The objective of this study is to validate 2 multi-contrast sequences, namely the Multi-contrast ATherosclerosis Characterization (MATCH) and Bright-blood and black-blOOd phase SensiTive (BOOST) inversion recovery sequence for the quantification of atherosclerotic plaque components with conventional multi-sequence MRI and histology.
Rationale: Rupture of a vulnerable atherosclerotic plaque is the most important cause of stroke and myocardial infarction. Magnetic Resonance Imaging (MRI) with its high soft tissue contrast is well suited for atherosclerotic plaque imaging to identify high-risk plaques. High soft tissue contrast enables the visualisation of different plaque components based on which the plaque can be classified as stable or vulnerable. To identify the various plaque components, in a conventional MRI examination multiple MRI sequences are acquired, which can take approximately 30-40 minutes. This can be uncomfortable for the patient and it is impractical in daily clinical practice. As an alternative, multi-contrast sequences have recently been developed which acquire multiple contrast weightings simultaneously, significantly reducing the scan time (\< 6 minutes). Apart from a reduction in scan time, because these contrast weightings are acquired simultaneously, they are inherently co-registered which is not the case with conventional sequences. Objective: The objective of this study is to validate 2 multi-contrast sequences, namely the Multi-contrast ATherosclerosis Characterization (MATCH) and Bright-blood and black-blOOd phase SensiTive (BOOST) inversion recovery sequence for the quantification of atherosclerotic plaque components with conventional multi-sequence MRI and histology. Study design: cross-sectional validation study Study population: 40 patients with a carotid artery plaque ≥2 mm based on ultrasound or Computed Tomography Angiography. Intervention (if applicable): not applicable Main study parameters/endpoints: the presence and volumetric measures of plaque components (fibrous tissue, lipid-rich necrotic core, intraplaque hemorrhage and calcifications) and volumetric measures of the vessel wall and lumen as assessed with multi-contrast MRI will be compared to those as assessed by conventional multisequence MRI and, if available, histology of the surgically removed specimen in patients that are scheduled for carotid endarterectomy.
Study Type
OBSERVATIONAL
Enrollment
40
Maastricht University Medical Center
Maastricht, Limburg, Netherlands
RECRUITINGPresence of Intra Plaque Hemorrhage (IPH)
The primary objective is to investigate the level of agreement between scoring presence of IPH on MR images acquired with MP-RAGE (conventional sequence) with scoring IPH on the multi-contrast sequences. The level of agreement will be assessed by calculating Cohen's k.
Time frame: through study completion, an average of 6 months
Scoring the presence of other plaque tissues
In addition, we will report the sensitivity and specificity of scoring the presence of IPH, a LRNC, calcifications, a thin or rupture fibrous cap, and ulcerations using the multi-contrast images with the scores based on the conventional multi-sequence images as reference standard.
Time frame: through study completion, an average of 6 months
Calculate correlation between plaque tissues
To study the correlation between the vessel wall and luminal volume and volumes of calcifications, LRNC and IPH as delineated on the multi-contrast sequences versus the conventional multisequence MRI protocol.
Time frame: through study completion, an average of 6 months
Correlation between plaque tissues components and histology
To study the correlation between the presence/volume of calcifications, LRNC, thin or ruptured fibrous cap, ulcerations and IPH as quantified using the multi-contrast MRI sequences and histology.
Time frame: through study completion, an average of 6 months
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