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Updated: Dec 30, 2025

Microwave-driven Synthesis of Iron Oxide Nanoparticles for Fast Detection of Atherosclerosis
Published on: March 22, 2016
Simultaneous MRI water-fat separation and quantitative susceptibility mapping of carotid artery plaque pre- and
Pascal P R Ruetten1, Alison D Cluroe2, Ammara Usman1
1Department of Radiology, University of Cambridge, Cambridge, United Kingdom.
Purpose:
Imaging carotid artery plaques to identify features of vulnerability typically requires a multicontrast MRI protocol. The identification of regions of inflammation with ultrasmall superparamagnetic iron oxide (USPIO) nanoparticles requires separate pre- and postcontrast scans. We propose a method of joint water-fat separation and quantitative susceptibility mapping (QSM) to aid classification of atherosclerotic plaques and offer a positive contrast mechanism in USPIO-imaging.
Methods:
Ten healthy volunteers (3 women and 7 men; aged, 30.7 ± 10.7 years) were imaged at 1.5T to develop an acquisition and postprocessing protocol. Five patients (1 woman and 4 men; mean age, 71 ± 7.5 years) with moderate to severe luminal stenosis were imaged pre- and postadministration of a USPIO contrast agent. We used a multiecho gradient echo acquisition to perform water/fat separation and subsequently QSM. The results were compared with a conventional multicontrast MRI protocol, CT images, and histopathology data.
Results:
In the volunteer scans, a multiecho gradient echo acquisition with bipolar readout gradients demonstrated to be a reliable acquisition methodology to produce high-quality susceptibility maps in conjunction with the proposed postprocessing methodology. In the patient study, water/fat separation provided a tool to identify lipid-rich necrotic cores and QSM provided a qualitative and quantitative evaluation of plaque features and positive contrast when evaluating USPIO uptake. Plaque calcification could be identified by strong diamagnetism (-1.27 ± 0.71 ppm), while USPIO uptake demonstrated a strong paramagnetism (1.32 ± 0.61 ppm).
Conclusion:
QSM was able to identify multiple plaque features in a single acquisition, providing positive contrast for plaques demonstrating USPIO uptake and negative contrast for calcification.
Insights
This study introduces a new MRI method for analyzing carotid artery plaques. It combines water-fat separation and quantitative susceptibility mapping (QSM) to identify plaque features and inflammation with ultrasmall superparamagnetic iron oxide (USPIO) nanoparticles in a single scan.
Area of Science:
- Medical imaging
- Cardiovascular research
- Nanotechnology in medicine
Background:
- Carotid artery plaque vulnerability assessment typically requires multiple MRI sequences.
- Identifying inflammation using ultrasmall superparamagnetic iron oxide (USPIO) nanoparticles necessitates separate pre- and post-contrast scans.
- A unified approach is needed to streamline plaque analysis and USPIO imaging.
Purpose of the Study:
- To develop a joint water-fat separation and quantitative susceptibility mapping (QSM) method for atherosclerotic plaque classification.
- To enable positive contrast imaging for USPIO uptake in carotid plaques.
- To improve the identification of vulnerable plaque features using MRI.
Main Methods:
- Developed and validated a multiecho gradient echo acquisition with bipolar readout gradients.
- Applied water/fat separation and QSM postprocessing to images from healthy volunteers and patients with carotid stenosis.
- Compared results with conventional multicontrast MRI, CT, and histopathology.
Main Results:
- The proposed method reliably produced high-quality susceptibility maps in volunteers.
- Water/fat separation identified lipid-rich necrotic cores in patient plaques.
- QSM provided qualitative and quantitative evaluation of plaque features, distinguishing calcification (diamagnetism) from USPIO uptake (paramagnetism).
Conclusions:
- Quantitative susceptibility mapping (QSM) can identify multiple carotid plaque features in a single MRI acquisition.
- The method offers positive contrast for USPIO uptake and negative contrast for calcification.
- This integrated approach enhances the characterization of atherosclerotic plaques and USPIO-guided imaging.
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