Description:
The FITBONE TAA is an innovative and robust medical device developed by WITTENSTEIN intens GmbH, a renowned provider of top-grade medical technology. Primarily, this device is extensively used in complex orthopedic procedures, specifically designed for tibia and femur lengthening and deformity correction surgeries.
The FITBONE TAA exemplifies the harmony between advanced precision engineering and state-of-the-art surgical techniques. As a fully intramedullary, electronically controlled, and distraction osteogenesis-based limb lengthening system, it ensures maximum safety and efficiency during and after surgical procedures.
The functionality of this system is accomplished by a process named 'controlled reaming' in which the bone is separated with surgical precision. Then, the FITBONE TAA is inserted into the medullary canal and an external Control Set is used to guide distraction osteogenesis and subsequent bone regrowth in the desired manner. Its brilliant design permits the exact and specific adjustment of the elongation process according to individual patient requirements.
The FITBONE TAA stands out for its exceptional benefits. It offers precise, continuously adjustable lengthening, which can be tailored to the unique needs of every patient. It is comfortable and minimally invasive, intending to reduce post-surgical pain and speed up recuperation. Furthermore, its accuracy can potentially contribute to better prognoses and more satisfactory outcomes in limb lengthening procedures.
With the FITBONE TAA, WITTENSTEIN intens GmbH reaffirms its commitment to innovative medical devices that improve patient outcomes, harnessing cutting-edge technology to provide advanced and optimized solutions in orthopedic surgery.
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The Arthrex Short Suture Anchors are innovative devices designed and manufactured by Arthrex Inc., a global leader in the field of orthopaedic medical devices. These anchors primarily serve the purpose of securing tendons and ligaments to bone during orthopaedic surgical procedures, which include but are not limited to rotator cuff repair, ligament reconstruction, or labral repair.
Key benefits of the Arthrex Short Suture Anchors include their compact design, making them adaptable to a variety of surgical settings and patient anatomies. The small size does not compromise the strength, as these anchors exhibit a superior pullout strength. Their streamlined insertion process ensures a minimal invasive approach, potentially decreasing operative time and patient recovery duration.
In addition, the Arthrex Short Suture Anchors employ a suture tying mechanism to ensure a secure and stable attachment of soft tissue to bone, thereby boasting higher success rates in treatment outcomes. By choosing Arthrex Inc.'s suture anchors, healthcare professionals can feel confident about the durability and reliability of the product, substantially improving patient prognosis and satisfaction.
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The Nanova Screw-In and Push-In Suture Anchors are innovative medical devices designed by the esteemed NANOVA BIOMATERIALS INC for the purpose of securing soft tissues to bone in Orthopedic surgery. These devices offer a combination of mechanical strength and biocompatibility, increasing overall treatment effectiveness.
These suture anchors made from proprietary bioabsorbable material not only provide robust fixation but also gradually dissolve in the body over a span of time. This eliminates the potential need for device removal surgery.
Key Features and Benefits:
1. Enhanced Bioabsorbability: The suture anchors naturally dissolve in the body over time, reducing the possibility of long-term complications and eliminating the need for subsequent removal surgery.
2. Easy Application: The Nanova Screw-In and Nanova Push-In suture anchors boast an intuitive design that allows for effortless insertion and deployment.
3. Improved Stability: The strong mechanical fixation enhances the stability of the repaired tissue to the bone, permitting better post-surgical rehabilitation and patient recovery.
4. Increased Biocompatibility: The proprietary material used in the construction of these devices exhibits high biocompatibility, thus, raising the standards of patient safety and comfort.