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Development of a smart garment to reduce kyphosis during daily living

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Abstract

Many of the aches and pains of adults are the result of the long-term effects of bad posture or body misalignment. Postural kyphosis in adolescence, which is an excessive rounding of the upper spine, may be one of the effects of poor standing and sitting habits. A smart garment, consisting of a harness and two data-sensor loggers, was developed to monitor and provide vibration feedback to wearers to improve their posture during daily activities. Laboratory tests verified that the garment could provide an accuracy of 2 ± 2° during static measurement and 3 ± 2° during stable or slowly changing posture activities and 4 ± 4° during rapidly changing posture activities. Four volunteers wore the system for 3 h per day and for 4 consecutive days. The feedback was provided on the last 2 days and the kyphotic angle reduced by 8 ± 1° and 8 ± 2° on the last 2 days, respectively. Although the long-term effects of reminding the subjects’ posture is still not clear, a short-term result shows promise that the smart garment may be able to improve the kyphosis.

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References

  1. Bazzarelli M, Durdle N, Lou E, Raso J (2001) A low power portable electromagnetic posture monitoring system. Proceedings of the 18th IEEE Instrumentation and Measurement Technology Conference 1:619–623

  2. Bazzarelli M, Durdle N, Lou E, Raso J (2001) A low power hybrid posture monitoring system. Can Conf Electr Comp Eng 2:1373–1377

    Google Scholar 

  3. Bazzarelli M, Durdle NG, Lou E, Raso VJ (2003) A wearable computer for physiotherapeutic scoliosis treatment. IEEE Trans Instrum Meas 52(1):126–129

    Article  Google Scholar 

  4. Birbaumer N, Flor H, Cevey B, Dworkin B, Miller ME (1994) Behavioural treatment of scoliosis and kyphosis. J Psychosom Res 38(6):623–628

    Article  PubMed  CAS  Google Scholar 

  5. Borenstein DG, Wiesel SW, Boden SD (2004) Low back and neck pain: comprehensive diagnosis and management, 3rd edn. Saunders Elsevier Inc., USA, pp 380–383

    Google Scholar 

  6. Bourke AK, Van de Ven PWJ, Chaya AE, O’Laighin GM, Nelson J (2008) The design and development of a long-term fall detection system incorporated into a custom vest for the elderly. 30th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, pp 2836–2839

  7. Davis CM (2009) Complementary therapies in rehabilitation: evidence for efficacy in therapy, prevention, and wellness. Slack Inc, USA

    Google Scholar 

  8. Dworkin B, Miller NE, Dworkin S, Birbaumer N, Brines ML, Jonas S, Schwentker EP, Graham JJ (1985) Behavioral method for the treatment of idiopathic scoliosis. Proc Nat Acad Sci USA 82(8):2493–2497

    Google Scholar 

  9. Feldenkais M (1949) Body and mature behaviour: a study of anxiety, sex, gravitation and learning. New York International University Press Inc, USA

    Google Scholar 

  10. Frontera WR, Silver JK, Rizzo TD (2008) Essentials of physical medicine and rehabilitation: musculoskeletal disorders, pain and rehabilitation: 2nd edn. Saunders Elsevier Inc, Philadelphia

    Google Scholar 

  11. George CL (1992) The posture monitor: an automated prompting device for body alignment. Proceedings of the Johns Hopkins National Search for Computing Applications to Assist Persons with Disabilities, pp 143–145

  12. Goh S, Price RI, Leedman PJ, Singer KP (2000) A comparison of three methods for measuring thoracic kyphosis: implications for clinical studies. Rheumatology 39(3):310–315

    Article  PubMed  CAS  Google Scholar 

  13. Gotasche A (2007) Postures: the book of the back, 2nd edn. Anne-Lise Gotzsche, Great Britain

    Google Scholar 

  14. Hart ES, Merlin G, Harisiades J, Grottkau BE (2010) Scheuermann’s thoracic kyphosis in the adolescent patient. Orthop Nurs 29(6):365–371

    Article  PubMed  Google Scholar 

  15. Heary RF, Albert TJ (2007) Spinal deformities: the essentials. Thieme Medical Publishers Inc., USA, pp 192–196

    Google Scholar 

  16. Lewis JS, Valentine RE (2010) Clinical measurement of thoracic kyphosis: a study of the intra-rater reliability in subjects with and without shoulder pain. BMC Musculoskelet Disord 11(39)

  17. Lorussi F, Scilingo EP, Tesconi A, Tognetti A, De Rossi D (2003) Wearable sensing garment for posture detection, rehabilitation and tele-medicine. 4th International IEEE EMBS Special Topic Conference on Information Technology Applications in Biomedicine, pp 287–290

  18. Lou E, Bazzarelli M, Hill D, Durdle N (2001) A low power accelerometer used to improve posture. Can Conf Electr Comp Eng 2:1385–1389

    Google Scholar 

  19. Lovell WW, Winter RB, Morrissy RT, Weinstein SL (2006) Lovell and Winter’s Pediatric orthopaedics, 6th edition, vol 2. Lippincott Williams & Wilkins, USA, p 7998

  20. Macagno AE, O’Brien MF (2006) Thoracic and thoracolumbar kyphosis in adults. Spine 31(19):S161–S170

    Article  PubMed  Google Scholar 

  21. Motoi K, Higashi Y, Kuwae Y, Yuji T, Tanaka S, Yamakoshi K (2005) Development of a wearable device capable of monitoring human activity for use in rehabilitation and certification of eligibility for long-term care. Conf Proc IEEE Eng Med Biol Soc 1:1004–1007

    PubMed  CAS  Google Scholar 

  22. Motoi K, Ikeda K, Kuawe Y, Yuji T, Higashi Y, Nogawa M, Tanaka S, Yamakoshi K (2006) Development of an ambulatory device for monitoring posture change and walking speed for use in rehabilitation. Conf Proc IEEE Eng Med Biol Soc 1:5940–5943

    PubMed  CAS  Google Scholar 

  23. Nevins RJ, Durdle NG, Raso VJ (2002) A posture monitoring system using accelerometers. Canadian Conference on Electrical and Computer Engineering 2:1087–1092

    Google Scholar 

  24. Sinett T, Sinett S (2008) The truth about back pain: a revolutionary, individualized approach to diagnosing and healing back pain, 1st edn. Penguin Group, New York

    Google Scholar 

  25. Skaggs DL, Flynn JM (2006) Staying out of trouble in paediatric orthopaedics. Lippincott Williams & Wilkins, USA, p 286

    Google Scholar 

  26. Widhe T (2001) Spine: posture, mobility and pain. A longitudinal study from childhood to adolescence. Eur Spine J 10(2):118–123

    Article  PubMed  CAS  Google Scholar 

  27. Wong WY, Wong MS (2008) Smart garment for trunk posture monitoring: a preliminary study. Scoliosis 3(7):1748–1761

    Google Scholar 

  28. Wong MS, Mak AFT, Luk KDK, Evans JH, Brown B (2001) Effectiveness of audio-biofeedback in postural training for AIS patients. Prosthet Orthot Int 25(1):60–70

    Article  PubMed  CAS  Google Scholar 

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Correspondence to Edmond Lou.

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Lou, E., Lam, G.C., Hill, D.L. et al. Development of a smart garment to reduce kyphosis during daily living. Med Biol Eng Comput 50, 1147–1154 (2012). https://doi.org/10.1007/s11517-011-0847-7

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  • DOI: https://doi.org/10.1007/s11517-011-0847-7

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