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Principles of Implant Corset Design (Part I)

Principles of Implant Corset Design (Part I)

Principles of Implant Corset Design (Part I) For the analysis of marginal bone in the chest wall, there are several causes for implant bone that increases the biological width and introduces extra iron (chewable) beyond implant tolerance.

2020/02/16
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Principles of Implant Corset Design (Part I)
 
For the analysis of marginal bone in the chest wall, there are several causes for implant bone that increases the biological width and introduces extra iron (chewable) beyond implant tolerance. In a widespread investigation, it has been shown that longer polished corsets beneath the bone cause a greater analysis of the crust bone to make the implant corset more rough.
 

 
The highest stress in the Corset Implant area is introduced, the issue of stress and force entering the Crist Implant area is another important issue. In fact, if a polyester cushion has parallel walls, it will increase the risk of bone loss after force is applied.
Polished metal causes shear stress in the bone adjacent to the implant and, as previously mentioned, the bone is weaker than shear forces 65% and the shear forces of the implant should be limited as much as possible.
Secondly, polished metal does not stimulate bone marrow before it enters, but ranim requires bone formation for osseointegration or full contact between bone-implant dentures. When the implant surface is rough and harmful, bone-implant (BIC) contacts increase during the initial repair phase.
Chestal bone resorption is also more accurate in the corneal and mechanical parts of the implants, and the bone density is directly related to the length of the cervical spine in the implant. The longer the peeling length is (Image) The amount of analysis around the implant chest bones is larger.
A roughened surface and engineer (but designed to withstand shear forces) helps maintain bones during biological changes, but dendritic bone analysis occurs during electrolyte loading.
The point is that regardless of the type or design of the implant, usually the bone in the first thread of the first thread of the implant implies, and often the analysis in the first thread region is stopped because first it often turns the shear force into a compressive force. If The design of a crest implant can reduce the risk of bone crust analysis
 

 

 

 

 


 

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