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211 results on '"F. Galbusera"'

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101. Biomechanical in vitro comparison between anterior column realignment and pedicle subtraction osteotomy for severe sagittal imbalance correction.

102. Physiological variations in the sagittal spine alignment in an asymptomatic elderly population.

103. Supplementary delta-rod configurations provide superior stiffness and reduced rod stress compared to traditional multiple-rod configurations after pedicle subtraction osteotomy: a finite element study.

104. The Spine: A Strong, Stable, and Flexible Structure with Biomimetics Potential.

105. Evaluation of iliac screw, S2 alar-iliac screw and laterally placed triangular titanium implants for sacropelvic fixation in combination with posterior lumbar instrumentation: a finite element study.

106. Towards intervertebral disc engineering: Bio-mimetics of form and function of the annulus fibrosus lamellae.

107. Fully automated radiological analysis of spinal disorders and deformities: a deep learning approach.

109. Early clinical and radiological evaluation in patients with total ankle replacement performed by lateral approach and peroneal osteotomy.

110. Dependence of lumbar loads on spinopelvic sagittal alignment: An evaluation based on musculoskeletal modeling.

111. Artificial intelligence and machine learning in spine research.

112. Is rasterstereography a valid noninvasive method for the screening of juvenile and adolescent idiopathic scoliosis?

113. The Mechanical Role of the Radial Fiber Network Within the Annulus Fibrosus of the Lumbar Intervertebral Disc: A Finite Elements Study.

114. A Precautionary Approach to Guide the Use of Transition Metal-Based Nanotechnology to Prevent Orthopedic Infections.

115. Endplate lesions in the lumbar spine: a novel MRI-based classification scheme and epidemiology in low back pain patients.

116. Bone-Preserving Decompression Procedures Have a Minor Effect on the Flexibility of the Lumbar Spine.

117. Influence of morphology and material properties on the range of motion of the costovertebral joint - a probabilistic finite element analysis.

118. Three-dimensional microstructural reconstruction of the ovine intervertebral disc using ultrahigh field MRI.

119. Generative models: an upcoming innovation in musculoskeletal radiology? A preliminary test in spine imaging.

120. Uncertainty analysis of material properties and morphology parameters in numerical models regarding the motion of lumbar vertebral segments.

121. Augmentation of the atrophic maxillary sinus floor: graft stiffness, implant shape and length.

122. Biomechanical advantages of supplemental accessory and satellite rods with and without interbody cages implantation for the stabilization of pedicle subtraction osteotomy.

123. Injury rates in martial arts athletes and predictive risk factors for lower limb injuries.

124. Analysis of a Unilateral Bridging Cage for Lumbar Interbody Fusion: 2-Year Clinical Results and Fusion Rate with a Focus on Subsidence.

125. Asymmetrical intrapleural pressure distribution: a cause for scoliosis? A computational analysis.

126. The Role of the Size and Location of the Tumors and of the Vertebral Anatomy in Determining the Structural Stability of the Metastatically Involved Spine: a Finite Element Study.

127. Exploring the Potential of Generative Adversarial Networks for Synthesizing Radiological Images of the Spine to be Used in In Silico Trials.

128. Finite element comparison between the human and the ovine lumbar intervertebral disc.

129. Solid bone tumors of the spine: Diagnostic performance of apparent diffusion coefficient measured using diffusion-weighted MRI using histology as a reference standard.

130. Is intervertebral disc degeneration related to segmental instability? An evaluation with two different grading systems based on clinical imaging.

131. Surgical treatment of spinal disorders in Parkinson's disease.

132. A comparative analysis of a disposable and a reusable pedicle screw instrument kit for lumbar arthrodesis: integrating HTA and MCDA.

133. Contact stresses, pressure and area in a fixed-bearing total ankle replacement: a finite element analysis.

134. Determinants of the biomechanical and radiological outcome of surgical correction of adolescent idiopathic scoliosis surgery: the role of rod properties and patient characteristics.

135. Anterior support reduces the stresses on the posterior instrumentation after pedicle subtraction osteotomy: a finite-element study.

136. Validation of the AnyBody full body musculoskeletal model in computing lumbar spine loads at L4L5 level.

137. A new multiscale micromechanical model of vertebral trabecular bones.

138. A novel finite element model of the ovine lumbar intervertebral disc with anisotropic hyperelastic material properties.

139. Instrumentation failure following pedicle subtraction osteotomy: the role of rod material, diameter, and multi-rod constructs.

140. Semiautomated 3D Spine Reconstruction from Biplanar Radiographic Images: Prediction of Intervertebral Loading in Scoliotic Subjects.

141. Influence of Complex Loading Conditions on Intervertebral Disc Failure.

142. Numerical Prediction of the Mechanical Failure of the Intervertebral Disc under Complex Loading Conditions.

143. Preclinical evaluation of posterior spine stabilization devices: can we compare in vitro and in vivo loads on the instrumentation?

144. Semi-quantitative evaluation of signal intensity and contrast-enhancement in Modic changes.

145. Radiation exposure in spine surgery using an image-guided system based on intraoperative cone-beam computed tomography: analysis of 107 consecutive cases.

146. Preclinical evaluation of posterior spine stabilization devices: can the current standards represent basic everyday life activities?

147. MR Imaging and Radiographic Imaging of Degenerative Spine Disorders and Spine Alignment.

148. Finite element analysis of the lumbar destabilization following pedicle subtraction osteotomy.

149. Pedicle screw cement augmentation. A mechanical pullout study on different cement augmentation techniques.

150. Planning the Surgical Correction of Spinal Deformities: Toward the Identification of the Biomechanical Principles by Means of Numerical Simulation.

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