Biomechanical performance of the novel assembled uncovertebral joint fusion cage in single-level anterior cervical discectomy and fusion: a finite element analysis

X Zhang, Y Yang, YW Shen, KR Zhang… - … in Bioengineering and …, 2023 - frontiersin.org
Introduction: Anterior cervical discectomy and fusion (ACDF) is widely accepted as the gold
standard surgical procedure for treating cervical radiculopathy and myelopathy. However …

Comparative analysis of the biomechanics of anterior cervical discectomy and fusion with multiple segmental plates fixation versus single multilevel plate fixation: a …

W Huang, Y Tian, H Wang, F Zou, X Ma… - BMC Musculoskeletal …, 2022 - Springer
Background This study aimed to compare the biomechanical differences between anterior
cervical discectomy and fusion (ACDF) with multiple-level separate plates and conventional …

The appropriate hybrid surgical strategy in three-level cervical degenerative disc disease: a finite element analysis

YM Xie, YC Zheng, SJ Qiu, KQ Gong… - Journal of Orthopaedic …, 2019 - Springer
Objective The purpose of this FE study was to analyze the biomechanical characteristics of
different HS strategies used in the treatment of three-level CDDD (one-level CDA and two …

Investigation into cervical spine biomechanics following single, multilevel and hybrid disc replacement surgery with dynamic cervical implant and fusion: a finite …

M Mumtaz, I Zafarparandeh, DU Erbulut - Bioengineering, 2022 - mdpi.com
Cervical fusion has been a standard procedure for treating abnormalities associated with the
cervical spine. However, the reliability of anterior cervical discectomy and fusion (ACDF) has …

Finite element model predicts the biomechanical performance of cervical disc replacement and fusion hybrid surgery with various geometry of ball-and-socket artificial …

Y Li, GR Fogel, Z Liao, W Liu - International Journal of Computer Assisted …, 2017 - Springer
Purpose Few finite element studies have investigated changes in cervical biomechanics
with various prosthesis design parameters using hybrid surgery (HS), and none have …

Feasibility and biomechanics of multilevel arthroplasty and combined cervical arthrodesis and arthroplasty

S Safavi-Abbasi, PM Reyes, C Abjornson… - Clinical spine …, 2016 - journals.lww.com
Study Design: A new experimental protocol was applied utilizing a simplified postural control
model. Multiple constructs were tested nondestructively by interconnecting segmental rods …

Adjacent segment biomechanical changes after one-or two-level anterior cervical discectomy and fusion using either a zero-profile device or cage plus plate: A finite …

W Hua, J Zhi, W Ke, B Wang, S Yang, L Li… - Computers in biology and …, 2020 - Elsevier
Anterior cervical discectomy and fusion (ACDF) is a well-established surgical treatment for
patients with symptomatic cervical degenerative disc disease, while the biomechanical …

In Vivo Changes in Dynamic Adjacent Segment Motion 1 Year After One and Two-Level Cervical Arthrodesis

CM LeVasseur, SW Pitcairn, DO Okonkwo… - Annals of Biomedical …, 2022 - Springer
Biomechanical cadaver testing indicates adjacent segment motion increases after one-level
anterior cervical spine arthrodesis, and two-level arthrodesis exacerbates these effects …

Biomechanical effects of cervical arthroplasty with U-shaped disc implant on segmental range of motion and loading of surrounding soft tissue

ZJ Mo, YB Zhao, LZ Wang, Y Sun, M Zhang… - European spine …, 2014 - Springer
Purpose Various design concepts have been adopted in cervical disc prostheses, including
sliding articulation and standalone configuration. This study aimed to evaluate the …

Changes of adjacent segment biomechanics after anterior cervical interbody fusion with different profile design plate: single-versus double-level

LY Jin, K Wei, DM Feng, JD Li, XX Song… - Computer Methods in …, 2023 - Taylor & Francis
Low-profile angle-stable spacer Zero-P is claimed to reduce the morbidity associated with
traditional plate and cage construct (PCC). Both Zero-P and PCC could achieve comparable …