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UVA Launches 1st Test of Focused Ultrasound to Destroy Breast Tu - NBC29 WVIR Charlottesville, VA News, Sports and Weather

UVA Launches 1st Test of Focused Ultrasound to Destroy Breast Tumors

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University of Virginia researchers are looking for women with noncancerous breast tumors to take part in the first American study of a new treatment.

Doctors are using a focused ultrasound machine to target benign breast lumps with ultrasound energy that destroys the tumors. Over the next two years, UVA researchers plan to study its use in about 20 women who have growing breast tumors or painful lumps.

The focused ultrasound allows women to avoid surgery to remove the tumor.

“We're using the ultrasound machine to guide us to the mass and the same ultrasound machine to then focus the energy at enough power that it destroys the tumor from within. So the end result is no scar for a patient,” said UVA radiologist Dr. Carrie Rochman.

Doctors say the ultrasound technology also reduces recovery time.

For more information about participating in the study, call clinical research coordinator Katie Rea, RN, at 434-243-0315.

University of Virginia Press Release:

CHARLOTTESVILLE, Va., Aug. 25, 2014 – Expanding its pioneering work in the field of focused ultrasound, the University of Virginia Health System has launched the nation's first clinical trial testing the technology's potential to treat benign tumors of the breast known as fibroadenomas.

Fibroadenomas are the most common type of lump within the breast. They often appear in young women, occurring most frequently between the ages of 15 and 35. While fibroadenomas are harmless and non-cancerous, many women consider them bothersome and wish to have them removed. “Currently, the only way to make the lump go away is to do an operation,” explained David R. Brenin, MD, lead investigator of UVA's trial. “You make an incision and remove the mass, but it leaves a scar. After the operation there is no lump, but the patient has a scar.”

Brenin and his colleagues are testing whether high-intensity focused ultrasound could offer a safe and effective alternative to surgery, one that would leave no scar. “The device is already approved for non-invasive surgery in Europe by their version of the FDA, but this is the first time it has been tested in the U.S. for treatment of fibroadenomas, or for any type of breast tumor,” Brenin said.

About Focused Ultrasound

The high-intensity focused ultrasound, in essence, concentrates sound waves to generate heat, much like a magnifying glass can focus light. By focusing those sound waves on fibroadenomas, the UVA researchers can make them go away without needing to cut into the body. “The great benefit of this approach is that we have real-time visualization, so we can watch as we perform the procedure to target exactly where we want to target,” said UVA researcher Carrie Rochman, MD. The trial represents an important collaboration of her department, radiology, and Brenin's department, surgery.

UVA expects to test the safety and efficacy of the procedure in 20 trial participants within the next year. “This is the first step of evaluating the device to treat tumors of the breast non-surgically,” Brenin said. “Ultimately, the goal is not just to treat fibroadenomas but to treat other, malignant breast tumors.”

Cutting-Edge Research

The new trial expands UVA's groundbreaking research into the potential applications of the scalpel-free focused ultrasound technology. UVA neurosurgeon Jeffrey Elias, MD, first tested focused ultrasound in 15 volunteers with essential tremor, a common movement disorder. All 15 reported “significant improvement” in their hand tremor and in their quality of life. Elias has since launched a larger, international trial and is also evaluating the technology for its potential to reduce shaking associated with Parkinson's disease.

FOR POTENTIAL TRIAL PARTICIPANTS:

People interested in being considered as volunteers for the fibroadenoma trial should contact Katie Rea, RN, clinical research coordinator, at 434.243.0315. The trial is IRB No. 17277.

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