Progression of bone ingrowth and attachment strength for stability of percutaneous osseointegrated prostheses.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24258685.
- Also identified by DOI 10.1007/s11999-013-3381-0 and PMC identifier 4160472.
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Abstract
Percutaneous osseointegrated prosthetic (POP) devices have been used clinically in Europe for decades. Unfortunately, their introduction into the United States has been delayed, in part due to the lack of data documenting the progression of osseointegration and mechanical stability. We determined the progression of bone ingrowth into porous-coated POP devices and established the interrelationship with mechanical stability. After amputation, 64 skeletally mature sheep received a custom porous-coated POP device and were then randomized into five time groups, with subsequent measurement of percentage of bone ingrowth into the available pore spaces (n = 32) and the mechanical pullout force (n = 32). Postimplantation, there was an accelerated progression of bone ingrowth (~48% from 0 to 3 months) producing a mean pullout force of 5066 ± 1543 N. Subsequently, there was a slower but continued progression of bone ingrowth (~23% from 3 to 12 months) culminating with a mean pullout force of 13,485 ± 1855 N at 12 months postimplantation. There was a high linear correlation (R = 0.94) between the bone ingrowth and mechanical pullout stability. This weightbearing model shows an accelerated progression of bone ingrowth into the porous coating; the amount of ingrowth observed at 3 months after surgery within the porous-coated POP devices was sufficient to generate mechanical stability. The data document progression of bone ingrowth into porous-coated POP devices and establish a strong interrelationship between ingrowth and pullout strength. Further human data are needed to validate these findings.
Medical subject headings
- Amputation, Surgical
- Artificial Limbs
- Bone and Bones
- Coated Materials, Biocompatible
- Osseointegration
- Prosthesis Implantation