Mechanical performance of a novel press-fit lumbar intervertebral fusion device
Li Shiwen
Yu Changshui
Liu Qi
Wang Zhibo
Liu Yuliang
Qi Quan
Abstract:BACKGROUND:When performing percutaneous minimally invasive transforaminal lumbar interbody fusion to implant an intervertebral cage,due to the narrow operating range of the approach,there is a risk of nerve root injury or poor position of cage. To solve the above problems,a novel mechanical deformable press-fit cage (YP-cage) was invented. OBJECTIVE:To preliminarily evaluate the mechanical strength characteristics of this new lumbar fusion device YP-cage. METHODS:Static axial compression and torsion tests were conducted on 9,11,and 13 mm YP-cages (n=9) and poly (ether ether ketone) (PEEK)-cages (n=9). The force-displacement curves were collected to calculate yield displacement and load,ultimate load displacement and stiffness,yield angular displacement and torque,ultimate load and angle displacement torque and stiffness for comparative analysis. RESULTS AND CONCLUSION:(1) In the static axial compression test,YP-cage was superior to PEEK-cage in terms of stiffness,yield load,ultimate displacement,and load limit in three groups of tests (9,11,13 mm) (P<0.01),but the yield displacement of YP-cage was smaller than that of PEEK-cage (P<0.05). (2) In the static torsion test,there was no significant difference in the ultimate torsion angle between YP-cage and PEEK-cage in 9 mm group. YP-cage was lower thanPEEK-cage in yield torque,yield torsion angle,and ultimate torque (P<0.01),while YP-cage torsional stiffness was greater than PEEK-cage in 9 mm group and 11 mm group (P<0.01). (3) The results show that the novel press-fit mechanical lumbar cage has higher compressive strength than PEEK cage,but the torsional strength is not as good as PEEK-cage.
Keywords:intervertebral fusion cagetransforaminal lumbar interbody fusionspinal fusionmechanical performancephysical property
Publication Date:2025-07-21
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:7( 4492-4498 )
Chinese Journal of Tissue Engineering Research

Chinese Journal of Tissue Engineering Research

ISTICPKU
ISSN:2095-4344
Year, Vol.(Issue):2025,29(21)