Influence of different degrees of bilateral emulated contractures at the triceps surae on gait kinematics: The difference between gastrocnemius and soleus.
暂无分享,去创建一个
L Cheze | L. Chèze | S. Armand | M. Attias | A. Bonnefoy-Mazure | G. De Coulon | S Armand | M Attias | A Bonnefoy-Mazure | G De Coulon
[1] T. Wren,et al. Gastrocnemius and soleus lengths in cerebral palsy equinus gait--differences between children with and without static contracture and effects of gastrocnemius recession. , 2004, Journal of biomechanics.
[2] F. Miller,et al. Crouch gait changes after planovalgus foot deformity correction in ambulatory children with cerebral palsy. , 2014, Gait & posture.
[3] T. Bajd,et al. Biomechanical characterization and clinical implications of artificially induced toe-walking: differences between pure soleus, pure gastrocnemius and combination of soleus and gastrocnemius contractures. , 2006, Journal of biomechanics.
[4] T. Wren,et al. Prevalence of Specific Gait Abnormalities in Children With Cerebral Palsy: Influence of Cerebral Palsy Subtype, Age, and Previous Surgery , 2005, Journal of pediatric orthopedics.
[5] E. Berton,et al. One- and multi-segment foot models lead to opposite results on ankle joint kinematics during gait: Implications for clinical assessment. , 2015, Clinical biomechanics.
[6] J. Romkes,et al. An electromyographic analysis of obligatory (hemiplegic cerebral palsy) and voluntary (normal) unilateral toe-walking. , 2007, Gait & posture.
[7] Nicole J Chimera,et al. The effect of isolated gastrocnemius contracture and gastrocnemius recession on lower extremity kinematics and kinetics during stance. , 2012, Clinical biomechanics.
[8] M. Lemay,et al. Ankle range of motion is key to gait efficiency in adolescents with cerebral palsy. , 2010, Clinical biomechanics.
[9] R. Oostendorp,et al. Inter-rater reliability for measurement of passive physiological movements in lower extremity joints is generally low: a systematic review. , 2010, Journal of physiotherapy.
[10] S. Armand,et al. Are clinical parameters sufficient to model gait patterns in patients with cerebral palsy using a multilinear approach? , 2016, Computer methods in biomechanics and biomedical engineering.
[11] Mark L McMulkin,et al. Secondary gait compensations in individuals without neuromuscular involvement following a unilateral imposed equinus constraint. , 2004, Gait & posture.
[12] Eric Watelain,et al. Identification and classification of toe-walkers based on ankle kinematics, using a data-mining method. , 2006, Gait & posture.
[13] J. Hafer,et al. Simulated Ankle Equinus Affects Knee Kinematics During Gait , 2016, HSS Journal ®.
[14] V. Cimolin,et al. Gait analysis before and after gastrocnemius fascia lengthening in children with cerebral palsy. , 2005, Journal of applied biomaterials & biomechanics : JABB.
[15] Denis Gravel,et al. Evaluation of plantar flexion contracture contribution during the gait of children with Duchenne muscular dystrophy. , 2009, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[16] S. Armand,et al. Analyse quantifiée de la marche , 2016 .
[17] Morgan Sangeux,et al. Sagittal gait patterns in cerebral palsy: the plantarflexor-knee extension couple index. , 2015, Gait & posture.
[18] Alfred D. Grant. Gait Analysis: Normal and Pathological Function , 2010 .
[19] Jean-Michel Gracies,et al. Pathophysiology of spastic paresis. I: Paresis and soft tissue changes , 2005, Muscle & nerve.
[20] Eric Watelain,et al. A comparison of gait in spinal muscular atrophy, type II and Duchenne muscular dystrophy. , 2004, Gait & posture.
[21] L Cheze,et al. Feasibility and reliability of using an exoskeleton to emulate muscle contractures during walking. , 2016, Gait & posture.
[22] Simon C Gandevia,et al. Prevalence of joint contractures and muscle weakness in people with multiple sclerosis , 2014, Disability and rehabilitation.
[23] Arnaud Barré,et al. Biomechanical ToolKit: Open-source framework to visualize and process biomechanical data , 2014, Comput. Methods Programs Biomed..
[24] R. Young,et al. Pathophysiology of spastic paresis , 1990 .
[25] A. Moseley,et al. The impact of simulated ankle plantarflexion contracture on the knee joint during stance phase of gait: a within-subject study. , 2014, Clinical biomechanics.
[26] M. Orendurff,et al. Evaluation of rotational gait abnormality in the patients cerebral palsy. , 2000, Journal of pediatric orthopedics.
[27] M. Svehlik,et al. Genu recurvatum in cerebral palsy – part A: influence of dynamic and fixed equinus deformity on the timing of knee recurvatum in children with cerebral palsy , 2010, Journal of pediatric orthopedics. Part B.
[28] John H Hollman,et al. Measurement of ankle dorsiflexion: a comparison of active and passive techniques in multiple positions. , 2011, Journal of sport rehabilitation.
[29] J. Herzenberg,et al. Isolated Recession of the Gastrocnemius Muscle: The Baumann Procedure , 2007, Foot & ankle international.
[30] R. B. Davis,et al. A gait analysis data collection and reduction technique , 1991 .
[31] Bilan articulaire des membres inférieurs d'un enfant atteint d'une infirmité motrice cérébrale. , 2007 .
[32] A. Amendola,et al. Triceps Surae Contracture: Implications for Foot and Ankle Surgery , 2013, The Journal of the American Academy of Orthopaedic Surgeons.
[33] Adam Rozumalski,et al. The gait profile score and movement analysis profile. , 2009, Gait & posture.
[34] Sylvain Brochard,et al. Threshold of equinus which alters biomechanical gait parameters in children. , 2013, Gait & posture.
[35] Y Suzuki,et al. Acute influence of restricted ankle dorsiflexion angle on knee joint mechanics during gait. , 2014, The Knee.
[36] Michael J. Mueller,et al. Comparison of muscle activity during walking in subjects with and without diabetic neuropathy. , 2003, Gait & posture.
[37] E. Viehweger,et al. [Testing range of motion in cerebral palsy]. , 2007, Annales de readaptation et de medecine physique : revue scientifique de la Societe francaise de reeducation fonctionnelle de readaptation et de medecine physique.
[38] Zlatko Matjacic,et al. Muscle contracture emulating system for studying artificially induced pathological gait in intact individuals. , 2005, Journal of applied biomechanics.
[39] Katrin Schweizer,et al. Secondary gait deviations in patients with and without neurological involvement: a systematic review. , 2013, Gait & posture.
[40] S. Armand,et al. Faisabilité et reproductibilité d’un exosquelette capable de répliquer des rétractions musculaires à la marche : application sur les gastrocnémiens et soléaires , 2016 .
[41] Kaat Desloovere,et al. Do dynamic and static clinical measurements correlate with gait analysis parameters in children with cerebral palsy? , 2006, Gait & posture.
[42] L. Chèze,et al. Effects of contracture on gait kinematics: A systematic review. , 2016, Clinical biomechanics.
[43] P. Huijing,et al. Decrease in ankle-foot dorsiflexion range of motion is related to increased knee flexion during gait in children with spastic cerebral palsy. , 2015, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[44] S. Brochard,et al. Simulation of unilateral equinus using an adjustable orthosis in children: design, feasibility and biomechanical effects , 2012, Prosthetics and orthotics international.
[45] Jessica C. Selinger,et al. Humans Can Continuously Optimize Energetic Cost during Walking , 2015, Current Biology.
[46] C. Tylkowski,et al. Outcomes of Gastrocnemius-soleus Complex Lengthening for Isolated Equinus Contracture in Children With Cerebral Palsy , 2009, Journal of pediatric orthopedics.
[47] B. Hutton,et al. The Epidemiology of Major Joint Contractures: A Systematic Review of the Literature , 2007, Clinical orthopaedics and related research.