Testing the Performance of an Innovative Markerless Technique for Quantitative and Qualitative Gait Analysis
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Guido Pasquini | Silvia Pogliaghi | Laura Simoni | Alessandra Scarton | Filippo Gerli | Claudio Macchi | Federico Gori | A. Scarton | F. Gerli | C. Macchi | G. Pasquini | S. Pogliaghi | L. Simoni | F. Gori
[1] Aurelio Cappozzo,et al. Overcoming the limitations of the Harmonic Ratio for the reliable assessment of gait symmetry. , 2017, Journal of biomechanics.
[2] Giovanni Morone,et al. The connection between anthropometry and gait harmony unveiled through the lens of the golden ratio , 2016, Neuroscience Letters.
[3] J. Chow,et al. Temporospatial characteristics of gait in patients with lower limb muscle hypertonia after traumatic brain injury , 2010, Brain injury.
[4] Mark S. Nixon,et al. Advances in automatic gait recognition , 2004, Sixth IEEE International Conference on Automatic Face and Gesture Recognition, 2004. Proceedings..
[5] S. Õunpuu,et al. Efficacy of clinical gait analysis: A systematic review. , 2011, Gait & posture.
[6] R. Fitzpatrick,et al. Acceleration patterns of the head and pelvis when walking are associated with risk of falling in community-dwelling older people. , 2003, The journals of gerontology. Series A, Biological sciences and medical sciences.
[7] K. Lowry,et al. Walking stability using harmonic ratios in Parkinson's disease , 2009, Movement disorders : official journal of the Movement Disorder Society.
[8] Franck Multon,et al. New Lower-Limb Gait Asymmetry Indices Based on a Depth Camera , 2015, Sensors.
[9] M. C. Bisi,et al. Measures of gait stability: performance on adults and toddlers at the beginning of independent walking , 2014, Journal of NeuroEngineering and Rehabilitation.
[10] B. Zörner,et al. Familiarization with treadmill walking: How much is enough? , 2019, Scientific Reports.
[11] K. Kısmet,et al. Evaluation of spatio-temporal gait parameters and gait symmetry in diabetic polyneuropathic patients with burn injury: A pilot study. , 2019, Burns : journal of the International Society for Burn Injuries.
[12] J. C. Wall,et al. A kinematic study of long-term habituation to treadmill walking. , 1981, Ergonomics.
[13] M. Yamasaki,et al. Sex difference in the pattern of lower limb movement during treadmill walking , 2004, European Journal of Applied Physiology and Occupational Physiology.
[14] Mariano Serrao,et al. Harmony as a convergence attractor that minimizes the energy expenditure and variability in physiological gait and the loss of harmony in cerebellar ataxia. , 2017, Clinical biomechanics.
[15] Itshak Melzer,et al. The effects of unexpected mechanical perturbations during treadmill walking on spatiotemporal gait parameters, and the dynamic stability measures by which to quantify postural response , 2018, PloS one.
[16] Tanmay T. Verlekar,et al. Automatic Classification of Gait Impairments Using a Markerless 2D Video-Based System , 2018, Sensors.
[17] K. Tamura,et al. Asymmetry between lower limbs during rested and fatigued state running gait in healthy individuals. , 2017, Gait & posture.
[18] Corina Nüesch,et al. Validity and reliability of a portable gait analysis system for measuring spatiotemporal gait characteristics: comparison to an instrumented treadmill , 2016, Journal of NeuroEngineering and Rehabilitation.
[19] Marjorie Skubic,et al. Unobtrusive, Continuous, In-Home Gait Measurement Using the Microsoft Kinect , 2013, IEEE Transactions on Biomedical Engineering.
[20] F. Impellizzeri,et al. Spatiotemporal parameters of gait after total hip replacement: anterior versus posterior approach. , 2009, The Orthopedic clinics of North America.
[21] A Leardini,et al. Estimation of spatial-temporal gait parameters in level walking based on a single accelerometer: Validation on normal subjects by standard gait analysis , 2012, Comput. Methods Programs Biomed..
[22] J. VanSwearingen,et al. Harmonic ratios: a quantification of step to step symmetry. , 2013, Journal of biomechanics.
[23] A. Nalini,et al. GNE myopathy – A cross-sectional study on spatio-temporal gait characteristics , 2019, Neuromuscular Disorders.
[24] Kelly J. Bower,et al. Concurrent validity of the Microsoft Kinect for assessment of spatiotemporal gait variables. , 2013, Journal of biomechanics.
[25] Steffi L. Colyer,et al. A Review of the Evolution of Vision-Based Motion Analysis and the Integration of Advanced Computer Vision Methods Towards Developing a Markerless System , 2018, Sports Medicine - Open.
[26] The mental representation of the human gait in hip osteoarthrosis and total hip arthroplasty patients: A clinical cross-sectional study , 2018, Clinical rehabilitation.
[27] H. Dawes,et al. Assessment of spatio-temporal gait parameters using inertial measurement units in neurological populations. , 2011, Gait & posture.
[28] F. García-Pinillos,et al. Agreement between spatiotemporal parameters from a photoelectric system with different filter settings and high-speed video analysis during running on a treadmill at comfortable velocity. , 2019, Journal of biomechanics.
[29] Carlo Caltagirone,et al. The Golden Ratio of Gait Harmony: Repetitive Proportions of Repetitive Gait Phases , 2013, BioMed research international.
[30] R. Puers,et al. Inertial sensors versus standard systems in gait analysis: a systematic review and meta-analysis. , 2019, European journal of physical and rehabilitation medicine.
[31] Edward D Lemaire,et al. Analysis of dual-task elderly gait in fallers and non-fallers using wearable sensors. , 2016, Journal of biomechanics.
[32] Wim Saeys,et al. Do spatiotemporal parameters and gait variability differ across the lifespan of healthy adults? A systematic review. , 2018, Gait & posture.
[33] Associations Between Step Duration Variability and Inertial Measurement Unit Derived Gait Characteristics. , 2016, Journal of applied biomechanics.
[34] Begonya Garcia-Zapirain,et al. Gait Analysis Methods: An Overview of Wearable and Non-Wearable Systems, Highlighting Clinical Applications , 2014, Sensors.
[35] Sergey Bezryadin,et al. Brightness Calculation in Digital Image Processing , 2007 .
[36] Genevieve K. R. Williams,et al. Coordination in gait: Demonstration of a spectral approach , 2018, Journal of sports sciences.
[37] Marco Iosa,et al. Ability and Stability of Running and Walking in Children with Cerebral Palsy , 2013, Neuropediatrics.
[38] Xinfeng Zhang,et al. Abnormal Gait Detection in Surveillance Videos with FFT-Based Analysis on Walking Rhythm , 2017, ICIG.
[39] Marco Iosa,et al. Assessment of gait stability, harmony, and symmetry in subjects with lower-limb amputation evaluated by trunk accelerations. , 2014, Journal of rehabilitation research and development.
[40] J. Morales‐Asencio,et al. The influence of childhood obesity on spatio-temporal gait parameters. , 2019, Gait & posture.
[41] Changho Song,et al. Concurrent Validity and Test-retest Reliability of the OPTOGait Photoelectric Cell System for the Assessment of Spatio-temporal Parameters of the Gait of Young Adults , 2014, Journal of physical therapy science.
[42] M Bonnard,et al. Stride variability in human gait: the effect of stride frequency and stride length. , 2003, Gait & posture.
[43] Matjaz Gams,et al. Automatic recognition of gait-related health problems in the elderly using machine learning , 2012, Multimedia Tools and Applications.
[44] Carlo Caltagirone,et al. Loss of fractal gait harmony in Parkinson’s Disease , 2016, Clinical Neurophysiology.
[45] Jay Dicharry,et al. Kinematics and kinetics of gait: from lab to clinic. , 2010, Clinics in sports medicine.
[46] T. Lejeune,et al. Effect of speed on kinematic, kinetic, electromyographic and energetic reference values during treadmill walking , 2008, Neurophysiologie Clinique/Clinical Neurophysiology.
[47] Annemarie Koster,et al. Prediction of sustained harmonic walking in the free-living environment using raw accelerometry data , 2015, Physiological measurement.