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Profile: Wenzel Spine specializes in offering interbody fusion system and laminar hook system. It stabilizes the spine in the treatment of disorders that include disc herniation, degenerative disc disease, adjacent level disease and spondylolisthesis. Our laminar hook system provides rapid application with minimal exposure and without involving the neurological structures. The unique double-hook design grips from the top and bottom of the lamina, providing multidirectional stability.
FDA Registration Number: 3008009850
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• Cement Restrictor Hip Prosthesis (FDA Code: JDK / 878.3300) Surgical mesh is a metallic or polymeric screen intended to be implanted to reinforce soft tissue or bone where weakness exists. Examples of surgical mesh are metallic and polymeric mesh for hernia repair, and acetabular and cement restrictor mesh used during orthopedic surgery. |
• Interbody Fusion Devices |
• Interbody Fusion Systems |
• Lumbar Intervertebral Fusion Device with Bone Graft (FDA Code: MAX / 888.3080) |
• Spinal Interlaminal Fixation Appliance (FDA Code: KWP / 888.3050) A spinal interlaminal fixation orthosis is a device intended to be implanted made of an alloy, such as stainless steel, that consists of various hooks and a posteriorly placed compression or distraction rod. The device is implanted, usually across three adjacent vertebrae, to straighten and immobilize the spine to allow bone grafts to unite and fuse the vertebrae together. The device is used primarily in the treatment of scoliosis (a lateral curvature of the spine), but it also may be used in the treatment of fracture or dislocation of the spine, grades 3 and 4 of spondylolisthesis (a dislocation of the spinal column), and lower back syndrome. |
• Spondylolisthesis Spinal Fixation Orthosis (FDA Code: MNH / 888.3070) Pedicle screw spinal systems are multiple component devices, made from a variety of materials, including alloys such as 316L stainless steel, 316LVM stainless steel, 22Cr-13Ni-5Mn stainless steel, Ti-6Al-4V, and unalloyed titanium, that allow the surgeon to build an implant system to fit the patient's anatomical and physiological requirements. Such a spinal implant assembly consists of a combination of anchors (e.g., bolts, hooks, and/or screws); interconnection mechanisms incorporating nuts, screws, sleeves, or bolts; longitudinal members (e.g., plates, rods, and/or plate/rod combinations); and/or transverse connectors. |