Variabilidad de la Frecuencia Cardiaca (HRV) en caninos saludables, adultos, residentes en hipoxia hipobárica (Bogotá, 2600 m.s.n.m.)

dc.contributor.advisorCruz Martínez, Luis Eduardospa
dc.contributor.advisorVargas Pinto, Piero Ardanispa
dc.contributor.authorGuerrero Soler Claudia Marcelaspa
dc.coverage.cityBogotáspa
dc.coverage.countryColombiaspa
dc.coverage.tgnhttp://vocab.getty.edu/page/tgn/1000838spa
dc.date.accessioned2023-01-17T02:22:44Z
dc.date.available2023-01-17T02:22:44Z
dc.date.issued2022-12
dc.descriptionilustraciones, gráficas, tablasspa
dc.description.abstractLa variabilidad de la frecuencia cardiaca (HRV por sus siglas en ingles) hace referencia a las fluctuaciones de la frecuencia cardiaca latido a latido y representa el control autonómico y endocrino sobre el corazón. Este parámetro ha sido ampliamente utilizado en medicina humana para el diagnóstico, seguimiento y pronóstico de enfermedades como el Infarto Agudo del Miocardio. Sin embargo, en medicina veterinaria, específicamente en la clínica de pequeños animales no ha sido ampliamente implementado debido a la carencia de información sobre su utilidad, protocolos de obtención de datos y valores de referencia. El presente trabajo busca describir los principales índices de la HRV en el dominio del tiempo y la frecuencia en caninos saludables residentes en el ambiente hipobárico natural de la ciudad de Bogotá (2600 m.s.n.m). (Texto tomado de la fuente).spa
dc.description.abstractHeart rate variability (HRV) refers to beat-to-beat fluctuations in heart rate and represents the autonomic and endocrine regulation over the heart. This parameter has been widely used in human medicine for the diagnosis, follow-up and prognosis of diseases such as the Acute Myocardial Infarction. However, in veterinary medicine, specifically in the small animal practice, it has not been widely implemented due to the lack of information on its interpretation, data collection protocols, and reference values. The present work seeks to describe the main HRV indices in the time and frequency domain in healthy canines residing in the natural hypobaric environment of the city of Bogotá (2600 m.a.s.l).eng
dc.description.degreelevelMaestríaspa
dc.description.degreenameMagíster en Fisiologíaspa
dc.description.notesIncluye anexosspa
dc.format.extent116 páginasspa
dc.format.mimetypeapplication/pdfspa
dc.identifier.instnameUniversidad Nacional de Colombiaspa
dc.identifier.reponameRepositorio Institucional Universidad Nacional de Colombiaspa
dc.identifier.repourlhttps://repositorio.unal.edu.co/spa
dc.identifier.urihttps://repositorio.unal.edu.co/handle/unal/82967
dc.language.isospaspa
dc.publisherUniversidad Nacional de Colombiaspa
dc.publisher.branchUniversidad Nacional de Colombia - Sede Bogotáspa
dc.publisher.facultyFacultad de Medicinaspa
dc.publisher.placeBogotá, Colombiaspa
dc.publisher.programBogotá - Medicina - Maestría en Fisiologíaspa
dc.relation.indexedBiremespa
dc.relation.references1. Malik M, Camm J. 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. European Heart Journal.1996. 17. 354-381.spa
dc.relation.references2. Boron W, Boulpaep E. Electrophysiology of the Cell Membrane, Capítulo 6 en: Medical Physiology. Segunda Edición. ElSevier. 2012. 147-178spa
dc.relation.references3. Guerra J, Cinca J. Ritmo sinusal normal. Nuevos conceptos anatómicos y fisiológicos del nódulo sinusal. Corriente If. Revista Española de Cardiología. 2007. 7; 26-31.spa
dc.relation.references4. Choudhury M, Boyett M, Morris G. Biology of the Sinus Node and its Disease. Arrhythmia and Electrophysiology Review. 2015. 4 (1); 28-34spa
dc.relation.references5. Zipes D, Jalife J. Pulmonary Vein Ganglia and the Neural Regulation of the Heart Rate, Capítulo 39 en: Cardiac Electrophysiology From Cell to Bedside. Sexta Edición. ElSevier. 2014. 393-398spa
dc.relation.references6. Gallo J, Farbiarz J, Alvarez D. Análisis espectral de la variabilidad de la frecuencia cardiaca. IATREIA. 1999. 12 (2); 61-71.spa
dc.relation.references7. Guyton A, Hall J. The Autonomic Nervous System and the Adrenal Medulla, Capítulo 60 en: Textbook of Medical Physiology. Onceava edición. ElSevier. 2006. 748-759.spa
dc.relation.references8. Ramírez L. Medición del impacto de la administración sub aracnoidea de un anestésico local, en la regulación autonómica del ritmo cardiaco, por medio del análisis de la variabilidad de la frecuencia cardiaca y su relación con bradicardia e hipotensión. Tesis de Maestría. Universidad Nacional de Colombia, Facultad de Medicina. 2017.spa
dc.relation.references9. Santilli R, Moise S. Electrocardiography of the dog and the cat. Segunda Edicion. Edra. 2018.spa
dc.relation.references10. Lee R, Kalman J, Fitzpatrick A, Epstein L, Fisher W, Oldin J, Lesh M, Scheinman M. Radiofrequency catheter modification of the sinus node for “inappropriate” sinus tachycardia. Circulation. 1995. 92 (10); 2919-2928.spa
dc.relation.references11. Sánchez D, Cabrera J. Sinus node revisted in the era of the electroanatomical mapping and catheter ablation. Heart. 2005. 91 (2); 189-194.spa
dc.relation.references12. Klein B. Electrical Activity of the Heart, Capítulo 19 en: Cunningham´s Textbook of Veterinary Physiology. Quinta Edicion. ElSevier, 2013. 171-187.spa
dc.relation.references13. Schram G, Pourrier M, Melnyk P, Nattel S. Differential distribution of cardiac Ion chanel expression as a basis for regional specialization in electrical function. Circulation Research. 2002. 90; 939-950.spa
dc.relation.references14. Iglesias J, Estévez M. Regulación del sistema cardiovascular por el sistema nervioso autónomo. Libros Abiertos [Internet]. 2008. Disponible en: http://infomed20.sld.cu/wiki/doku.php?id=librosabiertos:regulacion_autonomica_ca rdiovascular&rev=1208101264.spa
dc.relation.references15. Sayers B. Analysis of Heart Rate Variability. Ergonomics. 1973. 16 (1) 17-32.spa
dc.relation.references16. Van Ravenswaaij-Arts C, Kollée L, Hopman J, Stoelinga G, Van Geijn H. Heart Rate Variability. Annals of Internal Medicine. 1993. 118; 436-447.spa
dc.relation.references17. Karas M, Lacourciére Y, LeBlanc A, Nadeau R, dubé B, Florescu M, Lamarre Cliche M, Poirier L, Larochelle P, Champlain J. Effects of the renin-angiotensin system or calcium channer blockade on the circadian variation of heart rate variability, blood pressure and circulating catecholamines in hypertensive patients. Journal of Hypertension. 2005. 23 (6); 1251-1260.spa
dc.relation.references18. Dart A, Du Xiao-Jun, Kingwell B. Gender, sex hormones and autonomic nervous control of the cardiovascular system. Cardiovascular Research. 2002. 53; 678-687.spa
dc.relation.references19. El-Mas M, Abdel-Rahman A. Estrogen enhances baroreflex control of heart rate in conscious ovariectomized rats. Canadian Journal of Physiology and Pharmacology. 1998. 76; 381-386.spa
dc.relation.references20. Bogucki S, Noszczyk-Nowak A. Short term heart rate variability (HRV) in healthy dogs. Polish Journal of Veterinary Sciences. 2015.18 (2); 307-312.spa
dc.relation.references21. Matsunaga T, Harada T, MitsuiT, Inokuma M, Hashimoto M, Miyauchi M, Murano H, Shibutani Y. Spectral analysis of circadian rhythms in heart rate variability of dogs. American Journal of Veterinary Research. 2001. 62 (1); 37-42.spa
dc.relation.references22. Vogel J, Hannon J. Cardiovascular and Metabolic response of dogs to exercise at high altitude. Journal of Applied Physiology. 1966. 21 (5); 1595-1601.spa
dc.relation.references23. Chawla A, Saxena S. Physiology of High Altitude Acclimatization. Resonance. 2014. 538-548.spa
dc.relation.references24. Hezzell M, Humm K, Dennis S, Agge L, Boswood A. Relationships between heart rate and age, bodyweight and breed in 10,849 dogs. Journal of Small Animal practice. 2013. 54; 318-324.spa
dc.relation.references25. Lizarazo Juan C. Variabilidad de la frecuencia cardiaca en hombres jóvenes consumidores de cigarrillo, Bogotá DC. Tesis de Maestría. Universidad Nacional de Colombia, Facultad de Medicina. 2008.spa
dc.relation.references26. Milgliaro Eduardo R. El legado de Norman J. Holter: La electrocardiografía ambulatoria y los caminos en la ciencia. Anales de la Facultad de Medicina, Universidad de la República. Uruguay. 2014. 1(1); 93-98.spa
dc.relation.references27. Adamec J, Adamec R. ECG Holter: Guide to Electrocardiographic Interpretation. 2008.1-8.spa
dc.relation.references28. Petrie J. Practical Application of Holter Monitoring in Dogs and Cats. Clinical Techniques in Small Animal Practice. 2005. 20; 173-181.spa
dc.relation.references29. Behar J, Rosenberg A, Shemia O, Murphy K, Koren G, Billman G, Yaniv Y. A universal Scaling Relationship for Defining Power Spectral Bands in Mammalian Heart Rate Varibility Analysis. Frontiers in physiology. 2018 (9), artículo 1010.spa
dc.relation.references30. Billman G. Heart Rate Variability - a historical perspective. Frontiers in Physiology. 2011 (2), artículo 86.spa
dc.relation.references31. Gernot Ernest. Hidden signals-The history and methods of heart rate variability. Frontiers in Pubic Heath. 2017 (5), artículo 265.spa
dc.relation.references32. Gabel R, Roberts R. Señales y sistémas lineales. 1994.spa
dc.relation.references33. Poelzl G, Auer J. Cardiohepatic Syndrome. Current Heart Failure Reports. 2014. 12 (1); 68-78.spa
dc.relation.references34. Moller S, Bernardi M. Interactions of the heart and the liver. European Heart Journal. 2013. 34; 2804-2811.spa
dc.relation.references35. Kingma J, Simard D, Rouleau J, Drolet B, Simard C. The physiopathology of Cardiorenal Syndrome: A Review of the Potential Contributions of Inflammation. Journal of Cardiovascular Development and Disease. 2017. 4 (4); 21spa
dc.relation.references36. Berl T, Henrich W. Kidney-Heart Interactions: Epidemiology, Pathogenesis, and Treatment. Clinical Journal of American Society of Nephrology. 2006.1(1); 8-18.spa
dc.relation.references37. Ronco C, Happio M, House A, Anavekar N, Bellomo R. Cardiorenal Syndrome. Journal of the American College of Cardiology. 2008. 52 (19); 1527-1539.spa
dc.relation.references38. Florea V, Cohn J. The Autonomic Nervous System and Heart Failure. Circulation Research. 2014.114;1815-1826.spa
dc.relation.references39. Limbruno U, Strata G, Zucchi R, Baglini R, Mengozzi G, Balbarini A, Mariani M. Altered autonomic cardiac control in hypertrophic cardiomyopathy. Role of outflow tract obstruction and myocardial hypertrophy. European Heart Journal. 1998.19;146-153.spa
dc.relation.references40. Floras J, Sympathetic Nervous System Activation in Human Heart Failure. Clinical implications of an Updated Model. Journal of the American College of Cardiology. 2009. 54 (5); 375-385.spa
dc.relation.references41. Vaseghi M, Shivkumar K. The role of the Autonomic Nervous System in Sudden Cardiac Death. Progress in Cardiovascular Diseases. 2008. 50 (6); 404- 419.spa
dc.relation.references42. McLeod J, Tuck R. Disorders of the autonomic nervous system: part 1. Pathophysyology and clinical features. Neurological Progress. Annals of Neurology. 1987. 21 (6); 519-529.spa
dc.relation.references43. Robertson D, Esler M, Straus E, Eisenhofer G. Dysautonomias: Clinical disorders of the autonomic nervous system. NIH Conference: American College of Physicians, American society of Internal Medicine. Annals of Internal Medicine. 2002. 137 (9); 753-763.spa
dc.relation.references44. Clarke B, Ewing D, Campbell I W. Diabetic Neuropathy. Diabetologia. 1979. 17; 195-212.spa
dc.relation.references45. Vargas-Pinto Pedro, Arango S, Rodríguez V, Rivas J, Vargas-Pinto Piero. Frecuencia Cardiaca y su Variabilidad en Caninos de Agility en Gran Altura. 2017. Revista de Investigaciones Veterinarias del Perú. 2017. 28 (2); 236-241.spa
dc.relation.references46. Calvert C, Jacobs G. Heart rate variability in Doberman Pinschers with and without echocardiographic evidence of dilated cardiomyopathy. American Journal of Veterinary Research. 2000. 61(5); 506-511.spa
dc.relation.references47. Martínez A. Descripción de índices ecocardiográficos de la arteria pulmonar y ventrículo derecho en Caninos saludables a nivel del mar y en un ambiente hiporbárico natural (2600 msnm). Tesis de Maestría. Universidad Nacional de Colombia. Facultad de Medicina. 2017.spa
dc.relation.references48. Dawson B, Trapp R. Bioestadística médica. Cuarta Edición. El Manual Moderno, S.A.S. 2005.spa
dc.relation.references49. Sampieri R, Collado C, Baptista P. Metodología de la investigación. Primera Edición. McGraw-Hill, 1991.spa
dc.relation.references50. Guyton A, Hall J. Rhythmical Excitation of the Heart, Capítulo 10 en: Textbook of Medical Physiology. Onceava Edición. ElSevier. 2006. 116-122.spa
dc.relation.references51. Guyton A, Hall J. Cardiac Arrhythmias and their Electrocardiographic Interpretation, Capítulo 13 en: Textbook of Medical Physiology. Onceava Edición. ElSevier. 2006. 147-160spa
dc.relation.references52. Oliveira P, Domenech O, Silva J, Vannini S, Bussadori R, Bussadori C. Retrospective Review of Congenital Heart Disease in 976 Dogs. Journal of Veterinary Internal Medicine. 2011. 25; 477-483spa
dc.relation.references53. Dupré G, Findji L, Oechtering G. Small Animal Soft Tissue Surgery. Primera Edicion. Wiley-Blackwell. 2013.spa
dc.relation.references54. Lu Fei D, Statters D, Anderson M, Malik M, Camm J. Relationship Between Short- and Long-Term Measurements of Heart Rate Variability in Patients at Risk of Sudden Cardiac Death. Pacing and Clinical Electrophysiology. 1994. 17; 2194- 2200.spa
dc.relation.references55. Brisinda D, Venutti A, Sorbo A, Cataldi C, Iantorno E, Fenici R. Comparison between standard short-term, very-short and ultra-short-term heart rate variability analysis in healthy subjects during exercise testing. European Heart Journal. 2013. 34 (1); 3384.spa
dc.relation.references56. Shaffer F, Ginsberg J P. An Overview of Heart Rate Variability Metrics and Norms. Frontiers in Public Health. 2017. 5; 258.spa
dc.relation.references57. Martínez M, Briones R, Cortes J. Metodología de la investigación para el área de la salud. Segunda Edición. McGraw-Hill, 2013.spa
dc.relation.references58. Boron W, Boulpaep E. Cardiac Electrophysiology and The Electrocardiogram Integrated Control of the Cardiovascular System, Capítulo 21 y 25 en: Medical Physiology. Segunda Edición. ElSevier. 2012. 504-528. 593-610.spa
dc.relation.references59. Monfredi O, Dobrzynsky H, Mondal T, Boyett M, Morris G. The anatomy and physiology of the sinoatrial node-a contemporary review. Pacing and Clinical Electrophysiology. 2010. 33; 1392-1406.spa
dc.relation.references60. Guyton A, Hall J. Nervous Regulation of the Circulation, and Rapid Control of Arterial Pressure, Capítulo 18 en: Textbook of Medical Physiology. Onceava Edición. ElSevier, 2006. 204-215.spa
dc.relation.references61. Guyton A, Hall J. Regulation of Respiration, Capítulo 41 en: Textbook of Medical Physiology. Onceava Edición. ElSevier. 2006. 514-523.spa
dc.relation.references62. Zipes D, Jalife J. Cardiac Impulse is Initiated by a Coupled System of Membrane Ion Channel and Ca 2+ Cycling Proteins, Capítulo 25 en: Cardiac Electrophysiology From Cell to Bedside. Sexta Edición. ElSevier, 2014. 243-252.spa
dc.relation.references63. Guyton A, Hall J. Aviation, High-Altitude and Space Physiology, Capítulo 43 en: Textbook of Medical Physiology. Onceava Edición. ElSevier, 2006. 537-544.spa
dc.relation.references64. Guyton A, Hall J. Red Blood Cells, Anemia and Polycythemia, Capítulo 32 en: Textbook of Medical Physiology. Onceava Edición. ElSevier, 2006. 419-428.spa
dc.relation.references65. Boron W, Boulpaep E. Regulation of Arterial Pressure and Cardiac Output, Capítulo 23 en: Fisiología Médica. Segunda Edición. ElSevier. 2012. 554-571.spa
dc.relation.references66. Kiyosue T, Arita M, Muramatsu H, Spindler A, Noble D. Ionic mechanisms of action potential prolongation at low temperature in guinea-pig ventricular myocytes. Journal of Physiology. 1993. 468; 85-106.spa
dc.relation.references67. Tormos D. Estudio experimental de los efectos de la hipotermia y la hipertermia locales sobre los parámetros electrofisiológicos del miocardio y la frecuencia de activación de la fibrilación ventricular. Tesis Doctoral. Universidad Politécnica de Valencia, Departamento de Ingeniería Electrónica. 2005.spa
dc.relation.references68. Simmers T, De Bakker J, Wittkampf F, Hauer R. Effects of Heating on Impulse Propagation in Superfused Canine Myocardium. Journal of the American College of Cardiology. 1995. 25 (6); 1457-1464.spa
dc.relation.references69. Scheer P, Svoboda P, Sepsi M, Janeckova K, Doubek J. The Electrocardiographic Holter Monitoring in Experimental Veterinary Practice. Physiological Research. 2010. 59 (1); 59-64.spa
dc.relation.references70. Piccirillo G, Ogawa M, Song J, Chong V, Joung B, Han S, Magri D, Chen L, Lin S, Chen P. Poer Spectral Analysis of heart rate variability and autonomic nervous system activity measured directly in healthy dogs and dogs with tachycardia induced heart failure. Heart Rhythm. 2009. 6 (4); 546-552.spa
dc.relation.references71. López V, Condiciones atmosféricas predominantes en el piedemonte de la cordillera Oriental, determinantes del régimen climático en las sedes de la Universidad de la Salle, Bogotá. Ëpsilon. 2012. 18; 87-104.spa
dc.relation.references72. Página Web oficial IDEAM: www.ideam.gov.co/web/tiempoyclimaspa
dc.relation.references73. Freeman L, Becvarova I, Cave N, MacKay C, Nguyen P, Rama B, Takashima G, Tiffin R, Tsjimoto H, van Beukelen P. WSAVA Nutritional Assesment Guidelines Task Force. Journal of Small Animal Practice. 2011. 52; 385-396.spa
dc.relation.references74. American Kennel Club, Dogs Breeds-Size. Sitio web. Disponible en: https://www.akc.org/dog-breeds/.spa
dc.relation.references75. DiBartola S. Fluid, Applied Physiology of the Body Fluids in Dogs and Cats, Capítulo 1 en: Electrolyte and Acid-Base Disorders in Small Animal Practice. 4ta Edición. ElSevier, 2012. 2-25.spa
dc.relation.references76. Hall F, Dill D, Guzman E. Comparative Physiology in High Altitudes. Journal of Cellular and Comparative Physiology. 1936. 8 (3); 301-313.spa
dc.relation.references77. Barry P, Pollard A. Altitude illness. British Medical Journal. 2003. 328; 915-919.spa
dc.relation.references78. Grimminger J, Ritcher M, Tello K, Sommer N, Gall H, Ardeschir Ghofrani H. Thin Air Resulting in High Pressure: Mountain Sickness and Hypoxia-Induced Pulmonary Hypertension. Canadian Respiratory Journal. 2017. 2017 (3); 1-17.spa
dc.relation.references79. Boos C. J, Vincent E, Mellor A, O´Hara J, Newman R. C, Scott P, Cooke M, Matu J, Woods D. R. The Effect of Sex on Heart Rate Variability at High Altitude. Medicine and Science in Sports and Exercise. 2017. 49 (12); 2562-2569.spa
dc.relation.references80. Zuzewicz K, Biernat B, Kempa G, Kwarecki K. Heart Rate Variability in Exposure to High Altitude Hypoxia of Short Duration. International Jornal of Occupation Safety and Ergonomics. 1999. 5 (3); 337-346.spa
dc.relation.references81. Melin A, Fauchier L, Dubuis E, Obert P, Bonnet P. Heart Rate Variability in Rats Acclimatized to High Altitude. High Altitude Medicine and Biology. 2003. 4; 375-387.spa
dc.relation.references82. Schmintt L, Fouillot J-P, Millet G. P, Robach P, Nicolet G, Brugniaux J, RIchalet J-P. Altitude, Heart Rate Variability and Aerobic Capacities. International Journal of Sports Medicine. 2008. 29; 300-306.spa
dc.relation.references83. Taneja T, Windhagen M, Passman R, Goldberger J, Kadish A. Effects of Sex and Age on Electrocardiographic and Cardiac Electrophysiological Properties in Adults. Journal of Pace and Clinical Electrophysiology. 2001. 24 (1); 16-21.spa
dc.relation.references84. Boon J. A. Veterinary Echocardiography. Wiley-Blackwell. Second Edition, 2011. Appendix two-canine.spa
dc.relation.references85. Chetboul V, Bussadori C, Madron E. Normal echocardiographic values, TM, 2D, and Doppler spectral modes, Capítulo 2, en: Clinical echocardiography of the dog and the cat. El Sevier. Primera Edición. 2012. 20-37.spa
dc.relation.references86. Chen Y, Lee S, Hsieh M, Hsiaa C, Yu W, Chiou C, Chen S. Effects of 17β Estradiol on Tachycardia-induced Changes of Atrial Refractoriness and Cisapride induced Ventricular Arrhythmia. The Journal of Cardiovascular Electrophysiology. 1999. 10; 587-598.spa
dc.relation.references87. Martinello L, Cruz A, Romao F, Ferreira M, Tsunemi M, Chiacchio S, Fernandez de Godoy M, Gomes M. Short-term Heart Rate Variability Analisis in Healthy Dogs of Different Ages. Acta Scientiae Veterinariae. 2022, Volumen 50.spa
dc.relation.references88. Agudelo Ramírez CF, Arambulo Cortez LA. Determinación de parámetros hematológicos y bioquímicos en caninos sanos en la ciudad de Santafé de Bogotá en la Facultad de Medicina Veterinaria y de Zootecnia de la Universidad Nacional de Colombia. Tesis de Maestría. Universidad Nacional de Colombia, Facultad de Medicina Veterinaria y de Zootecnia. 2001.spa
dc.relation.references89. Klein B. Endocrine Glands and Their Function, Capítulo 34 en: Cunningham´s Textbook of Veterinary Physiology. Quinta Edición. ElSevier, 2013. 374-408.spa
dc.relation.references90. Polgár Z, Blackwell E, Rooney N. Assessing the welfare of kenneled dogs-A review of animal-based measures. Applied Animal Behaviour Science. 2019; 1-13.spa
dc.relation.references91. Horwitz D, Mills D. Stress in veterinary behavioural medicine, Capítulo 13 en: Canine and Feline Behavioural Medicine. British Small Animal Veterinary Association. Segunda Edición. 2019. 136-145.spa
dc.relation.references92. Bodnariu A. Indicators of stress and stress assessment in dogs. Obras Científicas de Medicina Veterinaria. 2008. Volumen 12.spa
dc.relation.references93. Engan H, Schagatay E. “Spleen Contraction and Hemoconcentration” Regarding the Review “Hemoconcentration and Hemostasis During Acute Stress: Interacting and Independent Effects” by Austin et al, 2011. Letter to the Editor. Annals of Behavioral Medicine. 2015. 49; 634-635.spa
dc.relation.references94. Bakovic D, Pivac N, Maslov P, Breskovic T, Damonja G, Dujic Z. Spleen Volume Changes During Adrenergic Stimulation with Low Doses of Epinephrine. Journal of Physiology and Pharmacology. 2013. 5; 649-655.spa
dc.relation.references95. Hsia C, Johnson R, Dane D, Wu E, Estrera A, Wagner H, Wagner P. The canine spleen in oxygen transport: gas exchange and hemodynamic responses to splenectomy. Journal of Applied Physiology. 2007. 103; 1496-1505.spa
dc.relation.references96. Vaden S, Knoll J, Smith F, Tilley L. Red Blood Cell Count-Total protein, en: Blackwell´s Five-minute Veterinary Consult Laboratory Test and Diagnostic Procedures, Canine and Feline. Primera Edición. 2009. 518-519 y 634-635.spa
dc.relation.references97. Nelson R, Couto C. Hematology-Leukopenia and Leukocytosis, Capítulos 84 y 85 en: Small Animal Internal Medicine. Mosby El Sevier, Cuarta Edition. 2009. 1225-1227 y 1228-1235.spa
dc.relation.references98. Báez P, Cabra C, Ruiz I. Standardization of Serum Creatinine Levels in Healthy Dogs Related to Body Weight at the South Valley of Aburra, Colombia. Revista de Medicina Veterinaria. 2014. 27; 33-40.spa
dc.relation.references99. Craig AJ, Seguela J, Queau Y, Murgier P, Concordet D, Fleeman LM, Mimouni P, Braun JP, Germain C, Lefebvre HP. Redefining the Reference Interval for Plasma Creatinine in Dogs: Effects of Age, Gender, Body Weight and Breed. Research Abstract Program of the 24th Annual ACVIM Forum Luisville, KY, May 31-June 3, 2006. American College of Veterinary Internal Medicine.spa
dc.relation.references100. Cornell C, Kittleson M, Torre P, Haggstrom J, Lombard C, Pedersen H, Vollmar A, Wey A. Allometric Scaling of M-Mode Cardiac Measurements in Normal Adult Dogs. Journal of Veterinary Medicine. 2004. 18; 311-321spa
dc.relation.references101. Robertson D, Biaggioni I, Burnstock G, Low P, Paton J. Effects of High Altitude, Capítulo 58 en: Primer on the Autonomic Nervous System. Tercera Edición. 2012. 281-281.spa
dc.relation.references102. Mason N. The physiology of the high altitude: an introduction to the cardio respiratory changes occurring on ascent to altitude. Current Anaesthesia and Critical Care. 2000. 11; 34-41.spa
dc.relation.references103. West J B. High-Altitude Medicine. Concise Clinical Review. American Journal of Respiratory and Critical Care Medicine. 2012. 186; 1229-1237.spa
dc.relation.references104. Taylor A. High-Altitude Illness: Physiology, Risk Factors, Prevention, and Treatment. Rambam Maimonides Medical Jornal. 2011 (2).spa
dc.relation.references105. Barak Y, David D, Askelrod S. Autonomic Control of the Cardiovascular System During Acute Hypobaric Hypoxia, Assessed by Time-Frecuency Decomposition of the Heart Rate. Computers in Cardiology. 1999. 26; 627-630spa
dc.relation.references106. Bergamasco Luciana, Osella M, Savarino P, Larosa G, Ozella L, Manassero M, Badino P, Odore R, Barbero R, Re G. Heart rate variability and saliva cortisol assessment in shelter dog: Human-animal interaction effects. Applied Animal Behaviour Science. 2010. 125; 56-68.spa
dc.relation.references107. Pinedo M, Villacorta E, Tapia C, Roman A, Lopez J, Revilla A, Gómez I, Fulquet E, Roman J. Variabilidad inter e intraobservador en la valoracion ecocardiografica de la función del ventrículo derecho. Revista Española de Cardiología. 2010. 7; 802-809.spa
dc.relation.references108. Careaga G, Garduño J, Arguero R. Variabilidad de observador en procedimientos diagnósticos afines a la cirugía cardiotorácica. Gaceta Médica de Mexico. 1994. 5; 476-480. Disponible en www.pesquisa.bvsalud.org.spa
dc.relation.references109. West J, Schoene R, Luks A, Milledge J. The atmosphere; Geography and The Human Response to Altitude, Capítulos 2-3 en: High Altitude Medicine and Physiology. CRC Press. Quinta Edición. 2013. 16-27; 28-39.spa
dc.relation.references110. Can Dogs Get Altitude Sickness? Artículo web. Disponible en www.wagwalking.com/wellness/can-dogs-get-altitude-sicknessspa
dc.relation.references111. Jensen R, Pierson R. La enfermedad de las Alturas. Revista Facultad de Medicina Veterinaria y de Zootecnia. Universidad Nacional de Colombia. 1956. 435-439.spa
dc.relation.references112. Menchetti L, Iaboni M, Matteo M, Guelfi G, Diverio S. How Do Avalanche Dogs (and Their Handlers) Cope with Physical Escercise? Heart Rate Changes during endurance in a Snowy Environment. Animals. 2022. 12.spa
dc.relation.references113. West J, Schoene R, Luks A, Milledge J. Cardiovascular System, Capítulo 8 en: High Altitude Medicine and Physiology. CRC Press. Quinta Edición. 2013. 101- 120.spa
dc.relation.references114. Grandjean D, Sergheraert R, Valette J. P, Driss F. Biological and Nutritional Consequences of Work at High Altitude in Search and Rescue Dogs: The Scientific Expedition Chiens des Cimes-Licancabur 1996. The Journal of Nutrition. 1998. 128; 2669S-2697S.spa
dc.relation.references115. West J, Schoene R, Luks A, Milledge J. Central Nervous System, Capítulo 17 en: High Altitude Medicine and Physiology. CRC Press. Quinta Edición. 2013. 250- 263.spa
dc.relation.references116. Glaus T, Tomsa K, Hassig M, Reusch C. Echocardiographic Changes Induced by Moderate to Marked Hypobaric Hypoxia in Dogs. Veterinary Radiology Ultrasound. 2004. 3; 233-237.spa
dc.relation.references117. Sakai A, Takeshi I, Tomonobu K, Takayuki M. Pulmonary Adaptation to High Altitude in Wild Mammals, Capítulo 7 en: Problems of High Altitude Medicine and Biology, Aldashev A, Naeije R. Springer. 2007. 101-118.spa
dc.relation.references118. Prabhakar N, Semenza G. Oxygen Sensing and Homeostasis. Physiology. 2015. 30; 340-348.spa
dc.relation.references119. Ford R y Mazzaferro E. Evaluación de el paciente y examen de sistemas orgánicos, Sección 2 en: Kirk y Bistner, Urgencias en Veterinarias, Procedimientos y Terapéutica. El Sevier. Octava Edicion 2012. 321.spa
dc.relation.references120. Kamath M, Watanabe M, Upton A. Capitulo 2: Methodological Aspects of Heart Rate Variability Analysis, In: Heart Rate Variability (HRV) Signal Analysis, Clinical Applications. CRC Press. 2013. 10-43.spa
dc.relation.references121. West J, Schoene R, Luks A, Milledge J. Altitude acclimatization and deterioration, Capitulo 5 en: High Altitude Medicine and Physiology. CRC Press. Quinta Edición. 2013. 53-65.spa
dc.relation.references122. Shabana A, Ilies M. Drug Delivery to Hypoxic Tumors Targeting Carbonic Anhydrase IX. Capítulo 10 en ACS Symposium Series. Enero de 2019. American Chemical Societyspa
dc.relation.references123. Rodas G, Carballido C, Capdevila L. Variabilidad de la frecuencia cardiaca: concepto, medidad y relación con aspectos clinicos (I). Archivos de medicina del deporte. 2008. 25; 41-47.spa
dc.relation.references124. Nunan D, Sandercook G, Brodie D. A quantitative Systematic Review of Normal Values for Short-Term Heart Rate Variability in Healthy Adults. Pacing and Clinical Electrophysiology. 2010. 33; 1407-1417.spa
dc.relation.references125. Vargas Piero, Galindo V, Pedraza A, Vargas Pedro. Efectos del entrenamiento en Agility en gran altitud en perros Border Collie en algunas variables electrocardiográficas: análisis preliminar. Revista de Investigaciones Veterinarias del Peru. 2018. 29; 41-54spa
dc.relation.references126. Baisan R, Condurachi E, Vulpe V. Short-term heart-rate variability in healthy small and medium-sized dogs over a five-minute measuring period. Journal of Veterinary Research. 2020. 64; 161-167.spa
dc.relation.references127. Oliveira M, Muzzi R, Muzzi L, Ferreira D, Silva E. Heart rate variability and arrhythmias evaluated with Holter in dogs with degenerative mitral valve disease. Arquivo Brasileiro de Medicina Veterinária e Zootecnia. 2014. 66; 425-432.spa
dc.relation.references128. Chueainta P, Pongkan W, Chavalit B. Clinical applications of heart rate variability in dogs. Veterinary Integrative Sciences. 2019. 17; 195-220.spa
dc.relation.references129. Koenig J, Thayer J. Sex differences in healthy human heart rate variability: A meta-analysis. Neuroscience and Biobehavioral reviews. 2016. 63; 288-310.spa
dc.relation.references130. Lakatta E, DiFrancesco D. What keeps us tricking: a funny current, a calcium clock, or both? Journal of Molecular and Cellular Cardiology. 2009 (47) 157-170.spa
dc.relation.references131. Morad M, Zhang X. Mechanisms of spontaneois pacing: sniatrial nodal cells, neonatal cardiomyocytes, and human stem cell derived cardiomyocytes. Canadian Journal of Physiology and Pharmacology. 2017 (95) 1100-1107.spa
dc.relation.references132. Robinson R, Dun W, Boyden P. Autonomic modulation of sinoatrial node: Role of pacemaker current and calcium sensitive adenylyl cyclase isoforms. Progress in Biophysics and Molecular Biology. 2021 (166) 22-28.spa
dc.relation.references133. Hennis K, Biel M, Fenske S, Wahl-Schott C. Paradigm shift: new concepts for HCN4 function in cardiac pacemaking. European Journal of Physiology. 2022 (474) 649-663.spa
dc.relation.references134. Ravens U. Sex differences in cardiac electrophysiology. Canadian Journal of Physiology and Pharmacology. 2018 (96) 985-990.spa
dc.rights.accessrightsinfo:eu-repo/semantics/openAccessspa
dc.rights.licenseAtribución-NoComercial-SinDerivadas 4.0 Internacionalspa
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/spa
dc.subject.ddc590 - Animales::599 - Mamíferosspa
dc.subject.decsHypoxiaeng
dc.subject.decsHipoxiaspa
dc.subject.decsFrecuencia Cardíacaspa
dc.subject.decsHeart Rateeng
dc.subject.decsDogseng
dc.subject.decsPerrosspa
dc.subject.proposalVariabilidad de la Frecuencia Cardiacaspa
dc.subject.proposalPerrosspa
dc.subject.proposalHipoxia Hipobáricaspa
dc.subject.proposalBogotáspa
dc.subject.proposalHRVeng
dc.subject.proposalHypobaric Hypoxiaeng
dc.subject.proposalDogseng
dc.subject.proposalHigh altitudeeng
dc.subject.proposalGrandes altitudesspa
dc.titleVariabilidad de la Frecuencia Cardiaca (HRV) en caninos saludables, adultos, residentes en hipoxia hipobárica (Bogotá, 2600 m.s.n.m.)spa
dc.title.translatedHeart Rate Variability (HRV) in healthy, adults dogs, residents in hybobaric hypoxia (Bogotá, 2600 m.a.s.l.)eng
dc.typeTrabajo de grado - Maestríaspa
dc.type.coarhttp://purl.org/coar/resource_type/c_bdccspa
dc.type.coarversionhttp://purl.org/coar/version/c_ab4af688f83e57aaspa
dc.type.contentTextspa
dc.type.driverinfo:eu-repo/semantics/masterThesisspa
dc.type.redcolhttp://purl.org/redcol/resource_type/TMspa
dc.type.versioninfo:eu-repo/semantics/acceptedVersionspa
dcterms.audience.professionaldevelopmentEstudiantesspa
dcterms.audience.professionaldevelopmentInvestigadoresspa
dcterms.audience.professionaldevelopmentMaestrosspa
dcterms.audience.professionaldevelopmentPúblico generalspa
oaire.accessrightshttp://purl.org/coar/access_right/c_abf2spa

Archivos

Bloque original

Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
1013608945.2022.pdf
Tamaño:
3.06 MB
Formato:
Adobe Portable Document Format
Descripción:
Tesis de Maestría en Fisiología

Bloque de licencias

Mostrando 1 - 1 de 1
Cargando...
Miniatura
Nombre:
license.txt
Tamaño:
5.74 KB
Formato:
Item-specific license agreed upon to submission
Descripción: