Surgical Planning and Follow-up of Anterior Vertebral Body Growth Modulation in Pediatric Idiopathic Scoliosis Using a Patient-Specific Finite Element Model Integrating Growth Modulation

Nikita Cobetto1,2, Carl‐Éric Aubin1,2, Stefan Parent1
1Research Center, Sainte-Justine University Hospital Center, 3175 Côte-Sainte-Catherine Road, Montreal, Quebec H3T 1C5, Canada
2Department of Mechanical Engineering, Polytechnique Montréal, P.O. Box 6079, Downtown Station, Montreal, Quebec H3C 3A7, Canada

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Asher, 2006, Adolescent idiopathic scoliosis: natural history and long term treatments effects, Scoliosis, 1, 2, 10.1186/1748-7161-1-2

Betz, 2010, Vertebral body stapling: a fusionless treatment option for a growing child with moderate idiopathic scoliosis, Spine, 35, 169, 10.1097/BRS.0b013e3181c6dff5

Fletcher, 2012, Early-onset scoliosis: current concepts and controversies, Curr Rev Muskuloskelet Med, 5, 102, 10.1007/s12178-012-9116-0

Driscoll, 2011, Biomechanical comparison of fusionless growth modulation corrective techniques in pediatric scoliosis, Med Biol Eng Comput, 49, 1437, 10.1007/s11517-011-0801-8

Skaggs, 2014, A classification of growth friendly spine implants, J Pediatr Orthop, 34, 260, 10.1097/BPO.0000000000000073

Akbarnia, 2011, Fusionless procedures for the management of early-onset spine deformities in 2011: what do we know?, J Child Orthop, 5, 159, 10.1007/s11832-011-0342-6

Samdani, 2014, Anterior vertebral body tethering for idiopathic scoliosis: two-year results, Spine, 39, 1688, 10.1097/BRS.0000000000000472

Samdani, 2015, Anterior vertebral body tethering for immature adolescent idiopathic scoliosis: one-year results on the first 32 patients, Eur Spine J, 24, 1533, 10.1007/s00586-014-3706-z

Crawford, 2010, Growth modulation by means of anterior tethering resulting in progressive correction of juvenile idiopathic scoliosis, J Bone Joint Surg Am, 92, 202, 10.2106/JBJS.H.01728

Driscoll, 2010, Finite element comparison of different growth sparring instrumentation systems for the early treatment of idiopathic scoliosis, Stud Health Technol Inform, 158, 89

Clin, 2015, Biomechanical simulation and analysis of scoliosis correction using a fusionless intravertebral epiphyseal device, Spine, 40, 369, 10.1097/BRS.0000000000000777

Humbert, 2009, 3D reconstruction of the spine from bi-planar x-rays using parametric models based on transversal and longitudinal inferences, Med Eng Phys, 31, 681, 10.1016/j.medengphy.2009.01.003

Pomero, 2004, Fast accurate stereoradiographic 3D-reconstruction of the spine using a combined geometric and statistic model, Clin Biomech, 19, 240, 10.1016/j.clinbiomech.2003.11.014

Descrimes, 1995, Modelling of facet joints in a finite element model of the scoliotic spine and thorax: mechanical aspects, Rachis, 7, 301

Panjabi, 1976, Three-dimensional flexibility and stiffness properties of the human thoracic spine, J Biomech, 9, 185, 10.1016/0021-9290(76)90003-8

Chazal, 1985, Biomechanical properties of spinal ligaments and a histological study of the supraspinal ligament in traction, J Biomech, 18, 167, 10.1016/0021-9290(85)90202-7

Pezowicz, 2012, The mechanical properties of human rib in young adult, Acta Bioeng Biomech, 14, 53

Stokes, 2007, Analysis and simulation of progressive adolescent scoliosis by biomechanical growth simulation, Eur Spine J, 16, 1621, 10.1007/s00586-007-0442-7

Stokes, 2006, Endochondral growth in growth plates of three species at two anatomical locations modulated by mechanical compression, J Orthop Res, 10, 1327, 10.1002/jor.20189

Canavese, 2013, Normal and abnormal spine and thoracic cage development, World J Orthop, 4, 167, 10.5312/wjo.v4.i4.167

Schultz, 1982, Loads on the lumbar spine. Validation of a biomechanical analysis by measurement of intradiscal pressures and myoelectric signals, J Bone Joint Surg, 64, 713, 10.2106/00004623-198264050-00008

Driscoll, 2009, The role of concave–convex biases in the progression of idiopathic scoliosis, Eur Spine J, 18, 180, 10.1007/s00586-008-0862-z

Villemure, 2002, Simulation of progressive deformities in adolescent idiopathic scoliosis using a biomechanical model integrating vertebral growth, J Biomed Eng, 124, 784, 10.1115/1.1516198

Pearsall, 1996, Segmental inertial parameters of the human trunk as determined from computed tomography, Ann Biomed Eng, 24, 198, 10.1007/BF02667349

Hoh, 2008, Principles of growth modulation in the treatment of scoliotic deformities, Neurosurgery, 63, 211, 10.1227/01.NEU.0000325766.21809.18