Literature DB >> 29501735

Finite element model predicts the biomechanical performance of transforaminal lumbar interbody fusion with various porous additive manufactured cages.

Zhenjun Zhang1, Hui Li2, Guy R Fogel3, Dingding Xiang1, Zhenhua Liao4, Weiqiang Liu5.   

Abstract

In lumbar interbody fusion, a porous additive manufactured (AM) cage can provide more desirable stiffness, and may be beneficial to bone ingrowth. The biomechanical influence of porous cages on stability, subsidence, and facet contact force has not been fully described. The aim of this study was to verify biomechanical effects of porous cages. A surgical finite element (FE) model of transforaminal lumbar interbody fusion (TLIF) was constructed. Partially porous (PP) cages and fully porous (FP) cages were applied. Mechanical tests were performed to obtain the mechanical parameters of porous materials. The porous cages were compared to solid titanium (TI) cage and solid PEEK cage. Four motion modes were simulated. Range of motion (ROM), cage stress, endplate stress, and facet joint force (FJF) were compared. After interbody fusion, ROM decreased by more than 90% in flexion, bending and rotation. Compared with TI and PP cages, PEEK and FP cages substantially reduced the maximum stresses in cage and endplate in all motion modes. Compared with PEEK cages, the stresses in cage and endplate for FP cages decreased, whereas the ROM increased. Compared among three FP cages, the stresses in cage and endplate decreased with increasing porosity, whereas ROM increased with increasing porosity. FJF for various cages was substantially reduced compared to the intact model in all motion modes except for flexion. In summary, fully porous cages with a porosity of between 65% and 80% may offer an alternative to solid PEEK cages in TLIF.
Copyright © 2018 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Additive manufactured (AM); Biomechanics; Facet joint force (FJF); Finite element (FE); Lumbar spine; Porous cage; Range of motion (ROM); Subsidence; Transforaminal lumbar interbody fusion (TLIF)

Mesh:

Year:  2018        PMID: 29501735     DOI: 10.1016/j.compbiomed.2018.02.016

Source DB:  PubMed          Journal:  Comput Biol Med        ISSN: 0010-4825            Impact factor:   4.589


  6 in total

1.  Biomechanical effects of direction-changeable cage positions on lumbar spine: a finite element study.

Authors:  Haiping Zhang; Dingjun Hao; Honghui Sun; Sinmin He; Biao Wang; Huimin Hu; Yongyuan Zhang
Journal:  Am J Transl Res       Date:  2020-02-15       Impact factor: 4.060

2.  Expandable pedicle screw may have better fixation than normal pedicle screw: preclinical investigation on instrumented L4-L5 vertebrae based on various physiological movements.

Authors:  Devismita Sanjay; Jaideep Singh Bhardwaj; Neeraj Kumar; Souptick Chanda
Journal:  Med Biol Eng Comput       Date:  2022-06-30       Impact factor: 3.079

Review 3.  Biomaterials for Interbody Fusion in Bone Tissue Engineering.

Authors:  Han Zhang; Zhonghan Wang; Yang Wang; Zuhao Li; Bo Chao; Shixian Liu; Wangwang Luo; Jianhang Jiao; Minfei Wu
Journal:  Front Bioeng Biotechnol       Date:  2022-05-17

4.  Finite Element Analysis of a Novel Fusion Strategy in Minimally Invasive Transforaminal Lumbar Interbody Fusion.

Authors:  Zhenchuan Han; Bowen Ren; Long Zhang; Chao Ma; Jianheng Liu; Jiantao Li; Xiao Liu; Qingzu Liu; Keya Mao; Peifu Tang
Journal:  Biomed Res Int       Date:  2022-05-11       Impact factor: 3.246

5.  Vertebral Endplate Cyst Formation in Relation to Properties of Interbody Cages.

Authors:  Manabu Sasaki; Masao Umegaki; Takanori Fukunaga; Yasukazu Hijikata; Yohei Banba; Katsumi Matsumoto; Yasuyoshi Miyao
Journal:  Neurospine       Date:  2021-03-31

6.  Biomechanical Evaluation of Transforaminal Lumbar Interbody Fusion with Coflex-F and Pedicle Screw Fixation: Finite Element Analysis of Static and Vibration Conditions.

Authors:  Jia Zhu; Hangkai Shen; Yangyang Cui; Guy R Fogel; Zhenhua Liao; Weiqiang Liu
Journal:  Orthop Surg       Date:  2022-08-10       Impact factor: 2.279

  6 in total

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