Could an Internet-Based Foot-Ankle Therapeutic Exercise Program Modify Clinical Outcomes and Gait Biomechanics in People with Diabetic Neuropathy? A Clinical Proof-of-Concept Study.

Ronaldo H Cruvinel-Júnior, Jane S S P Ferreira, Jady L Veríssimo, Renan L Monteiro, Eneida Y Suda, Érica Q Silva, Isabel C N Sacco
Author Information
  1. Ronaldo H Cruvinel-Júnior: Department of Physical Therapy, Speech, and Occupational Therapy, School of Medicine, University of São Paulo, Rua Cipotânea, 51-Butantã, São Paulo 05360-160, SP, Brazil. ORCID
  2. Jane S S P Ferreira: Department of Physical Therapy, Speech, and Occupational Therapy, School of Medicine, University of São Paulo, Rua Cipotânea, 51-Butantã, São Paulo 05360-160, SP, Brazil.
  3. Jady L Veríssimo: Department of Physical Therapy, Speech, and Occupational Therapy, School of Medicine, University of São Paulo, Rua Cipotânea, 51-Butantã, São Paulo 05360-160, SP, Brazil.
  4. Renan L Monteiro: Department of Physical Therapy, Speech, and Occupational Therapy, School of Medicine, University of São Paulo, Rua Cipotânea, 51-Butantã, São Paulo 05360-160, SP, Brazil. ORCID
  5. Eneida Y Suda: Department of Physical Therapy, Speech, and Occupational Therapy, School of Medicine, University of São Paulo, Rua Cipotânea, 51-Butantã, São Paulo 05360-160, SP, Brazil. ORCID
  6. Érica Q Silva: Department of Physical Therapy, Speech, and Occupational Therapy, School of Medicine, University of São Paulo, Rua Cipotânea, 51-Butantã, São Paulo 05360-160, SP, Brazil. ORCID
  7. Isabel C N Sacco: Department of Physical Therapy, Speech, and Occupational Therapy, School of Medicine, University of São Paulo, Rua Cipotânea, 51-Butantã, São Paulo 05360-160, SP, Brazil. ORCID

Abstract

Previous studies have shown the efficacy of foot-ankle exercises in people with diabetic peripheral neuropathy (DPN), but the quality of evidence is still low. This proof-of-concept study pursues preliminary evidence for potential clinical and gait biomechanical benefits from an internet-based foot-ankle therapeutic exercise program for people with DPN. We randomized 30 individuals with DPN (IWGDF risk category 1 or 2) into either the control group (CG) receiving the usual care or the intervention group (IG) receiving the usual care plus an internet-based foot-ankle exercise program, fully guided by the Sistema de Orientação ao Pé Diabético (SOPeD; translation: Diabetic Foot Guidance System) three times per week for 12 weeks. We assessed face-to-face clinical and biomechanical outcomes at baseline, 12 weeks, and 24 weeks (follow up). Participants had good adherence to the proposed intervention and it led to only mild adverse events. The IG showed improvements in the ankle and first metatarsophalangeal joint motion after 12 and 24 weeks, changed forefoot load absorption during foot rollover during gait after 24 weeks, reduced foot pain after 12 weeks, and improved foot function after 24 weeks. A 12-week internet-based foot-ankle exercise program using the SOPeD software (version 1.0) has the potential to reduce foot pain, improve foot function, and modify some important foot-ankle kinematic outcomes in people with DPN.

Keywords

References

  1. Diabet Foot Ankle. 2017 Feb 20;8(1):1287239 [PMID: 28326159]
  2. Gait Posture. 2014 Sep;40(4):570-4 [PMID: 25086801]
  3. Diabetes Metab Res Rev. 2020 Mar;36 Suppl 1:e3266 [PMID: 32176447]
  4. Braz J Phys Ther. 2018 May - Jun;22(3):222-230 [PMID: 29175181]
  5. Pilot Feasibility Stud. 2021 Mar 26;7(1):87 [PMID: 33766146]
  6. Phys Ther. 1994 Apr;74(4):299-308; discussion 309-13 [PMID: 8140143]
  7. BMC Musculoskelet Disord. 2014 Apr 27;15:137 [PMID: 24767584]
  8. Int J Telerehabil. 2010 Oct 27;2(2):31-4 [PMID: 25945175]
  9. BMJ Open Diabetes Res Care. 2021 May;9(1): [PMID: 34035053]
  10. Clin Biomech (Bristol, Avon). 2013 Nov-Dec;28(9-10):1055-60 [PMID: 24176198]
  11. BMJ. 1999 Sep 11;319(7211):703-4 [PMID: 10480833]
  12. J Foot Ankle Res. 2013 Mar 25;6(1):11 [PMID: 23531372]
  13. J Orthop Sports Phys Ther. 2005 Aug;35(8):477-8 [PMID: 16187507]
  14. Int J Immunopathol Pharmacol. 2010 Oct-Dec;23(4):997-1003 [PMID: 21244749]
  15. Brain. 2004 Jul;127(Pt 7):1593-605 [PMID: 15128619]
  16. J Am Podiatr Med Assoc. 2016 May;106(3):189-200 [PMID: 27269974]
  17. PLoS One. 2017 Aug 31;12(8):e0181916 [PMID: 28859075]
  18. Diabetes Care. 2007 Jun;30(6):1507-12 [PMID: 17363749]
  19. Diabetes Care. 2013 Dec;36(12):4109-16 [PMID: 24130357]
  20. Clinics (Sao Paulo). 2009;64(2):113-20 [PMID: 19219316]
  21. Diabetes Metab Res Rev. 2020 Mar;36 Suppl 1:e3269 [PMID: 32176451]
  22. J Foot Ankle Res. 2021 Oct 27;14(1):56 [PMID: 34706752]
  23. Sci Rep. 2018 Jul 12;8(1):10576 [PMID: 30002498]
  24. Diabetol Metab Syndr. 2019 Oct 30;11:89 [PMID: 31695753]
  25. Gait Posture. 2006 Jun;23(4):401-10 [PMID: 15914005]
  26. Diabetes Care. 2017 Jan;40(1):136-154 [PMID: 27999003]
  27. Foot Ankle Int. 1995 May;16(5):277-84 [PMID: 7633584]
  28. Trials. 2020 Jan 13;21(1):73 [PMID: 31931855]
  29. PLoS One. 2016 Apr 07;11(4):e0152602 [PMID: 27054319]
  30. Physiotherapy. 2016 Jun;102(2):127-35 [PMID: 26821954]
  31. Diabetes Res Clin Pract. 2016 Sep;119:83-7 [PMID: 27497143]
  32. Health Econ. 2022 Sep;31(9):1807-1822 [PMID: 35801541]
  33. J Med Internet Res. 2012 Nov 14;14(6):e152 [PMID: 23151820]
  34. Diabetologia. 1992 Jul;35(7):660-3 [PMID: 1644245]
  35. Diabetes Metab Res Rev. 2012 Oct;28(7):574-600 [PMID: 22730196]
  36. PLoS One. 2019 Jun 20;14(6):e0218560 [PMID: 31220155]
  37. Foot Ankle Int. 2006 Aug;27(8):617-22 [PMID: 16919215]
  38. Diabetes Metab Res Rev. 2020 Mar;36 Suppl 1:e3271 [PMID: 31957306]
  39. Diabetologia. 2009 Jun;52(6):1182-91 [PMID: 19280173]
  40. Diabetes Res Clin Pract. 1997 Aug;37(2):137-43 [PMID: 9279484]
  41. Physiotherapy. 2018 Sep;104(3):277-298 [PMID: 30030037]
  42. J Appl Physiol (1985). 2019 Jan 1;126(1):231-238 [PMID: 30462568]
  43. BMC Musculoskelet Disord. 2008 Jul 04;9:99 [PMID: 18601723]
  44. J Am Podiatr Med Assoc. 2002 Oct;92(9):483-90 [PMID: 12381797]
  45. Diabetologia. 2010 Mar;53(3):458-66 [PMID: 19921145]
  46. J Man Manip Ther. 2022 Jun;30(3):133-138 [PMID: 35770340]
  47. Man Ther. 2010 Jun;15(3):220-8 [PMID: 20163979]
  48. Sci Rep. 2021 Jun 11;11(1):12404 [PMID: 34117342]
  49. Sci Rep. 2022 May 9;12(1):7561 [PMID: 35534614]
  50. Clinics (Sao Paulo). 2008 Oct;63(5):595-600 [PMID: 18925317]
  51. Diabetes Care. 2004 Apr;27(4):942-6 [PMID: 15047653]
  52. J Neuroeng Rehabil. 2014 Feb 08;11:11 [PMID: 24507153]
  53. J Med Internet Res. 2011 Dec 31;13(4):e126 [PMID: 22209829]
  54. Ann Intern Med. 2017 Apr 04;166(7):453-462 [PMID: 28241215]
  55. J R Soc Med. 2013 Mar;106(3):76-8 [PMID: 23481424]
  56. Clin Biomech (Bristol, Avon). 2009 Dec;24(10):787-91 [PMID: 19751956]
  57. Diabetes Care. 2003 Jun;26(6):1790-5 [PMID: 12766111]
  58. Diabetes Care. 2004 Oct;27(10):2382-5 [PMID: 15451904]
  59. Diabetes Technol Ther. 2015 Jun;17(6):405-12 [PMID: 25664904]

Grants

  1. 2019/06405-9; 2019/02522-0; 2017/17848-3; 2017/15449-4/São Paulo Research Foundation
  2. 407252/2018-5; 304124/2018-4/National Council for Scientific and Technological Development
  3. Financial code 001/Coordenação de Aperfeicoamento de Pessoal de Nível Superior

MeSH Term

Humans
Ankle
Biomechanical Phenomena
Diabetes Mellitus
Diabetic Neuropathies
Exercise Therapy
Foot Diseases
Gait
Pain