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Magic System : Value Triad (V2) Implant Design

Triad Value (V2) Implant Design 

 Instruments + Implants + Protocols = Success. 

Originally implant shapes used morphologic fit – cylinder shaped which was tapped into place with little compressive forces on the adjacent bone. Then more initial stability was desired and threaded implant designs were introduced to achieve initial mechanical stability. Threads of different shapes did different amounts of micro-damage to bone. All thread designs relied upon fixation systems and compressive forces The idea of micro-fracture to mechanically compress bone “the more force the better” was the false sense of achievement. Initial stability was the trade-off of delayed healing, while the compressed bone is resorbed, and later morphologic connection follows. These became an acceptable compromise. 

In his ongoing quest for minimally invasive care, Dr. Wang engineered an implant design to achieve initial stability without adverse bone compression. The thread design is specifically engineered for morphologic stability. The design is referred to as a “Fin” instead of a thread. It achieves tremendous initial stability without compressive forces.  Since there are no major bone compressing and fracturing, the healing actions are present at the surface of the implant and threads immediately post placement. Fin threads were not imagined as a theory, instead they were engineered from sound principles. They follow a mathematical formula that creates a flexion of the implant’s thread that matches the flex of the adjacent bone. Our 90/10 new formula for implant success refers to this ratio of Ti to bone volume that creates this ideal. 

The design required higher performance than was possible from Grade 4 Ti Dr Wang upgraded to use the gold standard of orthopedic implants which is grade 5 TiIother words, traditional Ti formulations were not strong enough to accomplish this flexion, therefore he used more expensive and better performing Grade 5 Ti (Grade 23 ELI), with its recognized superior strengths in orthopedic implant surgical applications. The strongermaterial enabled the designs to accommodate abutment connections to be simplifiedIn the FC line all implants from size 3.0 to 6.5 use interchangeable abutments.  

A significant additional benefit of the Fin threads is that they help distribute forces deeply through the entire implant body. This contrasts the traditional implants which focuses stress within the top few millimeters of the implant. 

 The Magic System’s implants have a special coronal shape to prevent marginal bone loss and increases the cortical bones healing ability. The straight tapered body is designed for maximum bone contact and superior primary stability and the patented cutting edge that allows for self-threading insertion with excellent directional maintenance.  The 1mm space between threads improve strength of bone, allows for a large volume of bone in contact with the implant that results in superior stability, and helps balance flexibility and load resistance between threads and bone. 

In summary the Magic System Implants have 4 primary unique design focus: 

  • Magic Fin ThreadEasier placement due to self-threading and faster bone healing with no bone chips or pressure to the bone during placement.  
  • Stress Distribution – Engineered to produce minimal shearing force in the alveolar bone. Reduces the difference of elasticity between fin threads and alveolar bone. 
  • Abutment Post – Various crown shapes can be applied due to minimal 2mm post height, with stronger connection due to the “ferrule effect”. The post height allows for adjustable placement depth according to soft tissue thickness. 
  • One-body Structure – Outstanding durability due to no connection, and no inflammatory zone due to the absence of the micro gap leading to a healthier periodontal condition.  

The implants alone are superior but for true predictable success they integrate with the patented instruments and specific protocols to create the value triad.  

 

Read more about V3 Instruments

Read more about V3 Protocols

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