يعرض 1 - 20 نتائج من 42 نتيجة بحث عن '"Variabilidad cardíaca"', وقت الاستعلام: 0.48s تنقيح النتائج
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    Dissertation/ Thesis

    المؤلفون: Guixeres Provinciale, Jaime

    المساهمون: University/Department: Universitat Politècnica de València. Departamento de Ingeniería Electrónica - Departament d'Enginyeria Electrònica

    Thesis Advisors: Alcañiz Raya, Mariano Luis, Lurbe Ferrer, Empar, Saiz Rodríguez, Francisco Javier

    المصدر: Riunet

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    Dissertation/ Thesis

    المساهمون: University/Department: Universitat Politècnica de València. Departamento de Ingeniería Electrónica - Departament d'Enginyeria Electrònica

    Thesis Advisors: Alcañiz Raya, Mariano Luis, Lurbe Ferrer, Empar, Saiz Rodríguez, Francisco Javier

    المصدر: Riunet

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    Academic Journal
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    Academic Journal
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    Dissertation/ Thesis
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    Dissertation/ Thesis

    المساهمون: Gantiva Díaz, Carlos Andrés, Báez Buitrago, Sandra Jimena

    وصف الملف: 18 páginas; application/pdf

    Relation: Barr, E.L., Zakhari, S., & Razzoli, M. (2018). Chocolate and obesity: critical reviews in food science and nutrition. Critical Reviews in Food Science and Nutrition, 58(17), 2907-2916. doi:10.1080/10408398.2017.1392282; Bradley, M., Codispoti, M., Cuthbert, B., Lang, P. (2001). Emotion and Motivation I: Defensive and Appetitive Reactions in Picture Processing. American Psychological Association, Inc., 1 (3), 276-298. DOI:10.1037//1528-3542.1.3.276.; Bruinsma, K., & Taren, D. L. (1999). Chocolate: Food or Drug?. Journal of the American Dietetic Association, 99(10), 1249–1256. doi:10.1016/s0002-8223(99)00307-7; Chang, J., Huang, W., Liu, C., Tseng, M., Yang, C., Kuo, T. (2021). Heart Rate Variability Reactivity to Food Image Stimuli is Associated with Body Mass Index. Applied Psychophysiology and Biofeedback, 46: 271–277.; Fernández, G. (2014). Un innovador sistema capaz de medir las señales eléctricas humanas. Revista Digital de la Universidad Autónoma de Ciudad Juárez. Recuperado de https://comparte.uacj.mx/handle/123456789/69?show=full; Gantiva, C., Guerra, P., & Vila, J. (2015). Modulación del reflejo de sobresalto en población colombiana: evidencia de la interacción entre emoción y motivación. Universitas Psychologica, 14(1), 157-164. http://dx.doi.org/10.11144/Javeriana.upsy14-1.mrsp; Gordon, E., Ariel-Donges, A., Bauman, V., & Merlo, L. (2018). What Is the Evidence for “Food Addiction?” A Systematic Review. Nutrients, 10(4), 477. Retrieved from http://dx.doi.org/10.3390/nu10040477; Hetherington, M., Macdiarmid, J. (1993). "Chocolate Addiction": a Preliminary Study of its Description and its Relationship to Problem Eating. Appetite, 21 (3), 233-246 https://doi.org/10.1006/appe.1993.1042.; Jansen, A. (1998). A learning model of binge eating: cue reactivity and cue exposure. Behaviour Research and Therapy, 36(3), 257-272. doi:10.1016/s0005-7967(97)00099-6; Muñoz-Ruiz, M., González-Zapata. L., Cediel G. (2022). Policy action initiatives against obesity in Colombia: a literature review using the NOURISHING framework methodology. Rev. Fac. Med, 70(2). Doi: https://doi.org/10.15446/revfacmed.v70n2.90282.; Rodríguez, S., Fernández, M. L., Cepeda-Benito, A., & Vila, J. (2005). Subjective and physiological reactivity to chocolate images in high and low chocolate cravers. Biological Psychology, 70(1), 9–18. https://doi.org/10.1016/j.biopsycho.2004.10.001.; Rodríguez-Ruiz, S., Ruiz-Padial, E., Vera, N., Fernández, C. D., Anllo-Vento, L., & Vila, J. (2009). Effect of Heart Rate Variability on Defensive Reaction and Eating Disorder Symptomatology in Chocolate Cravers. Journal of Psychophysiology, 23(3), 95–103. https://doi.org/10.1027/0269-8803.23.3.95; https://hdl.handle.net/1992/73679; instname:Universidad de los Andes; reponame:Repositorio Institucional Séneca; repourl:https://repositorio.uniandes.edu.co/

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    Dissertation/ Thesis

    المساهمون: Gantiva Díaz, Carlos Andrés, Báez Buitrago, Sandra Jimena, Facultad de Ciencias Sociales::Cognición, Prácticas y Aprendizaje

    وصف الملف: 22 páginas; application/pdf

    Relation: American Cancer Society. (2022). ¿Qué sabemos acerca de los cigarrillos electrónicos? Recuperado de https://www.cancer.org/es/saludable/mantengase-alejado-del- tabaco/vapeo-y-cigarrillos-electronicos/que-sabemos-acerca-de-los-cigarrillos- electronicos.html#:~:text=El%20aerosol%20del%20cigarrillo%20electr%C3%B3nico,l os%20cigarrillos%20electr%C3%B3nicos%20contienen%20nicotina; Centro para el control y la Prevención de Enfermedades. (2022). Smoking and Tabacco Use. Acerca de los cigarrillos electrónicos. Recuperado de https://www.cdc.gov/tobacco/basic_information/e-cigarettes/spanish/acerca-de-loscigarrillos-electronicos.html; Cleveland Clinic. (2021). Heart Rate Variability (HRV). Recuperado de https://my.clevelandclinic.org/health/symptoms/21773-heart-rate-variability-hrv; DANE. (2020). Comunicado de Prensa. Encuesta Nacional de Consumo de Sustancias Psicoactivas. Recuperado de https://www.dane.gov.co/files/investigaciones/boletines/encspa/comunicado-encspa-2019.pdf; Díaz R, Sánchez N, Hernández C, Quevedo Y. (2023). SciElo. La variabilidad del Ritmo Cardiaco en reposo como sustrato fisiológico para comprender la regulación emocional en adultos sanos. Recuperado de https://www.scielo.cl/scielo.php?pid=S0718- 22282023000100112&script=sci_arttext&tlng=en; González A, Moreno J, Pacheco M, Carrero A, Villamizar D. (S.F). Instituto de Bienestar Familiar. Ficha técnica-Regulación emocional. Recuperado de https://www.icbf.gov.co/system/files/procesos/pu5.g1.mo18.pp_ficha_tecnica_- _regulacion_emocional_v1.pdf; Mather, M., & Thayer, J. F. (2018). How heart rate variability affects emotion regulation brain networks. Current Opinion in Behavioral Sciences, 19, 98–104. https://doi.org/10.1016/j.cobeha.2017.12.017; MedLinePlus. (2022). Cigarrillo electrónico. Recuperado de https://medlineplus.gov/spanish/ecigarettes.html; MedLine Plus. (2023). Fatiga. Recuperado de https://medlineplus.gov/spanish/ency/article/003088.htm; National Institute of drug abuse. (2022). ¿Qué son los cigarrillo electrónicos? Reporte de investigación. Recuperado de https://nida.nih.gov/es/publicaciones/serie-de-reportes/adiccion-al-tabaco/que-son- los-cigarrillos-electronicos#:~:text=Los%20cigarrillos%20electr%C3%B3nicos%20(sistemas%20elect r%C3%B3nicos,su%20popularidad%20ha%20crecido%20r%C3%A1pidamente.; National Institute of Health. (2018). NIH. ¿Qué son los cigarrillos electrónicos? Recuperado de https://salud.nih.gov/recursos-de-salud/nih-noticias-de-salud/que-son-los-cigarrillos- electronicos; Peréz E, Rangel L, Hernández N, Caudillo J, Aguilera M, Rodriguéz R. (2023) Consumo del cigarrillo electrónico en adolescentes y sus consecuencias. Recuperado de https://www.jovenesenlaciencia.ugto.mx/index.php/jovenesenlaciencia/article/view/3935; Rodas G, Carballido C, Ramos J, Capdevilla L. (2008). Revisión: Archivos de medicina del deporte. Variabilidad de la frecuencia cardiaca: concepto, medidas y relación con aspectos clínicos. VOLUMEN XXV - N. o 123 - 2008; Tehrani H, Rajabi A, Ghojogh M, Nejatian M, Jafari A. (2022). BMC: Archives of public health. The prevalence of electronic cigarette vaping globally: a systematic review and meta-analysis. Recuperado de https://archpublichealth.biomedcentral.com/articles/10.1186/s13690-022-00998- w#:~:text=Among%20American%20men%20and%20women,for%20a%20variety%20 of%20reasons; Tejeda, M et. Al. (2012). Propiedades psicométricas de la escala “dificultades en la regulación emocional” en español (DERS-E) para adolescentes mexicanos. Salud mental. Vol 35. No 6. Recuperado de https://www.scielo.org.mx/pdf/sm/v35n6/v35n6a10.pdf; Watanabe, D. K., Pourmand, V., Lai, J., Park, G., Koenig, J., Wiley, C. R., Thayer, J. F., & Williams, D. P. (2023). Resting heart rate variability and emotion regulation difficulties: Comparing Asian Americans and European Americans. International Journal of Psychophysiology, 194. https://doi.org/10.1016/j.ijpsycho.2023.112258; Zvolensky M, Manning K, Garey L, Alfano C, Mayorga N, Peraza N. (2020). Emotion dysregulation, fatigue, and electronic cigarette expectancies, Cognitive Behaviour Therapy, DOI:10.1080/16506073.2020.1819868; https://hdl.handle.net/1992/73490; instname:Universidad de los Andes; reponame:Repositorio Institucional Séneca; repourl:https://repositorio.uniandes.edu.co/

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    Academic Journal
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    Dissertation/ Thesis
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    المصدر: Anales de Psicología v.37 n.3 2021
    SciELO España. Revistas Científicas Españolas de Ciencias de la Salud
    Banco de España
    ANALES DE PSICOLOGIA
    r-IIS La Fe. Repositorio Institucional de Producción Científica del Instituto de Investigación Sanitaria La Fe
    instname
    DIGITUM. Depósito Digital Institucional de la Universidad de Murcia

    وصف الملف: text/html; application/pdf

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    Dissertation/ Thesis

    المؤلفون: Bastidas González, Alejandra

    المساهمون: Torres Villa, Róbinson Alberto

    وصف الملف: application/pdf

    Relation: https://repository.eia.edu.co/handle/11190/3383; Bastidas González, A. (2021). Banco de señales fisiológicas asociadas al estrés [tesis de pregrado, Universidad EIA]. Repositorio Institucional Universidad EIA. https://repository.eia.edu.co/handle/11190/3383

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    Academic Journal
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    Dissertation/ Thesis

    المؤلفون: Guarín García, Laura Sofía

    المساهمون: Torres Villa, Róbinson Alberto

    المصدر: Repositorio Institucional Universidad EIA

    وصف الملف: application/pdf

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    Academic Journal
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    جغرافية الموضوع: CRAI-USTA Bogotá

    وصف الملف: application/pdf; application/vnd.openxmlformats-officedocument.wordprocessingml.document

    Relation: Kyle Mitchell W, Williams J, Atherton P, Larvin M, Lund J, Narici M. Sarcopenia, dynapenia, and the impact of advancing age on human skeletal muscle size and strength; a quantitative review. Frontiers in Physiology. 2012;3:1-18.; Newman AB, Kupelian V, Visser M, Simonsick EM, Goodpaster BH, Kritchevsky SB, et al. Strength, but not muscle mass, is associated with mortality in the health, aging and body composition study cohort. The journals of gerontology Series A, Biological sciences and medical sciences. 2006;61(1):72-7.; González-Badillo J, Gorostiaga E. Fundamentos del entrenamiento de la fuerza. Aplicación al alto rendimiento deportivo. Madrid INDE; 1995.; Gonzalez-Badillo JJ, Sanchez-Medina L. Movement velocity as a measure of loading intensity in resistance training. Int J Sports Med. 2010;31(5):347-52.; Gonzalez-Badillo JJ, Rodriguez-Rosell D, Sanchez-Medina L, Gorostiaga EM, Pareja-Blanco F. Maximal intended velocity training induces greater gains in bench press performance than deliberately slower half-velocity training. European journal of sport science. 2014;14(8):772-81.; Sánchez-Medina L, Pallarés JG, Pérez CE, Morán-Navarro R, González-Badillo JJ. Estimation of Relative Load From Bar Velocity in the Full Back Squat Exercise. Sports Med Int Open. 2017;1(2):E80-E8.; Holmes CJ, Wind SA, Esco MR. Heart Rate Variability Responses to an Undulating Resistance Training Program in Free-Living Conditions: A Case Study in a Collegiate Athlete. Sports (Basel, Switzerland). 2018;6(4).; Libardi CA, Souza GV, Gaspari AF, Dos Santos CF, Leite ST, Dias R, et al. Effects of concurrent training on interleukin-6, tumour necrosis factor-alpha and C-reactive protein in middle-aged men. Journal of sports sciences. 2011;29(14):1573-81.; Pedersen BK, Steensberg A, Schjerling P. Exercise and interleukin-6. Current opinion in hematology. 2001;8(3):137-41.; Rohde T, MacLean DA, Richter EA, Kiens B, Pedersen BK. Prolonged submaximal eccentric exercise is associated with increased levels of plasma IL-6. The American journal of physiology. 1997;273(1 Pt 1):E85-91.; Bruunsgaard H, Galbo H, Halkjaer-Kristensen J, Johansen TL, MacLean DA, Pedersen BK. Exercise-induced increase in serum interleukin-6 in humans is related to muscle damage. J Physiol. 1997;499 ( Pt 3):833-41.; McBride JM, Triplett-McBride T, Davie A, Newton RU. The effect of heavy- vs. light-load jump squats on the development of strength, power, and speed. J Strength Cond Res. 2002;16(1):75-82.; Kawamori N, Newton RU. Velocity Specificity of Resistance Training: Actual Movement Velocity Versus Intention to Move Explosively. Strength & Conditioning Journal. 2006;28(2):86-91.; Sanchez-Medina L, Perez CE, Gonzalez-Badillo JJ. Importance of the propulsive phase in strength assessment. Int J Sports Med. 2010;31(2):123-9.; Sanchez-Medina L, Gonzalez-Badillo JJ. Velocity loss as an indicator of neuromuscular fatigue during resistance training. Med Sci Sports Exerc. 2011;43(9):1725-34.; Kraemer WJ, Ratamess NA. Fundamentals of resistance training: progression and exercise prescription. Med Sci Sports Exerc. 2004;36(4):674-88.; Buitrago S, Wirtz N, Yue Z, Kleinoder H, Mester J. Mechanical load and physiological responses of four different resistance training methods in bench press exercise. J Strength Cond Res. 2013;27(4):1091-100.; Hakkinen K, Kraemer WJ, Newton RU, Alen M. Changes in electromyographic activity, muscle fibre and force production characteristics during heavy resistance/power strength training in middle-aged and older men and women. Acta Physiol Scand. 2001;171(1):51-62.; Sayers SP. High velocity power training in older adults. Current aging science. 2008;1(1):62-7.; van den Tillaar R, Ettema G. The "sticking period" in a maximum bench press. Journal of sports sciences. 2010;28(5):529-35.; Behringer M, Vom Heede A, Matthews M, Mester J. Effects of strength training on motor performance skills in children and adolescents: a meta-analysis. Pediatric exercise science. 2011;23(2):186-206.; Rezk CC, Marrache RC, Tinucci T, Mion D, Jr., Forjaz CL. Post-resistance exercise hypotension, hemodynamics, and heart rate variability: influence of exercise intensity. European journal of applied physiology. 2006;98(1):105-12.; Garcia P, Nascimento Dda C, Tibana RA, Barboza MM, Willardson JM, Prestes J. Comparison between the multiple-set plus 2 weeks of tri-set and traditional multiple-set method on strength and body composition in trained women: a pilot study. Clinical physiology and functional imaging. 2016;36(1):47-52.; Kleiger RE, Miller JP, Bigger JT, Jr., Moss AJ. Decreased heart rate variability and its association with increased mortality after acute myocardial infarction. The American journal of cardiology. 1987;59(4):256-62.; Heart rate variability: standards of measurement, physiological interpretation and clinical use. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology. Circulation. 1996;93(5):1043-65.; Chen JL, Yeh DP, Lee JP, Chen CY, Huang CY, Lee SD, et al. Parasympathetic nervous activity mirrors recovery status in weightlifting performance after training. Journal of strength and conditioning research. 2011;25(6):1546-52.; Kristal-Boneh E, Raifel M, Froom P, Ribak J. Heart rate variability in health and disease. Scandinavian journal of work, environment & health. 1995;21(2):85-95.; Hanson EK, Godaert GL, Maas CJ, Meijman TF. Vagal cardiac control throughout the day: the relative importance of effort-reward imbalance and within-day measurements of mood, demand and satisfaction. Biological psychology. 2001;56(1):23-44.; Karemaker JM, Lie KI. Heart rate variability: a telltale of health or disease. European heart journal. 2000;21(6):435-7.; Hedelin R, Kentta G, Wiklund U, Bjerle P, Henriksson-Larsen K. Short-term overtraining: effects on performance, circulatory responses, and heart rate variability. Medicine and science in sports and exercise. 2000;32(8):1480-4.; Pichot V, Busso T, Roche F, Garet M, Costes F, Duverney D, et al. Autonomic adaptations to intensive and overload training periods: a laboratory study. Medicine and science in sports and exercise. 2002;34(10):1660-6.; Portier H, Louisy F, Laude D, Berthelot M, Guezennec CY. Intense endurance training on heart rate and blood pressure variability in runners. Medicine and science in sports and exercise. 2001;33(7):1120-5.; Cottin F, Papelier Y, Escourrou P. Effects of exercise load and breathing frequency on heart rate and blood pressure variability during dynamic exercise. International journal of sports medicine. 1999;20(4):232-8.; Macor F, Fagard R, Amery A. Power spectral analysis of RR interval and blood pressure short-term variability at rest and during dynamic exercise: comparison between cyclists and controls. International journal of sports medicine. 1996;17(3):175-81.; Taylor JA, Eckberg DL. Fundamental relations between short-term RR interval and arterial pressure oscillations in humans. Circulation. 1996;93(8):1527-32.; Eckberg DL. Sympathovagal balance: a critical appraisal. Circulation. 1997;96(9):3224-32.; Pagani M, Lombardi F, Guzzetti S, Rimoldi O, Furlan R, Pizzinelli P, et al. Power spectral analysis of heart rate and arterial pressure variabilities as a marker of sympatho-vagal interaction in man and conscious dog. Circulation research. 1986;59(2):178-93.; Cottin F, Medigue C, Lepretre PM, Papelier Y, Koralsztein JP, Billat V. Heart rate variability during exercise performed below and above ventilatory threshold. Medicine and science in sports and exercise. 2004;36(4):594-600.; Hynynen E, Uusitalo A, Konttinen N, Rusko H. Heart rate variability during night sleep and after awakening in overtrained athletes. Medicine and science in sports and exercise. 2006;38(2):313-7.; da Silva VP, de Oliveira NA, Silveira H, Mello RG, Deslandes AC. Heart rate variability indexes as a marker of chronic adaptation in athletes: a systematic review. Annals of noninvasive electrocardiology : the official journal of the International Society for Holter and Noninvasive Electrocardiology, Inc. 2015;20(2):108-18.; Bellenger CR, Fuller JT, Thomson RL, Davison K, Robertson EY, Buckley JD. Monitoring Athletic Training Status Through Autonomic Heart Rate Regulation: A Systematic Review and Meta-Analysis. Sports medicine (Auckland, NZ). 2016;46(10):1461-86.; Monteiro ER, Novaes JS, Fiuza AG, Portugal E, Triani FS, Bigio L, et al. Behavior of Heart Rate Variability After 10 Repetitions Maximum Load Test for Lower Limbs. International journal of exercise science. 2018;11(6):834-43.; Kingsley JD, Mayo X, Tai YL, Fennell C. Arterial Stiffness and Autonomic Modulation After Free-Weight Resistance Exercises in Resistance Trained Individuals. Journal of strength and conditioning research. 2016;30(12):3373-80.; Lima AHRdA, Forjaz CLdM, Silva GQdM, Menêses AL, Silva AJMR, Ritti-Dias RM. Efeito agudo da intensidade do exercício de força na modulação autonômica cardíaca pós-exercício. Arquivos Brasileiros de Cardiologia. 2011;96:498-503.; Figueiredo T, Rhea MR, Peterson M, Miranda H, Bentes CM, dos Reis VM, et al. Influence of number of sets on blood pressure and heart rate variability after a strength training session. Journal of strength and conditioning research. 2015;29(6):1556-63.; Lemos S, Figueiredo T, Marques S, Leite T, Cardozo D, Willardson JM, et al. Effects of Strength Training Sessions Performed with Different Exercise Orders and Intervals on Blood Pressure and Heart Rate Variability. International journal of exercise science. 2018;11(2):55-67.; Carter JR, Ray CA, Downs EM, Cooke WH. Strength training reduces arterial blood pressure but not sympathetic neural activity in young normotensive subjects. Journal of applied physiology (Bethesda, Md : 1985). 2003;94(6):2212-6.; Madden KM, Levy WC, Stratton JK. Exercise training and heart rate variability in older adult female subjects. Clinical and investigative medicine Medecine clinique et experimentale. 2006;29(1):20-8.; Peake JM, Della Gatta P, Suzuki K, Nieman DC. Cytokine expression and secretion by skeletal muscle cells: regulatory mechanisms and exercise effects. Exercise immunology review. 2015;21:8-25.; Hasegawa H, Mizoguchi I, Chiba Y, Ohashi M, Xu M, Yoshimoto T. Expanding Diversity in Molecular Structures and Functions of the IL-6/IL-12 Heterodimeric Cytokine Family. Frontiers in immunology. 2016;7:479.; Hung YL, Suzuki K. The pattern recognition receptors and lipopolysaccharides (LPS)-induced systemic; inflammation. Int J Res Stud Med Health Sci. 2017;2:1-7.; Peake JM, Suzuki K, Hordern M, Wilson G, Nosaka K, Coombes JS. Plasma cytokine changes in relation to exercise intensity and muscle damage. European journal of applied physiology. 2005;95(5-6):514-21.; Pedersen BK, Febbraio MA. Muscle as an endocrine organ: focus on muscle-derived interleukin-6. Physiological reviews. 2008;88(4):1379-406.; Elenkov IJ, Chrousos GP, Wilder RL. Neuroendocrine regulation of IL-12 and TNF-alpha/IL-10 balance. Clinical implications. Annals of the New York Academy of Sciences. 2000;917:94-105.; Omata N, Yasutomi M, Yamada A, Iwasaki H, Mayumi M, Ohshima Y. Monocyte chemoattractant protein-1 selectively inhibits the acquisition of CD40 ligand-dependent IL-12-producing capacity of monocyte-derived dendritic cells and modulates Th1 immune response. Journal of immunology (Baltimore, Md : 1950). 2002;169(9):4861-6.; Suzuki K. Cytokine Response to Exercise and Its Modulation. Antioxidants (Basel). 2018;7(1):17.; Scheller J, Chalaris A, Schmidt-Arras D, Rose-John S. The pro- and anti-inflammatory properties of the cytokine interleukin-6. Biochimica et biophysica acta. 2011;1813(5):878-88.; Dinan NE, Zak RB, Shute RJ, Laursen T, Bubak M. Exercise-Induced Interleukin-6 and Metabolic Responses in Hot, Temperate, and Cold Conditions. Journal of Human Performance in Extreme Environments. 2017;13(1):8-11.; Steensberg A, van Hall G, Osada T, Sacchetti M, Saltin B, Klarlund Pedersen B. Production of interleukin-6 in contracting human skeletal muscles can account for the exercise-induced increase in plasma interleukin-6. J Physiol. 2000;529 Pt 1(Pt 1):237-42.; Ostrowski K, Hermann C, Bangash A, Schjerling P, Nielsen JN, Pedersen BK. A trauma-like elevation of plasma cytokines in humans in response to treadmill running. J Physiol. 1998;513 ( Pt 3)(Pt 3):889-94.; Fischer CP. Interleukin-6 in acute exercise and training: what is the biological relevance? Exercise immunology review. 2006;12:6-33.; Brenner IK, Natale VM, Vasiliou P, Moldoveanu AI, Shek PN, Shephard RJ. Impact of three different types of exercise on components of the inflammatory response. European journal of applied physiology and occupational physiology. 1999;80(5):452-60.; Suzuki K, Nakaji S, Kurakake S, Totsuka M, Sato K, Kuriyama T, et al. Exhaustive exercise and type-1/type-2 cytokine balance with special focus on interleukin-12 p40/p70. Exercise immunology review. 2003;9:48-57.; Hirose L, Nosaka K, Newton M, Laveder A, Kano M, Peake J, et al. Changes in inflammatory mediators following eccentric exercise of the elbow flexors. Exercise immunology review. 2004;10:75-90.; Smith LL, Anwar A, Fragen M, Rananto C, Johnson R, Holbert D. Cytokines and cell adhesion molecules associated with high-intensity eccentric exercise. European journal of applied physiology. 2000;82(1-2):61-7.; Malm C, Sjodin TL, Sjoberg B, Lenkei R, Renstrom P, Lundberg IE, et al. Leukocytes, cytokines, growth factors and hormones in human skeletal muscle and blood after uphill or downhill running. J Physiol. 2004;556(Pt 3):983-1000.; Petersen AM, Pedersen BK. The anti-inflammatory effect of exercise. Journal of applied physiology (Bethesda, Md : 1985). 2005;98(4):1154-62.; Toft AD, Jensen LB, Bruunsgaard H, Ibfelt T, Halkjaer-Kristensen J, Febbraio M, et al. Cytokine response to eccentric exercise in young and elderly humans. American journal of physiology Cell physiology. 2002;283(1):C289-95.; Ostrowski K, Rohde T, Asp S, Schjerling P, Pedersen BK. Pro- and anti-inflammatory cytokine balance in strenuous exercise in humans. J Physiol. 1999;515 ( Pt 1):287-91.; Peters EM, Anderson R, Nieman DC, Fickl H, Jogessar V. Vitamin C supplementation attenuates the increases in circulating cortisol, adrenaline and anti-inflammatory polypeptides following ultramarathon running. International journal of sports medicine. 2001;22(7):537-43.; Suzuki K, Yamada M, Kurakake S, Okamura N, Yamaya K, Liu Q, et al. Circulating cytokines and hormones with immunosuppressive but neutrophil-priming potentials rise after endurance exercise in humans. European journal of applied physiology. 2000;81(4):281-7.; Suzuki K, Nakaji S, Yamada M, Totsuka M, Sato K, Sugawara K. Systemic inflammatory response to exhaustive exercise. Cytokine kinetics. Exercise immunology review. 2002;8:6-48.; Goh J, Lim C, Suzuki K. Effects of Endurance-, Strength-, and Concurrent Training on Cytokines and Inflammation: Scientific Basics and Practical Applications. 2019. p. 125-38.; Suzuki K, Naganuma S, Totsuka M, Suzuki KJ, Mochizuki M, Shiraishi M, et al. Effects of exhaustive endurance exercise and its one-week daily repetition on neutrophil count and functional status in untrained men. International journal of sports medicine. 1996;17(3):205-12.; Sugama K, Suzuki K, Yoshitani K, Shiraishi K, Miura S, Yoshioka H, et al. Changes of thioredoxin, oxidative stress markers, inflammation and muscle/renal damage following intensive endurance exercise. Exercise immunology review. 2015;21:130-42.; Peake J, Nosaka K, Suzuki K. Characterization of inflammatory responses to eccentric exercise in humans. Exercise immunology review. 2005;11:64-85.; Kanda K, Sugama K, Sakuma J, Kawakami Y, Suzuki K. Evaluation of serum leaking enzymes and investigation into new biomarkers for exercise-induced muscle damage. Exercise immunology review. 2014;20:39-54.; Kanda K, Sugama K, Hayashida H, Sakuma J, Kawakami Y, Miura S, et al. Eccentric exercise-induced delayed-onset muscle soreness and changes in markers of muscle damage and inflammation. Exercise immunology review. 2013;19:72-85.; Peake JM, Suzuki K, Wilson G, Hordern M, Nosaka K, Mackinnon L, et al. 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  20. 20
    Dissertation/ Thesis

    المؤلفون: Carrizosa Botero, Susana

    المساهمون: Mejía Mejía, Elisa

    المصدر: Repositorio Institucional Universidad EIA

    وصف الملف: application/pdf

    Relation: https://repository.eia.edu.co/handle/11190/2474; Carrizosa Botero, S. (2019). Detección de ataques epilépticos a partir de señales fisiológicas . (Trabajo de grado). Universidad EIA, Envigado-Antioquia. Recuperado de: http://repository.eia.edu.co/handle/11190/2474