Biomechanical effects of interbody cage height on adjacent segments in patients with lumbar degeneration: a 3D finite element study

被引:6
|
作者
Lu, Xiao [1 ]
Li, Dachuan [1 ]
Wang, Hongli [1 ]
Xia, Xinlei [1 ]
Ma, Xiaosheng [1 ]
Lv, Feizhou [1 ]
Zou, Fei [1 ]
Jiang, Jianyuan [1 ]
机构
[1] Fudan Univ, Huashan Hosp, Dept Orthoped, 12 Middle Wulumuqi Rd, Shanghai 200040, Peoples R China
基金
中国国家自然科学基金;
关键词
TLIF; Interbody cage; Intervertebral height; Degenerative lumbar spine; Biomechanics; INTERVERTEBRAL DISC DEGENERATION; ANTERIOR CERVICAL DISKECTOMY; LOW-BACK-PAIN; MECHANICAL-BEHAVIOR; FUSION; DISEASE; SPINE; DISTRACTION; COMPRESSION; LEVEL;
D O I
10.1186/s13018-022-03220-3
中图分类号
R826.8 [整形外科学]; R782.2 [口腔颌面部整形外科学]; R726.2 [小儿整形外科学]; R62 [整形外科学(修复外科学)];
学科分类号
摘要
Objective To investigate the biomechanical effects of interbody cage height on adjacent segments in patients with lumbar degeneration undergoing transforaminal lumbar interbody fusion (TLIF) surgery, so as to provide references for selection of interbody cage. Methods The finite element model of normal lower lumbar spine (L3-S1) was built and validated, then constructed three different degenerative segments in L3-L4, and the cages with different height (8, 10, 12, 14 mm) were implanted into L4-L5 disc. All the twelve models were loaded with pure moment of 7.5 N m to produce flexion, extension, lateral bending and axial rotation motions on lumbar spine, and the effects of cage height on range of motion (RoM) and intervertebral pressure in lumbar spine were investigated. Results The RoM of adjacent segments and the maximum stress of intervertebral discs increased with the increase in cage height, but this trend was not obvious in mild and moderate degeneration groups. After implantation of four different height cages (8, 10, 12, 14 mm), the RoM of L3/L4 segment reached the maximum during extension. The RoM of mild degeneration group was 2.07 degrees, 2.45 degrees, 2.48 degrees, 2.54 degrees, that of moderate degeneration group was 1.79 degrees, 1.97 degrees, 2.05 degrees, 2.05 degrees, and that of severe degeneration group was 1.43 degrees, 1.66 degrees, 1.74 degrees, 1.74 degrees. The stress of L3-L4 intervertebral disc reached the maximum during flexion. The maximum stress of L3-L4 intervertebral disc was 20.16 MPa, 20.28 MPa, 20.31 MPa and 20.33 MPa in the mild group, 20.58 MPa, 20.66 MPa, 20.71 MPa and 20.75 MPa in the moderate group, and 21.27 MPa, 21.40 MPa, 21.50 MPa and 21.60 MPa in the severe group. Conclusion For patients with mild-to-moderate lumbar degenerative disease who need to undergo TLIF surgery, it is recommended that the height of fusion cage should not exceed the original intervertebral space height by 2 mm, while for patients with severe degeneration, a fusion cage close to the original intervertebral height should be selected as far as possible, and the intervertebral space should not be overstretched.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Biomechanical analysis of lumbar interbody fusion cages with various lordotic angles: a finite element study
    Zhang, Zhenjun
    Fogel, Guy R.
    Liao, Zhenhua
    Sun, Yitao
    Liu, Weiqiang
    COMPUTER METHODS IN BIOMECHANICS AND BIOMEDICAL ENGINEERING, 2018, 21 (03) : 247 - 254
  • [42] The role of cage height on the flexibility and load sharing of lumbar spine after lumbar interbody fusion with unilateral and bilateral instrumentation: a biomechanical study
    Du, Lin
    Sun, Xiao-jiang
    Zhou, Tang-jun
    Li, Yuan-chao
    Chen, Chen
    Zhao, Chang-qing
    Zhang, Kai
    Zhao, Jie
    BMC MUSCULOSKELETAL DISORDERS, 2017, 18
  • [43] The role of cage height on the flexibility and load sharing of lumbar spine after lumbar interbody fusion with unilateral and bilateral instrumentation: a biomechanical study
    Lin Du
    Xiao-jiang Sun
    Tang-jun Zhou
    Yuan-chao Li
    Chen Chen
    Chang-qing Zhao
    Kai Zhang
    Jie Zhao
    BMC Musculoskeletal Disorders, 18
  • [44] Biomechanical effects of joint disc perforation on the temporomandibular joint: a 3D finite element study
    Gao, Wentong
    Lu, Jie
    Gao, Xiang
    Zhou, Jianping
    Dai, Hongwei
    Sun, Min
    Xu, Jie
    BMC ORAL HEALTH, 2023, 23 (01)
  • [45] Biomechanical effects of joint disc perforation on the temporomandibular joint: a 3D finite element study
    Wentong Gao
    Jie Lu
    Xiang Gao
    Jianping Zhou
    Hongwei Dai
    Min Sun
    Jie Xu
    BMC Oral Health, 23
  • [46] Does lumbar microdiscectomy affect adjacent segmental disc degeneration? A finite element study
    Tang, Shujie
    Rebholz, Brandon J.
    JOURNAL OF SURGICAL RESEARCH, 2013, 182 (01) : 62 - 67
  • [47] Comparative Biomechanical Analysis of Anterior Lumbar Interbody Fusion and Bilateral Expandable Transforaminal Lumbar Interbody Fusion Cages: A Finite Element Analysis Study
    Bakhaidar, Mohamad
    Harinathan, Balaji
    Devaraj, Karthik Banurekha
    DeGroot, Andrew
    Yoganandan, Narayan
    Shabani, Saman
    INTERNATIONAL JOURNAL OF SPINE SURGERY, 2024, 18 (04):
  • [48] Biomechanical evaluation of the hybrid pedicle screw-cortical bone trajectory technique in transforaminal lumbar interbody fusion to adjacent segment degeneration-finite element analysis
    Zhang, Rui
    Kahaer, Alafate
    Niu, Hanqian
    Wang, Jingwen
    Jumahan, Ayididaer
    Qiu, Yanning
    Guo, Hailong
    Rexiti, Paerhati
    BMC MUSCULOSKELETAL DISORDERS, 2023, 24 (01)
  • [49] Determining a relative total lumbar range of motion to alleviate adjacent segment degeneration after transforaminal lumbar interbody fusion: a finite element analysis
    Ke Li
    Shuai Cao
    Jing Chen
    Jie Qin
    Bo Yuan
    Jie Li
    BMC Musculoskeletal Disorders, 25
  • [50] Determining a relative total lumbar range of motion to alleviate adjacent segment degeneration after transforaminal lumbar interbody fusion: a finite element analysis
    Li, Ke
    Cao, Shuai
    Chen, Jing
    Qin, Jie
    Yuan, Bo
    Li, Jie
    BMC MUSCULOSKELETAL DISORDERS, 2024, 25 (01)