Background And Purpose: The purpose of this study was to describe gait parameters in children and adolescents with a diagnosis of Friedreich ataxia (FA) and examine the relationship between disease severity, measured by the Friedreich Ataxia Rating Scale (FARS) and gait parameters. The study examined whether FARS scores can discriminate between those who walk independently and those who require assistance.
Methods: Thirty-eight children (aged 5-11 years) and adolescents (aged 12-17 years) with genetically confirmed FA were divided into two groups based on locomotor status: group 1, subjects who were able to walk independently, and group 2, subjects who required assistance for walking. Temporal and spatial gait parameters were collected using the Stride Analyzer computerized foot switch system and compared with age-matched normative data. The FARS was used to measure disease severity. Correlation coefficients and the Mann-Whitney U test of differences were used to evaluate associations and discern differences between groups.
Results: In subjects with FA, gait parameters of velocity and cadence were slower and stride length was shorter compared with age-matched children without disabilities. These parameters were significantly correlated with FARS score (r = 0.696, 0.667, 0.537; respectively, all P values <0.001). Total FARS scores were correlated with locomotor status (ç value r = 0.623; P < 0.01) and could categorize subjects into groups based on independent walking or need for assistance, 73% and 87% of the time, respectively.
Discussion And Conclusion: Subjects with FA exhibited specific abnormal gait characteristics relative to age-matched individuals. Disease severity, as measured by the FARS, was associated with gait velocity, stride length, and cadence. FARS scores can be used to categorize subjects by locomotor status and may be a useful screening tool to identify those requiring assistance.
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http://dx.doi.org/10.1097/NPT.0b013e3181b5112e | DOI Listing |
Disabil Rehabil
January 2025
Caring Futures Institute, College of Nursing and Health Sciences, Flinders University, Adelaide, SA, Australia.
Purpose: To systematically review the evidence investigating the implementation of cardiorespiratory (CR) training in adults following a stroke and to understand how interventions are prescribed to address cardiorespiratory fitness (CRF).
Methods: Medline, CINAHL, EMBASE, EMCARE, Scopus, PEDro and ProQuest were searched from inception until January 2024. Inclusion criteria were studies that included adults following a stroke, investigated CR training interventions and used standardised CRF assessments.
Acta Ortop Bras
January 2025
Hospital Getulio Vargas, Departamento de Ortopedia e Traumatologia, do Hospital Getúlio Vargas, Recife, Pernambuco, PE, Brazil.
Introduction: The three-dimensional evaluation of patients in the gait laboratory is a diagnostic method that is gaining ground in various orthopedic pathologies and, in the case of ankle fractures, can more accurately detail the degree of joint limitation.
Objective: To present the importance of laboratory gait studies in the postoperative period of ankle fractures associated with syndesmosis ligament injuries, increasing the arsenal for assessing whether the surgical approach and outcome were satisfactory.
Methods: Case series of 13 patients who underwent surgical treatment for ankle fractures associated with syndesmosis injuries, evaluated postoperatively in the gait clinic using the BTS GAITLAB hardware program.
J Biomech
January 2025
Sport and Physical Activity Research Centre, Sheffield Hallam University, Olympic Legacy Park, 2 Old Hall Rd, Sheffield S9 3TY, United Kingdom. Electronic address:
Changes to the variability within biomechanical signals may reflect a change in the health of the human system. However, for running gait variability measures calculated from wearable device data, it is unknown whether a between-day difference reflects a shift in system dynamics reflective of a change in human health or is a result of poor between-day reliability of the measurement device or the biomechanical signal. This study investigated the reliability of stride time and sacral acceleration variability measures calculated from inertial measurement units (IMUs).
View Article and Find Full Text PDFJ Clin Med
January 2025
IRCCS Istituto Ortopedico Galeazzi, 20157 Milan, Italy.
While the importance of the upper and lower limbs in locomotion is well understood, the kinematics of the trunk during walking remains largely unexplored. Two decades ago, a casual observation was reported indicating spine lengthening in a small sample of mostly children during walking, but this observation was never replicated. Objectives: This study aims to verify the preliminary observation that spine lengthening occurs during walking and to explore changes in spine kinematics across three different age groups.
View Article and Find Full Text PDFSensors (Basel)
December 2024
Department of Engineering, University of Exeter, Exeter EX4 4QF, UK.
A rapidly growing body of experimental evidence in the literature shows that the effects of humans interacting with vibrating structures, other humans, and their surrounding environment can be critical for reliable estimation of structural vibrations. The Interaction-based Vibration Serviceability Assessment framework (I-VSA) was proposed by the authors in 2017 to address this, taking into account human-structure dynamic interactions (HSI) to simulate the structural vibrations experienced by each occupant/pedestrian. The I-VSA method, however, had limited provisions to simulate simultaneously multiple modes of structure in HSI, to simulate human-human and human-environment interactions, and the movement pattern of the occupants/pedestrians.
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