Picosecond laser scalpel could lead to near-scarless surgery
Toronto, ON, Canada--Researchers at the University of Toronto (U of T) and the Hospital for Sick Children (SickKids) have developed a novel laser technique that could allow surgeons to cut tissue with more precision than ever before, significantly reducing recovery times and scarring after surgery. "Healing times depend on the wound size," said U of T professor Dwayne Miller of chemistry and physics and the Institute for Optical Sciences. "All surgeries today lead to scar tissue with loss of some function. We knew the new laser approach, based on selectively energizing water in biological tissue faster than ever before, would be the most gentle means of cutting tissue."
Miller, co-principal investigator of a new study published online in PLoS ONE, and his colleagues at SickKids compared a new surgical laser called Picosecond IR Laser (PIRL) with conventional surgical lasers and traditional surgical tools, such as scalpels. They found that using the PIRL in mice resulted in minimal scarring; in fact, the scars that resulted from this technique were half the width of those produced by traditional methods. The wounds also appeared to heal faster with PIRL surgery.
"We were hoping to cut at speeds comparable to mechanical tools such as a scalpel. We never dreamed we could cut with far less damage than the surgical gold standard," Miller said. "We can really now do surgery at the level of a single cell without inflicting damage past one cell line, the fundamental limit to surgery—like the atom for chemistry and biology."
"One of the major stumbling blocks in using lasers for surgery is the collateral damage that is usually caused by thermal and shock waves to the area," said Professor Benjamin Alman of surgery and head of the Division of Orthopaedic Surgery at SickKids, co-principal investigator of the study. "Traditional lasers tend to burn the tissue but PIRL superheats the cutting area quicker. It vaporizes the tissue, resulting in less destruction to the cells. Achieving minimal scarring is beneficial to patients, especially in cases where scarring can be particularly debilitating," said Alman. "By reducing healing time, this new surgical method could also result in increased patient comfort and lower risk of secondary infections due to surgery."
Researchers say this new technique looks promising and clinical trials in adult patients could take place as early as next year.
SOURCE: University of Toronto; www.news.utoronto.ca/health-and-medicine/novel-laser-technique-could-lead-to-near-scarless-surgery.html

Gail Overton | Senior Editor (2004-2020)
Gail has more than 30 years of engineering, marketing, product management, and editorial experience in the photonics and optical communications industry. Before joining the staff at Laser Focus World in 2004, she held many product management and product marketing roles in the fiber-optics industry, most notably at Hughes (El Segundo, CA), GTE Labs (Waltham, MA), Corning (Corning, NY), Photon Kinetics (Beaverton, OR), and Newport Corporation (Irvine, CA). During her marketing career, Gail published articles in WDM Solutions and Sensors magazine and traveled internationally to conduct product and sales training. Gail received her BS degree in physics, with an emphasis in optics, from San Diego State University in San Diego, CA in May 1986.