AndriacchiTPSchultzAB: A model for studies of mechanical interactions between the human spine and rib cage. J Biomech7: 497–5011, 1974.
2.
BrinckmannPFrobinW: Deformation of the vertebral end-plate under axial loading of the spine. Spine8: 851–856, 1983.
3.
BrownTHansenRYorraA: Some mechanical tests on the lumbosacral spine with particular reference to the intervertebral discs: A preliminary report. J Bone Joint Surg39A: 1135–1164, 1957.
4.
ChazalJTanguyA: Biomechanical properties of spinal ligaments and a histological study of the supra-spinal ligament in traction. J Biomechanics18,3: 167–176, 1985.
5.
FarfanHFCossetteJW: The effects of torsion on the lumbar intervertebral joints: The role of torsion in the production of disc degeneration. J Bone Joint Surg52A: 468–497, 1970.
6.
GalanteJO: Tensile properties of human annulus fibrosis. Acta Orthop Scan (Suppl No 100).
7.
GordonSJYangKH: Mechanism of disc rupture. Spine16: 450–456, 1991.
8.
GracovetskyS: The Spinal Engine. Springer-Verlag Ed.Vienne, 1988.
9.
GuillotMFournierJ: Justification mécanique approchèe de la gèomètrie particulière du rachis humain sounds à contrainte verticale. Presented at the 70th Meeting Association des Anatomistes, Paris1988.
10.
HuttonWCStootJRRCyronBM: Is spondylolysis a fatigue fracture?Spine2: 202–209, 1977.
11.
Louis: Chirurgie du rachisSpringer-Verlag Ed.Vienne, 1982.
12.
MarkolfKL: Deformation of the thoracolumbar intervertebral joints in response to external loads. J Bone Joint Surg54A: 511–533, 1972.
13.
MykelbustJBPintarFMaimanD: Tensile strength of spinal ligaments. Spine13: 526–531, 1988.
14.
PereyO: Fracture of the vertebral end plate in the lumbar spine. Acta Orthop Scand2S: 1–101, 1957.
15.
RissanenPM: The surgical anatomy and pathology of the supraspinous and interspinous ligaments of the lumbar spine with special reference to ligaments ruptures. Acta Orthop Scand, (Suppl) 46.
16.
SchultzABWarwickDN: Mechanical properties of the human lumbar spine motion segments -Par 1: Responses in flexion, extension, lateral bending and torsion. J Biomech Eng101: 46–52, 1979.
17.
ScolesPLintonAELatimerB: Vertebral body and posterior element morphology: The normal spine in middle life. Spine13: 1082–1086, 1988.
18.
SikorynTAHukinsDWL: Mechanism of failure of the ligamentum flavum of the spine during in vitro tensile tests. J Orthop Res8 (4): 586–591, 1990.
19.
TwomeyLT: Sustained lumbar traction An experimental study of long spine segments. Spine10: 146–149, 1985.
20.
WhiteAAPanjabiMM: Clinical biomechanics of the spine. Lippincott, Philadelphia1990.
21.
YangKHKingAL: Mechanism of facet load transmission as a hypothesis for low-back pain. Spine9 (6): 557–565, 1984.