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Robotic spine surgery: current state in minimally invasive surgery

Vo et al. Global Spine J 10(2 Suppl):34S-40S, 2020.

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Navigated robotic assistance improves pedicle screw accuracy in minimally invasive surgery of the lumbosacral spine: 600 pedicle screws in a single institution

Wallace et al. Int J Med Robot 16(1):e2054, 2020.

A feasibility cadaver study for placing screws in various pelvic osseous fracture pathways using a robotic arm

Smith et al. Eur J Orthop Surg Traumatol January 19 [Epub ahead of print], 2024.
Also listed under ExcelsiusGPS®

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The use of a robotic arm for fixation of pelvic fractures

Gilani et al. J Orthop Trauma 37(11S): S28-S32, 2023.
Also listed under ExcelsiusGPS®

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Motion preservation surgery for scoliosis with a vertebral body tethering system: a biomechanical study

Nicolini et al. Eur Spine J 31(4):1013-1021, 2021.

An initial biomechanical investigation of fusionless anterior tether constructs for controlled scoliosis correction

Lavelle et al. Spine J 16(3):408-413, 2016.

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Return to sport and daily life activities after vertebral body tethering for AIS: analysis of the sport activity questionnaire

Baroncini et al. Eur Spine J 30(7):1998-2006, 2021.

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The effects of vertebral body tethering on sagittal parameters: evaluations from a 2‑years follow‑up

Baroncini et al. Eur Spine J 31(4):1060-1066, 2022.

An investigation of range of motion preservation in fusionless anterior double screw and cord constructs for scoliosis correction

Trobisch et al. Eur Spine J 32(4):1173-1186, 2023.

A critical analysis of lateral versus central endpoint in distal tibia nailing: does it affect alignment?

Brodke et al. J Orthop Trauma 36:400-405, 2022.

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Are modular pedicle screws associated with a high complication rate following posterior spinal fixation?

Pugely et al. J Spine Surg 10 March [Epub ahead of print], 2023.

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Does design change in total knee arthroplasty implants affect patient-reported outcomes?

Toossi et al. BMC Surg 23(1):49, 2023.

Comparison of 3D-printed titanium-alloy, standard titanium-alloy, and PEEK interbody spacers in an ovine model

Van Horn et al. Spine J 21(12):2097-2103, 2021.

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Laterally placed expandable interbody spacers with and without adjustable lordosis improve radiographic and clinical outcomes: a two-year follow-up study

Li et al. Cureus 13(12):e20302, 2021.

Combining expandable interbody cage technology with a minimally invasive technique to harvest iliac crest autograft bone to optimize fusion outcomes in minimally invasive transforaminal lumbar interbody fusion surgery

Virk et al. Clin Spine Surg 34(9):E522-E530, 2021.

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