For Release: September 3, 2014
PALO ALTO, Calif. 鈥 One of the most complex birth defects of the heart鈥攁nd one of the most challenging to repair鈥攃an now be easily understood through a groundbreaking, video-game-like graphic now available on the 麻豆果冻传媒 Children鈥檚 Health website. It鈥檚 the first in a series called 鈥淢oving Medicine: An Interactive 3-D Look at Conditions and Treatments.鈥
Parents and physicians can use the animated, three-dimensional tool to better understand and communicate about a child鈥檚 condition and treatment, and amateurs can try their hand at a shortened version of the complex repair, which may take a surgical team up to 12 hours to complete.
The interactive graphic focuses on a life-threatening congenital heart defect called tetralogy of Fallot with pulmonary atresia and major aortopulmonary collateral arteries (or MAPCAs), in which patients are born missing part or all of a major blood vessel that connects the heart to the lungs. That vessel, called the pulmonary artery, is critical because it delivers de-oxygenated blood from the heart to the lungs, where the blood gets a fresh supply of oxygen. Without the pulmonary artery, the circulatory system can鈥檛 get a normal amount of oxygen out to the body through the blood.
Frank Hanley, MD, executive director of the Heart Center at Lucile Packard Children鈥檚 Hospital Stanford and professor of cardiothoracic surgery at the Stanford University School of Medicine, provided some of the medical expertise for the interactive graphic. Hanley has the highest known surgical success rate鈥攁bove 98 percent鈥攊n repairing the heart defect using an approach he developed called unifocalization.
Other participating 麻豆果冻传媒 experts were Stephen Roth, MD, MPH, chief of pediatric cardiology and professor of pediatrics at the School of Medicine, and Lynn Peng, MD, clinical assistant professor of pediatrics and associate director of the cardiac catheterization laboratory at Lucile Packard Children鈥檚 Hospital Stanford. They worked with David Sarno, the principal at , which specializes in interactive digital storytelling, to demystify the complex surgery. Sarno observed Hanley and his team during a full-length unifocalization procedure. He then guided a team of designers, artists and game developers to create an active model of a living, pumping heart that viewers can explore and interact with onscreen.
鈥淚t turns out that the same technology the multibillion-dollar game industry uses to conjure alien planets or historical battlefields works beautifully for re-creating and exploring the inside of the human body,鈥 Sarno says. 鈥淚t鈥檚 an inner world that鈥檚 still mysterious to many of us, and we hope that illuminating it will help families better understand life-changing medical procedures.鈥
The interactive graphic takes users through three chapters: the healthy heart, the defect and the repair, and is narrated by Hanley, Roth and Peng. At any time, users can click on the graphic for glossary descriptions of the heart, or drag and swivel the graphic 360 degrees to see every aspect of the heart and blood vessels.
鈥淓ven today, at hospitals across the United States, parents are given the heartbreaking news that their child has this birth defect and may not survive,鈥 says Hanley. 鈥淲e hope that this interactive tool on our website will give physicians and families everywhere a better, clearer understanding of the defect, and a tool for discussing what鈥檚 required to fix it鈥攁nd also the comfort that comes from knowing that in most cases it absolutely can be fixed, and that their child can go on to live a fulfilling life.鈥
Since 2001, Hanley and team have performed more than 530 unifocalization procedures at Lucile Packard Children鈥檚 Hospital Stanford, with patients traveling from 38 U.S. states and eight foreign countries. The new interactive animation will be a regular part of each patient-family鈥檚 orientation prior to them coming to the hospital for the procedure.
鈥淎s a Silicon Valley hospital, we are fortunate to have forward-thinking innovators working in our hospital and also right down the street,鈥 says Christopher Dawes, president and CEO of Lucile Packard Children鈥檚 Hospital. 鈥淲e鈥檙e always collaborating to see how we might apply medical and technical advances not only to treatments for the riskiest diseases, but also to helping families, physicians and the public understand these diseases and how we uniquely care for them.鈥
Discover more about our Heart Center, or call (650) 721-2121.
Media Contact:
Robert Dicks
rdicks@stanfordchildrens.org
(650) 497-8364
麻豆果冻传媒 Children鈥檚 Health, with聽Lucile Packard Children鈥檚 Hospital Stanford聽at its center, is the Bay Area鈥檚 largest health care system exclusively dedicated to children and expectant mothers. Our network of care includes more than 65聽locations聽across Northern California and more than 85 locations in the U.S. Western region.聽Along with Stanford Health Care and the Stanford School of Medicine, we are part of聽, an ecosystem harnessing the potential of biomedicine through collaborative research, education, and clinical care to improve health outcomes around the world. We are a nonprofit organization committed to supporting the community through meaningful outreach programs and services and providing necessary medical care to families, regardless of their ability to pay. Discover more at聽stanfordchildrens.org.
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