Virtual Incision’s groundbreaking work revolves around the development of a first-in-class miniaturized robotically assisted surgical platform, designed to navigate a wide range of soft-tissue procedures. The MIRA Surgical System has benefits over other “mainframe” RAS systems that set it apart in a class of its own, namely miniaturized RAS. The MIRA Surgical System can be deployed anywhere, eliminating the need for dedicated robotic rooms and assigned blocks. Its design simplifies set-up time and optimizes both access to the patient and communication with the operating team, while allowing seamless operating in multiple quadrants. This lightweight, reusable, “out-of-a-tray” design and potential cost reductions hold the promise to allow wider adoption of robotic surgery programs, allowing for more patients to benefit from better outcomes and faster recovery associated with minimally invasive procedures.

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Virtual Incision: MIRA Surgical System

  • Dmitry Oleynikov,
  • Shane Farritor

摘要

Virtual Incision’s groundbreaking work revolves around the development of a first-in-class miniaturized robotically assisted surgical platform, designed to navigate a wide range of soft-tissue procedures. The MIRA Surgical System has benefits over other “mainframe” RAS systems that set it apart in a class of its own, namely miniaturized RAS. The MIRA Surgical System can be deployed anywhere, eliminating the need for dedicated robotic rooms and assigned blocks. Its design simplifies set-up time and optimizes both access to the patient and communication with the operating team, while allowing seamless operating in multiple quadrants. This lightweight, reusable, “out-of-a-tray” design and potential cost reductions hold the promise to allow wider adoption of robotic surgery programs, allowing for more patients to benefit from better outcomes and faster recovery associated with minimally invasive procedures.