يعرض 1 - 20 نتائج من 142 نتيجة بحث عن '"Destreza manual"', وقت الاستعلام: 0.73s تنقيح النتائج
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    Academic Journal

    المؤلفون: Gómez Ramírez, Sandra Milena

    المساهمون: Zuluaga Gómez, Jairo Alberto, Charpak Hernández, Nathalie, Grupo investigación Fundación Canguro

    وصف الملف: application/pdf

    Relation: World Health Organization. Guidelines on optimal feeding of low birth-weight infants in low-and middle-income countries. Geneva WHO [Internet]. 2011;16–45. Available from: http://scholar.google.com/scholar?hl=en&btnG=Search&q=intitle:Guidelines+on+Optimal+feeding+of+low+birth-+weight+infants+in+low-and+middle-income+countries#0; Sistema Integral de Infomación de la Protección Social (SISPRO) [Internet]. Colombia, Ministerio de Salud y Protección Social. 2019. Available from: http://www.sispro.gov.co/; UNICEF, WHO, The World Bank, Division UP. UNICEF: Levels & trends in child mortality: report 2014. Estimates developed by the UN Inter-agency Group for Child Mortality Estimation. United Nations Child Fund 2014. 2014;16–9.; WHO. Preterm birth [Internet]. Fact sheet No. 363. 2015. p. 4. Available from: http://www.who.int/mediacentre/factsheets/fs363/en/; Conde-Agudelo A, Díaz-Rossello JL. Kangaroo mother care to reduce morbidity and mortality in low birthweight infants. Cochrane Database Syst Rev. 2016;2016(8):1–148.; Boundy EO, Dastjerdi R, Spiegelman D, Wafaie W. Kangaroo Mother Care and Neonatal Outcomes : A Meta-analysis. Pediatrics. 2016;137(1):1–16.; Huether S, McCance K. Pathophysiology, The biologic basis for disease in adult and children 7e. Elsevier. 2014.; Mooney-Leber SM, Brummelte S. Neonatal pain and reduced maternal care: Early-life stressors interacting to impact brain and behavioral development. Neuroscience. 2017;342:21–36.; Vittner D, Casavant S, McGrath JM. A meta-ethnography: Skin-to-skin holding from the Caregiver’s perspective. Adv Neonatal Care. 2015;15(3):191–200.; Weber A, Harrison TM, Sinnott L, Shoben A, Steward D. Associations between Nurse-Guided Variables and Plasma Oxytocin Trajectories in Premature Infants during Initial Hospitalization. Adv Neonatal Care. 2018;18(1):E12–23.; Fietzek UM, Heinen F, Berweck S, Maute S, Hufschmidt A, Schulte-Mönting J, et al. Development of the corticospinal system and hand motor function: Central conduction times and motor performance tests. Dev Med Child Neurol. 2000;42(4):220–7.; Back SA. Brain injury in the preterm infant: New horizons for pathogenesis and prevention. Pediatr Neurol. 2015;53(3):185–92.; Bracewell M, Marlow N. Patterns of motor disability in very preterm children. Ment Retard Dev Disabil Res Rev. 2002;8(4):241–8.; Anderson NG, Laurent I, Woodward LJ, Inder TE. Detection of impaired growth of the corpus callosum in premature infants. Pediatrics. 2006;118(3):951–60.; Ment LR, Kesler S, Vohr B, Katz KH, Baumgartner H, Schneider KC, et al. Longitudinal brain volume changes in preterm and term control subjects during late childhood and adolescence. Pediatrics. 2009;123(2):503–11.; Flamand VH, Nadeau L, Schneider C. Brain motor excitability and visuomotor coordination in 8-year-old children born very preterm. Clin Neurophysiol. 2012;123(6):1191–9.; Malinger G, Zakut H. The corpus callosum: Normal fetal development as shown by transvaginal sonography. Am J Roentgenol. 1993;161(5):1041–3.; Wiesendanger M, Serrien DJ. The quest to understand bimanual coordination. Prog Brain Res. 2004;143:491–505.; Lemon RN. Descending Pathways in Motor Control. Annu Rev Neurosci [Internet]. 2008;31(1):195–218. Available from: http://www.ncbi.nlm.nih.gov/pubmed/18558853; Tessier R, Nadeau L, Boivin M, Tremblay RE. The Social Behaviour of 11- to 12-year-old Children Born as Low Birthweight and/or Premature Infants. Int J Behav Dev [Internet]. 1997;21(4):795–811. Available from: http://ovidsp.ovid.com/ovidweb.cgi?T=JS&PAGE=reference&D=psyc3&NEWS=N&AN=1997-38912-009; Husby IM, Skranes J, Olsen A, Brubakk A-M, Evensen KAI. Motor skills at 23 years of age in young adults born preterm with very low birth weight. Early Hum Dev [Internet]. 2013;89(9):747–54. Available from: http://www.ncbi.nlm.nih.gov/pubmed/23810435; Prieto J, Garcia A, Pérez C. Valoración de los fenómenos de facilitación e inhibición cortical en humanos mediante estimulación magnética transcraneal. Universidad Complutense de Madrid; 2015.; Schneider C, Charpak N, Ruiz-Peláez JG, Tessier R. Cerebral motor function in very premature-at-birth adolescents: A brain stimulation exploration of kangaroo mother care effects. Acta Paediatr Int J Paediatr. 2012;101(10):1045–53.; Pitcher JB, Schneider LA, Drysdale JL, Ridding MC, Owens JA. Motor System Development of the Preterm and Low Birthweight Infant. Clin Perinatol. 2011;38(4):605–25.; Zuluaga J. Fundamentos genéticos del desarrollo. In: Neurodesarrollo y Estimulación. Bogotá, Colombia: Editorial Médica Panamericana; 2001. p. 33–41.; Purves D. Principles of cognitive neuroscience. Third Edit. Sunderland. Massachusetts, U.S.A; 2004.; Zuluaga J. Embriología funcional del sistema nervioso. In: Neurodesarrollo y Estimulación. Bogotá, Colombia: Editorial Médica Panamericana; 2001. p. 42–60.; Lawn JE, Blencowe H, Oza S, You D, Lee ACC, Waiswa P, et al. Every newborn: Progress, priorities, and potential beyond survival. Lancet. 2014;384(9938):189–205.; Ministerio de Salud – Dirección General de Promoción y Prevención. Guía de atención del bajo peso al nacer.; Gold PW. The organization of the stress system and its dysregulation in depressive illness. Mol Psychiatry. 2015;20(1):32–47.; Gimpl G, Fahrenholz F. The oxytocin receptor system: Structure, function, and regulation. Physiol Rev. 2001;81(2):629–83.; Placencia FX, McCullough LB. Biopsychosocial risks of parental care for high-risk neonates: Implications for evidence-based parental counseling. J Perinatol. 2012;32(5):381–6.; Bhutta AT, Cleves M a, Casey PH, Cradock MM, Anand KJS. Cognitive and behavioral outcomes of school-aged children who were born preterm: a meta-analysis. JAMA. 2002;288(October 2015):728–37.; Losch H, Dammann O. Impact of Motor Skills on Cognitive Test Results in Very-Low-Birthweight Children. J Child Neurol [Internet]. 2004;19(5):318–22. Available from: http://ovidsp.ovid.com/ovidweb.cgi?T=JS&PAGE=reference&D=psyc4&NEWS=N&AN=2004-15374-002; de Kieviet JF, Piek JP, Aarnoudse-Moens CS, Oosterlaan J. Motor development in very preterm and very low-birth-weight children from birth to adolescence: a meta-analysis. JAMA [Internet]. 2009;302(20):2235–42. Available from: http://jama.jamanetwork.com/article.aspx?articleid=184952; Cerisola A, Baltar F, Ferrán C, Turcatti E. Mecanismos de lesión cerebral en niños prematuros. Medicina (B Aires). 2019;79(III):10–4.; Volpe JJ. Brain injury in premature infants: a complex amalgam of destructive and developmental disturbances. Vol. 8, The Lancet Neurology. 2009. p. 110–24.; Volpe JJ, Kinney HC, Jensen FE, Rosenberg PA. Reprint of “The developing oligodendrocyte: Key cellular target in brain injury in the premature infant.” Vol. 29, International Journal of Developmental Neuroscience. 2011. p. 565–82.; Eikenes L, Lohaugen GC, Brubakk AM, Skranes J, Haberg AK. Young adults born preterm with very low birth weight demonstrate widespread white matter alterations on brain DTI. Neuroimage. 2011;54(3):1774–85.; van der Knaap LJ. The Corpus Callosum and Brain Hemisphere Communication How does the corpus callosum mediate interhemispheric transfer? [Internet]. Utrecht University; 2010. Available from: https://dspace.library.uu.nl/bitstream/handle/1874/188850/Master_Thesis_Final_LJvanderKnaap.pdf?sequence=1&isAllowed=y; Witelson SF. Hand and sex differences in the isthmus and genu of the human corpus callosum: A postmortem morphological study. Brain. 1989;112(3):799–835.; Keshavan MS, Diwadkar VA, DeBellis M, Dick E, Kotwal R, Rosenberg DR, et al. Development of the corpus callosum in childhood, adolescence and early adulthood. Life Sci. 2002;70(16):1909–22.; Richards LJ, Plachez C, Ren T. Mechanisms regulating the development of the corpus callosum and its agenesis in mouse and human. Clin Genet. 2004;66(4):276–89.; van der Knaap MS, Valk J. Magnetic resonance of myelination and myelin disorders. J Neuroradiol. 2006;33(2):132.; Hüppi PS, Maier SE, Peled S, Zientara GP, Barnes PD, Jolesz FA, et al. Microstructural development of human newborn cerebral white matter assessed in vivo by diffusion tensor magnetic resonance imaging. Pediatr Res. 1998;44(4):584–90.; Thompson DK, Inder TE, Faggian N, Johnston L, Warfield SK, Anderson PJ, et al. Characterization of the corpus callosum in very preterm and full-term infants utilizing MRI. Neuroimage. 2011;55(2):479–90.; Cancelliere A, Mangano FT, Air EL, Jones B V., Altaye M, Rajagopal A, et al. DTI values in key white matter tracts from infancy through adolescence. Am J Neuroradiol. 2013;34(7):1443–9.; Bloom JS, Hynd GW. The role of the corpus callosum in interhemispheric transfer of information: Excitation or inhibition? Neuropsychol Rev. 2005;15(2):59–71.; Xydis V, Astrakas L, Drougia A, Gassias D, Andronikou S, Argyropoulou M. Myelination process in preterm subjects with periventricular leucomalacia assessed by magnetization transfer ratio. Pediatr Radiol. 2006;36(9):934–9.; Paul LK. Developmental malformation of the corpus callosum: A review of typical callosal development and examples of developmental disorders with callosal involvement. J Neurodev Disord. 2011;3(1):3–27.; Rademaker KJ, Lam JNGP, Van Haastert IC, Uiterwaal CSPM, Lieftink AF, Groenendaal F, et al. Larger corpus callosum size with better motor performance in prematurely born children. In: Seminars in Perinatology. 2004. p. 279–87.; Kumar A, Juhasz C, Asano E. Diffusion tensor imaging study of the cortical origin and course of the corticospinal tract in healthy children. Am J Neuroradiol. 2009;30(10):1963–70.; Quiénes somos : Fundación Canguro [Internet]. [cited 2019 Oct 21]. Available from: http://fundacioncanguro.co/quienes-somos/; Rey E, Martínez H. Manejo racional del niño prematuro. In: Universidad Nacional de Colombia, editor. Curso de Medicina Fetal. Bogotá; 1983.; World Health Organization. Kangaroo mother care: A practical guide. [Internet]. Vol. 73, WHO Reproductive Health and Research. 2003. Available from: http://www.ncbi.nlm.nih.gov/pubmed/22585327; Engmann C, Darmstadt G, Valsangkar B, Claeson M, participants of the Istanbul KMC Acceleration Meetin. Consensus on kangaroo mother care acceleration. Lancet. 2013;382(9907):e26–e27.; Charpak N, Ruiz-Pelaez JG, Figueroa de Calume Z. Current knowledge of Kangaroo Mother Intervention. Curr Opin Pediatr. 1996;8(2):108–12.; Lawn JE M-KJ, Horta BL, Barros FC CS. Kangaroo mother care to prevent neonatal deaths due to preterm birth complication. Int J Epidemiol. 2010;39:i144–i1.; Reynolds LC, Duncan MM, Smith GC, Mathur A, Neil J, Inder T, et al. Parental presence and holding in the neonatal intensive care unit and associations with early neurobehavior. J Perinatol. 2013;33(8):636–41.; Bera A, Ghosh J, Singh AK, Hazra A, Mukherjee S, Mukherjee R. Effect of kangaroo mother care on growth and development of low birthweight babies up to 12 months of age: A controlled clinical trial. Acta Paediatr Int J Paediatr. 2014;103(6):643–50.; Merton PA, Morton HB. Stimulation of the cerebral cortex in the intact human subject. Nature. 1980;285(5762):227.; Barker AT, Jalinous R, Freeston IL. Non-Invasive Magnetic Stimulation of Human Motor Cortex. Lancet [Internet]. 1985;325(8437):1106–7. Available from: http://linkinghub.elsevier.com/retrieve/pii/S0140673685924134; Pascual-Leone A, Davey N, Wassermann E, Rothwell J, Puri B. Handbook of transcranial magnetic stimulation. London: Arnold Press; 2001.; Pascual-Leone A, Tormos-Muñoz JM. [Transcranial magnetic stimulation: the foundation and potential of modulating specific neuronal networks]. In: Revista de neurologia [Internet]. 2008. p. S3-10. Available from: http://www.ncbi.nlm.nih.gov/pubmed/18302119; Kobayashi M, Pascual-Leone A. Transcranial magnetic stimulation in neurology. Lancet Neurol [Internet]. 2003;2(3):145–56. Available from: http://www.sciencedirect.com/science/article/pii/S1474442203003211; Bartrés-Faz D, Junqué C, Tormos-Muñoz JM, Pascual-Leone Á. Aplicación de la estimulación magnética transcraneal a la investigación neuropsicológica. Rev Neurol. 2000;30(12):1169–74.; ossini PM, Barker AT, Berardelli A, Caramia MD, Caruso G, Cracco RQ, et al. Non-invasive electrical and magnetic stimulation of the brain, spinal cord and roots: basic principles and procedures for routine clinical application. Report of an IFCN committee. Electroencephalogr Clin Neurophysiol. 1994;91(2):79–92.; Ziemann U, Rothwell JC, Ridding MC. Interaction between intracortical inhibition and facilitation in human motor cortex. J Physiol [Internet]. 1996;496(3):873–81. Available from: http://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=1160871&tool=pmcentrez&rendertype=abstract; Di Lazzaro V, Oliviero A, Meglio M, Cioni B, Tamburrini G, Tonali P, et al. Direct demonstration of the effect of lorazepam on the excitability of the human motor cortex. Clin Neurophysiol. 2000;111(5):794–9.; Hallett M. Transcranial Magnetic Stimulation: A Primer. Neuron. 2007;55(2):187–99.; Meyer BU, Röricht S, Woiciechowsky C. Topography of fibers in the human corpus callosum mediating interhemispheric inhibition between the motor cortices. Ann Neurol. 1998;43(3):360–9.; Reis J, Swayne OB, Vandermeeren Y, Camus M, Dimyan MA, Harris-Love M, et al. Contribution of transcranial magnetic stimulation to the understanding of cortical mechanisms involved in motor control. Vol. 586, Journal of Physiology. 2008. p. 325–51.; Davidson T, Tremblay F. Age and hemispheric differences in transcallosal inhibition between motor cortices: An ispsilateral silent period study. BMC Neurosci [Internet]. 2013 [cited 2019 Nov 21];14. Available from: http://www.biomedcentral.com/1471-2202/14/62; Chen R, Lozano AM, Ashby P. Mechanism of the silent period following transcranial magnetic stimulation. Evidence from epidural recordings. Exp Brain Res. 1999;128(4):539–42.; Ferbert A, Priori A, Rothwell JC, Day BL, Colebatch JG, Marsden CD. Interhemispheric inhibition of the human motor cortex. J Physiol. 1992;453(1):525–46.; Schneider C, Devanne H, Lavoie BA, Capaday C. Neural mechanisms involved in the functional linking of motor cortical points. Exp Brain Res. 2002;146(1):86–94.; Beaulé V, Tremblay S, Théoret H. Interhemispheric control of unilateral movement. Neural Plast. 2012;2012.; Cox BC, Cincotta M, Espay AJ. Mirror movements in movement disorders: a review. Tremor Other Hyperkinet Mov (N Y) [Internet]. 2012;2:2–4. Available from: http://www.ncbi.nlm.nih.gov/pubmed/23440079%0Ahttp://www.pubmedcentral.nih.gov/articlerender.fcgi?artid=PMC3569961; Ciechanski P, Zewdie E, Kirton A. Developmental profile of motor cortex transcallosal inhibition in children and adolescents. J Neurophysiol. 2017;118(1):140–8.; Garvey MA, Ziemann U, Bartko JJ, Denckla MB, Barker CA, Wassermann EM. Cortical correlates of neuromotor development in healthy children. Clin Neurophysiol. 2003;114(9):1662–70.; Wasserman E. Risk and safety of repetitive transcranial magnetic stimulation: report and suggested guidelines from the International Workshop on the Safety of Repetitive Transcranial Magnetic Stimulation. Electroencaphalogr Clin Neurophysiol. 1998;108(1):1–16.; Chan T. An investigation of finger and manual dexterity. Percept Mot Skills. 2000;90(2):537–42.; Backman C, Gibson SCD, Parsons J. Assessment of Hand Function: The Relationship between Pegboard Dexterity and Applied Dexterity. Can J Occup Ther [Internet]. 1992;59(4):208–13. Available from: http://cjo.sagepub.com/content/59/4/208.abstract; Exner C. In-hand manipulation skills in normal young children: A pilot study. OT Pract. 1999;1:63–72.; Poole JL, Burtner PA, Torres TA, McMullen CK, Markham A, Marcum ML, et al. Measuring dexterity in children using the Nine-hole Peg Test. J Hand Ther. 2005;18(3):348–51.; de Vries L, van Hartingsveldt MJ, Cup EHC, Nijhuis-van der Sanden MWG, de Groot IJM. Evaluating fine motor coordination in children who are not ready for handwriting: Which test should we take? Occup Ther Int. 2015;22(2):61–70.; Kellor M, Frost J, Silberberg N, Iversen I, Cummings R. Hand strength and dexterity. Am J Occup Ther Off Publ Am Occup Ther Assoc. 1971;25(2):77–83.; Grice KO, Vogel KA, Le V, Mitchell A, Muniz S, Vollmer MA. Adult norms for a commercially available nine hole peg test for finger dexterity. Am J Occup Ther. 2003;57(5):570–3.; Pitcher JB, Schneider LA, Burns NR, Drysdale JL, Higgins RD, Ridding MC, et al. Reduced corticomotor excitability and motor skills development in children born preterm. J Physiol. 2012;590(22):5827–44.; Kurth F, Mayer EA, Toga AW, Thompson PM, Luders E. The right inhibition? Callosal correlates of hand performance in healthy children and adolescents callosal correlates of hand performance. Hum Brain Mapp. 2013;34(9):2259–65.; Charpak N, Ruiz-Peláez JG, Figueroa de C Z, Charpak Y. Kangaroo mother versus traditional care for newborn infants; Charpak N, Tessier R, Ruiz JG, Hernandez JT, Uriza F, Villegas J, et al. Twenty-year follow-up of kangaroo mother care versus traditional care. Pediatrics. 2017;139(1).; Säisänen L, Julkunen P, Lakka T, Lindi V, Könönen M, Määttä S. Development of corticospinal motor excitability and cortical silent period from mid-childhood to adulthood – a navigated TMS study. Neurophysiol Clin. 2018;48(2):65–75.; Carson RG. Neural pathways mediating bilateral interactions between the upper limbs. Brain Res Rev. 2005;49(3):641–62.; Fling BW, Seidler RD. Task-dependent effects of interhemispheric inhibition on motor control. Behav Brain Res. 2012;226(1):211–7.; Davidson T, Tremblay F. Hemispheric Differences in Corticospinal Excitability and in Transcallosal Inhibition in Relation to Degree of Handedness. PLoS One. 2013;8(7).; Hadders-Algra M, Touwen BCL. Body measurements, neurological and behavioural development in six-year-old children born preterm and/or small-for-gestational-age. Early Hum Dev. 1990;22(1):1–13.; Tuvemo T, Lundgren EM. Neurological and intellectual consequences of being born small for gestational age. Pediatr Adolesc Med. 2009;13:134–47.; Lundgren EM, Tuvemo T. Effects of being born small for gestational age on long-term intellectual performance. Best Pract Res Clin Endocrinol Metab. 2008;22(3):477–88.; Flamand VH, Denis A, Allen-Demers F, Lavoie M, Tessier R, Schneider C. Altered transcallosal inhibition evidenced by transcranial magnetic stimulation highlights neurophysiological consequences of premature birth in early adulthood. J Neurol Sci. 2018;393:18–23.; Szymanska M, Schneider M, Chateau-Smith C, Nezelof S, Vulliez-Coady L. Psychophysiological effects of oxytocin on parent–child interactions: A literature review on oxytocin and parent–child interactions. Psychiatry Clin Neurosci. 2017;71(10):690–705.; Hake-Brooks SJ, Anderson GC. Kangaroo care and breastfeeding of mother-preterm infant dyads 0-18 months: a randomized, controlled trial. Neonatal Netw. 2008;27(3):151–9.; Suman Rao PN, Udani R, Nanavati R. Kangaroo mother care for low birth weight infants: A randomized controlled trial. Indian Pediatr. 2008;45(1):17–23.; Sharma D, Shastri S, Sharma P. Intrauterine Growth Restriction: Antenatal and Postnatal Aspects. Clin Med Insights Pediatr. 2016; Hutton JL, Pharoah POD, Cooke RWI, Stevenson RC. Differential effects of preterm birth and small gestational age on cognitive and motor development. Arch Dis Child Fetal Neonatal Ed. 1997;76(2).; Netz J, Ziemann U, Hömberg V. Hemispheric asymmetry of transcallosalinhibition in man. Exp Brain Res. 1995;104(3):527–33.; Beauchamp MS, Beurlot MR, Fava E, Nath AR, Parikh NA, Saad ZS, et al. The developmental trajectory of brain-scalp distance from birth through childhood: Implications for functional neuroimaging. PLoS One. 2011;6(9).; Gómez-Ramírez S. Desenlaces motores del bajo peso al nacer y el nacimiento pretérmino en adultos jóvenes: efectos del método madre canguro. Universidad Nacional de Colombia – Sede Bogotá; 2020; Gómez-Ramírez, S. (2020). Desenlaces motores del bajo peso al nacer y el nacimiento pretérmino en adultos jóvenes: efectos del método madre canguro. Tesis de maestría. Universidad Nacional de Colombia, Bogotá; https://repositorio.unal.edu.co/handle/unal/77766

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    Conference

    المساهمون: Universidad Carlos III de Madrid

    وصف الملف: 8 p.; application/pdf

    Relation: Actas de las XXXIX Jornadas de Automática, Badajoz, 5-7 de Septiembre de 2018; http://hdl.handle.net/10662/8232; Pozo, V., Oña, E.D., Jardón, A. y Balaguer, C. 2018. Conteo automático de cubos en evaluación de destreza manual usando sensores de proximidad. En: I. Tejado Balsera, E. Pérez Hernández, A.J. Calderón Godoy, I. González Pérez, P. Merchán García, J. Lozano Rogado, S. Salamanca Miño y B.M. Vinagre Jara (eds.) Actas de las XXXIX Jornadas de Automática, Badajoz, 5-7 de Septiembre de 2018. Badajoz: Universidad de Extremadura, pp. 210-217. ISBN 978-84-09-044460-3

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    Academic Journal
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    المساهمون: Ortiz Corredor, Fernando, Cifel Centro de Investigación en Fisiatría y Electrodiagnóstico, Mendoza Pulido, juan Camilo, Gómez Gil, Jully Carolina [0000-0001-8742-2502], Gómez Gil, Jully Carolina [0001781420]

    المصدر: Repositorio UN
    Universidad Nacional de Colombia
    instacron:Universidad Nacional de Colombia

    وصف الملف: 87 páginas; application/pdf

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    المساهمون: Martins, Rui Fernando Roque, Repositório da Universidade de Lisboa

    وصف الملف: application/pdf

    Relation: Leitão, Alexandre Cardoso (2012). Desenvolvimento motor e competências grafomotoras na escrita. Estudo da relação entre os factores da motricidade global [destreza manual, coordenação motora e equilíbrio] e a integração visuomotora e a qualidade e velocidade da escrita. Dissertação de Mestrado. Universidade Técnica de Lisboa. Faculdade de Motricidade Humana.

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    المؤلفون: Freire, João Carlos da Silva

    المساهمون: Magalhães, Maria Cristina Afonso, Biblioteca Digital do IPB

    وصف الملف: application/pdf

    Relation: Freire, João Carlos da Silva (2012). Prática de ensino supervisionada de educação visual e tecnológica no ensino básico. Bragança: Escola Superior de Educação. Dissertação de Mestrado em Ensino da Educação Visual e Tecnológica no Ensino Básico

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    Dissertation/ Thesis
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    Dissertation/ Thesis

    المساهمون: Vidal Duarte, Elizabeth Enriqueta

    المصدر: Universidad Nacional de San Agustín de Arequipa ; Repositorio Institucional - UNSA

    وصف الملف: application/pdf