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The connections between postural reactions, scoliosis postures and scoliosis in girls aged 12-15 years old examined using the Spearman’s Rank OrderCorrelation Cover

The connections between postural reactions, scoliosis postures and scoliosis in girls aged 12-15 years old examined using the Spearman’s Rank OrderCorrelation

Open Access
|Aug 2016

References

  1. 1. Allam AM, Schwabe AL. Neuromuscular scoliosis. PM R. 2013; 5,11: 957-63;10.1016/j.pmrj.2013.05.01524247014
  2. 2. Bruyneel A.V., Chavet P. et al. Idiopathic scoliosis and balance organisation in seated position on a seesaw. European Spine Journal 2010; 19, 5: 739-46;10.1007/s00586-010-1325-x289994620195652
  3. 3. Burwell R.G, Aujla R.K, Grevitt M.P. et. al. A new approach to the pathogenesis of adolescent idiopathic scoliosis: interaction between risk factors involving a diverse network of causal developmental pathways. Clin. Anat. 2011; 24, 3: 384;
  4. 4. Catanzariti JF, Guyot MA, Massot C, Khenioui H, Agnani O, Donzé C. Evaluation of motion sickness susceptibility by motion sickness susceptibility questionnaire in adolescents with idiopathic scoliosis: a case-control study. Eur Spine J. 2016; 25, 2: 438-43;10.1007/s00586-015-4060-526077100
  5. 5. Eshraghi E., Maroufi N., Sanjari M. et al. Static dynamic balance of schoolgirls with hyperkyphosis. Scolisis 2009, 4, 2: 05;10.1186/1748-7161-4-S2-O5
  6. 6. Gur G, Dilek B, Ayhan C, Simsek E, Aras O, Aksoy S, Yakut Y. Effect of a spinal brace on postural control in different sensory conditions in adolescent idiopathic scoliosis: a preliminary analysis. Gait Posture. 2015; 41, 1: 93-9;10.1016/j.gaitpost.2014.09.00125262334
  7. 7. Kepler C.K., Meredith D.S., Green D.W., Widmann R.F. Long-term outcomes after posterior spine fusion for adolescent idiopathic scoliosis. Curr Opin Pediatr. 2012; 24, 1: 68-75;10.1097/MOP.0b013e32834ec98222157365
  8. 8. Lee R.S, Reed D.W, Saifuddin A. The correlation between coronal balance and neuroaxial abnormalities detected on MRI in adolescent idiopathic scoliosis. Eur Spine J. 2012; 4;10.1007/s00586-012-2175-5336612522310885
  9. 9. Little JP, Izatt MT, Labrom RD, Askin GN, Adam CJ. Investigating the change in three dimensional deformity for idiopathic scoliosis using axially loaded MRI. Clin Biomech. 2012; 4;10.1016/j.clinbiomech.2011.12.00422226470
  10. 10. Londono D., Buyske S., Finch S.J., Sharma S., Wise C.A., Gordon D. TDT-HET: A new transmission disequilibrium test that incorporates locus heterogeneity into the analysis of family-based association data. BMC Bioinformatics. 2012; 20, 13, 1: 13;10.1186/1471-2105-13-13329249922264315
  11. 11. Morr S, Carrer A, Alvarez-García de Quesada LI, Rodriguez-Olaverri JC. Skipped versus consecutive pedicle screw constructs for correction of Lenke 1 curves. Eur Spine J. 2015; 24, 7: 1473-80;10.1007/s00586-015-3769-525599851
  12. 12. Negrini S., Aulisa A.G., Aulisa L., Circo A.B., de Mauroy J.C., Durmala J., Grivas T.B., Knott P., Kotwicki T. et. al. SOSORT Guidelines: Orthopaedic and Rehabilitation Treatment of Idiopathic Scoliosis During Growth. Scoliosis 2012; 20, 7, 1: 3;10.1186/1748-7161-7-3329296522264320
  13. 13. Pankowski R, Roclawski M, Dziegiel K, Ceynowa M, Mikulicz M, Mazurek T, Kloc W. Transient Monoplegia as a Result of Unilateral Femoral Artery Ischemia Detected by Multimodal Intraoperative Neuromonitoring in Posterior Scoliosis Surgery: A Case Report. Medicine (Baltimore). 2016; 95, 6: e2748;10.1097/MD.0000000000002748475391826871822
  14. 14. Pialasse JP, Descarreaux M, Mercier P, Simoneau M. Sensory reweighting is altered in adolescent patients with scoliosis: Evidence from a neuromechanical model. Gait Posture. 2015; 42, 4: 558-63;10.1016/j.gaitpost.2015.08.01326371828
  15. 15. Sudo H, Kaneda K, Shono Y, Iwasaki N. Short fusion strategy for thoracolumbar and lumbar adolescent idiopathic scoliosis using anterior dual-rod instrumentation. Bone Joint J. 2016; 98-B, 3: 402-9;10.1302/0301-620X.98B3.3671526920967
  16. 16. Wilczyński J. Asymmetries of the shoulder and pelvic girdles in girls with scoliosis and scoliotic posture. Studia Medyczne 2013, 29, 2: 152–159;
  17. 17. Wilczyński J., Wilczyński I. Reakcje posturalne dziecka ze skoliozą idiopatyczą badanego na platformie Stability System Tecnobody. Fizjoterapia Polska 2013, 13: 48-54;
  18. 18. Wilczyński J. Wady postawy ciała a średnie odchylenie X i średnie odchylenie Y u dziewcząt i chłopców w wieku szkolnym. Body posture defects and mean sway X and mean sway Y in girls and boys of school age. Neurologia Dziecięca 2014; 23, 46: 27-33;
  19. 19. Nowotny J., Podlasiak P., Zawieska D. System Analizy Wad Postawy. PW, Warszawa 2003;
  20. 20. www.mogkik.pl 2005;
  21. 21. Zawieska D. Fotogrametria – mity i rzeczywistość. Ortopedia Traumatologia Rehabilitacja 2002, 4, 4, 498-502;
  22. 22. Ocetkiewicz T., Skalska A., Grodzicki T. Badanie równowagi przy użyciu platformy balansowej ocena powtarzalności metody. Gerontologia Polska 2006, 14, 1: 144-148;
  23. 23. www.Technomex.pl 2005;
  24. 24. Wilczyński J. Układ równowagi ciała człowieka. W: Zarys kinezjologii (An Outline of Kinesiology). Red. T. Kasperczyk, D. Mucha. Wydawnictwo JET, Kraków 2016:101-139;
  25. 25. Avila P., Caroline S. Statystyka medyczna w zarysie. PZWL, Warszawa 2006;
  26. 26. Komputerowy program statystyczny. Statistica.7.1 statsoft 2007;
  27. 27. Spearman Ch. The proof and measurement of association between two things. Americal Journal of Psychology 1904, 15: 72-101.10.2307/1412159
DOI: https://doi.org/10.1515/phr-2016-0013 | Journal eISSN: 2084-0535 | Journal ISSN: 1734-7009
Language: English
Page range: 67 - 78
Published on: Aug 19, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 Jacek Wilczyński, Przemysław Karolak, Joanna Karolak, Igor Wilczyński, Agnieszka Pedrycz, published by Polish Hyperbaric Medicine and Technology Society
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.