Intervertebral cages in the lumbar spine represent an advancement in spinal fusion to relieve low back pain. Different implant designs require different endplate preparations, but the question of to what extent preservation of the bony endplate might be necessary remains unanswered. In this study the effects of endplate properties and their distribution on stresses in a lumbar functional spinal unit were investigated using finite-element analyses. Three-dimensional finite-element models of L2-L3 with and without a cage were used. An anterior approach for a monobloc, box-shaped cage was modelled. The results showed that inserting a cage increased the maximum von Mises stress and changed the load distribution in the adjacent structures. A har...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Abstract.: Intervertebral cages in the lumbar spine have been an advancement in spinal fusion to rel...
Objective: To investigate stresses in interbody fusion systems during compressive loading. Design: T...
Background and objective: Spinal degeneration and instability are commonly treated with interbody fu...
Abstract Objective This study aimed to compare the biomechanical properties of lumbar interbody fusi...
Anterior column cage or graft subsidence remains a biomechanically and clinically serious problem t...
Background: Commercial fusion cages typically provide support in the central region of the endplate,...
Anterior column cage or graft subsidence remains a biomechanically and clinically serious problem t...
Abstract Background Initial promise of a stand-alone interbody fusion cage to treat chronic back pai...
Abstract Background Lateral lumbar interbody fusion (...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Abstract.: Intervertebral cages in the lumbar spine have been an advancement in spinal fusion to rel...
Objective: To investigate stresses in interbody fusion systems during compressive loading. Design: T...
Background and objective: Spinal degeneration and instability are commonly treated with interbody fu...
Abstract Objective This study aimed to compare the biomechanical properties of lumbar interbody fusi...
Anterior column cage or graft subsidence remains a biomechanically and clinically serious problem t...
Background: Commercial fusion cages typically provide support in the central region of the endplate,...
Anterior column cage or graft subsidence remains a biomechanically and clinically serious problem t...
Abstract Background Initial promise of a stand-alone interbody fusion cage to treat chronic back pai...
Abstract Background Lateral lumbar interbody fusion (...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...
Introduction: 3D printed trussed titanium interbody cages may deliver bone stimulating mechanobiolog...