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Ascension Orthopedics, Inc.

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Cadence™
Smith & Nephew
Cadence Talar Sizer is used in verifying the proper size Talar Trial to be used.
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Cadence™
Smith & Nephew
Cadence Talar Sizer is used in verifying the proper size Talar Trial to be used.
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Cadence™
Smith & Nephew
Cadence Talar Sizer is used in verifying the proper size Talar Trial to be used.
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Cadence™
Smith & Nephew
Cadence Talar Sizer is used in verifying the proper size Talar Trial to be used.
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Cadence™
Smith & Nephew
Corner Osteotome is used to complete the medial resection of the tibia by cutting the bone remaining between the previously drilled holes.
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Cadence™
Smith & Nephew
Cadence Tibial Implant Sizer is used to measure the anterior/posterior length of the distal tibia.
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Cadence™
Smith & Nephew
Cadence Gap Sizer is used to verify the initial distal/ proximal location of the Distal Tibial Alignment block by aligning against the anterior lip of the distal tibia.
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Cadence™
Smith & Nephew
Cadence Post Drill is placed down through the holes in the Talar Chamfer DrillGuide and used to drill a talar implant post hole into the talus.
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Cadence™
Smith & Nephew
Cadence Talar Reamer is placed down through the holes in the Talar Chamfer Reamer Guide and ream the anterior surface of the talus.
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Cadence™
Smith & Nephew
Cadence Talar Chamfer Reamer Guide used to guide the ream and gauge the depth of the Talar Chamfer Reamer.
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Cadence™
Smith & Nephew
Cadence Talar Chamfer Drill Guide is placed in the Talar Chamfer Cut Guide to guide and drill a talar implant post hole into the talus.
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Cadence™
Smith & Nephew
Sagittal Rod is a part of the Tibial Alignment guide, and is connected to the Sagittal Connector to provide parallel alignment to the tibia in the sagittal plane.
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Cadence™
Smith & Nephew
Sagittal Connector is a part of the Tibial Alignment guide, and connects the Saggital Rod with the Tibial Rod to allow for proper positioning of the Tibial Rod
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Cadence™
Smith & Nephew
Straight Bone Pin - Trocar Tip is inserted into the Talar Cut Guide and used for stability and to protect the malleoli while performing the intial talar resection.
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Cadence™
Smith & Nephew
Straight Bone Pin - Drill Tip is used by being placed into the bone pin holes to hold the location and mark the medial resection line of the distal tibia by drilling bicortically through each of the three medial distal holes on the Tibial Cut Guide
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Cadence™
Smith & Nephew
Long Shouldered Bone Pin is used to maintain the placement of other instruments
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Cadence™
Smith & Nephew
Short Shouldered Bone Pin is used to maintain the placement of other instruments
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Cadence™
Smith & Nephew
U-Joint is used to remove the Tibial Tray from the talus when the Slap Hammer is not sufficient.
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Cadence™
Smith & Nephew
Slap Hammer is used to remove the Talar Trial from the talus.
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Cadence™
Smith & Nephew
Cadence Tibial Impactor Handle is attached to the Tibial Impactor Tip which is used in the insertion of the Tibial Tray.
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Cadence™
Smith & Nephew
Cadence Tibial Impactor Stop is uses to prevent excesssive impaction of the Tibial Tray. The stop ensures that the implant is impacted only until the stop tabs contact the anterior tibia.
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Cadence™
Smith & Nephew
Cadence Tibial Impactor Tip is attached to the tibial impactor handle and is used to seat the Tibial Tray Implant on the distal tibia.
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Cadence™
Smith & Nephew
Cadence Talar Impactor is used to fully seat the Talar Trial and Talar Dome Implant
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Cadence™
Smith & Nephew
The Lamina Spreader is used to extend the Talar Cut Guide to tighten ligaments during preperation for talar resectioning procedure.
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Cadence™
Smith & Nephew
Cadence Talar Implant Extractor is used to remove the Talar Dome implant from the implant site.
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Cadence™
Smith & Nephew
Cadence Talar Cut Guide is used in making a precise cut of the Talus bone during resectioning.
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Cadence™
Smith & Nephew
Cadence Talar Cut Guide is used in making a precise cut of the Talus bone during resectioning.
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Cadence™
Smith & Nephew
Cadence Tibial Cut Guide is used to provide precise cutting of the tibia bone and can be used to provide an initial assessment of the correct tibial implant size to be used.
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Cadence™
Smith & Nephew
Cadence Tibial Cut Guide is used to provide precise cutting of the tibia bone and can be used to provide an initial assessment of the correct tibial implant size to be used.
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Cadence™
Smith & Nephew
Cadence Talar Chamfer Cut Guide is secured on the talus bone to house the Talar Chamfer Reamer Guide for precise depth of holes drilled.
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Cadence™
Smith & Nephew
Cadence Flex Shaft Drill is placed through the hole in the tibial trial to drill a post hole into the tibia for placement of the implant.
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Cadence™
Smith & Nephew
Cadence Tibial Resection Template is lined up with specific targets on the Tibial Cut Guide to ensure precise cuts to the tibia during the resectioning procedure.
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Cadence™
Smith & Nephew
Cadence Talar Sizer Holder is used to hold the Talar Sizer that is used to measure the proper size Talar Dome Trial.
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Cadence™
Smith & Nephew
Cadence Insert Inserter is used to properly insert and position the insert implant on the anterior face of the Tibial Tray implant.
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Cadence™
Smith & Nephew
Proximal Translation Block is a part of the Tibial Alignment guide, and is used to connect the Proximal Tibial Clamp with the tibial rod for proper positioning to the center of the patients distal tibial metaphysis.
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Cadence™
Smith & Nephew
Rod Connector is a part of the Tibial Alignment guide, and is used to connect the Tibial Rod to the Proximal Translation Block for proper positioning to the center of the patients distal tibial metaphysis.
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Cadence™
Smith & Nephew
Tibial Rod is a part of the Tibial Alignment guide, and connects the Proximal Tibial Clamp with the Distal Tibial Alignment Block for proper positioning to the center of the patients distal tibial metaphysis.
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Cadence™
Smith & Nephew
Proximal Tibial Clamp is a part of the Tibial Alignment guide, and is placed around the proximal calf for proper alignment and preperation for resectioning
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Cadence™
Smith & Nephew
Distal Tibial Alignment Block is a part of the Tibial Alignment guide, and is placed at the center of the distal tibial metaphysis for proper alignment and preperation for resectioning
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Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
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Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.
0
-
Cadence™
Smith & Nephew
The Cadence™ Insert components are made out of highly cross-linked polyethylene UHMWPE, rigidly fixed to the Tibial Tray intra-operatively. In conjunction with the Talar Dome and Tibial Tray, the system is intended for both primary surgery and revision surgery applications which are designed to treat ankle arthritis through replacement of the ankle joint with a prosthesis, thereby reducing pain, restoring alignment, and allowing for movement at the replaced joint. These components are available in a variety of sizes and design configurations.