Muscle synergy analysis in children with cerebral palsy
暂无分享,去创建一个
[1] Ilse Jonkers,et al. Task constraints and minimization of muscle effort result in a small number of muscle synergies during gait , 2014, Front. Comput. Neurosci..
[2] M. Schwartz,et al. Muscle synergy complexity is related to selective motor control in cerebral palsy , 2014 .
[3] Francesco Lacquaniti,et al. Can modular strategies simplify neural control of multidirectional human locomotion? , 2014, Journal of neurophysiology.
[4] Matthew C. Tresch,et al. The number and choice of muscles impact the results of muscle synergy analyses , 2013, Front. Comput. Neurosci..
[5] W. Rymer,et al. Alterations in upper limb muscle synergy structure in chronic stroke survivors. , 2013, Journal of neurophysiology.
[6] Qian Wang,et al. Acceleration and electromyography (EMG) pattern analysis for children with cerebral palsy , 2012, 2012 IEEE 14th International Conference on e-Health Networking, Applications and Services (Healthcom).
[7] Stacie A. Chvatal,et al. Voluntary and Reactive Recruitment of Locomotor Muscle Synergies during Perturbed Walking , 2012, The Journal of Neuroscience.
[8] E. Bizzi,et al. Muscle synergy patterns as physiological markers of motor cortical damage , 2012, Proceedings of the National Academy of Sciences.
[9] Francesco Lacquaniti,et al. Patterned control of human locomotion , 2012, The Journal of physiology.
[10] K Desloovere,et al. To what extent is mean EMG frequency during gait a reflection of functional muscle strength in children with cerebral palsy? , 2012, Research in developmental disabilities.
[11] A. d’Avella,et al. Locomotor Primitives in Newborn Babies and Their Development , 2011, Science.
[12] Seyed A Safavynia,et al. Muscle Synergies: Implications for Clinical Evaluation and Rehabilitation of Movement. , 2011, Topics in spinal cord injury rehabilitation.
[13] D. Bojanic,et al. Quantification of dynamic EMG patterns during gait in children with cerebral palsy , 2011, Journal of Neuroscience Methods.
[14] François Hug,et al. Can muscle coordination be precisely studied by surface electromyography? , 2011, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[15] Richard R Neptune,et al. Merging of healthy motor modules predicts reduced locomotor performance and muscle coordination complexity post-stroke. , 2010, Journal of neurophysiology.
[16] Ping Wang,et al. Qualitative evaluations of gait rehabilitation via EMG muscle activation pattern: Repetition, symmetry, and smoothness , 2009, 2009 IEEE International Conference on Robotics and Biomimetics (ROBIO).
[17] M. Tresch,et al. The case for and against muscle synergies , 2009, Current Opinion in Neurobiology.
[18] Emanuel Todorov,et al. Structured variability of muscle activations supports the minimal intervention principle of motor control. , 2009, Journal of neurophysiology.
[19] Francesco Lacquaniti,et al. Modulation of phasic and tonic muscle synergies with reaching direction and speed. , 2008, Journal of neurophysiology.
[20] F. Lacquaniti,et al. Spatiotemporal organization of α‐motoneuron activity in the human spinal cord during different gaits and gait transitions , 2008, The European journal of neuroscience.
[21] J. Kalaska,et al. Muscle synergies during locomotion in the cat: a model for motor cortex control , 2008, The Journal of physiology.
[22] Lena H Ting,et al. Neuromechanics of muscle synergies for posture and movement , 2007, Current Opinion in Neurobiology.
[23] T. Sinkjaer,et al. Spastic movement disorder: impaired reflex function and altered muscle mechanics , 2007, The Lancet Neurology.
[24] S. Sasaki,et al. Direct and indirect cortico-motoneuronal pathways and control of hand/arm movements. , 2007, Physiology.
[25] B. Dan,et al. A report: the definition and classification of cerebral palsy April 2006 , 2007, Developmental medicine and child neurology. Supplement.
[26] Tatiana G Deliagina,et al. Neural bases of postural control. , 2006, Physiology.
[27] F. Lacquaniti,et al. Motor patterns in human walking and running. , 2006, Journal of neurophysiology.
[28] S. Scott. Optimal feedback control and the neural basis of volitional motor control , 2004, Nature Reviews Neuroscience.
[29] F. Lacquaniti,et al. Five basic muscle activation patterns account for muscle activity during human locomotion , 2004, The Journal of physiology.
[30] Emilio Bizzi,et al. Combinations of muscle synergies in the construction of a natural motor behavior , 2003, Nature Neuroscience.
[31] B. Freriks,et al. Development of recommendations for SEMG sensors and sensor placement procedures. , 2000, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[32] C. Assaiante,et al. Development of Postural Adjustment During Gait Initiation: Kinematic and EMG Analysis , 2000, Journal of motor behavior.
[33] E. Wood,et al. The Gross Motor Function Classification System for Cerebral Palsy: a study of reliability and stability over time , 2000, Developmental medicine and child neurology.
[34] H. Sebastian Seung,et al. Learning the parts of objects by non-negative matrix factorization , 1999, Nature.
[35] F. Zajac,et al. Locomotor strategy for pedaling: muscle groups and biomechanical functions. , 1999, Journal of neurophysiology.
[36] G. E. Loeb,et al. A hierarchical foundation for models of sensorimotor control , 1999, Experimental Brain Research.
[37] E. Bizzi,et al. The construction of movement by the spinal cord , 1999, Nature Neuroscience.
[38] S A Kautz,et al. Relationships between timing of muscle excitation and impaired motor performance during cyclical lower extremity movement in post-stroke hemiplegia. , 1998, Brain : a journal of neurology.
[39] R. Palisano,et al. Development and reliability of a system to classify gross motor function in children with cerebral palsy , 1997, Developmental medicine and child neurology.
[40] V. S. Gurfinkel,et al. Kinesthetic reference for human orthograde posture , 1995, Neuroscience.
[41] J. Hurov,et al. Rethinking primate locomotion: what can we learn from development? , 1991, Journal of motor behavior.
[42] D. Cadman,et al. THE GROSS MOTOR FUNCTION MEASURE: A MEANS TO EVALUATE THE EFFECTS OF PHYSICAL THERAPY , 1989, Developmental medicine and child neurology.
[43] D. Winter,et al. EMG profiles during normal human walking: stride-to-stride and inter-subject variability. , 1987, Electroencephalography and clinical neurophysiology.
[44] V. Dietz,et al. Interlimb coordination of posture in patients with spastic paresis. Impaired function of spinal reflexes. , 1984, Brain : a journal of neurology.
[45] R. Rose-Jacobs,et al. Development of gait at slow, free, and fast speeds in 3- and 5-year-old children. , 1983, Physical therapy.
[46] R. Olshen,et al. The development of mature gait. , 1980, The Journal of bone and joint surgery. American volume.
[47] J. Pons,et al. Modular Control of Crouch Gait in Spastic Cerebral Palsy , 2014 .
[48] S. Micera,et al. Upper and Lower Limb Muscle Synergies: Lessons Learnt and New Ideas for Neurorehabilitation , 2013 .
[49] Jaap Harlaar,et al. Synergy of EMG patterns in gait as an objective measure of muscle selectivity in children with spastic cerebral palsy. , 2012, Gait & posture.
[50] Nathan E. Bunderson,et al. Reduction of neuromuscular redundancy for postural force generation using an intrinsic stability criterion. , 2008, Journal of biomechanics.
[51] J. A. Pruszynski,et al. Primate upper limb muscles exhibit activity patterns that differ from their anatomical action during a postural task. , 2006, Journal of neurophysiology.
[52] Article history: , 2006 .
[53] Emanuel Todorov,et al. From task parameters to motor synergies: A hierarchical framework for approximately optimal control of redundant manipulators , 2005, J. Field Robotics.
[54] Lena H Ting,et al. A limited set of muscle synergies for force control during a postural task. , 2005, Journal of neurophysiology.
[55] J. Perry,et al. Gait Analysis , 2024 .
[56] Kathleen Kelly,et al. The Gross Motor Function Measure: A Means to Evaluate the Effects of Physical Therapy , 1992 .
[57] N. A. Bernshteĭn. The co-ordination and regulation of movements , 1967 .
[58] M. Tresch,et al. The case for and against muscle synergies , 2022 .