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Physiotherapy Review
Bieżący numer Archiwum Artykuły zaakceptowane O czasopiśmie Rada naukowa Bazy indeksacyjne Prenumerata Kontakt Zasady publikacji prac Standardy etyczne i procedury
Panel Redakcyjny
Zgłaszanie i recenzowanie prac online
3/2024
vol. 28
 
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Artykuł przeglądowy

Evaluation of the effects of gait reeducation in a child using the automated Prodrobot gait trainer – a case report

Karolina Szumilas
1
,
Wiesław Chwała
2
,
Katarzyna Fedejko
3

  1. Graduate of the Department of Physical Rehabilitation, University of Physical Education in Kraków, Kraków, Poland
  2. Department of Biomechanics, University of Physical Education in Kraków, Kraków, Poland
  3. Institute of Applied Sciences, University of Physical Education in Kraków, Kraków, Poland
Physiotherapy Review, 2024, 28(3), 50-62
Data publikacji online: 2024/09/26
Plik artykułu:
- art6_3_2024.pdf  [0.77 MB]
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Metryki PlumX:
 
1. Knox V, Evans AL. Evaluation of the functional effects of a course of Bobath therapy in children with cerebral palsy: a preliminary study. Dev Med Child Neurol. 2002; 44 (7): 447–460.
2. Zasadzka E, Pawlaczyk M, Wieczorowska-Tobis K. Short Physical Performance Battery test as a tool for assessing the physical fitness of the elderly [Test Short Physical Performance Battery jako narzędzie służące do oceny sprawności fizycznej osób starszych]. Gerontol Pol. 2013; 4: 148–153.
3. Kear BM, Guck TP, McGaha AL. Timed Up and Go (TUG) Test: Normative Reference Values for Ages 20 to 59 Years and Relationships With Physical and Mental Health Risk Factors. J Prim Care Community Health. 2017; 8 (1): 9–13.
4. Małecka B, Sędziwy L, Lelakowski J, et al. The usefulness of six minute walking test in follow-up of paced patients [Przydatność testu 6-minutowego marszu do oceny ambulatoryjnej pacjentów z rozrusznikiem serca]. Via Med. 2002; 9 (3): 259–264.
5. Panella L, Tinelli C, Buizza A, Lombardi R, Gandolfi R. Towards objective evaluation of balance in the elderly: validity and reliability of a measurement instrument applied to the Tinetti test. Int J Rehabil Res. 2008; 31 (1): 65–72.
6. Kirtley C. Clinical Gait Analysis.Theory and Practise. Elsevier: Oxford, 2006.
7. Głowiński S. Analiza biomechaniczna chodu prawidłowego. TTS, 2013.
8. Perry J, Burnfield M. Gait analysis - normal and pathological function. New Jersey, 2010.
9. Barbeau H. Locomotor training in neurorehabilitation: emerging rehabilitation concepts. Neurorehabil Neural Repair. 2003; 17 (1): 3–11.
10. Jankowska E. Concept and tools of measuring of the quality of life. Torun Int Stud. 2011; 1 (4): 33–40.
11. Patritti BL, Sicari M, Demming LC, et al. The role of augmented feedback in pediatric robotic-assisted gait training: A case series. Technol Disabil. 2010; 22: 215–227.
12. Larkin TA, Ashcroft E, Elgellaie A, Hickey BA. Ventrogluteal versus dorsogluteal site selection: A cross-sectional study of muscle and subcutaneous fat thicknesses and an algorithm incorporating demographic and anthropometric data to predict injection outcome. Int J Nurs Stud. 2017; 71: 1–7.
13. Brütsch K, Koenig A, Zimmerli L, Mérillat-Koeneke S, Riener R, Jäncke L, van Hedel HJ, Meyer-Heim A. Virtual reality for enhancement of robot-assisted gait training in children with central gait disorders. J Rehabil Med. 2011; 43 (6): 493–499.
14. Lefmann S, Russo R, Hillier S. The effectiveness of robotic-assisted gait training for paediatric gait disorders: systematic review. J Neuroeng Rehabil. 2017; 14 (1): 1.

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