![]() Proximal Tibia: VA LCP Proximal Tibia (small and large bend), LCP Proximal Tibia (standard and low bend), LCP Posteromedial Proximal Tibia, LCP Medial Proximal Tibia.Elbow: VA LCP Medial Distal Humerus, VA LCP Lateral Distal Humerus, VA LCP Posterolateral Distal Humerus, VA LCP Proximal Olecranon, VA LCP Olecranon, LCP Extra-articular Distal Humerus, LCP Hook. ![]() Clavicle: LCP Superior Anterior and Superior Clavicle (with extension and standard), VA LCP Anterior Clavicle.Proximal humerus: LCP Proximal Humerus (PHILOS) and LCP Periarticular Proximal Humerus.The following plate families are supported by the templates: The templates are labeled DO NOT BEND as they will no longer mimic the partnered implant, and repeated bending can result in template breakage. Determination of other plate sizes can be deduced from straight measurements. To minimize system complexity, templates are provided for the shortest and most common length of an implant. They are radiopaque, and K-wire holes indicate the location of plate holes (Fig 4). The templates mimic the shape of the respective anatomic plates (Fig 3) and allow reprocessing for repeated use. To provide an economical and effective solution, the new templates are manufactured using 3D printing technology and utilizing non-implantable stainless steel. To enable proper implant selection, we are pleased to report that new templates complement all anatomic plate types of the USF System. Templates for plating have gained importance because of the increasing request of sterile packaging of plates in many regions of the world. Templates for Universal Small Fragment System The USF System Core Set can support all 2.7 mm / 3.5 mm non-locking, locking and variable angle locking plate technologies. This approach also helps to reduce the weight of the required sets to be transferred to the operating room. The modular concept of the USF System offers the flexibility to build different system configurations to meet the surgeon's needs. The VA LCP lower extremity trays are only provided in Stainless Steel. Realizing this burden on all involved stakeholders resulted in the clear need to provide a simplified solution for small bone procedures which improves ease of use as well as hospital efficiency.Įight streamlined anatomic implant trays (Elbow Implant Set, Shoulder / Clavicle Implant Set, VA LCP Proximal Tibia Implant Set, LCP Proximal Tibia Implant Set, VA LCP Distal Tibia Implant Set, LCP Distal Tibia Implant Set, VA LCP Distal Fibula Implant Set, LCP Distal Fibula Implant Set) which include the majority of implants (to cover about 80% of the procedures remaining implant portfolio is provided sterile packed), can be coupled with the core set to support specific small bone procedures (Fig 2).Īll upper extremity trays as well as the LCP lower extremity trays are available in Stainless Steel and Titanium options. In addition to this, the large number of parts in the sets entails an increased opportunity for missing and / or broken instruments. Training staff to use such a large portfolio of osteosynthesis material is also a considerable cost factor for the healthcare provider. It is also difficult for surgical teams to remain proficient in using so many different systems. The number of sets and the material volume for these frequently performed procedures place a significant burden on hospital resources in terms of reprocessing, storing and transporting the equipment. Surgical treatment of small bone trauma occurs worldwide about every 18 seconds and represents about 25% of all bone trauma cases. The sequential introduction of plating and screw technologies has led to a total number of more than 20 DePuy Synthes sets to support small fragment procedures involving shoulder, clavicle, elbow, tibia and fibula anatomies. Surgeons can choose from a large variety of standard and anatomically pre-contoured plates with instruments for application of conventional screws, locking screws and variable angle locking screws. Over time, the collaboration of the AOTK System and DePuy Synthes has resulted in the development of numerous implants and instruments to address specific clinical problems.
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