The expandable transforaminal lumbar interbody fusion – two years follow-up

Boktor et al. J Craniovertebr Junction Spine 9(1):50–55, 2018.

Also listed under ALTERA® and RISE®

Study | Summary Sheet

Comparative effectiveness of expandable versus static interbody spacers via MIS LLIF: a 2-year radiographic and clinical outcomes study

Li et al. Global Spine J 10(8):998-1005, 2020.

Study | Summary Sheet

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Comparative effectiveness of laterally placed expandable versus static interbody spacers: a 1-year follow-up radiographic and clinical outcomes study

Li et al. Asian Spine J 15(1):89-96, 2021.

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Comparative effectiveness of adjustable lordotic expandable versus static lateral lumbar interbody fusion devices: one year clinical and radiographic outcomes

Li et al. Open Orthop J 14:60-68, 2020.

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Pedicle screw configuration for thoracolumbar burst fracture treatment: short versus long posterior fixation constructs with and without anterior column augmentation

Peters et al. Asian Spine J 8(1):35–43, 2014.

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Pedicle screw instrumentation of thoracolumbar burst fractures: Biomechanical evaluation of screw configuration with pedicle screws at the level of the fracture

Bolesta et al. Int J Spine Surg 6:200–205, 2012.

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Awake percutaneous transforaminal lumbar interbody fusion with expandable cage and robotic-assisted navigation and instrumentation: Case report and review of literature

Wang et al. Interdisciplinary Neurosurgery 20:100685, 2020.

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First spine surgery utilizing real-time image-guided robotic assistance

Ahmed et al. Comput Assist Surg (Abingdon) 24(1):13–17, 2019.

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In vitro biomechanical and fluoroscopic study of a continuously expandable interbody spacer concerning its role in insertion force and segmental kinematics

Torretti et al. Asian Spine J 12(4):601–610, 2018.

Transfacet minimally invasive transforaminal lumbar interbody fusion with an expandable interbody device-part II: consecutive case series

Khalifeh et al. Oper Neurosurg (Hagerstown) 19(5):518-529, 2020.

Study | Summary Sheet

The expandable transforaminal lumbar interbody fusion – two years follow-up

Boktor et al. J Craniovertebr Junction Spine 9(1): 50–55, 2018.

Also listed under CALIBER® and RISE®

Study | Summary Sheet

Transforaminal lumbar interbody fusion with expandable interbody device provides indirect decompression through significant disc height restoration

Gentry et al. J Spine 8(4):440, 2019.

Study | Summary Sheet

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Initial single-institution experience with a novel robotic-navigation system for thoracolumbar pedicle screw and pelvic screw placement with 643 screws

Jain et al. Int J Spine Surg 13(5):459-463, 2019.

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A novel technique for sacropelvic fixation using image-guided sacroiliac screws: a case series and biomechanical study

Kim et al. J Biomed Res 33(3):208–216, 2019.

In vitro biomechanical study of pedicle screw pull-out strength based on different screw path preparation techniques

Moldavsky et al. Indian J Orthop 50(2): 177–182, 2016.

Study | Summary Sheet