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PUBMED FOR HANDHELDS

Journal Abstract Search


675 related items for PubMed ID: 17353459

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  • 22. The assessment of walking capacity using the walking index for spinal cord injury: self-selected versus maximal levels.
    Kim MO, Burns AS, Ditunno JF, Marino RJ.
    Arch Phys Med Rehabil; 2007 Jun; 88(6):762-7. PubMed ID: 17532899
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  • 23. Balance and ambulation improvements in individuals with chronic incomplete spinal cord injury using locomotor training-based rehabilitation.
    Harkema SJ, Schmidt-Read M, Lorenz DJ, Edgerton VR, Behrman AL.
    Arch Phys Med Rehabil; 2012 Sep; 93(9):1508-17. PubMed ID: 21777905
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  • 24. NeuroRecovery Network provides standardization of locomotor training for persons with incomplete spinal cord injury.
    Morrison SA, Forrest GF, VanHiel LR, Davé M, D'Urso D.
    Arch Phys Med Rehabil; 2012 Sep; 93(9):1574-7. PubMed ID: 22920454
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  • 27. Treadmill walking in incomplete spinal-cord-injured subjects: 2. Factors limiting the maximal speed.
    Pépin A, Ladouceur M, Barbeau H.
    Spinal Cord; 2003 May; 41(5):271-9. PubMed ID: 12714989
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  • 28. Sensory supported FES control in gait training of incomplete spinal cord injury persons.
    Cikajlo I, Matjacić Z, Bajd T, Futami R.
    Artif Organs; 2005 Jun; 29(6):459-61. PubMed ID: 15926982
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  • 29. Walking index for spinal cord injury (WISCI): criterion validation.
    Morganti B, Scivoletto G, Ditunno P, Ditunno JF, Molinari M.
    Spinal Cord; 2005 Jan; 43(1):27-33. PubMed ID: 15520841
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  • 30. Activity-based therapy for recovery of walking in chronic spinal cord injury: results from a secondary analysis to determine responsiveness to therapy.
    Jones ML, Evans N, Tefertiller C, Backus D, Sweatman M, Tansey K, Morrison S.
    Arch Phys Med Rehabil; 2014 Dec; 95(12):2247-52. PubMed ID: 25102385
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  • 31. Recovery of gait after short-stay total hip arthroplasty.
    van den Akker-Scheek I, Stevens M, Bulstra SK, Groothoff JW, van Horn JR, Zijlstra W.
    Arch Phys Med Rehabil; 2007 Mar; 88(3):361-7. PubMed ID: 17321830
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  • 32. Gait training in human spinal cord injury using electromechanical systems: effect of device type and patient characteristics.
    Benito-Penalva J, Edwards DJ, Opisso E, Cortes M, Lopez-Blazquez R, Murillo N, Costa U, Tormos JM, Vidal-Samsó J, Valls-Solé J, European Multicenter Study about Human Spinal Cord Injury Study Group, Medina J.
    Arch Phys Med Rehabil; 2012 Mar; 93(3):404-12. PubMed ID: 22209475
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  • 33. Improving walking assessment in subjects with an incomplete spinal cord injury: responsiveness.
    van Hedel HJ, Wirz M, Curt A.
    Spinal Cord; 2006 Jun; 44(6):352-6. PubMed ID: 16304565
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  • 34. Ankle paresis in incomplete spinal cord injury: relation to corticospinal conductivity and ambulatory capacity.
    Wirth B, van Hedel HJ, Curt A.
    J Clin Neurophysiol; 2008 Aug; 25(4):210-7. PubMed ID: 18677185
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  • 38. Effects of external cues on gait performance in independent ambulatory incomplete spinal cord injury patients.
    Amatachaya S, Keawsutthi M, Amatachaya P, Manimmanakorn N.
    Spinal Cord; 2009 Sep; 47(9):668-73. PubMed ID: 19139759
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  • 40. Walking speed in children and young adults with neuromuscular disease: comparison between two assessment methods.
    Pirpiris M, Wilkinson AJ, Rodda J, Nguyen TC, Baker RJ, Nattrass GR, Graham HK.
    J Pediatr Orthop; 2003 Sep; 23(3):302-7. PubMed ID: 12724591
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