Background: Adolescent idiopathic scoliosis (AIS) is often associated with thoracic hypokyphosis or even lordosis.
Objectives: To analyze the influence of posterior correction and fusion in thoracic, structurally double-curved AIS.
Material And Methods: Out of 127 thoracic AIS (Lenke types 1 and 2) recorded prospectively, idiopathic double thoracic curve AIS were analyzed retrospectively. Surgery 2010-2019 with pedicle screw double rod systems in a scoliosis center. Follow-up (FU) at least 2 years. Frontal and sagittal angles (whole-spine radiographs, 2 planes): thoracic curve (MK), proximal-thoracic curve (PK) and lumbar curve (LK), thoracic kyphosis (TK), lumbar lordosis (LL).
Statistical Analysis: values as MW ± SD, students t‑test (significance a = 0.05), Pearson's correlation, sub-analysis with sagittal modifiers (-, N, +).
Results: A total of 47 AIS-double thoracic curve were identified, mean FU 29.3 ± 12.2 months, mean age 14 ± 1.5 years. The mean correction (FU-preop) of MK was 67%, PK 53%, LK 73%, each significant, (p < 0.05). On average, TK (FU-preop) decreased by -6.5 ± 11.6° (p < 0.05), no significant change from FU (p = 0.6). TK (FU-preop) increased by 8.6 ± 5.0° (p < 0.05) in hypokyphotic cases, significantly decreased by -4.8 ± 9.6° in normokyphotic AIS and -25.3 ± 11.1° in hyperkyphotic cases, respectively (p < 0.05). In hypokyphosis: moderately strong correlation between correction PK (r = -0.5) and spontaneous correction LK (r = 0.8) (frontal plane) and change from pre- to postop TK (sagittal plane) (p < 0.05). Moderate correlation for hyperkyphosis: correction PK (r = -0.5) and postop TK (p < 0.05). No relevant correlations for normokyphosis. 17% had postop hypokyphosis, of which 0% had preop hypokyphosis. Rod diameter (5.5 mm vs. 6 mm) had no significant effect on TC.
Conclusions: Posterior instrumented correction and fusion (pedicle screw dual rod systems) can significantly correct both lateral curves in idiopathic double thoracic curves, although it is associated with an increased risk of postop thoracic hypokyphosis, especially in preoperatively normokyphotic patients.
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http://dx.doi.org/10.1007/s00132-022-04339-1 | DOI Listing |
Artif Organs
March 2025
Cardiovascular Institute, Thorax Center, Department of Cardiology, Erasmus Medical Center, Rotterdam, the Netherlands.
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Eur J Orthop Surg Traumatol
March 2025
Department of Pediatric Orthopaedics, Hospital for Special Surgery, 535 East 70th Street, New York, NY, 10021, USA.
Surgical correction of neuromuscular scoliosis is a challenging problem facing spine surgeons. Many patients require long constructs and pelvic fixation to obtain adequate curve correction and pelvic obliquity correction. The aim of this technical note is to describe a technique for sequential pelvic obliquity and scoliotic curve correction in patients with neuromuscular scoliosis using four rods in upper thoracic to pelvis posterior spinal fusion, without the need for intraoperative traction.
View Article and Find Full Text PDFJ Med Internet Res
March 2025
Department of Thoracic Surgery, West China Hospital of Sichuan University, Chengdu, China.
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View Article and Find Full Text PDFRadiology
March 2025
Department of Radiology and Radiologic Sciences, Johns Hopkins University, Baltimore, Md.
Background Recent studies have investigated how deep learning (DL) algorithms applied to CT using two-dimensional (2D) segmentation (sagittal or axial planes) can calculate bone mineral density (BMD) and predict osteoporosis-related outcomes. Purpose To determine whether TotalSegmentator, an nnU-net algorithm, can measure three-dimensional (3D) vertebral body BMD across consistently imaged thoracic levels (T1-T10) at any conventional, noncontrast chest CT examination. Materials and Methods This study is a secondary analysis of a multicenter ( = 6) prospective cohort, the Multi-Ethnic Study of Atherosclerosis (MESA).
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