BIOMECHANICS OF POSTERIOR LUMBAR FIXATION - ANALYSIS OF TESTING METHODOLOGIES

被引:24
作者
EDWARDS, WT
机构
[1] Orthopedic Research Laboratory, Department of Orthopedic Surgery, SUNY Health Science Center, Syracuse, NY
关键词
Distraction; Internal fixation; Mechanics; Spinal surgery; Spine loads;
D O I
10.1097/00007632-199110000-00016
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
A variety of biomechanical methods have been used for the experimental evaluation of spine instrumentation in vitro. Consensus has not been reached for criteria to compare the performance of dissimilar devices. The range of load-displacement conditions currently used for in vitro testing of spine instrumentation was reviewed, and compared to calculated estimates for flexion, lateral bending, and torsion loads. It is recommended that future studies simulate combinations of loads or displacements associated with common patterns of motion, and that the distraction across the region of injury be measured. For cyclic testing, input frequencies of 4-5 cycles/sec are within physiologic range, and offer advantages over tests at lower frequencies. The development of consistent protocols based on physiologic conditions should facilitate the biomechanical assessment of techniques for stabilizing the human spine.
引用
收藏
页码:1224 / 1232
页数:9
相关论文
共 54 条
[1]  
Ashman R.B., Johnson C.E., Corin J.D., Pedicle screw-plate junction: Susceptibility to fatigue fracture, Transactions of the Scoliosis Research Society, 145, (1987)
[2]  
Berkson M.H., Nachemson A.L., Schultz A.B., Mechanical properties of human lumbar spine motion segments: Part II. Responses in compression and shear, influence of gross morphology, J Biomcch Eng, 101, pp. 53-57, (1979)
[3]  
Bradford D.S., Instrumentation of the lumbar spine, Clin Orthop, 203, pp. 209-218, (1986)
[4]  
Carter D.R., Hayes W.C., Bone compressive strength: The influence of density and strain rate, Science, 194, pp. 1174-1176, (1976)
[5]  
Carter D.R., Hayes W.C., The compressive behavior of bone as a two-phase porous structure, J Bone Joint Surg, 59A, pp. 954-962, (1977)
[6]  
Chaffin D.B., Erson G., Occupational Biomechanics, (1984)
[7]  
Coffee M.S., Edwards W.T., Hayes W.C., White A.A., In vitro three-dimensional measurement of vertebral motion under load, J Biomech Eng, 3, (1987)
[8]  
Coffee M.S., Kinematics and Failure Properties of the Cervical Spine, (1986)
[9]  
Denis F., Spinal instability as defined by the three-column spine concept in acute spinal trauma, Clin Orthop, 189, pp. 65-76, (1984)
[10]  
Denis F., The three column spine and its significance in the classification of acute thoracolumbar spinal injuries, Spine, 8, pp. 817-831, (1983)