At the Emineo Private Hospital Orthopedic Robotic Surgery Center, knee and hip replacements are performed with the support of ROSA®, one of the most modern, globally safe, American-developed surgical robotic assistants. The robot’s continuously updated artificial intelligence, based on hundreds of thousands of surgeries, provides surgeons with real-time information: It performs comprehensive 3D imaging and tissue assessment before, during, and after surgery, helping to ensure that the implant is tailored to the individual patient and that knee ligament balance is achieved with minimal tissue damage.
The result: faster recovery, more comfortable, natural movement, and longer-term stability for the patient.
In the case of knee prostheses, the ROSA® robot helps to balance the hip-knee-ankle axis, thereby maximizing both the stability and freedom of movement of the prosthesis. The robotic assistant performs a comprehensive tissue assessment before, during, and after surgery, helping to achieve knee ligament balance with minimal tissue damage and a natural feeling of movement after surgical regeneration.
Prostheses selected and implanted taking into account individual anatomical and kinematic characteristics reduce the risk of early loosening. This results in longer-term comfort and more natural movement, as there is no need to compromise between stability and freedom of movement.
In robot-assisted hip replacement surgery, the goal is to accurately restore the hip’s center of rotation and the distance between the femur and pelvis so that the hip prosthesis feels as natural as possible and the hip’s muscle strength is maximized. This prevents pain and limping, and speeds up rehabilitation. Accurate restoration of limb length is also important from an aesthetic point of view, and eliminating limb length differences helps to avoid back problems.
Prostheses selected and implanted taking into account individual anatomical and kinematic characteristics reduce the risk of early loosening. This results in longer-term comfort and more natural movement, as there is no need to compromise between stability and freedom of movement.
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