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1.
Clin Rehabil ; 20(11): 999-1016, 2006 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-17065543

RESUMO

OBJECTIVE: To review the influence of physical capacity on regaining walking ability and the development of walking ability after lower limb amputation. DESIGN: A systematic search of literature was performed. The quality of all relevant studies was evaluated according to a checklist for statistical review of general papers. SUBJECTS: Lower limb amputees. MAIN MEASURES: Physical capacity (expressed by aerobic capacity, anaerobic capacity, muscle force, flexibility and balance) and walking ability (expressed by the walking velocity and symmetry). RESULTS: A total of 48 studies that complied with the inclusion criteria were selected. From these studies there is strong evidence for deterioration of two aspects of physical capacity (muscle strength and balance) and of two aspects of walking ability (walking velocity and symmetry) after lower limb amputation. Strong evidence was found for a relation between balance and walking ability. CONCLUSION: Strong evidence was only found for a relation between balance and walking ability. Evidence about a relation between other elements of physical capacity and walking ability was insufficient. Training of physical capacity as well as walking ability during rehabilitation following lower limb amputation should not be discouraged since several parameters have been shown to be reduced after amputation, although their relation to regaining walking ability and to the development of walking ability remains unclear.


Assuntos
Amputação Cirúrgica/reabilitação , Força Muscular/fisiologia , Equilíbrio Postural/fisiologia , Caminhada/fisiologia , Amputados/reabilitação , Membros Artificiais , Humanos
2.
Prosthet Orthot Int ; 29(3): 255-67, 2005 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-16466155

RESUMO

The purpose of the study was to investigate which systematic effects of prosthetic misalignment could be observed with the use of the SYBAR system. The alignment of the prosthesis of five well-trained unilateral trans-tibial amputees was changed 15 degrees in magnitude in varus, valgus, flexion, extension, endorotation, exorotation, dorsal flexion, and plantar flexion. Subjects walked over a distance of 8 m at a self-selected walking speed with the alignment of the prosthesis as it was at the start of the experiment (reference) and with each changed alignment. Two video cameras (frontal and sagittal) and a force plate of the SYBAR system (Noldus Information Technology, The Netherlands) were used to capture gait characteristics of the subjects. Temporal and spatial characteristics, the magnitude and timing of the ground reaction force (GRF), and the external joint moments were derived from these data. Despite the substantial perturbations to prosthetic alignment, only a few effects were observed in the temporal and spatial characteristics of gait, the magnitude and timing of the GRF, and the external joint moments. Only the pattern of the ground reaction force in the mediolateral direction and the joint moment around the ankle in the frontal plane during terminal stance showed a systematic effect when the alignment was set into varus and valgus or exorotation. It was concluded that using the SYBAR system in this study revealed little effect of perturbations in prosthetic alignment, for this group of patients, and for the selected parameters. It was questioned whether this is due to the relatively low resolution of the SYBAR system or the capacity of the well-trained subjects to compensate for the disturbance in alignment. It was suggested that the usability of the SYBAR system in clinical settings should be further explored.


Assuntos
Amputados/reabilitação , Membros Artificiais , Marcha/fisiologia , Amplitude de Movimento Articular/fisiologia , Adulto , Idoso , Fenômenos Biomecânicos , Humanos , Perna (Membro) , Masculino , Pessoa de Meia-Idade , Probabilidade , Desenho de Prótese , Ajuste de Prótese , Estudos de Amostragem , Sensibilidade e Especificidade , Tíbia/cirurgia , Suporte de Carga
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