Annotation C – Kick start: using the mobile infant learning paradigm to promote early leg action
暂无分享,去创建一个
[1] S. Miller,et al. Evidence of activity-dependent withdrawal of corticospinal projections during human development , 2001, Neurology.
[2] Harlene Hayne,et al. Crawling is associated with more flexible memory retrieval by 9-month-old infants. , 2007, Developmental science.
[3] E. Saltzman,et al. Making the mobile move: Constraining task and environment , 2002 .
[4] R. Zernicke,et al. Mass, center of mass, and moment of inertia estimates for infant limb segments. , 1992, Journal of biomechanics.
[5] E. Gibson. Exploratory behavior in the development of perceiving, acting, and the acquiring of knowledge. , 1988 .
[6] B. Hopkins,et al. Development of spontaneous leg movements in infants with and without periventricular leukomalacia , 2000, Experimental Brain Research.
[7] Beatrix Vereijken,et al. What changes in infant walking and why. , 2003, Child development.
[8] L. Doyle,et al. Neonatal white matter abnormality predicts childhood motor impairment in very preterm children , 2011, Developmental medicine and child neurology.
[9] J. Piek. A quantitative analysis of spontaneous kicking in two-month-old infants , 1996 .
[10] Esther Thelen,et al. Grounded in the World: Developmental Origins of the Embodied Mind. , 2000, Infancy : the official journal of the International Society on Infant Studies.
[11] Jill C Heathcock,et al. Exploring Objects With Feet Advances Movement in Infants Born Preterm: A Randomized Controlled Trial , 2009, Physical Therapy.
[12] E. R. Siqueland,et al. Discrimination of color and pattern novelty in one-month human infants. , 1975, Journal of experimental child psychology.
[13] Esther Thelen,et al. Feet first: Object exploration in young infants. , 2004 .
[14] G. Clowry,et al. A Molecular Neuroanatomical Study of the Developing Human Neocortex from 8 to 17 Postconceptional Weeks Revealing the Early Differentiation of the Subplate and Subventricular Zone , 2007, Cerebral cortex.
[15] E. Fowler,et al. The effect of lower extremity selective voluntary motor control on interjoint coordination during gait in children with spastic diplegic cerebral palsy. , 2009, Gait & posture.
[16] E Thelen,et al. Shifting patterns of bilateral coordination and lateral dominance in the leg movements of young infants. , 1983, Developmental psychobiology.
[17] R. Angulo-Barroso,et al. Physical activity and walking onset in infants with Down syndrome. , 2010, Adapted physical activity quarterly : APAQ.
[18] L. Fetters. Perspective on Variability in the Development of Human Action , 2010, Physical Therapy.
[19] Masayoshi Kubo,et al. Spontaneous kicking in full-term and preterm infants with and without white matter disorder. , 2010, Developmental psychobiology.
[20] Johanna Jonsdottir,et al. Kicking coordination captures differences between full-term and premature infants with white matter disorder. , 2004, Human Movement Science.
[21] R. Angulo-kinzler. Exploration and Selection of Intralimb Coordination Patterns in 3-Month-Old Infants , 2001, Journal of motor behavior.
[22] E. R. Siqueland,et al. Visual Reinforcement of Nonnutritive Sucking in Human Infants , 1969, Science.
[23] S. Miller,et al. Functional corticospinal projections are established prenatally in the human foetus permitting involvement in the development of spinal motor centres. , 2000, Brain : a journal of neurology.
[24] Richard L Lieber,et al. Spasticity causes a fundamental rearrangement of muscle–joint interaction , 2002, Muscle & nerve.
[25] E. Thelen,et al. Three-month-old infants can select specific leg motor solutions. , 2002, Motor control.