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PLLA implant absorbed by the body over time and is MRI compatible
Cannulated implant for accurate one handed operation.
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Company:
Date:
August 19, 2008
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The new Contour™ Meniscus Arrow™ implant is indicated for the repair of vertical, longitudinal "Bucket-Handle" tears of the meniscus in the vascular zone (red-red-white) through arthroscopic and open methods. The Contour™ Meniscus Arrow™ implant features a low profile contoured head, which sinks into the meniscus while compressing the tear. It is barbed along the entire length of the implant shaft for superior fixation strength.
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Company:
Date:
August 19, 2008
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The FAST-FIX Meniscal Repair System is the only product of its kind - an implant system that offers the fixation strength of a vertical mattress stitch without the invasive surgical procedure normally required for suture-based repairs.
Thanks to its preloaded implants, pre-tied self-sliding knot, and innovative pusher/cutter device, the FAST-FIX System lets you deploy two implants vertically or horizontally, tighten the suture, and trim the excess. And because the system contains no hard device heads, trauma to the patient's articular catilage is minimized.
The FAST-FIX AB System uses the same
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Company:
Date:
August 19, 2008
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The Collagen Meniscus Implant (CMI) is a type I collagen implant designed for patients with an irreparable meniscus tear or loss of meniscus tissue, typically through an arthroscopic partial meniscectomy procedure. The purpose of the CMI is to assist patients to regain mobility and return to a more vigorous lifestyle, while forestalling or minimizing degenerative joint disease. The Collagen Meniscus Implant is a method of regenerating meniscus tissue using the body's own healing process. A next generation approach to tissue repair, the CMI assists the body to generate new tissue, which replace
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Company:
Date:
August 19, 2008
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The Menaflex™ collagen meniscus implant (formerly CMI®) is a resorbable collagen-based surgical mesh composed primarily of type I collagen. It serves to reinforce damaged or weakened tissue and provides a resorbable scaffold for replacement by the patient’s own tissue.Menaflex is intended for use in patients with an irreparable meniscus tear or loss of meniscus tissue. It is a proven safe and effective treatment for meniscus injuries
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Company:
Date:
August 19, 2008
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Menaflex
Menaflex is a resorbable collagen-based surgical mesh composed primarily of type I collagen. It serves to reinforce damaged or weakened tissue and provides a resorbable scaffold for replacement by the patient’s own tissue.
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Company:
Date:
August 19, 2008
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The Meniscal Fastener System was designed with ease of delivery and control in mind. The Meniscal Fastener System allows a surgeon to perform a one-handed delivery of the fastener implant. The System provides easy access to all areas of the meniscus, while providing a solid means of fixation utilizing one of six angled delivery tips.
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Company:
Date:
August 19, 2008
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Menisci are processed with tibial bone block that is compatible with trough, keyhole or double bone plug techniques. Each meniscus is specifically size from patient radiographs or MRIs.
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Company:
Date:
August 19, 2008
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Patient-Wear is designed for anyone experiencing limited mobility due to surgery, injury, disability or chronic medical condition. A patent pending fastening system throughout the seams allows a patient to be examined without having to fully undress.
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Company:
Date:
May 06, 2011
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The RAPIDLOC Meniscal Repair System is a second-generation “all-inside” meniscal repair system that offers several advantages over current systems including “inside-out” suture repair techniques and current “all-inside” rigid implants. The innovative design of this implant consists of three components: 1) a soft tissue anchor called a “Backstop”; 2) a connecting suture; and 3) a “TopHat” which compresses the meniscus tear against the Backstop. The RAPIDLOC system offers surgeons the ability to control the amount of compression across the tear ensuring a secure repair. Three different angled ne
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Company:
Date:
August 19, 2008
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