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Published on: January 4, 2013
The advantage of high relaxivity contrast agents in brain perfusion
François Cotton1, Marc Hermier
1MRI Center, Centre Hospitalier Lyon Sud, 69495 Pierre Bénite, France. francois.cotton@chu-lyon.fr
Abstract:
Accurate MRI characterization of brain lesions is critical for planning therapeutic strategy, assessing prognosis and monitoring response to therapy. Conventional MRI with gadolinium-based contrast agents is useful for the evaluation of brain lesions, but this approach primarily depicts areas of disruption of the blood-brain barrier (BBB) rather than tissue perfusion. Advanced MR imaging techniques such as dynamic contrast agent-enhanced perfusion MRI provide physiological information that complements the anatomic data available from conventional MRI. We evaluated brain perfusion imaging with gadobenate dimeglumine (Gd-BOPTA, MultiHance; Bracco Imaging, Milan, Italy). The contrast-enhanced perfusion technique was performed on a Philips Intera 1.5-T MR system. The technique used to obtain perfusion images was dynamic susceptibility contrast-enhanced MRI, which is highly sensitive to T2* changes. Combined with PRESTO perfusion imaging, SENSE is applied to double the temporal resolution, thereby improving the signal intensity curve fit and, accordingly, the accuracy of the derived parametric images. MultiHance is the first gadolinium MR contrast agent with significantly higher T1 and T2 relaxivities than conventional MR contrast agents. The higher T1 relaxivity, and therefore better contrast-enhanced T1-weighted imaging, leads to significantly improved detection of BBB breakdown and hence improved brain tumor conspicuity and delineation. The higher T2 relaxivity allows high-quality T2*-weighted perfusion MRI and the derivation of good quality relative cerebral blood volume (rCBV) maps. We determined the value of MultiHance for enhanced T2*-weighted perfusion imaging of histologically proven (by surgery or stereotaxic biopsy) intraaxial brain tumors (n = 80), multiple sclerosis lesions (n = 10), abscesses (n = 4), neurolupus (n = 15) and stroke (n = 16). All the procedures carried out were safe and no adverse events occurred. The acquired perfusion images were of good quality in all but two patients. Our findings confirm that high relaxivity contrast agents such as MultiHance are ideal for use in perfusion MRI of the central nervous system.
Insights
High relaxivity contrast agents like MultiHance enhance brain perfusion MRI. This advanced technique improves the detection and characterization of various brain lesions, aiding in diagnosis and treatment planning.
Area of Science:
- Neuroradiology
- Medical Imaging
- Pharmacology
Background:
- Accurate characterization of brain lesions is crucial for patient management.
- Conventional MRI with gadolinium contrast agents mainly shows blood-brain barrier disruption, not perfusion.
- Advanced techniques like dynamic contrast-enhanced perfusion MRI offer physiological insights.
Purpose of the Study:
- To evaluate the utility of gadobenate dimeglumine (MultiHance) for brain perfusion imaging.
- To assess the effectiveness of MultiHance in T2*-weighted perfusion MRI for various brain pathologies.
Main Methods:
- Dynamic susceptibility contrast-enhanced MRI with PRESTO perfusion imaging and SENSE acceleration.
- Utilized Philips Intera 1.5-T MR system.
- Evaluated MultiHance in 125 patients with brain tumors, MS lesions, abscesses, neurolupus, and stroke.
Main Results:
- MultiHance demonstrated high T1 and T2 relaxivities, superior to conventional agents.
- Higher T1 relaxivity improved detection of blood-brain barrier breakdown and lesion conspicuity.
- Higher T2 relaxivity enabled high-quality T2*-weighted perfusion MRI and relative cerebral blood volume (rCBV) map generation.
- Perfusion images were of good quality in most patients, with no adverse events.
Conclusions:
- High relaxivity contrast agents like MultiHance are ideal for central nervous system perfusion MRI.
- MultiHance enhances the diagnostic accuracy of perfusion imaging for diverse brain lesions.
- This technique aids in better therapeutic strategy planning and prognosis assessment.
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