Effects of composite intramedullary nail on cell phenotype-related activities and callus growth during the healing of tibial bone fractures

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초록

Flexible composite prostheses provide favorable conditions for bone healing. Simulation of the human body is a complicated process, and accurate techniques are needed as physiological behavior is chaotic. We propose appending the mechanoregulation (MR) algorithm with callus volume changes, implant-dependent growth, and cell phenotype-specific activities for use with composite prostheses. The MR algorithm and simulation technique were validated, and simulation results were compared with developed models and in vivo sheep data. Healing of transverse diaphyseal tibial fractures with a fixed conventional stainless steel intramedullary nail and the flexible glass/polypropylene composite was compared. The flexible implants promoted better callus growth and volume and healthy cell phenotype. © 2021 Elsevier Ltd

키워드

A. Glass fibersA. Polymer-matrix composites (PMCs)C. Finite element analysis (FEA)Composite implantNailsPolymer matrix compositesProstheticsA glass fiberA polymer-matrix compositeA.Polymer-matrix compositesA: polymer-matrix compositesC finite element analyseCell phenotypeComposite implantFinite element analyseGlass-fibersIntramedullary nailsBone
제목
Effects of composite intramedullary nail on cell phenotype-related activities and callus growth during the healing of tibial bone fractures
저자
Rizvi, S.H.A.Chang, S.-H.
DOI
10.1016/j.compositesb.2021.109429
발행일
2022-01-01
유형
Article
저널명
Composites Part B: Engineering
228