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Wirbelsäule, Rumpf

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Literatur

  1. Greenspan (2003) Skelettradiologie. München: Urban & Fischer in Elsevier

    Google Scholar 

  2. Becker A, Held H, Redaelli M, Strauch K, Chenot JF, Leonhardt C, Keller S, Baum E, Pfingsten M, Hildebrandt J, Basler HD, Kochen MM, Donner-Banzhoff N (2011) Low back pain in primary care: costs of care and prediction of future health care utilization. Spine 35: 1714–20

    Google Scholar 

  3. Bramble DM, Lieberman DE (2004) Endurance running and the evolution of Homo. Nature 432: 345–52

    CAS  PubMed  Google Scholar 

  4. Hestbaek L, Leboeuf-Yde C, Manniche C (2003) Low back pain: what is the long-term course? A review of studies of general patient populations. Eur Spine J 12: 149–65

    PubMed Central  PubMed  Google Scholar 

  5. Ihme N, Olszynska B, Lorani A, Weiss C, Kochs A (2002) Zusammenhang der vermehrten Innenrotation im Hüftgelenk mit einer verminderten Beckenaufrichtbarkeit, der Rückenform und Haltung bei Kindern – Gibt es das so genannte Antetorsionssyndrom? Z Orthop Ihre Grenzgeb 140: 423–7

    CAS  PubMed  Google Scholar 

  6. Leboeuf-Yde C, Kyvik K (1998) At what age does low back pain become a common problem? A study of 29,424 individuals aged 12–41 years. Spine 23: 228–34

    CAS  PubMed  Google Scholar 

  7. McMaster MJ (1983) Infantile idiopathic scoliosis: Can it be prevented? J Bone Joint Surg Am 65: 612–7

    CAS  Google Scholar 

  8. Mohseni-Bandpei MA, Bagheri-Nesami M, Shayesteh-Azar M (2007) Nonspecific low back pain in 5000 Iran ian school-age children. J Pediatr Orthop 27: 126–9

    PubMed  Google Scholar 

  9. Aleissa S, Parsons D, Grant J, Harder J, Howard J (2011) Deep wound infection following pediatric scoliosis surgery: incidence and analysis of risk factors. Can J Surg 54 (4): 263–9

    PubMed Central  PubMed  Google Scholar 

  10. Andersen M, Andersen G, Thomsen K, Christensen S (2002) Early weaning might reduce the psychological strain of Boston bracing: a study of 136 patients with adolescent idiopathic scoliosis at 3.5 years after termination of brace treatment. J Pediatr Orthop B 11: 96–9

    PubMed  Google Scholar 

  11. Andersen MO, Thomsen K, Kyvik KO (2007) Adolescent idiopathic scoliosis in twins: a population-based survey. Spine 32: 927–30

    PubMed  Google Scholar 

  12. Asghar J, Samdani AF, Pahys JM, D’Andrea LP, Guille JT, Clements DH, Betz RR (2009) Computed tomography evaluation of rotation correction in adolescent idiopathic all pedicle screw construct versus a hook-rod system. Spine 34 (8): 804–7

    PubMed  Google Scholar 

  13. Bartie BJ, Lonstein JE, Winter RB (2009) Long-term follow-up of adolescent idiopathic scoliosis patients who had Harrington instrumentation and fusion to the lower lumbar vertebrae: is low back pain a problem? Spine 34 (24): E873–8

    PubMed  Google Scholar 

  14. Bess S, Akbarnia BA, Thompson GH, Sponseller PD, Shah SA, El SH, Boachie-Adjei O, Karlin LI, Canale S, Poe-Kochert C, Skaggs DL (2010) Complications of growing-rod treatment for early-onset scoliosis: analysis of one hundred and forty patients. J Bone Joint Surg Am 92 (15): 2533–43

    PubMed  Google Scholar 

  15. Bridwell K, Lenke L, Baldus C, Blanke K (1998) Major intraoperative neurologic deficits in pediatric and adult spinal deformity patients. Incidence and etiology at one institution. Spine 23: 324–31

    CAS  PubMed  Google Scholar 

  16. Bunnell WP (1993) Outcome of spinal screening. Spine 18: 1572–80

    CAS  PubMed  Google Scholar 

  17. Cheng J, Tang S, Guo X, Chan C, Qin L (2001) Osteopenia in adolescent idiopathic scoliosis: a histomorphometric study. Spine 26: 19–23

    Google Scholar 

  18. Cheung KM, Wang T, Qiu GX, Luk KD (2008) Recent advances in the aetiology of adolescent idiopathic scoliosis. Int Orthop 32 (6): 729–34

    PubMed Central  PubMed  Google Scholar 

  19. Chu WC, Lam WW, Chan YL, Ng BK, Lam TP, Lee KM, Guo X, Cheng JC (2006) Relative shortening and functional tethering of spinal cord in adolescent idiopathic scoliosis?: study with multiplanar reformat magnetic resonance imaging and somatosensory evoked potential. Spine 31 (1): E19–25

    PubMed  Google Scholar 

  20. Cobb JR (1948) Outline for the study of scoliosis. In: Instructional course lectures, the American Academy of Orthopaedic Surgeons, vol 5. Edwards, Ann Arbor Mich

    Google Scholar 

  21. Coillard C, Circo A, Rivard CH (2008) A new concept for the noninvasive treatment of Adolescent Idiopathic Scoliosis: the Corrective Movement principle integrated in the SpineCor System. Disabil Rehabil Assist Technol 3 (3): 112–9

    PubMed  Google Scholar 

  22. Cotrel Y, Dubousset J (1984) Nouvelle technique d’osteosynthese rachidienne segmentaire par voie posterieure. Rev Chir Orthop 70: 489–94

    CAS  PubMed  Google Scholar 

  23. Danielsson AJ, Nachemson AL (2001) Childbearing, curve progression, and sexual function in women 22 years after treatment forscoliosis: a comparison of an adolescent idiopathic scoliosis: a case-control study. Spine 26:

    CAS  PubMed  Google Scholar 

  24. 1449–56

    Google Scholar 

  25. Danielsson AJ, Nachemson AL (2001) Radiologic findings and curve progression 22 years after treatment for adolescent idiopathic scoliosis: comparison of brace and surgical treatment with matching control group of straight individuals. Spine 26: 516–25

    CAS  PubMed  Google Scholar 

  26. De Hart MM, Lauerman WC, Conely AH, Roettger RH, West JL, Cain JE (1994) Management of retroperitoneal chylous leakage. Spine 19: 716–8

    CAS  Google Scholar 

  27. Dimeglio A (2001) Growth in pediatric orthopaedics. J Pediatr Orthop 21: 549–55

    CAS  PubMed  Google Scholar 

  28. Do T, Fras C, Burke S, Widmann R, Rawlins B, Boachie-Adjei O (2001) Clinical value of routine preoperative magnetic resonance imaging in adolescent idiopathic scoliosis. A prospective study of three hundred and twenty-seven patients. J Bone Joint Surg Am 83-A: 577–9

    CAS  PubMed  Google Scholar 

  29. Drerup B, Ellger B, Meyer zu Bentrup F, Hierholzer E (2001) Rasterstereographische Funktionsaufnahmen. Eine neue Methode zur biomechanischen Analyse der Skelettgeometrie. Orthopäde 30: 242–50

    CAS  PubMed  Google Scholar 

  30. Early S, Newton P, White K, Wenger D, Mubarak S (2002) The feasibility of anterior thoracoscopic spine surgery in children under 30 kilograms. Spine 27: 2368–73

    Google Scholar 

  31. Erb TO, Ryhult SE, Duitmann E, Hasler C, Luetschg J, Frei FJ (2005) Improvement of motor-evoked potentials by ketamine and spatial facilitation during spinal surgery in a young child. Anesth Analg 100 (6): 1634–6

    PubMed  Google Scholar 

  32. Fernandes P, Weinstein SL (2007) Natural history of early onset scoliosis. J Bone Joint Surg Am 89 (Suppl 1): 21–33

    PubMed  Google Scholar 

  33. Fletcher ND, Larson AN, Richards BS, Johnston CE (2011) Current treatment preferences for early onset scoliosis: a survey of POSNA members. J Pediatr Orthop 31 (3): 326–30

    PubMed  Google Scholar 

  34. Gammon SR, Mehlman CT, Chan W, Heifetz J, Durrett G, Wall EJ (2010) A comparison of thoracolumbosacral orthoses and Spine-Cor treatment of adolescent idiopathic scoliosis patients using the Scoliosis Research Society standardized criteria. J Pediatr Orthop 30 (6): 531–8

    PubMed  Google Scholar 

  35. Geck MJ, Rinella A, Hawthorne D, Macagno A, Koester L, Sides B, Bridwell K, Lenke L, Shufflebarger H (2009) Comparison of surgical treatment in Lenke 5C adolescent idiopathic scoliosis: anterior dual rod versus posterior pedicle fixation surgery: a comparison of two practices. Spine 34 (18): 1942–51

    PubMed  Google Scholar 

  36. Grivas TB, Vasiliadis ES (2008) Cosmetic outcome after conservative treatment of idiopathic scoliosis with a dynamic derotation brace. Stud Health Technol Inform 135387–92

    Google Scholar 

  37. Guo X, Chau W-W, Chan Y-L, Cheng J-C-Y, Burwell RG, Dangerfield PH (2005) Relative Relative anterior spinal overgrowth in adolescent idiopathic scoliosis – result of disproportionate endochondral-membranous bone growth? Eur Spine J 14 (9): 862–73

    CAS  PubMed  Google Scholar 

  38. Hahn F, Zbinden R, Min K (2005) Late implant infections caused by Propionibacterium acnes in scoliosis surgery. Eur Spine J 14 (8): 783–8

    PubMed Central  PubMed  Google Scholar 

  39. Halm H, Richter A, Thomsen B, Koszegvary M, Ahrens M, Quante M (2009) Ventrale Skolioseoperationen. Stand der Technik und Vergleich mit dorsalen Verfahren. Orthopäde 38 (2): 131–4

    CAS  PubMed  Google Scholar 

  40. Harrington PR (1962) Treatment of scoliosis. J Bone Joint Surg 44: 59–1

    Google Scholar 

  41. Hasler C (2012) Metamorphosis into a vertical expandable osseous rib: observations on the biologic traces of VEPTR® treatment. IPOTT-meeting Cannes 20.9.2012

    Google Scholar 

  42. Hasler C, Schmid C, Enggist A, Neuhaus C, Erb T (2010) No effect of osteopathic treatment on trunk morphology and spine flexibility in women with adolescent idiopathic scoliosis. J Child Orthop 4 (3): 219–26

    PubMed Central  PubMed  Google Scholar 

  43. Hasler CC (2000) Beinlängendifferenzen. Behandlungsbedürftigkeit und Bedeutung von verkürzenden Operationen. Orthopäde 29 (9): 766–74

    CAS  PubMed  Google Scholar 

  44. Hasler CC, Hefti F, Buchler P (2010) Coronal plane segmental flexibility in thoracic adolescent idiopathic scoliosis assessed by fulcrum-bending radiographs. Eur Spine J 19 (5): 732–8

    PubMed Central  PubMed  Google Scholar 

  45. Hefti FL, McMaster MJ (1983) The effect of the adolescent growth spurt on early posterior spinal fusion in infantile and juvenile idiopathic scoliosis. J Bone Joint Surg (Am) 65: 247–54

    CAS  Google Scholar 

  46. Helenius I, Remes V, Yrjönen T, Ylikoski M, Schlenzka D, Helenius M, Poussa M (2002) Comparison of Long-Term Functional and Radiologic Outcomes After Harrington Instrumentation and Spondylodesis in Adolescent Idiopathic Scoliosis. A Review of 78 Patients. Spine 27: 176–80

    PubMed  Google Scholar 

  47. Helfenstein A, Lankes M, Ohlert K, Varoga D, Hahne HJ, Ulrich HW, Hassenpflug J (2006) The objective determination of compliance in treatment of adolescent idiopathic scoliosis with spinal orthoses. Spine 31 (3): 339–44

    PubMed  Google Scholar 

  48. Hibbs RA (1921) An operation for progressive spinal deformities. A preliminary report of three cases from the service of the Orthopaedic Hospital. NY State J Med 93: 191–1

    Google Scholar 

  49. Ilharreborde B, Even J, Lefevre Y, Fitoussi F, Presedo A, Pennecot GF, Mazda K (2011) Hybrid constructs for tridimensional correction of the thoracic spine in adolescent idiopathic scoliosis: a comparative analysis of universal clamps versus hooks. Spine 35 (3): 306–14

    Google Scholar 

  50. Imrie M, Yaszay B, Bastrom TP, Wenger DR, Newton PO (2011) Adolescent idiopathic scoliosis: should 100% correction be the goal? J Pediatr Orthop 31 (1 Suppl): S9–13

    Google Scholar 

  51. Johnston C, Martin B, Denning J, Laine J, McClung M (2012) Incidence of Intrathecal Anomalies in Infantile Idiopathic Scoliosis (IIS). J Child Orthop 6 (Suppl 1): S1–3

    Google Scholar 

  52. Justice C, Miller N, Marosy B, Zhang J, AF W (2003) Familial idiopathic scoliosis. Evidence of an X-linked susceptibility locus. Spine 28: 589–94

    PubMed  Google Scholar 

  53. King HA, Moe JE, Bradford DS, Winter RB (1983) The selection of fusion levels on thoracic idiopathic scoliosis. J Bone Joint Surg (Am) 65: 1302–13

    CAS  Google Scholar 

  54. Kono H, Machida M, Saito M, Nishiwaki Y, Kato H, Hosogane N, Chiba K, Miyamoto T, Matsumoto M, Toyama Y (2011) Mechanism of osteoporosis in adolescent idiopathic scoliosis: experimental scoliosis in pinealectomized chickens. J Pineal Res 51: 387–93

    CAS  PubMed  Google Scholar 

  55. Korovessis PG, Stamatakis MV (1996) Prediction of scoliotic Cobb angle with the use of the scoliometer. Spine 21: 1661–6

    CAS  PubMed  Google Scholar 

  56. Kouwenhoven JW, Castelein RM (2008) The pathogenesis of adolescent idiopathic scoliosis: review of the literature. Spine 33 (26): 2898–908

    PubMed  Google Scholar 

  57. Lavelle WF, Samdani AF, Cahill PJ, Betz RR (2011) Clinical outcomes of nitinol staples for preventing curve progression in idiopathic scoliosis. J Pediatr Orthop 31 (1 Suppl): S107–13

    Google Scholar 

  58. Le Blanc R, Labelle H, Rivard CH, Poitras B (1997) Relation between adolescent idiopathic scoliosis and morphologic somatotypes. Spine 22: 2532–6

    CAS  Google Scholar 

  59. Lenke LG, Betz RR, Harms J, Bridwell KH, Clements DH, Lowe TG, Blanke K (2001) Adolescent idiopathic scoliosis: a new classification to determine extent of spinal arthrodesis. J Bone Joint Surg Am 83: 1169–81

    PubMed  Google Scholar 

  60. Lonstein JE, Carlson JM (1984) The prediction of curve progression in untreated idiopathic scoliosis during growth. J Bone Joint Surg (Am) 66: 1061–71

    CAS  Google Scholar 

  61. Lou E, Hill D, Hedden D, Mahood J, Moreau M, Raso J (2011) An objective measurement of brace usage for the treatment of adolescent idiopathic scoliosis. Med Eng Phys 33 (3): 290–4

    PubMed  Google Scholar 

  62. Lowe T, Edgar M, Margulies J, Miller N, Raso V, Reinker K, Rivard C (2000) Etiology of idiopathic scoliosis: current trends in research. J Bone Joint Surg Am 82-A: 1157–68

    CAS  PubMed  Google Scholar 

  63. Luk KD, Cheung KM, Lu DS, Leong JC (1998) Assessment of scoliosis correction in relation to flexibility using the fulcrum bending correction index. Spine 23: 2303–7

    CAS  PubMed  Google Scholar 

  64. Mazda K, Ilharreborde B, Even J, Lefevre Y, Fitoussi F, Pennecot GF (2009) Efficacy and safety of posteromedial translation for correction of thoracic curves in adolescent idiopathic scoliosis using a new connection to the spine: the Universal Clamp. Eur Spine J 18 (2): 158–69

    PubMed Central  PubMed  Google Scholar 

  65. Mehta MH (1972) The rib-vertebral angle in early diagnosis between resolving and progressive infantile scoliosis. J Bone Joint Surg (Br) 54: 230–43

    CAS  Google Scholar 

  66. Miller DJ, Jameel O, Matsumoto H, Hyman JE, Schwab FJ, Roye DP, Vitale MG (2010) Factors affecting distal end & global decompensation in coronal/sagittal planes 2 years after fusion. Stud Health Technol Inform 158141–6

    Google Scholar 

  67. Miller NH (2007) Genetics of familial idiopathic scoliosis. Clin Orthop Relat Res 462: 6–10

    PubMed  Google Scholar 

  68. Mladenov KV, Vaeterlein C, Stuecker R (2011) Selective posterior thoracic fusion by means of direct vertebral derotation in adolescent idiopathic scoliosis: effects on the sagittal alignment. Eur Spine J 20 (7): 1114–7

    PubMed Central  PubMed  Google Scholar 

  69. Nash C, Moe J (1969) A study of vertebral rotation. J Bone Joint Surg (Am) 51: 22–3

    Google Scholar 

  70. Newton P (2012) Early clinical experience of spinal growth tethering for thoracic scoliosis. IPOTT-meeting Cannes 20.9.2012

    Google Scholar 

  71. Ogilvie JW (2011) Update on prognostic genetic testing in adolescent idiopathic scoliosis (AIS). J Pediatr Orthop 31 (1 Suppl): S46–8

    Google Scholar 

  72. Ogilvie JW, Braun J, Argyle V, Nelson L, Meade M, Ward K. (2006) The search for idiopathic scoliosis genes. Spine 31: 679–81

    PubMed  Google Scholar 

  73. Ogon M, Giesinger K, Behensky H, Wimmer C, Nogler M, Bach C, Krismer M (2002) Interobserver and intraobserver reliability of Lenke's new scoliosis classification system. Spine 27: 858–62

    PubMed  Google Scholar 

  74. Padua R, Padua S, Aulisa L, Ceccarelli E, Padua L, Romanini E, Zanoli G, Campi A (2001) Patient outcomes after Harrington instrumentation for idiopathic scoliosis: a 15- to 28-year evaluation. Spine 26: 1268–73

    CAS  PubMed  Google Scholar 

  75. Pahys JM, Samdani AF, Betz RR (2009) Intraspinal anomalies in infantile idiopathic scoliosis: prevalence and role of magnetic resonance imaging. Spine 34 (12): E434–8

    PubMed  Google Scholar 

  76. Pastorelli F, Di SM, Plasmati R, Michelucci R, Greggi T, Morigi A, Bacchin MR, Bonarelli S, Cioni A, Vommaro F, Fini N, Lolli F, Parisini P (2011) The prevention of neural complications in the surgical treatment of scoliosis: the role of the neurophysiological intraoperative monitoring. Eur Spine J 20 (Suppl. 1): S105–14

    PubMed  Google Scholar 

  77. Perdriolle R (1979) La scoliose: Son étude tridimensionelle. Malrine, Paris

    Google Scholar 

  78. Porter R (2000) Idiopathic scoliosis: the relation between the vertebral canal and the vertebral bodies. Spine 25: 1360–6

    CAS  PubMed  Google Scholar 

  79. Pratt R, Webb J, Burwell R, Cole A (2001) Changes in surface and radiographic deformity after Universal Spine System for right thoracic adolescent idiopathic scoliosis: is rib-hump reassertion a mechanical problem of the thoracic cage rather than an effect of relative anterior spinal overgrowth? Spine 26: 1778–87

    CAS  PubMed  Google Scholar 

  80. Pull ter Gunne AF, van Laarhoven CJ, Cohen DB (2010) Incidence of surgical site infection following adult spinal deformity surgery: an analysis of patient risk. Eur Spine J 19 (6): 982–8

    Google Scholar 

  81. Qiu Y, Wang S, Wang B, Yu Y, Zhu F, Zhu Z (2008) Incidence and risk factors of neurological deficits of surgical correction for scoliosis: analysis of 1373 cases at one Chinese institution. Spine 33 (5): 519–26

    PubMed  Google Scholar 

  82. Remes V, Helenius I, Schlenzka D, Yrjonen T, Ylikoski M, Poussa M (2004) Cotrel-Dubousset (CD) or Universal Spine System (USS) instrumentation in adolescent idiopathic scoliosis (AIS): comparison of midterm clinical, functional, and radiologic outcomes. Spine 29(18): 2024-30Di Silvestre M, Lolli F, Bakaloudis G, Maredi E, Vommaro F, Pastorelli F (2013) Apical vertebral derotation in the posterior treatment of adolescent idiopathic scoliosis: myth or reality? . Eur Spine J 22 (2): 313–23

    Google Scholar 

  83. Richards B, Emara K (2001) Delayed infections after posterior TSRH spinal instrumentation for idiopathic scoliosis: revisited. Spine 26: 1990–6

    CAS  PubMed  Google Scholar 

  84. Risser JC (1958) The iliac apophysis: An invaluable sign in the management of scoliosis. Clin Orthop 11: 11–1

    Google Scholar 

  85. Robinson CM, McMaster MJ (1996) Juvenile idiopathic scoliosis. J Bone Joint Surg (Am) 78: 1140–48

    CAS  Google Scholar 

  86. Rowe DE, Bernstein SM, Riddick MF, Adler F, Emans JB, Gardner-Bonneau D (1997) A meta-analysis of the efficacy of non-operative treatments for idiopathic scoliosis. J Bone Jt Surg Am 79: 664–74

    CAS  Google Scholar 

  87. Sanders JO, Herring JA, Browne RH (1995) Posterior arthrodesis and instrumentation in the immature (Risser-grade-0) spine in idiopathic scoliosis. J Bone Joint Surg (Am) 77: 39–45

    CAS  Google Scholar 

  88. Sankar WN, Skaggs DL, Yazici M, Johnston CE, Shah SA, Javidan P, Kadakia RV, Day TF, Akbarnia BA (2011) Lengthening of dual growing rods and the law of diminishing returns. Spine 36 (10): 806–9

    PubMed  Google Scholar 

  89. Sharma S, Gao X, Londono D, Devroy SE, Mauldin KN, Frankel JT, Brandon JM, Zhang D, Li QZ, Dobbs MB, Gurnett CA, Grant SF, Hakonarson H, Dormans JP, Herring JA, Gordon D, Wise CA (2011) Genome-wide association studies of adolescent idiopathic scoliosis suggest candidate susceptibility genes. Hum Mol Genet 20 (7): 1456–66

    PubMed Central  CAS  PubMed  Google Scholar 

  90. Sinclair M, Hefti F (2000) Langzeitresultate nach operativer Aufrichtung idiopathischer Skoliosen. Klinisch-radiologische Ergebnisse 28 Jahre danach. Orthopädische Praxis

    Google Scholar 

  91. Smith A, O’Sullivan P, Straker L (2008) Classification of sagittal thoraco-lumbo-pelvic alignment of the adolescent spine in standing and its relationship to low back pain. Spine 33 (19): 2101–7

    PubMed  Google Scholar 

  92. Somerville EW (1952) Rotational lordosis: The development of the single curve. J Bone Joint Surg (Br) 34: 421–7

    Google Scholar 

  93. Suh SW, Modi HN, Yang JH, Hong JY (2011) Idiopathic scoliosis in Korean schoolchildren: a prospective screening study of over 1 million children. Eur Spine J 20 (7): 1087–94

    PubMed Central  PubMed  Google Scholar 

  94. Takahashi J, Newton PO, Ugrinow VL, Bastrom TP (2011) Selective thoracic fusion in adolescent idiopathic scoliosis: factors influencing the selection of the optimal lowest instrumented vertebra. Spine 36 (14): 1131–41

    PubMed  Google Scholar 

  95. Tan KJ, Moe MM, Vaithinathan R, Wong HK (2009) Curve progression in idiopathic scoliosis: follow-up study to skeletal maturity. Spine 34: 697–700

    PubMed  Google Scholar 

  96. Tanchev P, Dzherov A, Parushev A, Dikov D, Todorov M (2000) Scoliosis in rhythmic gymnasts. Spine 25 (11): 1367–72

    CAS  PubMed  Google Scholar 

  97. Vitale MA, Choe JC, Sesko AM, Hyman JE, Lee FY, Roye DP, Vitale MG (2006) The effect of limb length discrepancy on health-related quality of life: is the ‘2 cm rule’ appropriate? J Pediatr Orthop B 15 (1): 1–5

    PubMed  Google Scholar 

  98. Vitale MG, Moore DW, Matsumoto H, Emerson RG, Booker WA, Gomez JA, Gallo EJ, Hyman JE, Roye DP (2010) Risk factors for spinal cord injury during surgery for spinal deformity. J Bone Joint Surg Am 92 (1): 64–71

    PubMed  Google Scholar 

  99. Weinstein S, Dolan L, Spratt K, Peterson K, Spoonamore M, Ponseti I (2003) Health and function of patients with untreated idiopathic scoliosis: a 50-year natural history study. JAMA 289: 559–67

    PubMed  Google Scholar 

  100. Weiss HR, Goodall D (2008) The treatment of adolescent idiopathic scoliosis (AIS) according to present evidence. A systematic review. Eur J Phys Rehabil Med 44(2): 177–93

    Google Scholar 

  101. Winter R (1997) Neurologic safety in spinal deformity surgery. Spine 22: 1527–33

    Google Scholar 

  102. Aufdermauer M (1981) Juvenile kyphosis (Scheuermann's disease): Radiography, histology, and pathogenesis. Clin Orthop 154: 166–74

    Google Scholar 

  103. Damborg F, Engell V, Andersen M, Kyvik KO, Thomsen K (2006) Prevalence, concordance, and heritability of Scheuermann kyphosis based on a study of twins. J Bone Joint Surg Am 88: 2133–6

    PubMed  Google Scholar 

  104. Fotiadis E, Elias F, Grigoriadou A, Anthi G, Kapetanos G, George K, Kenanidis E, Efstathios K, Pigadas A, Alkis P, Akritopoulos P, Panagiotis K, Samoladas E, Efthimios S (2008) The role of sternum in the etiopathogenesis of Scheuermann disease of the thoracic spine. Spine 33: E21–4

    PubMed  Google Scholar 

  105. Graat H, van Rhijn L, Schrander-Stumpel C, van Ooij A (2002) Classical Scheuermann disease in male monozygotic twins: further support for the genetic etiology hypothesis. Spine 27: E485–7

    PubMed  Google Scholar 

  106. Lowe TG, Line BG (2007) Evidence based medicine: analysis of Scheuermann kyphosis. Spine 32 (19 Suppl): S115–9

    Google Scholar 

  107. Poolman R, Been H, Ubags L (2002) Clinical outcome and radiographic results after operative treatment of Scheuermann's disease. Eur Spine J 11: 561–9

    CAS  PubMed  Google Scholar 

  108. Rachbauer F, Sterzinger W, Eibl G (2001) Radiographic abnormalities in the thoracolumbar spine of young elite skiers. Am J Sports Med 29: 446–9

    CAS  PubMed  Google Scholar 

  109. Ristolainen L, Kettunen JA, Heliovaara M, Kujala UM, Heinonen A, Schlenzka D (2012) Untreated Scheuermann's disease: a 37-year follow-up study. Eur Spine J 21: 819–24

    PubMed Central  CAS  PubMed  Google Scholar 

  110. Scheuermann HW (1921) Kyphosis dorsalis juvenilis. Z Orthop Chir 41: 30–5

    Google Scholar 

  111. Tsirikos AI, Jain AK (2011) Scheuermann's kyphosis; current controversies. J Bone Joint Surg Br 93: 857–64

    CAS  PubMed  Google Scholar 

  112. Wenger D, Frick S (1999) Scheuermann kyphosis. Spine 24: 2630–9.

    Google Scholar 

  113. Wojtys EM, Ashton-Miller JA, Huston LJ, Moga PJ (2000) The association between athletic training time and the sagittal curvature of the immature spine. Am J Sports Med 28: 490–8

    Google Scholar 

  114. Beutler W, Fredrickson B, Murtland A, Sweeney C, Grant W, Baker D (2003) The natural history of spondylolysis and spondylolisthesis: 45-year follow-up evaluation. Spine 28: 1027–35

    PubMed  Google Scholar 

  115. Dick WT, Schnebel B (1988) Severe spondylolisthesis: Reduction and internal fixation. Clin Orthop 232: 70–9

    PubMed  Google Scholar 

  116. Elke R, Dick W (1996) The internal fixator for reduction and stabilization of grade III-IV spondylolisthesis and the significance of the sagittal profile of the spine. Orthop Intern 4: 165–76

    Google Scholar 

  117. Hefti F, Seelig W, Morscher E (1992) Repair of lumbar spondylolysis with a hook-screw. Int Orthop 16: 81–5

    CAS  PubMed  Google Scholar 

  118. Ivanic G, Pink T, Achatz W, Ward J, Homann N, May M (2003) Direct stabilization of lumbar spondylolysis with a hook screw: mean 11-year follow-up period for 113 patients. Spine 28: 255–9

    PubMed  Google Scholar 

  119. Klein G, Mehlman CT, McCarty M (2009) Nonoperative treatment of spondylolysis and grade I spondylolisthesis in children and young adults: a meta-analysis of observational studies. J Pediatr Orthop 29: 146–56

    PubMed  Google Scholar 

  120. Ko SB, Lee SW (2011) Prevalence of spondylolysis and its relationship with low back pain in selected population. Clin Orthop Surg 3: 34–8

    PubMed Central  PubMed  Google Scholar 

  121. Konz RJ, Goel VK, Grobler LJ, Grosland NM, Spratt KF, Scifert JL, Sairyo K (2001) The pathomechanism of spondylolytic spondylolisthesis in immature primate lumbar spines in vitro and finite element assessments. Spine 26: E38–49

    PubMed  Google Scholar 

  122. Lenke L, Bridwell K (2003) Evaluation and surgical treatment of high-grade isthmic dysplastic spondylolisthesis. Instr Course Lect 52: 525–32

    PubMed  Google Scholar 

  123. McGregor AH, Cattermole HR, Hughes SP (2001) Global spinal motion in subjects with lumbar spondylolysis and spondylolisthesis: does the grade or type of slip affect global spinal motion?

    Google Scholar 

  124. Spine 26: 282–6

    Google Scholar 

  125. Meyerding HK (1932) Spondylolisthesis. J Bone Joint Surg 13: 39–45

    Google Scholar 

  126. Morscher E, Gerber B, Fasel J (1984) Surgical treatment of spondylolisthesis by bone grafting and direct stabilization of spondylolysis by means of a hook screw. Arch Orthop Trauma 103: 175–8

    CAS  Google Scholar 

  127. Niethard F, Pfeil J, Weber M (1997) Ätiologie und Pathogenese der spondylolytischen Spondylolisthese. Orthopäde 26: 750–4

    CAS  PubMed  Google Scholar 

  128. Niggemann P, Kuchta J, Beyer HK, Grosskurth D, Schulze T, Delank KS (2011) Spondylolysis and spondylolisthesis: prevalence of different forms of instability and clinical implications. Spine 36: E1463–8

    PubMed  Google Scholar 

  129. Nyska M, Constantini N, Cale-Benzoor M, Back Z, Kahn G, Mann G (2000) Spondylolysis as a cause of low back pain in swimmers. Int J Sports Med 21: 375–9

    CAS  PubMed  Google Scholar 

  130. Omey M, Micheli L, Gerbino P (2000) Idiopathic scoliosis and spondylolysis in the female athlete. Tipps for treatment. Clin Orthop 372: 74–84

    PubMed  Google Scholar 

  131. Peleg S, Dar G, Steinberg N, Masharawi Y, Been E, Abbas J, Hershkovitz I (2009) Sacral orientation and spondylolysis. Spine 34: E906–10

    PubMed  Google Scholar 

  132. Sakamaki T, Katoh S, Sairyo K (2002) Normal and spondylolytic pediatric spine movements with reference to instantaneous axis of rotation. Spine 27: 141–5

    PubMed  Google Scholar 

  133. Sales de Gauzy J, Vadier F, Cahuzac J (2000) Repair of lumbar spondylolysis using Morscher material: 14 children followed for 1–5 years. Acta Orthop Scand 71: 292–6

    Google Scholar 

  134. Terai T, Sairyo K, Goel VK, Ebraheim N, Biyani A, Faizan A, Sakai T, Yasui N (2010) Spondylolysis originates in the ventral aspect of the pars interarticularis: a clinical and biomechanical study. J Bone Joint Surg Br 92: 1123–7

    CAS  PubMed  Google Scholar 

  135. Tertti M, Paajanen H, Kujala UM, Alanen A, Salmi TT, Kormano M (1990) Disc degeneration in young gymnasts. A magnetic resonance imaging study. Am J Sports Med 18: 206–8

    CAS  PubMed  Google Scholar 

  136. Whitesides TE, Horton WC, Hutton WC, Hodges L (2005) Spondylolytic spondylolisthesis: a study of pelvic and lumbosacral parameters of possible etiologic effect in two genetically and geographically distinct groups with high occurrence. Spine 30 (6 Suppl): S12–21

    Google Scholar 

  137. Bächli H, Wasner M, Hefti F (2002) Intraspinale Missbildungen – Tethered Cord Syndrome. Orthopäde 31: 44–50

    PubMed  Google Scholar 

  138. Brouwer I, van Dusseldorp M, Thomas C, van der Put N, Gaytant M, Eskes T, Hautvast J, Steegers-Theunissen R (2000) Homocysteine metabolism and effects of folic acid supplementation in patients affected with spina bifida. Neuropediatrics 31: 298–302

    CAS  PubMed  Google Scholar 

  139. Campbell R, Hell-Vocke AK (2003) Growth of the thoracic spine in congenital scoliosis after expansion thoracoplasty. J Bone Joint Surg Am 85: 409–20

    PubMed  Google Scholar 

  140. Campbell R, Smith M, Mayes T, Mangos J, Willey-Courand D, Kose N, Pinero R, Alder M, Duong H, Surber J (2003) The characteristics of thoracic insufficiency syndrome associated with fused ribs and congenital scoliosis. J Bone Joint Surg Am 85: 399–408

    PubMed  Google Scholar 

  141. Campbell R, Smith M, Mayes TV, Mangos JA, Willey-Courand DB, Kose N, Pinero RF, Alder ME, Duong HL, Surber JL (2004) The effect of opening-wedge thoracostomy on thoracic insufficiency syndrome associated with fused ribs and congenital scoliosis. J Bone Joint Surg Am 86: 1659–74

    PubMed  Google Scholar 

  142. Hedequist D, Emans J (2007) Congenital scoliosis: a review and update. J Pediatr Orthop 27: 106–16

    PubMed  Google Scholar 

  143. Hensinger RN (2009) Congenital scoliosis: etiology and associations. Spine 34: 1745–50

    PubMed  Google Scholar 

  144. Jarcho S, Levin PM (1938) Hereditary malformations of the vertebral bodies. Bull John Hopkins Hosp 62: 215–222

    Google Scholar 

  145. Kawakami N, Tsuji T, Imagama S, Lenke LG, Puno RM, Kuklo TR (2009) Classification of congenital scoliosis and kyphosis: a new approach to the three-dimensional classification for progressive vertebral anomalies requiring operative treatment. Spine 34: 1756–65

    PubMed  Google Scholar 

  146. Kesling KL, Lonstein JE, Denis F, Perra JH, Schwender JD, Transfeldt EE, Winter RB (2003) The Crankshaft Phenomenon After Posterior Spinal Arthrodesis for Congenital Scoliosis: A Review of 54 Patients. Spine 28: 267–71

    PubMed  Google Scholar 

  147. Marks DS, Qaimkhani SA (2009) The natural history of congenital scoliosis and kyphosis. Spine 34: 1751–5

    PubMed  Google Scholar 

  148. McMaster M, Ohtsuka K (1982) The natural history of congenital scoliosis. J Bone Joint Surg Am 64: 1128–47

    CAS  PubMed  Google Scholar 

  149. Mik G, Drummond DS, Hosalkar HS, Cameron D, Agrawal N, Manteghi A, Gholve P, Auerbach JD (2009) Diminished spinal cord size associated with congenital scoliosis of the thoracic spine. J Bone Joint Surg Am 91: 1698–704

    PubMed  Google Scholar 

  150. Prahinski J, Polly D, McHale K, Ellenbogen R (2000) Occult intraspinal anomalies in congenital scoliosis. J Pediatr Orthop 20: 59–63

    CAS  PubMed  Google Scholar 

  151. Purkiss S, Driscoll B, Cole W, Alman B (2002) Idiopathic scoliosis in families of children with congenital scoliosis. Clin Orthop 401: 27–31

    PubMed  Google Scholar 

  152. Reames DL, Smith JS, Fu KM, Polly DW, Ames CP, Berven SH, Perra JH, Glassman SD, McCarthy RE, Knapp RD, Heary R, Shaffrey CI (2011) Complications in the surgical treatment of 19,360 cases of pediatric scoliosis: a review of the Scoliosis Research Society Morbidity and Mortality database. Spine 36: 1484–91

    PubMed  Google Scholar 

  153. Solomon BD (2011) VACTERL/VATER Association. Orphanet J Rare Dis 6: 5–6

    Google Scholar 

  154. Sturm PF, Chung R, Bomze SR (2001) Hemivertebra in monozygotic twins. Spine 26: 1389–91

    CAS  PubMed  Google Scholar 

  155. Suh SW, Sarwark JF, Vora A, Huang BK (2001) Evaluating congenital spine deformities for intraspinal anomalies with magnetic resonance imaging. J Pediatr Orthop 21: 525–31

    CAS  PubMed  Google Scholar 

  156. Winter RB, Moe JH, Wang JF (1973) Congenital kyphosis: its natural history and treatment as observed in a study of one hundred and thirty patients. J Bone Joint Surg Am 55: 223–74

    CAS  PubMed  Google Scholar 

  157. Cheng J, Chen T, Tang S, Shum S, Wong M, Metreweli C (2001) Snapping during manual stretching in congenital muscular torticollis. Clin Ortho p 384: 237–44

    Google Scholar 

  158. Cheng JC, Wong MW, Tang SP, Chen TM, Shum SL, Wong EM (2001) Clinical determinants of the outcome of manual stretching in the treatment of congenital muscular torticollis in infants. A prospective study of eight hundred and twenty-one cases. J Bone Joint Surg Am 83: 679–87

    PubMed  Google Scholar 

  159. Daentzer D, Studer D, Wirth CJ (2010) Muskulärer Schiefhals. Oper Orthop Traumatol 22: 177–87

    PubMed  Google Scholar 

  160. Davids JR, Wenger DR, Mubarak SJ (1993) Congenital muscular torticollis: Sequela of intrauterine or perinatal compartment syndrome. J Pediatr Ort hop 13: 141–7

    Google Scholar 

  161. Dudkiewicz I, Ganel A, Blankstein A (2005) Congenital muscular torticollis in infants: ultrasound-assisted diagnosis and evaluation. J Pediatr Orthop 25 (6): 812–4

    PubMed  Google Scholar 

  162. Engin C, Yavuz S, Sahin F (1997) Congenital muscular torticollis: is heredity a possible factor in a family with five torticollis patients in three generations? Plast Reconstr Sur g 99: 1147–50

    Google Scholar 

  163. Fernandez Cornejo V, Martinez-Lage J, Piqueras C, Gelabert A, Poza M (2003) Inflammatory atlanto-axial subluxation (Grisel's syndrome) in children: clinical diagnosis and management. Childs Nerv S yst 19: 342–7

    Google Scholar 

  164. Happle C, Wetzke M, Hermann EJ, Krauss JK, Hartmann H, Lucke T (2009) ‘Cases against KiSS’: Ein diagnostischer Algorithmus des frühkindlichen Torticollis. Klin Padiatr 221: 430–5

    CAS  PubMed  Google Scholar 

  165. Tang S, Liu Z, Quan X, Qin J, Zhang D (1998) Sternocleidomastoid pseudotumor of infants and congenital muscular torticollis: fine-structure research. J Pediatr Orthop 18: 214–8

    CAS  PubMed  Google Scholar 

  166. Kelly RE, Goretsky MJ, Obermeyer R, Kuhn MA, Redlinger R, Haney TS, Moskowitz A, Nuss D (2010) Twenty-one years of experience with minimally invasive repair of pectus excavatum by the Nuss procedure in 1215 p atients. Ann Surg 252: 1072–81

    PubMed  Google Scholar 

  167. Akbar M, Almatrod S, Fürstenberg CH, Hemmer S, Kretzer JP, Abel R, Seyler TM, Bruckner T, Carstens C, Wiedenhofer B (2010) Gibbusresektion bei Myelomeningozelepatienten. Langzeitergebnisse, Komplikationen und Risikoanalyse. Orthopäde 39: 792–800

    CAS  PubMed  Google Scholar 

  168. Altiok H, Finlayson C, Hassani S, Sturm P (2011) Kyphectomy in children with myelomeningocele. Clin Orthop Relat Res 469: 1272–8

    PubMed Central  PubMed  Google Scholar 

  169. Arun R, Srinivas S, Mehdian SM (2010) Scoliosis in Duchenne's muscular dystrophy: a changing trend in surgical management : a historical surgical outcome study comparing sublaminar, hybrid and pedicle screw instrumentation systems. Eur Spine J 19: 376–83

    PubMed Central  PubMed  Google Scholar 

  170. Auerbach JD, Spiegel DA, Zgonis MH, Reddy SC, Drummond DS, Dormans JP, Flynn JM (2009) The correction of pelvic obliquity in patients with cerebral palsy and neuromuscular scoliosis: is there a benefit o f anterior release prior to posterior spinal arthrodesis? Spine 34: E766–74

    PubMed  Google Scholar 

  171. Bentley G, Haddad F, Bull T, Seingry D (2001) The treatment of scoliosis in muscular dystrophy using modifie d Luque and Harrington-Luque instrumentation. J Bone Joint Surg Br 83: 22–8

    CAS  PubMed  Google Scholar 

  172. Galasko CSB, Delaney C, Morris P (1992) Spinal stabilisation in Duchenne muscular dystrophy. J Bone Joint Surg Br 74: 210–4

    CAS  PubMed  Google Scholar 

  173. Garg S, Oetgen M, Rathjen K, Richards BS (2011) Kyphectomy improves sitting and skin pro blems in patients with myelomeningocele. Clin Orthop Relat Res 469: 1279–85

    PubMed Central  PubMed  Google Scholar 

  174. Hodgkinson I, Bérard C, Chôtel F, Bérard J (2002) Bassin oblique et scoliose chez le patient infirme moteur cérébral non-marchant: Etude déscriptive de 234 patients de plus de 15 ans. Rev Chir Orthop Réparatrice Appar Mot 88: 337–41

    CAS  PubMed  Google Scholar 

  175. Kinali M, Main M, Eliahoo J, Messina S, Knight RK, Lehovsky J, Edge G, Mercuri E, Manzur AY, Muntoni F (2007) Predictive factors for the development of scoliosis in Duchenne muscular dystrophy. Eur J Paediatr Neurol 11: 160–6

    CAS  PubMed  Google Scholar 

  176. Master DL, Connie PK, Jochen SH, Armstrong DG, Thompson GH (2011) Wound infections after surgery for neuromuscular scoliosis: risk factors and treatment outcomes. Spine 36: E179–85

    PubMed  Google Scholar 

  177. Master DL, Son-Hing JP, Poe-Kochert C, Armstrong DG, Thompson GH (2011) Risk factors for major complications after surgery for neuromuscular scoliosis. Spine 36: 564–71

    PubMed  Google Scholar 

  178. McCall RE, Hayes B (2005) Long-term outcome in neuromuscular scoliosis fused only to lumbar 5. Spine 30: 2056–60

    PubMed  Google Scholar 

  179. Moon ES, Nanda A, Park JO, Moon SH, Lee HM, Kim JY, Yoon SP, Kim HS (2011) Pelvic obliquity in neuromuscular scoliosis: radiologic comparative results of single-stage posterior versus twostage anterior and posterior approach. Spine 36: 146–52

    PubMed  Google Scholar 

  180. Rendeli C, Nucera E, Ausili E, Tabacco F, Roncallo C, Pollastrini E, Scorzoni M, Schiavino D, Caldarelli M, Pietrini D, Patriarca G (2006) Latex sensitisatio n and allergy in children with myelomeningocele. Childs Nerv Syst 22: 28–32

    CAS  PubMed  Google Scholar 

  181. Saito N, Ebara S, Ohotsuka K, Kumeta H, Takaoka K (1998) Natural history of scoliosis in spastic cerebral palsy. Lancet 351: 1687–92

    CAS  PubMed  Google Scholar 

  182. Thomson J, Banta J (2001) Scoliosis in cerebral palsy: an overview and recent results. J Pediatr Orthop B 10: 6–9

    CAS  PubMed  Google Scholar 

  183. Tsikiros A, Chang W-N, Shah S, Dabney K, Miller F (2003) Preserving ambulatory potential in pediatric patients with cerebral palsy who undergo spinal fusion using unit rod instrumentation. Spine 28: 480–3

    Google Scholar 

  184. Wild A, Haak H, Kumar M, Krauspe R (2001) Is sacral instrumentation mandatory to address pelvic obliquity in neur omuscular thoracolumbar scoliosis due to myelomeningocele? Spine 26: E325–9

    PubMed  Google Scholar 

  185. Abdulian MH, Liu RW, Son-Hing JP, Thompson GH, Armstrong DG (2011) Double rib penetration of the spinal canal in a patient with neurofibromatosis. J Pediatr Orthop 31: 6–10

    PubMed  Google Scholar 

  186. Ain MC, Chaichana KL, Schkrohowsky JG (2006) Retrospective study of cervical arthrodesis in patients with various types of skeletal dysplasia. Spine 31: E169–74

    PubMed  Google Scholar 

  187. Ali FE, Al-Bustan MA, Al-Busairi WA, Al-Mulla FA, Esbaita EY (2006) Cervical spine abnormalities associated with Down syndrome. Int Orthop 30: 284–9

    PubMed Central  PubMed  Google Scholar 

  188. Campbell RM (2009) Spine deformities in rare congenital syndromes: clinical issues. Spine 34: 1815–27

    PubMed  Google Scholar 

  189. Engelbert R, Uiterwaal C, van der Hulst A, Witjes B, Helders P, Pruijs H (2003) Scoliosis in children with osteogenesis imperfecta: influence of severity of disease and age of reaching motor milestones. Eur Spine J 12: 130–4

    PubMed Central  PubMed  Google Scholar 

  190. Garreau dLC, Mullins MM, Moura B, Marmorat JL, Piriou P, Judet T (2006) Spinal and pelvic parameters in Marfan's syndrome and their relevance to surgical planning. J Bone Joint Surg Br 88: 515–9

    Google Scholar 

  191. Gibson JNA, Sillence DO, Taylor TKF (1996) Abnormalities of the spine in Goldenhar's syndrome. J Pediatr Orthop 16: 344–9

    CAS  PubMed  Google Scholar 

  192. Glard Y, Launay F, Edgard-Rosa G, Collignon P, Jouve J, Bollini G (2008) Scoliotic curve patterns in patients with Marfan syndrome. J Child Orrthop 2: 211–6

    Google Scholar 

  193. Hankinson TC, Anderson RC (2010) Craniovertebral junction abnormalities in Down syndrome. Neurosurgery 66(3 Suppl): 32–8

    PubMed  Google Scholar 

  194. Karbowski A, Schwitalle M, Eckardt A (1999) Skoliose bei Patienten mit Osteogenesis imperfecta: Eine bundesweite Querschnittstudie. Z Orthop Ihre Grenzgeb 137: 219–22

    CAS  PubMed  Google Scholar 

  195. Koptan W, El MY (2010) Surgical correction of severe dystrophic neurofibromatosis scoliosis: an experience of 32 cases. Eur Spine J 19: 1569–75

    PubMed Central  PubMed  Google Scholar 

  196. Lam K, Mehdian H (1999) The importance of an intact abdominal musculature mechanism in maintaining spinal sagittal balance. Case illustration in prune-belly syndrome. Spine 24: 719–22

    CAS  PubMed  Google Scholar 

  197. Legrand B, Filipe G, Blamoutier A, Khouri N, Mary P (2003) Pénétration intra-canalaire de côtes dans les déformations vertébrales de la neurofibromatose. Rev Chir Orthop Réparatrice Appar Mot 89: 57–61

    CAS  PubMed  Google Scholar 

  198. Lipton GE, Guille JT, Kumar SJ (2002) Surgical treatment of scoliosis in Marfan syndrome: guidelines for a successful outcome. J Pediatr Orthop 22:302–7

    PubMed  Google Scholar 

  199. Mancini F, Corsi A, De MF, Riminucci M, Ippolito E (2009) Scoliosis and spine involvement in fibrous dysplasia of bone. Eur Spine J 18: 196–202

    PubMed Central  PubMed  Google Scholar 

  200. Mohapatra B, Kishen T, Diwan AD (2010) Multiple lumbar pedicle fractures in osteopetrosis: a case report. Spine 35(8): E311–5

    PubMed  Google Scholar 

  201. Morris CA, Pani AM, Mervis CB, Rios CM, Kistler DJ, Gregg RG (2010) Alpha 1 antitrypsin deficiency alleles are associated with joint dislocation and scoliosis in Williams syndrome. Am J Med Genet C Semin Med Genet 2010: 299–306

    Google Scholar 

  202. Remes V, Marttinen E, Poussa M, Kaitila I, Peltonen J (1999) Cervical kyphosis in diastrophic dysplasia. Spine 24: 1990–5

    CAS  PubMed  Google Scholar 

  203. Rohrbach M, Vandersteen A, Yis U, Serdaroglu G, Ataman E, Chopra M, Garcia S, Jones K, Kariminejad A, Kraenzlin M, Marcelis C, Baumgartner M, Giunta C (2011) Phenotypic variability of the kyphoscoliotic type of Ehlers-Danlos syndrome (EDS VIA): clinical, molecular and biochemical delineation. Orphanet J Rare Dis 646

    Google Scholar 

  204. Sakaura H, Matsuoka T, Iwasaki M, Yonenobu K, Yoshikawa H (2007) Surgical treatment of cervical kyphosis in Larsen syndrome: report of 3 cases and review of the literature. Spine 32: E39–44

    PubMed  Google Scholar 

  205. Schaffer AA, Kaplan FS, Tracy MR, O’Brien ML, Dormans JP, Shore EM, Harland RM, Kusumi K (2005) Developmental anomalies of the cervical spine in patients with fibrodysplasia ossificans progressiva are distinctly different from those in patients with Klippel-Feil syndrome: clues from the BMP signaling pathway. Spine 30: 1379–85

    PubMed  Google Scholar 

  206. Shim JS, Lee SH, Seo SW, Koo KH, Jin DK (2010) The musculoskeletal manifestations of Prader-Willi syndrome. J Pediatr Orthop 30: 390–5

    PubMed  Google Scholar 

  207. Smith LJ, Martin JT, Szczesny SE, Ponder KP, Haskins ME, Elliott DM (2010) Altered lumbar spine structure, biochemistry, and biomechanical properties in a canine model of mucopolysaccharidosis type VII. J Orthop Res 28: 616–22

    PubMed Central  CAS  PubMed  Google Scholar 

  208. Sponseller P, Bhimani M, Solacoff D, Dormans J (2000) Results of brace treatment of scoliosis in Marfan syndrome. Spine 25: 2350–4

    CAS  PubMed  Google Scholar 

  209. Sponseller PD, Hobbs W, Riley LH 3rd, Pyeritz RE (1995) The thoracolumbar spine in Marfan syndrome. J Bone Joint Surg Am 77: 867–76

    CAS  PubMed  Google Scholar 

  210. Sponseller PD, Thompson GH, Akbarnia BA, Glait SA, Asher MA, Emans JB, Dietz HC (2009) Growing rods for infantile scoliosis in Marfan syndrome. Spine 34: 1711–5

    PubMed  Google Scholar 

  211. Stücker R (2008) Wirbelsäulenprobleme bei Skelettdysplasien. Orthopäde 37: 63–8

    PubMed  Google Scholar 

  212. Thomeer R, van Dijk J (2002) Surgical treatment of lumbar stenosis in achondroplasia. J Neurosurg 96: p292–7

    Google Scholar 

  213. Vitale M, Guha A, Skaggs D (2002) Orthopaedic manifestations of neurofibromatosis in children: an update. Clin Orthop 401: 107–18

    PubMed  Google Scholar 

  214. Vitale MG, Matsumoto H, Kessler MW, Hoffmann W, Roye DP (2007) Osteogenesis imperfecta: determining the demographics and the predictors of death from an inpatient population. J Pediatr Orthop 27: 228–32

    PubMed  Google Scholar 

  215. Wang Z, Liu Y (2010) Research update and recent developments in the management of scoliosis in neurofibromatosis type 1. Orthopedics 33: 335–41

    CAS  PubMed  Google Scholar 

  216. Watanabe G, Kawaguchi S, Matsuyama T, Yamashita T (2007) Correlation of scoliotic curvature with Z-score bone mineral density and body mass index in patients with osteogenesis imperfecta. Spine 32: E488–94

    PubMed  Google Scholar 

  217. Wirth T (2008) Spondyloepiphysäre und metaphysäre Dysplasie. Orthopäde 37: 8–16

    CAS  PubMed  Google Scholar 

  218. Aebi M (2010) Classification of thoracolumbar fractures and dislocations. Eu r Spine J 19: S2–7

    Google Scholar 

  219. Bosch P, Vogt M, Ward W (2002) Pediatric spinal cord injury without radiographic abnormality (SCIWORA): the absence of occult instability and lack of indication for bracing. Spine 27: 2788–800

    PubMed  Google Scholar 

  220. Cirak B, Ziegfeld S, Knight VM, Chang D, Avellino AM, Paidas CN (2004) Spinal injuries in children. J Pedia tr Surg 39: 607–12

    Google Scholar 

  221. Durkin M, Olsen S, Barlow B, Virella A, Connolly E (1998) The epidemiology of urban pediatric neurological trauma: evaluation of, and implications for, injury prevention programs. Neuro - surgery 42: 300–10

    Google Scholar 

  222. Hasler C, Jeanneret B (2002) Wirbelsäulenverletzungen im Wachstumsalter. Orthopäde 31: 65–73

    CAS  PubMed  Google Scholar 

  223. Parent S, Mac-Thiong JM, Roy-Beaudry M, Sosa JF, Labelle H (2011) Spinal cord injury in the pediatric population: a systematic review of the literature. J Neuro trauma 28: 1515–24

    Google Scholar 

  224. Patel J, Tepas J, Mollitt D, Pieper P (2001) Pediatric cervical spine injuries: defining the disease. J Pedi atr Surg 36: 373–6

    Google Scholar 

  225. Pouliquen JC, Kassis B, Glorion C, Langlais J (1997) Vertebral growth after thoracic or lumbar fracture of the spine in children. J Pediatr Orthop 17: 115–20

    CAS  PubMed  Google Scholar 

  226. Reddy SP, Junewick JJ, Backstrom JW (2003) Distribution of spinal fractures in children: does age, mechanism of injury, or gender play a significant role? Pediatr Radiol 33: 776–81

    PubMed  Google Scholar 

  227. Schären S, Jeanneret B (1999) Atlasfrakturen. Or thopäde 28: 385–93

    Google Scholar 

  228. Skokan E, Junkins E, Kadish H (2003) Serious winter sport injuries in children and adolescents requiring hospitalization. Am J Emerg Med 21: 95–9

    PubMed  Google Scholar 

  229. Wang MY, Hoh DJ, Leary SP, Griffith P, McComb JG (2004) High rates of neurological improvement following severe traumatic pediatric spinal cord injury. Spine 29: 1493–7

    PubMed  Google Scholar 

  230. Yalcin N, Dede O, Alanay A, Yazici M (2011) Surgical management of post-SCIWORA spinal deformities in children. J Child Orthop 5: 27–33

    PubMed Central  PubMed  Google Scholar 

  231. Andronikou S, Jadwat S, Douis H (2002) Patterns of disease on MRI in 53 children with tuberculous spondylitis and the role of gadolinium. Pediatr Radiol 32: 798–805

    PubMed  Google Scholar 

  232. Chandrasenan J, Klezl Z, Bommireddy R, Calthorpe D (2011) Spondylodiscitis in children: a retrospective series. J Bone Joint Surg Br 93: 1122–5

    CAS  PubMed  Google Scholar 

  233. Enden K, Laiho K, Kautiainen H, Arkela-Kautiainen M, Belt E, Kauppi M (2009) Subaxial cervical vertebrae in patients with juvenile idiopathic arthritis–somethin g special? Joint Bone Spine 76: 519–23

    PubMed  Google Scholar 

  234. Garron E, Viehweger E, Launay F, Guillaume J, Jouve J, Bollini G (2002) Nontuberculous spondylodiscitis i n children. J Pediatr Orthop 22: 321–8

    PubMed  Google Scholar 

  235. Grasshoff H, Gräulich M, Kayser R, Mahlfeld K (2002) Spondylodiszitis im Kindesalter. Orthopäde 31: 74–7

    CAS  PubMed  Google Scholar 

  236. Griffith JF, Kumta SM, Leung PC, Cheng JC, Chow LT, Metreweli C (2002) Imaging of musculoskeletal tuberculosis: a new look at an old dis ease. Clin Orthop Relat Res 398: 32–9

    PubMed  Google Scholar 

  237. Grover S, Pati N, Mehta R, Mahajan H (2003) Congenital spine tuberculosis: early diagnosis by imaging studies. Am J Perinatol 20: 147–52

    PubMed  Google Scholar 

  238. Karadimas EJ, Bunger C, Lindblad BE, Hansen ES, Hoy K, Helmig P, Kannerup AS, Niedermann B (2008) Spondylodiscitis. A retrospective study of 163 patients. Acta Orthop 79: 650–91

    PubMed  Google Scholar 

  239. Kayser R, Mahlfeld K, Greulich M, Grasshoff H (2005) Spondylodiscitis in childhood: results of a long-term study. Spine 30: 318–23

    PubMed  Google Scholar 

  240. Laiho K, Savolainen A, Kautiainen H, Kekki P, Kauppi M (2002) The cervical spine in juvenile chronic arthritis. Spine J 2: 89–94

    PubMed  Google Scholar 

  241. O’Shea FD, Boyle E, Riarh R, Tse SM, Laxer RM, Inman RD (2009) Comparison of clinical and radiographic severity of juvenileonset versus adult-onset ankylosing spondylitis. Ann Rheum Dis 68: 1407–12

    PubMed  Google Scholar 

  242. Schären S, Jeanneret B (1999) Atlasfrakturen. Orthopäde 28: 385–93

    PubMed  Google Scholar 

  243. Schilling F, Fedlmeier M, Eckardt A, Kessler S (2002) Wirbelsäulenmanifestationen der chronischen rekurrierenden multifokalen Osteomyelitis (CRMO). Rofo Fortschr Geb Rontgenstr Neuen Bildgeb Verfahr 174: 1236–42

    CAS  PubMed  Google Scholar 

  244. Alomari AI, Orbach DB, Mulliken JB, Bisdorff A, Fishman SJ, Norbash A, Alokaili R, Lord DJ, Burrows PE (2011) Klippel-Trenaunay syndrome and spinal arteriovenous malformations: an erroneous association. AJNR Am J Neuroradiol 31: 608–12

    Google Scholar 

  245. Bergh P, Kindblom L, Gunterberg B, Remotti F, Ryd W, Meis-Kindblom J (2000) Prognostic factors in chordoma of the sacrum a nd mobile spine: a study of 39 patients. Cancer 88: 2122–34

    CAS  PubMed  Google Scholar 

  246. Berven S, Zurakowski D, Mankin H, Gebhardt M, Springfield D, Hornicek F (2002) Clinical outcome in chordoma: util ity of flow cytometry in DNA determination. Spine 27: 374–9

    PubMed  Google Scholar 

  247. Boriani S, De Iure F, Bandiera S, Campanacci L, Biagini R, Di Fiore M, Bandello L, Picci P, Bacchini P (2000) Chondrosarcom a of the mobile spine: report on 22 cases. Spine 25: 804–12

    CAS  PubMed  Google Scholar 

  248. Boriani S, De Iure F, Campanacci L, Gasbarrini A, Bandiera S, Biagini R, Bertoni F, Picci P (2001) Aneurysmal bone cy st of the mobile spine: report on 41 cases. Spine 26: 27–35

    CAS  PubMed  Google Scholar 

  249. Chan M, Wong Y, Yuen M, Lam D (2002) Spinal aneurysmal bone cyst causing acute cord compression without vertebral collapse: CT and MRI findings. Pediatr Radiol 32: 601–4

    PubMed  Google Scholar 

  250. Cottalorda J, Kohler R, Sales dGJ, Chotel F, Mazda K, Lefort G, Louahem D, Bourelle S, Dimeglio A (2004) Epidemiology of aneurysmal bone cyst in children: a multicenter study and literature review. J Pediatr Orthop B 13: 389–94

    PubMed  Google Scholar 

  251. Cotterill S, Ahrens S, Paulussen M, Jürgens H, Voute P, Gadner H, Craft A (2000) Prognostic factors in Ewing's tumor of bone: analysis of 975 patients from the European Intergroup Cooper ative Ewing's Sarcoma Study Group. J Clin Oncol 18: 3108–14

    CAS  PubMed  Google Scholar 

  252. Di Caprio M, Murphy M, Camp R (2000) Aneurysmal bone cyst of the spine with familial incidence. Spine 25: 1589–92

    CAS  Google Scholar 

  253. Durrani A, Crawford A, Chouhdry S, Saifuddin A, Morley T (2000) Modulation of spinal deformities in patients with neurofibromatosis type 1. Spine 25: 69–75

    CAS  PubMed  Google Scholar 

  254. Garg S, Mehta S, Dormans JP (2004) Langerhans cell histiocytosis of the spine in chil dren. Long-term follow-up. J Bone Joint Surg Am 86: 1740–50

    PubMed  Google Scholar 

  255. Gupta P, Lenke L, Bridwell K (1998) Incidence of neural axis abnormalities in infantile and juvenile patients with spinal deformity. Is a magnetic resonance image screening necessary? Spine 23: 206–10

    CAS  PubMed  Google Scholar 

  256. Harrop JS, Schmidt MH, Boriani S, Shaffrey CI (2009) Aggressive «benign” primary spine neoplasms: osteoblastoma, aneurysmal bone cyst, and giant cell tumor. Spine 34 (22 Suppl): S39–47

    Google Scholar 

  257. Hefti F, Jundt G (1995) Langerhanszell Histiocytose. Orthopäde 24: 73–81

    CAS  PubMed  Google Scholar 

  258. Jawad MU, Scully SP (2010) Surgery significantly improves survival in patients with chordoma. Spine 35 (1): 117–23

    PubMed  Google Scholar 

  259. Klimo P, Codd PJ, Grier H, Goumnerova LC (2009) Primary pediatric intraspinal sarcomas. Report of 3 cases. J Neurosurg Pediatr 4: 222–9

    PubMed  Google Scholar 

  260. Lian X, Zhao J, Hou T, Ma H, Chen Z (2006) Benign intraspinal osteoblastoma stemming from C7 lamina in cervicothoracic junction: a case report. Spine 31: E89–5

    Google Scholar 

  261. Ozaki T, Flege S, Liljenqvist U, Hillmann A, Delling G, Salzer-Kuntschik M, Jürgens H, Kotz R, Winkelmann W, Bielack S (2002) Osteosarcoma of the spine: experience of t he Cooperative Osteosarcoma Study Group. Cancer 94: 1069–77

    PubMed  Google Scholar 

  262. Ozaki T, Liljenqvist U, Hillmann A, Halm H, Lindner N, Gosheger G, Winkelmann W (2002) Osteoid osteoma and osteoblastoma of the spine: experiences with 22 patients. Clin Orthop 397: 394–402

    PubMed  Google Scholar 

  263. Prahinski J, Polly D, McHale K, Ellenbogen R (2000) Occult intraspinal anomalies in congenital scoliosis. J Pediatr Orthop 20: 59–63

    CAS  PubMed  Google Scholar 

  264. Qian BP, Qiu Y, Zhu Z, Chen H (2009) Spinal osteoblastoma complicated w ith epidural hematoma: two case reports. Spine 34: E447–51

    PubMed  Google Scholar 

  265. Sanou R, Foscolo S, Weinbreck N, Voirin J, Vignaud J, Blum A, Bracard S (2010) Variante solide de kyste osseux anévrismal vertébral revelée par une compression médullaire. J Radiol 91 (1): 69–71

    CAS  PubMed  Google Scholar 

  266. Sundaresan N (1986) Chordomas. Clin Orthop 204: 135–42

    PubMed  Google Scholar 

  267. Vadivelu S, Mangano FT, Miller CR, Leonard JR (2007) Multifocal Langerhans cell histiocytosis of the pediatric spine: a case report and literature review. Childs Nerv Syst 23: 127–31

    CAS  PubMed  Google Scholar 

  268. Wang Z, Liu Y (2010) Research update and recent developments in the management of scoliosis in neurofibromatosis type 1. Orthopedics 33: 335–41

    CAS  PubMed  Google Scholar 

  269. Zileli M, Cagli S, Basdemir G, Ersahin Y (2003) Osteoid osteomas and osteoblastomas of the spine. Neurosurg Focus 15 (5): 1–6

    Google Scholar 

  270. Bejia I, Abid N, Ben SK, Letaief M, Younes M, Touzi M, Bergaoui N (2005) Low back pain in a cohort of 622 Tunisian schoolchildren and adolescents: an epidemiological study. Eur Spine J 14: 331–6

    PubMed Central  PubMed  Google Scholar 

  271. Dang L, Liu Z (2010) A review of current treatment for lumbar disc herniation in children and adolescents. Eur Spine J 19: 205–14

    PubMed Central  PubMed  Google Scholar 

  272. Hestbaek L, Leboeuf-Yde C, Manniche C (2003) Low back pain: what is the long-term cou rse? A review of studies of general patient populations. Eur Spine J 12: 149–65

    PubMed Central  PubMed  Google Scholar 

  273. Leboeuf-Yde C, Kyvik K (1998) At what age does low back pain become a common problem? A study of 29,424 individuals aged 12–41 years. Spine 23: 228–34

    CAS  PubMed  Google Scholar 

  274. Mohseni-Bandpei MA, Bagheri-Nesami M, Shayesteh-Azar M (2007) Nonspecific low back pain in 5000 Iranian school-age children. J Pediatr Orthop 27: 126–9

    PubMed  Google Scholar 

  275. Sato T, Ito T, Hirano T, Morita O, Kikuchi R, Endo N, Tanabe N (2008) Low back pain in childhood and adolescence: a cross-sectional study in Niigata City. Eur Spine J 17: 1441–7

    PubMed Central  PubMed  Google Scholar 

  276. Sato T, Ito T, Hirano T, Morita O, Kikuchi R, Endo N, Tanabe N (2011) Low back pain in childhood and adolescence: assessment of sports activities. Eur Spine J 20: 94–9

    PubMed Central  PubMed  Google Scholar 

  277. Yao W, Mai X, Luo C, Ai F, Chen Q (2011) A cross-sectional survey of nonspecific low back pain among 2083 schoolchildren in China. Spine 36: 1885–90

    PubMed  Google Scholar 

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Hefti, F., Hasler, C. (2014). Wirbelsäule, Rumpf. In: Kinderorthopädie in der Praxis. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-44995-6_4

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