Virtual Incision
1501 Old Cheney Rd, Lincoln, Nebraska, 68512, United States
Overview
Virtual Incision is developing MIRA, a compact, drape- and dock-free miniaturized robotic-assisted surgery system designed to deliver internal triangulation and full wrist articulation inside the body. The device is lightweight and portable so it can be used in any operating room without a dedicated mainframe room. MIRA is an investigational device; the company completed an IDE clinical study for bowel resection and has a De Novo request under substantive FDA review. Virtual Incision holds over two hundred patents and patent applications and is focused on expanding access to RAS in routine and high-volume procedures, including outpatient and ambulatory settings. The company plans a limited launch of MIRA across select U.S. centers if marketing authorization is granted and will run a gynecologic clinical study planned for 2024. It is also developing a smaller minibot iteration with a first-in-human clinical study expected next year and will support a NASA–University of Nebraska–Lincoln collaboration to demonstrate telesurgery on the ISS. Virtual Incision is developing the MIRA (“miniaturized in vivo robotic assistant”) Surgical Platform, a small self-contained device inserted through a single midline umbilical incision to support multi-quadrant abdominal laparoscopic procedures. The technology is designed to work with existing minimally invasive tools and techniques, avoid the need for a dedicated operating room or specialized infrastructure, and to be significantly less expensive than existing robotic systems. The company recently reported the world’s first surgery using MIRA—a robotically assisted right hemicolectomy—performed under an FDA Investigational Device Exemption as part of a clinical study at a limited number of U.S. hospitals. Virtual Incision is developing a family of mini-robots for additional procedures including hernia repair, gallbladder removal, hysterectomy, and sleeve gastrectomy. The company holds foundational intellectual property with more than 200 patents and applications. Virtual Incision is headquartered in Lincoln, Neb., and recently raised financing to advance its regulatory, clinical, commercialization, and R&D programs. Virtual Incision develops the MIRA (“miniaturized in vivo robotic assistant”), a two-pound robotic platform for minimally invasive abdominal surgery. The company emphasizes MIRA’s portability and affordability compared with many existing, much larger surgical robots. VIC positions the device to expand access to minimally invasive procedures and improve patient outcomes. CEO John Murphy said the company believes the portable and affordable abdominal robot can bring these benefits to many more patients. The company plans an IDE clinical study with the FDA as the critical next step and will use recent funding to ready the device for commercialization. The latest financing brings the company’s total funding to $51 million. Virtual Incision is developing a small, self-contained robotically assisted surgical device (RASD) designed to be inserted through an umbilical incision to perform multi-quadrant abdominal procedures. The platform leverages artificial intelligence and machine learning to track and guide instrument usage and includes the company’s robotic flex tip laparoscope controlled by the surgeon. The company emphasizes compatibility with existing surgical tools and techniques and a design that does not require a dedicated operating room or specialized infrastructure. Virtual Incision says its technology has foundational intellectual property including over 140 patents and applications and was used outside the U.S. in 2016 in a safety and feasibility colon resection trial. The company is a University of Nebraska spinout based in Lincoln, Nebraska, and Pleasanton, California, and its devices are investigational and not commercially available. Virtual Incision recently raised an $18 million Series B to support development toward FDA 510(k) submission and near-term milestones including FDA clearance, U.S. team building, a surgeon training center at UNMC, and a China joint venture. Virtual Incision develops a first-of-its-kind miniaturized robotically assisted surgical device designed to be inserted in its entirety through a single abdominal incision to enable minimally invasive general surgery. The platform is designed to utilize existing tools and surgeon techniques, avoid dedicated operating-room infrastructure, and be significantly smaller and less expensive than current mainframe robotic systems. The company says the system could enable minimally invasive approaches to procedures that are typically performed open today, with potential to improve clinical outcomes and health-care costs. Its investigational device is supported by more than 90 pending and granted patents and 70 comparative medicine studies, and the technology is a spinout of the University of Nebraska. Virtual Incision plans to use the recently closed $11.2 million equity financing to fund a feasibility study of the robot for colon resection procedures. The device is not commercially available; the company is based in Lincoln, Neb. and Pleasanton, Calif.
- Total raised
- $127M
- Funding rounds
- 7
- Latest round
- Series C
- Latest activity
- Sep 2023
Industries
- Advanced Materials
- Developer Platform
- Health Care
- Robotics
Recent funding
Series C
Sep 2023
$30M
Series C
Nov 2021
$46M
Series B
Jan 2020
$20M
Series B
Dec 2017
$18M
Equity
Aug 2015
$11M