Torque forces of expandable titanium vertebral body replacement cages during expansion and subsidence in the osteoporotic lumbar spineKrishnan Sircar, Nikolaus Kernich, Maximilian Weber et al.|Clinical Biomechanics|2024Cited by 6
Increased stability due to symmetric cement volume in augmented pedicle screws? A biomechanical studyMaximilian Weber, Max J. Scheyerer, Philipp Egenolf et al.|Journal of Biomedical Materials Research Part B Applied Biomaterials|2023Cited by 5
Is human bone matrix a sufficient augmentation method revising loosened pedicle screws in osteoporotic bone? – A biomechanical evaluation of primary stabilityPhilipp Egenolf, Maximilian Lenz, Arne Harland et al.|Clinical Biomechanics|2023Cited by 1
Does index-level pedicle screw instrumentation affect cage subsidence after vertebral body replacement? – A biomechanical study in human cadaveric osteoporotic specimensMaximilian Weber, Krishnan Sircar, Peer Eysel et al.|Clinical Biomechanics|2023Cited by 1