Inion

The Inion OTPS Biodegradable Fixation System consists of fixation screws and plates made of biodegradable polylactic acid/trimethylenecarbonate copolymer.


It is intended for the maintenance of reduction and fixation of cancellous bone fractures, osteotomies or arthrodeses of the ankle and foot in the presence of the appropriate brace and / or immobilization.

The syndesmosis and malleoli screws are cannulated and can be passed through the plate if required.

The Inion OTPS Biodegradable Mesh Fixation System is designed for graft containment and to reinforce and stabilize bony fragments.

The Inion OTPS plates and mesh are quickly activated in the Inion Thermo+ water bath and become completely malleable, enabling them to conform to virtually any contour.

They stay malleable by hand for 10 seconds and by pliers for 15 minutes. If additional contouring is required the water bath treatment can be repeated.

The Inion OTPS systems will lose their strength over 18-36 weeks in vivo with complete strength loss and resorption within two to four years. The implants are sterile, non collagenous and non pyrogenic.

Stryker is a distributor of Inion OTPS products.


Stryker Corporation or its divisions or other corporate affiliated entities own, use or have applied for the following trademark(s) or service mark(s):Inion, Inion OTPS . All other trademarks are trademarks of their respective owners or holders.

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Product Quick Links

The literature below has been developed to provide healthcare professionals with general product information.
Please note: not all products are available in all countries. For product availability or any further information, please contact your local Stryker representative or www.inion.com .

Inion OTPS Biodegradable Pins 170 kb
Inion OTPS Biodegradable Mini Plating System 480 kb
Inion OTPS Hand System Brochure 1.1 mb
Biodegradable Pins General Information 210 kb
Inion OTPS Biodegradable Pins-Procedure Pin Kit 80 kb
Frequently Asked Questions-Inion OTPS 940 kb
Ankle Fractures - Surgical Treatment with a Single Procedure 610 kb
An Introduction to Biodegradable Polymers as Implant Materials 250 kb
Economic Benefit of Biodegradable Ankle Fracture Fixation 290 kb
Enhancing Biocompatibility: Second Generation Biodegradable Implants 140 kb
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