Robotic-assisted surgical technologies are revolutionising the field of orthopaedic surgery.

These systems offer unprecedented precision, efficiency, and safety by integrating advanced robotic navigation with real-time data.

This technological leap addresses the limitations of traditional surgical methods, providing a more detailed and interactive approach to surgery.

The ability to perform robotically guided resections and utilise preplanned implant placements reduces the margin for error, minimises complications, and enhances patient outcomes.

Robotic-assisted systems streamline surgical workflows, reduce operative times, and improve the overall efficiency of surgical teams.

They also facilitate less invasive procedures, leading to quicker patient recovery times and reduced hospital stays.

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The transformative potential of these technologies is vast, as they not only improve current surgical practices but also pave the way for new surgical techniques and innovations.

With US Food and Drug Administration (FDA) clearances secured, Globus Medical is set to increase production and commence commercial launch of these systems.

The precision, efficiency, and flexibility of the ExcelsiusFlex and ACTIFY 3D systems provide a best-in-class solution for surgeons, potentially leading to improved patient outcomes and streamlined surgical workflows.

The ExcelsiusFlex platform is designed to support primary total knee arthroplasty by offering robotically guided resections based on preplanned implant placement.

This system includes features such as multiple workflows and jig-less resections, providing surgeons with greater control and flexibility during procedures.

Engineered for both strength and versatility, the platform supports manual and robotic-assisted workflows and integrates a comprehensive suite of implants and instruments.

Robotic-assisted surgical technologies, exemplified by Globus Medical’s ExcelsiusFlex and ACTIFY 3D Total Knee Systems, hold transformative potential in the field of orthopaedic surgery.

The precision of robotic-assisted systems minimises the risk of complications, including improper implant placement or accidental damage to surrounding tissues.

By streamlining surgical workflows, reducing operative times, and minimising complications, these technologies promise significant improvements in patient outcomes and overall surgical efficiency, heralding a new era in medical innovation.