Anterior instrumentation of the thoracolumbar spine - A biomechanical comparison

被引:44
|
作者
Dick, JC
Brodke, DS
Zdeblick, TA
Bartel, BD
Kunz, DN
Rapoff, AJ
机构
[1] COLORADO SPRINGS ORTHOPAED GRP,COLORADO SPRINGS,CO
[2] UNIV WISCONSIN,MADISON,WI
关键词
biomechanics; burst fracture; spinal instrumentation; spine;
D O I
10.1097/00007632-199704010-00005
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Study Design. To evaluate the fatigue strength and stiffness of four anterior thoracolumbar fixation devices using a corpectomy model without load-sharing bone graft to test the devices under the worst case scenario of instability. Objectives. To gain a more thorough understanding of the biomechanical qualities of anterior fixation devices to improve clinical application and design. Summary of Background Data. For many surgeons, the anterior approach has become the treatment of choice for patients with compression of the spinal cord, whether it is caused by trauma, tumor, or infection. When stabilization is needed, anterior fixation devices have been advocated for many years to avoid the additional approach required for posterior fixation. Many of these devices, however, have an unacceptably high rate of hardware failure. Recently, several new devices for anterior fixation have been marketed with purported advantages in fatigue life and ease of use. Methods. Four implants, the Synthes Anterior Thoracolumbar Locking Plate, the Kaneda device, a Texas Scottish Rite Hospital anterior construct, and the Z-Plate were attached to vertebral models and tested for stiffness in multiple planes on a modified Materials Testing System machine. They then were fatigued to failure on an Instron testing machine. Results. The Anterior Thoracolumbar Locking Plate was the stiffest in axial compression, lateral flexion, and torsion. The Texas Scottish Rite Hospital anterior construct was the least stiff in flexion-extension, with no significant differences in the stiffness of the anterior thoracolumbar locking plate, that of the Kaneda device, and that of the Z-Plate. Fatigue life exceeded 80,000 cycles for the anterior thoracolumbar locking plate and averaged 26,472 cycles for the Z-Plate, 6915 cycles for the Texas Scottish Rite Hospital construct, and 4419 cycles for the Kaneda device. Conclusions. The significantly greater fatigue life of the Anterior Thoracolumbar Locking Plate and the Z-Plate may predict a lower incidence of hardware failure than with previous anterior devices. This has been confirmed in preliminary clinical studies with the Z-Plate. Further clinical studies are needed to show if these lower failure rates will continue over a long-term period.
引用
收藏
页码:744 / 750
页数:7
相关论文
共 50 条
  • [21] BURST FRACTURES WITH NEUROLOGIC DEFICITS OF THE THORACOLUMBAR-LUMBAR SPINE - RESULTS OF ANTERIOR DECOMPRESSION AND STABILIZATION WITH ANTERIOR INSTRUMENTATION
    KANEDA, K
    ABUMI, K
    FUJIYA, M
    [J]. SPINE, 1984, 9 (08) : 788 - 795
  • [22] Expandable cages: biomechanical comparison of different cages for ventral spondylodesis in the thoracolumbar spine
    Khodadadyan-Klostermann, C
    Schaefer, J
    Schleicher, P
    Pflugmacher, R
    Eindorf, T
    Haas, NR
    Kandziora, F
    [J]. CHIRURG, 2004, 75 (07): : 694 - 701
  • [23] Avoiding neurologic complications following ligation of the segmental vessels during anterior instrumentation of the thoracolumbar spine
    Mirovsky, Yigal
    Hod-Feins, Roei
    Agar, Gabriel
    Anekstein, Yoram
    [J]. SPINE, 2007, 32 (02) : 275 - 280
  • [24] HARRINGTON INSTRUMENTATION FOR FRACTURES AND DISLOCATIONS OF THORACOLUMBAR SPINE
    TAYLOR, TKF
    CUMMINE, J
    [J]. JOURNAL OF BONE AND JOINT SURGERY-BRITISH VOLUME, 1978, 60 (02): : 289 - 289
  • [25] Spinal Navigation for Lateral Instrumentation of the Thoracolumbar Spine
    Schwendner, Maximilian
    Liang, Raimunde
    Butenschoeen, Vicki M.
    Krieg, Sandro M.
    Ille, Sebastian
    Meyer, Bernhard
    [J]. OPERATIVE NEUROSURGERY, 2023, 25 (04) : 303 - 310
  • [26] Biomechanical comparison of instrumentation techniques in treatment of thoracolumbar burst fractures: a finite element analysis
    Park, Won Man
    Park, Ye-Soo
    Kim, Kyungsoo
    Kim, Yoon Hyuk
    [J]. JOURNAL OF ORTHOPAEDIC SCIENCE, 2009, 14 (04) : 443 - 449
  • [27] BIOMECHANICAL BASES OF SURGICAL FIXATION OF THE THORACOLUMBAR SPINE
    PRIVAT, JM
    OHANNA, F
    BONNEL, F
    FREREBEAU, P
    [J]. NEUROCHIRURGIE, 1984, 30 (05) : 295 - 300
  • [28] Comparison of segmental pedicle screw instrumentation versus anterior instrumentation in adolescent idiopathic thoracolumbar and lumbar scoliosis
    Hee, Hwan-Tak
    Yu, Zhi-Rong
    Wong, Hee-Kit
    [J]. SPINE, 2007, 32 (14) : 1533 - 1542
  • [29] An In Vitro Biomechanical Comparison of Single-Rod, Dual-Rod, and Dual-Rod With Transverse Connector in Anterior Thoracolumbar Instrumentation
    Reddy, Chandan G.
    Magnetta, Michael
    Dahdaleh, Nader S.
    Demmer, Matthew
    Iyamah, Kingsley Abode
    Lim, Tae-Hong
    Torner, James C.
    Hitchon, Patrick W.
    [J]. NEUROSURGERY, 2012, 70 (04) : 1017 - 1023
  • [30] Anterior endoscopic approach to the thoracolumbar spine
    Burgos, J
    Rapariz, JM
    Gonzalez-Herranz, P
    [J]. SPINE, 1998, 23 (22) : 2427 - 2431