Monitoring gait in multiple sclerosis with novel wearable motion sensors
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Ryan S McGinnis | Roozbeh Ghaffari | Nirav Sheth | Robert W Motl | John A. Wright | Jacob J Sosnoff | Yaejin Moon | Kirsten Seagers | John A Wright | R. Motl | R. Ghaffari | J. Sosnoff | Y. Moon | Kirsten Seagers | N. Sheth | R. Mcginnis | Kirsten A. Seagers | Nirav Sheth
[1] R. Motl,et al. Accelerometry as a measure of walking behavior in multiple sclerosis , 2013, Acta neurologica Scandinavica.
[2] Diane Podsiadlo,et al. The Timed “Up & Go”: A Test of Basic Functional Mobility for Frail Elderly Persons , 1991, Journal of the American Geriatrics Society.
[3] Qingguo Li,et al. Concurrent validation of Xsens MVN measurement of lower limb joint angular kinematics , 2013, Physiological measurement.
[4] F. Horak,et al. Body-worn motion sensors detect balance and gait deficits in people with multiple sclerosis who have normal walking speed. , 2012, Gait & posture.
[5] M. Woollacott,et al. Predicting the probability for falls in community-dwelling older adults using the Timed Up & Go Test. , 2000, Physical therapy.
[6] Susan Coote,et al. Gait deficits in people with multiple sclerosis: A systematic review and meta-analysis. , 2017, Gait & posture.
[7] J. Allum,et al. Gait event detection using linear accelerometers or angular velocity transducers in able-bodied and spinal-cord injured individuals. , 2006, Gait & posture.
[8] E J Orav,et al. Disease Steps in multiple sclerosis , 1995, Neurology.
[9] Adrian Burns,et al. An adaptive gyroscope-based algorithm for temporal gait analysis , 2010, Medical & Biological Engineering & Computing.
[10] P. S. St John,et al. Comparison of ActiGraph GT3X+ and StepWatch Step Count Accuracy in Geriatric Rehabilitation Patients. , 2016, Journal of aging and physical activity.
[11] Robert W Motl,et al. Does an accelerometer accurately measure steps taken under controlled conditions in adults with mild multiple sclerosis? , 2011, Disability and health journal.
[12] F. Bethoux,et al. Evaluating walking in patients with multiple sclerosis: which assessment tools are useful in clinical practice? , 2011, International journal of MS care.
[13] K. Aminian,et al. Temporal feature estimation during walking using miniature accelerometers: an analysis of gait improvement after hip arthroplasty , 1999, Medical & Biological Engineering & Computing.
[14] Jacob J. Sosnoff,et al. Mobility, Balance and Falls in Persons with Multiple Sclerosis , 2011, PloS one.
[15] Marjan J Faber,et al. Clinimetric properties of the performance-oriented mobility assessment. , 2006, Physical therapy.
[16] M. Aisen,et al. Self-Assessment of Neurologic Impairment in Multiple Sclerosis , 1997 .
[17] Justin J Kavanagh,et al. Lower trunk motion and speed-dependence during walking , 2009, Journal of NeuroEngineering and Rehabilitation.
[18] L. Mollinger,et al. Age- and gender-related test performance in community-dwelling elderly people: Six-Minute Walk Test, Berg Balance Scale, Timed Up & Go Test, and gait speeds. , 2002, Physical therapy.
[19] A. Shumway-cook,et al. Predicting the probability for falls in community-dwelling older adults. , 1997, Physical therapy.
[20] D. Sternad,et al. Local dynamic stability versus kinematic variability of continuous overground and treadmill walking. , 2001, Journal of biomechanical engineering.
[21] Morgan K. Boes,et al. Does a waist-worn ActiGraph accelerometer quantify community ambulation in persons with multiple sclerosis? , 2012, Journal of rehabilitation research and development.
[22] Joanne M Wagner,et al. Gait Abnormalities in Multiple Sclerosis: Pathogenesis, Evaluation, and Advances in Treatment , 2011, Current neurology and neuroscience reports.
[23] R. Motl,et al. Comparison of ActiGraph activity monitors in persons with multiple sclerosis and controls , 2013, Disability and rehabilitation.
[24] M. Montero‐Odasso,et al. Gait velocity as a single predictor of adverse events in healthy seniors aged 75 years and older. , 2005, The journals of gerontology. Series A, Biological sciences and medical sciences.
[25] R. Klaren,et al. Objectively quantified physical activity in persons with multiple sclerosis. , 2013, Archives of physical medicine and rehabilitation.
[26] L. Gunnarsson,et al. Clinical relevance using timed walk tests and 'timed up and go' testing in persons with multiple sclerosis. , 2007, Physiotherapy research international : the journal for researchers and clinicians in physical therapy.
[27] Jacob J. Sosnoff,et al. Gait Variability and Multiple Sclerosis , 2013, Multiple sclerosis international.
[28] Kamiar Aminian,et al. Spatio-temporal parameters of gait measured by an ambulatory system using miniature gyroscopes. , 2002, Journal of biomechanics.
[29] Angelo M. Sabatini,et al. Assessment of walking features from foot inertial sensing , 2005, IEEE Transactions on Biomedical Engineering.
[30] W. L. Benedict,et al. Multiple Sclerosis , 2007, Journal - Michigan State Medical Society.
[31] M.R. Popovic,et al. A reliable gait phase detection system , 2001, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[32] R. Motl,et al. Commercially available accelerometry as an ecologically valid measure of ambulation in individuals with multiple sclerosis , 2012, Expert review of neurotherapeutics.
[33] S. Coote,et al. Postural control deficits in people with Multiple Sclerosis: A systematic review and meta-analysis. , 2018, Gait & posture.
[34] M. Faucher,et al. Motor determinants of gait in 100 ambulatory patients with multiple sclerosis , 2005, Multiple sclerosis.
[35] J. Norton,et al. The significant change for the Timed 25-Foot Walk in the Multiple Sclerosis Functional Composite , 2000, Multiple sclerosis.
[36] Catherine Dehollain,et al. Gait assessment in Parkinson's disease: toward an ambulatory system for long-term monitoring , 2004, IEEE Transactions on Biomedical Engineering.
[37] Julia M Balto,et al. Accuracy and precision of smartphone applications and commercially available motion sensors in multiple sclerosis , 2016, Multiple sclerosis journal - experimental, translational and clinical.
[38] B. Trapp,et al. Axonal and neuronal degeneration in multiple sclerosis: mechanisms and functional consequences , 2001, Current opinion in neurology.
[39] R. Motl. Ambulation and multiple sclerosis. , 2013, Physical medicine and rehabilitation clinics of North America.
[40] E. Růžička,et al. Spatial and temporal characteristics of gait as outcome measures in multiple sclerosis (EDSS 0 to 6.5) , 2015, Journal of NeuroEngineering and Rehabilitation.
[41] R. Motl,et al. Gait and six-minute walk performance in persons with multiple sclerosis , 2013, Journal of the Neurological Sciences.
[42] Jung-Keun Lee,et al. Quasi real-time gait event detection using shank-attached gyroscopes , 2011, Medical & Biological Engineering & Computing.
[43] Jeffrey A. Cohen,et al. Evaluation of the six-minute walk in multiple sclerosis subjects and healthy controls , 2008, Multiple sclerosis.
[44] S. Webber,et al. Effect of ActiGraph GT3X+ Position and Algorithm Choice on Step Count Accuracy in Older Adults. , 2015, Journal of aging and physical activity.
[45] M.F. Golnaraghi,et al. A quaternion-based orientation estimation algorithm using an inertial measurement unit , 2004, PLANS 2004. Position Location and Navigation Symposium (IEEE Cat. No.04CH37556).
[46] A. Achiron,et al. Gait analysis in multiple sclerosis: characterization of temporal-spatial parameters using GAITRite functional ambulation system. , 2009, Gait & posture.
[47] Brian M. Sandroff,et al. Accuracy of StepWatch™ and ActiGraph Accelerometers for Measuring Steps Taken among Persons with Multiple Sclerosis , 2014, PloS one.
[48] D. Bassett,et al. Use of pedometers and accelerometers in clinical populations: validity and reliability issues , 2010 .
[49] Robert W Motl,et al. Stride-Time Variability and Fall Risk in Persons with Multiple Sclerosis , 2015, Multiple sclerosis international.
[50] A J Thompson,et al. Measuring the impact of MS on walking ability , 2003, Neurology.
[51] U. Croce,et al. A kinematic and kinetic comparison of overground and treadmill walking in healthy subjects. , 2007, Gait & posture.