"For the first time, we have shown that we can detect dangerous, high-risk plaque that causes heart attacks and strokes through the use of multidetector computed tomography (CT) imaging and a novel contrast agent," said James H. Rudd, a cardiologist and scientist with the Imaging Sciences Laboratory at Mount Sinai School of Medicine in New York City. Additionally, researchers combined CT imaging with positron emission tomography (PET) imaging, "providing a new way to determine the amount of inflammation within atherosclerotic plaque and the chances of plaque causing a future heart attack or stroke," he noted.
"Using both imaging techniques together—an excellent example of multimodality molecular imaging—gave more information than using them separately," explained Rudd. "Each technique tells us something different about atherosclerosis," he said. With CT imaging and N1177 (a nanoparticulate contrast agent used to improve the effectiveness of CT), researchers "were able to determine the size of plaque, whether it was causing narrowing of the arteries and whether any inflammatory cells were involved," said Rudd. "From the PET scan, we got extra information about whether the plaques were dangerous and whether they could lead to problems for patients," he added. The combined imaging techniques focused "not only on the structure of plaque but also on the underlying molecular biology of the disease in the hope of guiding and monitoring future therapies," said Rudd.
PET is a highly specialized, noninvasive imaging technique that uses short-lived radioactive substances to produce three-dimensional colour images of those substances functioning within the body. Unlike CT, which provides anatomic images, PET scanning provides information about the body's chemistry, metabolic activity and function not available through other procedures.
Rudd explained that the Mount Sinai study was performed using an animal model of atherosclerosis that "behaves" like the disease in humans. Additional research needs to be done with heart disease and stroke patients "to see if our approach gives more information than the traditionally used technique of invasive X-ray coronary angiography," he said.
MEDICA.de; Source: Society of Nuclear Medicine