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Detectability of early brain meningitis with magnetic resonance imaging
V M Runge1, J W Wells, N M Williams
1Magnetic Resonance Imaging and Spectroscopy Center, University of Kentucky, Lexington 40536-0098, USA.
Rationale And Objectives:
The ability of high-field (1.5 T) magnetic resonance imaging (MRI) to detect early brain meningitis was evaluated in a canine model. Contrast dose, timing postinjection, and imaging technique (specifically the use of magnetization transfer) were assessed.
Methods:
Imaging of five canines was performed at 1.5 T 24 hours after injection of Cowans staphylococcus into the cisterna magna. Two control animals also were imaged using the same protocol, with one animal receiving a cisternal injection of nutrient broth only and the other no injection. Contrast doses of 0.1, 0.3, and 0.8 mmol/kg gadoteridol (Gd HP-DO3A or Pro-Hance) were compared. Scans were performed at 2, 12, and 22 minutes after an initial injection of 0.1 mmol/kg. At each time point, paired T1-weighted scans with and without magnetization transfer (MT) were acquired. Thirty minutes after the initial injection of contrast, a supplemental dose of 0.2 mmol/kg was given (for a cumulative dose of 0.3 mmol/kg). Scans were then repeated at 2, 12, and 22 minutes after this dose was administered. A second supplemental contrast injection of 0.5 mmol/kg (for a cumulative dose of 0.8 mmol/kg) was given at 70 minutes, and immediate postinjection scans with and without MT were acquired.
Results:
In the animals receiving a cisternal injection of bacteria, the degree of meningeal enhancement was greatest at 0.8 mmol/kg, intermediate at 0.3 mmol/kg, and least at 0.1 mmol/kg. These conclusions were constant whether imaging was performed with or without MT. Scans in control studies did not demonstrate abnormal meningeal enhancement. High-contrast dose, MT, and acquisition of immediate postcontrast scans all resulted in statistically significant improvement. On masked film review, abnormal meningeal enhancement was noted in only 2 of 5 experimental dogs at a dose of 0.1 mmol/kg (regardless of the use of MT) compared with all animals at a dose of 0.3 mmol/kg. In 18 of 37 dogs (paired scans with and without MT), when abnormal enhancement was noted, the use of MT improved the visualization of abnormal meningeal enhancement.
Conclusions:
In early brain meningitis, high-contrast dose (0.3 mmol/kg), MT, and scanning immediately after injection improve detection of abnormal meningeal enhancement, thus facilitating the diagnosis of meningitis. Of these factors, contrast dose is the most important.
Insights
High-field MRI with higher contrast doses and immediate post-injection scans significantly improve early detection of canine meningitis. Magnetization transfer (MT) also aids visualization of abnormal meningeal enhancement.
Area of Science:
- Veterinary Neurology
- Medical Imaging
- Infectious Diseases
Background:
- Early detection of brain meningitis is crucial for effective treatment.
- High-field (1.5 T) magnetic resonance imaging (MRI) shows promise for diagnosing central nervous system infections.
- Canine models offer a valuable platform for evaluating diagnostic techniques.
Purpose of the Study:
- To evaluate the efficacy of 1.5 T MRI in detecting early brain meningitis in a canine model.
- To assess the impact of contrast dose, post-injection timing, and magnetization transfer (MT) imaging on diagnostic accuracy.
Main Methods:
- Five canines with induced bacterial meningitis and two controls underwent 1.5 T MRI.
- Varying doses of gadoteridol (0.1, 0.3, 0.8 mmol/kg) were administered, with scans acquired at multiple time points post-injection.
- Paired T1-weighted scans with and without MT were performed.
Main Results:
- Meningeal enhancement correlated positively with contrast dose (0.8 > 0.3 > 0.1 mmol/kg).
- Higher contrast doses (0.3 mmol/kg) and immediate post-injection scans significantly improved detection of abnormal enhancement.
- Magnetization transfer (MT) improved visualization of abnormal meningeal enhancement in 18 of 37 paired scans.
Conclusions:
- Optimal detection of early brain meningitis with 1.5 T MRI is achieved using higher contrast doses (0.3 mmol/kg), immediate post-injection scanning, and MT.
- Contrast dose is the most critical factor for enhancing diagnostic sensitivity.