News ID: 196684
Published: 0607 GMT July 15, 2017

CT scans might help gauge heart attack risk

CT scans might help gauge heart attack risk
suncityer.com

A new CT scan analysis may allow doctors to identify blood vessel inflammation before heart problems actually crop up, researchers reported.

Detecting inflammation before it hardens into irreversible plaque could potentially help cardiologists prevent heart attacks, UPI wrote.

Lead researcher Dr. Charalambos Antoniades said, "Currently, CT only tells you whether there are narrowings in the arteries of the heart, but there is no imaging to tell you which one of these narrowings is prone to rupture, a process that would lead to heart attacks.

"The vulnerable narrowings, or plaques, are the highly inflamed ones.

"Detecting inflammation would allow detection of vulnerable patients prone to have heart attacks."

Antoniades and his colleagues developed the diagnostic tool for use with routine computerized tomography (CT) scans.

The measurement — called the CT fat attenuation index (FAI) — is based on changes in the size of fat cells.

Antoniades said, "The new method relies on our discovery that the fat surrounding our heart arteries senses inflammation in the neighboring artery, which results in changes in the fat.

“Half of heart attacks happen following rupture of minor plaques in heart vessels that are highly inflamed but not significantly narrowed.  

“No currently available test identifies this problem.

 

"Now we can detect these people, and if we treat them with aggressive prevention therapies, such as statins, we will be able to prevent heart attacks.”

Results of his team's study were published in the journal Science Translational Medicine.

About 750,000 Americans have a heart attack every year and heart disease causes one in every four deaths in the US, according to a journal news release.

Dr. Byron Lee is director of the electrophysiology laboratories at the University of California, San Francisco.

He said, "Contrary to popular belief, it's typically not the tight lesions in our coronary arteries that lead to the severe and deadly heart attacks.

"Rather, it's the unstable lesions, which previously could only be identified with an invasive or expensive test."

“This study shows that unstable plaque can be identified with a simple CT scan.

"We might now be able to prevent even more heart attacks by intensifying therapy when these unstable lesions are found.”

Dr. Gregg Fonarow, a spokesman for the American Heart Association, said, “But before the technology can move to clinical practice, the test's value must be proven in further studies.

“Additional studies will be required to evaluate the validity, reproducibility, and any potential clinical utility of this index.

“CT scans are already commonly ordered for patients with chest pain.

“So using them for patients at risk for heart attacks would add only a minimal cost to their treatment.”

His team tested the index in samples from more than 450 patients undergoing cardiac surgery.

In addition, 40 patients underwent a more expensive positron emission tomography (PET) scan.

Antoniades said, “These scans showed that an increased attenuation index was tied to a striking amount of blood vessel inflammation.”

Working with 270 additional patients with and without significant coronary plaques, the researchers said the index changed dramatically around damaged vessels in five heart attack survivors.

Antoniades explained that this index is different from tests that measure calcium buildup in blood vessels.

The coronary calcification score only detects hardened arteries when damage has become irreversible.

He said, “It doesn't change with treatment and it can't distinguish which blood vessel plaques are most likely to rupture.

"Calcium measures can be combined with the index, providing additional information and possibly better risk stratification."

Antoniades said he expects an ongoing trial of 2,000 people who have had coronary CT scans will confirm the ability of the method to predict who will die from a heart attack.

   
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