TY - JOUR
T1 - Is spinal height gain associated with rod orientation and the use of cross-links in magnetically controlled growing rods in early-onset scoliosis?
AU - Pediatric Spine Study Group
AU - Hosseini, Pooria
AU - Akbarnia, Behrooz A.
AU - Pawelek, Jeff B.
AU - Tran, Stacie
AU - Zhang, Justin
AU - Johnston, Charles E.
AU - Shah, Suken A.
AU - Emans, John B.
AU - Mundis, Gregory M.
AU - Yaszay, Burt
AU - Samdani, Amer F.
AU - Sponseller, Paul D.
AU - Sturm, Peter F.
N1 - Copyright © 2023 Wolters Kluwer Health, Inc. All rights reserved.
PY - 2023/11/1
Y1 - 2023/11/1
N2 - Optimal orientation for magnetically controlled growing rods (MCGRs) is unclear. The objective of this study was to investigate associations of rod orientation with implant-related complications (IRCs) and spinal height gains. Using an international early-onset scoliosis (EOS) database, we retrospectively reviewed 57 patients treated with dual MCGRs from May 2013 to July 2015 with minimum 2-year follow-up. Outcomes of interest were IRCs and left/right rod length gains and thoracic (T1–T12) and spinal (T1–S1) heights. We compared patients with two rods lengthened in the cephalad (standard; n = 18) versus opposite (offset; n = 39) directions. Groups did not differ in age, sex, BMI, duration of follow-up, EOS cause, ambulatory status, primary curve magnitude, baseline thoracic height, or number of distractions/year. We compared patients whose constructs used ≥1 cross-link (CL group; n = 22) versus no CLs (NCL group; n = 35), analyzing thoracic height gains per distraction (α = 0.05). Offset and standard groups did not differ in left or right rod length gains overall or per year or in thoracic or spinal height gain. Per distraction, the CL and NCL groups did not differ significantly in left or right rod length or thoracic or spinal height gain. Complications did not differ significantly between rod orientation groups or between CL groups. MCGR orientation and presence of cross-links were not associated with differences in rod length gain, thoracic height, spinal height, or IRCs at 2-year follow-up. Surgeons should feel comfortable using either MCGR orientation. Level of evidence: 3, retrospective.
AB - Optimal orientation for magnetically controlled growing rods (MCGRs) is unclear. The objective of this study was to investigate associations of rod orientation with implant-related complications (IRCs) and spinal height gains. Using an international early-onset scoliosis (EOS) database, we retrospectively reviewed 57 patients treated with dual MCGRs from May 2013 to July 2015 with minimum 2-year follow-up. Outcomes of interest were IRCs and left/right rod length gains and thoracic (T1–T12) and spinal (T1–S1) heights. We compared patients with two rods lengthened in the cephalad (standard; n = 18) versus opposite (offset; n = 39) directions. Groups did not differ in age, sex, BMI, duration of follow-up, EOS cause, ambulatory status, primary curve magnitude, baseline thoracic height, or number of distractions/year. We compared patients whose constructs used ≥1 cross-link (CL group; n = 22) versus no CLs (NCL group; n = 35), analyzing thoracic height gains per distraction (α = 0.05). Offset and standard groups did not differ in left or right rod length gains overall or per year or in thoracic or spinal height gain. Per distraction, the CL and NCL groups did not differ significantly in left or right rod length or thoracic or spinal height gain. Complications did not differ significantly between rod orientation groups or between CL groups. MCGR orientation and presence of cross-links were not associated with differences in rod length gain, thoracic height, spinal height, or IRCs at 2-year follow-up. Surgeons should feel comfortable using either MCGR orientation. Level of evidence: 3, retrospective.
KW - Follow-Up Studies
KW - Humans
KW - Orthopedic Procedures
KW - Postoperative Complications
KW - Retrospective Studies
KW - Scoliosis/surgery
KW - Spine/surgery
KW - Treatment Outcome
UR - https://www.scopus.com/pages/publications/85174751273
U2 - 10.1097/BPB.0000000000001103
DO - 10.1097/BPB.0000000000001103
M3 - Article
C2 - 37278283
AN - SCOPUS:85174751273
SN - 1060-152X
VL - 32
SP - 531
EP - 536
JO - Journal of Pediatric Orthopaedics Part B
JF - Journal of Pediatric Orthopaedics Part B
IS - 6
ER -