MMI, a robotics company dedicated to increasing treatment options and improving clinical outcomes for patients with complex conditions, today announced that its Symani® Surgical System is now commercially available in the United States. The U.S. Food and Drug Administration (FDA) granted De Novo Classification to the robotic system for soft tissue manipulation to perform microsurgery, a highly specialized technique that involves reconnecting tiny vessels to restore blood flow or redirect fluid during reconstruction or repair.
The FDA authorization makes the Symani Surgical System the only commercially available platform in the U.S. for reconstructive microsurgery. The technology is positioned to open the field of microsurgery to new surgeons by quickly developing their skills, as well as to empower skilled microsurgeons to confidently expand into supermicrosurgery, creating a novel category of treatments that the human hand cannot perform without robotic assistance.
“The U.S. is facing a potentially dire shortage of physicians, and that shortage acutely impacts specialized fields of medicine, such as microsurgery,” said Mark Toland, CEO of MMI. “With the authorization from the FDA, our technology will expand its reach to pioneering hospitals in the U.S. It will help those hospitals grow their open surgical programs, expand the number of physicians who can perform these highly complicated procedures, and increase patient access to the most advanced techniques for surgeries in complex disease states, such as lymphedema. Our system will continue to provoke surgeons to challenge their definitions of ‘treatable’ and ‘untreatable’ and empower them to solve cases that have historically been too difficult to treat.”
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Specific techniques used in microsurgery include reconnecting small anatomical structures, such as blood and lymphatic vessels, during open surgical procedures. Supermicrosurgery involves reconstruction or repair of even smaller vessels, typically less than 1mm in diameter, and fewer than 600 surgeons worldwide perform supermicrosurgery today.
The Symani Surgical System provides advanced solutions for a range of open surgeries, including post-mastectomy breast cancer reconstruction, extremity reconstruction using free tissue transfer, and lymphatic system repair.
“By making open surgery less invasive and more precise, we can treat more conditions and offer robotic-assisted surgical options to patients that simply do not exist today,” said Dr. L. Scott Levin, co-CMO of MMI. “Within the next five years, this expanded portfolio of addressable open surgical procedures is expected to exceed the number of eligible laparoscopic, or minimally invasive, procedures that leverage robotic assistance. The authorization from the FDA helps to solve a critical unmet need and will help surgeons perform a new category of complex open surgeries enabled by transformative technology.”
The Symani Surgical System offers surgeons entirely new capabilities because it features the world’s smallest surgical robotic wrist, called NanoWrist. The unique design enables surgeons to replicate the natural movements of the human hand at the micro scale, which encourages a flatter learning curve in the training process. The articulated wrist features seven degrees of freedom that match the human wrist, tremor filtration and motion scaling, ultimately increasing precision and control.
Surgeons have leveraged the Symani Surgical System in nearly 1,000 clinical cases in the European Union and in thousands of preclinical cases around the world. The Symani Surgical System is available for commercial use in Europe and parts of Asia Pacific. MMI plans to immediately launch the technology in the U.S.
About MMI
MMI (Medical Microinstruments, Inc.) is on a mission to advance robotic technology that pushes the limits of soft tissue open surgery and opens new opportunities for surgeons to restore quality of life for more patients with complex conditions. The company was founded in 2015 near Pisa, Italy, and its proprietary Symani Surgical System combines the world’s smallest wristed microinstruments with tremor-reducing and motion-scaling technologies to address significant unmet patient needs across the globe.