Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two individual implants that are extendable and extremely flexible. One implant, the XS LAT, generates a lateral, bending moment and one implant, the XS TOR, generates a torsion moment. Two 'inverse' implants were developed for generating torsion and lateral bending in a porcine model was tested for force delivery. An in vitro experiment was set up to describe the mechanical behavior of both implants. Materials and methods: Narrow and wide ('inverse') versions of the XS TOR and XS LAT were mounted on an apparatus that was able to simulate different spinal geometries. The implants were anchored to three artificial vertebrae with integrated 6D force...
Study Design: Biomechanical study. Objective: Recently, a posterior concave periapical distraction d...
Scoliosis is a three-dimensional deformity of the spine and trunk, comprising of a lateral deviation...
Adolescent idiopathic scoliosis is characterised by an S- or C-shaped lateral deviation of the spine...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
<p>Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of tw...
Purpose: In vivo evaluation of scoliosis treatment using a novel approach in which two posterior imp...
Purpose: In vivo evaluation of scoliosis treatment using a novel approach in which two posterior imp...
Purpose In vivo evaluation of scoliosis treatment using a novel approach in which two posterior impl...
In vivo evaluation of scoliosis treatment using a novel approach in which two posterior implants are...
Spinal fusion is a widely and successfully performed strategy for the treatment of spinal deformitie...
This thesis studied a new minimally invasive implant for scoliosis correction that aims to correct t...
Study Design: Biomechanical study. Objective: Recently, a posterior concave periapical distraction d...
Study Design: Biomechanical study. Objective: Recently, a posterior concave periapical distraction d...
Scoliosis is a three-dimensional deformity of the spine and trunk, comprising of a lateral deviation...
Adolescent idiopathic scoliosis is characterised by an S- or C-shaped lateral deviation of the spine...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of two i...
<p>Introduction: We developed an innovative non-fusion correction system (XS LATOR) consisting of tw...
Purpose: In vivo evaluation of scoliosis treatment using a novel approach in which two posterior imp...
Purpose: In vivo evaluation of scoliosis treatment using a novel approach in which two posterior imp...
Purpose In vivo evaluation of scoliosis treatment using a novel approach in which two posterior impl...
In vivo evaluation of scoliosis treatment using a novel approach in which two posterior implants are...
Spinal fusion is a widely and successfully performed strategy for the treatment of spinal deformitie...
This thesis studied a new minimally invasive implant for scoliosis correction that aims to correct t...
Study Design: Biomechanical study. Objective: Recently, a posterior concave periapical distraction d...
Study Design: Biomechanical study. Objective: Recently, a posterior concave periapical distraction d...
Scoliosis is a three-dimensional deformity of the spine and trunk, comprising of a lateral deviation...
Adolescent idiopathic scoliosis is characterised by an S- or C-shaped lateral deviation of the spine...