptibility MRI (DSC-MRI) is routinely performed as a supplement to conventional MRI in human medicine for patients with intracranial neoplasia and cerebrovascular events. There is minimal data on the use of DSC-MRI in veterinary patients and a DSC-MRI protocol in the veterinary patient has not been described. Sixteen normal dogs, 6 years or older were recruited for this study. The sample population included 11 large dogs (>11 kg) and 5 small dogs (<11 kg). DSC-MRI was performed on a 1.5-T MRI using an adjusted protocol inherent to the MRI. Contrast media was injected using an automatic power injector. Injections were made after five MR measurements were obtained. Following image acquisition, an arterial input function (AIF) graph mapping the transit time of contrast within the cerebral arteries was generated. The manually selected time points along this graph were used to compute perfusion maps. A dose and rate of 0.1 mmol/kg gadolinium-based contrast media at 3 ml/s followed by 10 ml saline flush at 3 ml/s was used in all dogs greater than 11 kg. In all dogs >11 kg, a useable AIF and perfusion map was generated. One dog less than 11 kg received the same contrast dose and rate. In this patient, the protocol did not generate a useable AIF. The remainder of the dogs less than 11 kg followed a protocol of 0.2 mmol/kg gadolinium-based contrast media at 1.5 ml/s with a 10 ml saline flush at 1.5 ml/s. A useable AIF and perfusion map was generated in the remaining dogs <11 kg using the higher contrast dose and slower rate protocol. This study establishes a contrast dose and administration rate for canine DSC-MRI imaging that is different in dogs greater than 11 kg compared to dogs less than 11 kg. These protocols may be used for future applications to evaluate hemodynamic disturbances in canine intracranial pathology.
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.

