ABC | Volume 115, Nº1, Julho 2020

Artigo Original Perrier-Melo et al. Hipotensão pós-exercício: intervalado versus contínuo Arq Bras Cardiol. 2020; 115(1):5-14 14. Bundy JD, Li C, Stuchlik P, Bu X, Kelly TN, Mills KT, et al. Systolic blood pressure reduction and risk of cardiovascular disease and mortality a systematic review andnetworkmeta-analysis. JAMACardiol.2017;2(7):775-81. 15. Whelton PK, He J, Appel LJ, Cutler JA, Havas S, Kotchen TA, et al. Primary preventionofhypertension:clinicalandpublichealthadvisoryfromTheNational HighBloodPressureEducationProgram. JAMA.2002;288(15):1882-8. 16. Brito LC, Fecchio RY, Peçanha T, Andrade-Lima A, Halliwill JR, Forjaz CLM, et al.Post-exercisehypotensionasaclinicaltool:a‘“singlebrick”’ inthewall.JAm Hypertens.2018;12(12):e59-64. 17. Milanović Z, Sporiš G, Weston M. Effectiveness of High-Intensity Interval Training(HIT)andContinuousEnduranceTrainingforVO2maximprovements: a systematic review and meta-analysis of controlled trials. Sports Med. 2015;45(10):1469-81. 18. Ramos JS, Dalleck LC, Tjonna AE, Beetham KS, Coombes JS. The Impact of high-intensity interval training versus moderate-intensity continuous training on vascular function : a systematic review and meta-analysis. Sports Med. 2015;45(5):679-92. 19. Costa EC, Hay JL, Kehler DS, Boreskie KF, Arora RC, Umpierre D, et al. Effects ofhigh-intensity intervaltrainingversusmoderate- intensitycontinuoustraining on blood pressure in adults with pre- to established hypertension: a systematic reviewandmeta-analysisofrandomizedtrials.SportsMed.2018;48(9):2127-42. 20. LiberatiA,AltmanDG,TetzlaffJ,MulrowC,GøtzschePC,IoannidisJP,etal.The PRISMAstatementforreportingsystematicreviewsandmeta-analysesofstudies thatevaluatehealthcareint erventions:explanationandelaboration.PLoSMed . 2009;6(7):e1000100. 21. Cornelissen VA, Smart NA. Exercise training for blood pressure: a systematic reviewandmeta-analysis. JAmHeartAssoc.2013;2(1):e004473. 22. WestonKS,WisloffU,CoombesJS.High-intensityintervaltraininginpatientswith lifestyle-inducedcardiometabolicdisease:asystematicreviewandmeta-analysis. Br JSportsMed.2014;48(16):1227-34. 23. Garber CE, Blissmer B, Deschenes MR, Franklin BA, Lamonte MJ, Lee IM, et al. American College of Sports Medicine position stand. Quantity and quality of exercise for developing andmaintaining cardiorespiratory, musculoskeletal, and neuromotor fitness in apparently healthy adults: guidance for prescribing exercise..MedSciSportsExerc.2011;43(7):1334-59. 24. SmartNA,WaldronM,IsmailHetal.Validationofanewtoolfortheassessment ofstudyqualityandreportinginexercisetrain ingstudies:TESTEX.IntJEvidBased Healthc.2015;13(1):9-18. 25. Higgins JP, Thompson SG, Deeks JJ, Altman DG. Measuring inconsistency in meta-analyses.BMJ.2003;327(7414):557-60. 26. Rossow L, Yan H, Fahs CA, Ranadive SM, Agiovlasitis S, Wilund KR, et al. Postexercise hypotension in an endurance-trained population of men and womenfollowinghigh-intensityintervalandsteady-statecycling.AmJHypertens. 2010;23(4):358-67. 27. Angadi SS, Bhammar DM, Gaesser GA. Postexercise hypotension after continuous, aerobic interval, and sprint interval exercise. J Strength Cond Res. 2015;29(10):2888-93. 28. FollmannD, Elliot P, Suh I, Cutler J. Variance imputation for overviews of clinical trialswithcontinuousresponse. JClinEpidemiol.1992;45(7):769-73. 29. Costa EC, Dantas TC, Farias-Junior LF, Frazão DT, Prestes J, Moreira SR,et al. Inter-andintra-individualanalysisofpost-exercisehypotensionfollowingasingle boutofhigh-intensityintervalexerciseandcontinuo usexercise:apilotstudy.Int JSportsMed.2016;37(13):1038-43. 30. Costa EC, Kent DE, Boreskie KF .Acute effect of high-intensity interval vs. moderate-intensity continuous exercise on blood pressure and arterial compliance in hypertensive women with arterial stiffness. Journal Strengh and ConditioningResearch.2020 [aheadprint] 31. Mourot L, Bouhaddi M, Tordi N, Rouillon JD, Regnard J. Short- and long-term effectsofasingleboutofexerciseonheartratevariability:Comparisonbetween constantandintervaltrainingexercises.EurJApplPhysiol.2004;92(4-5):508-17. 32. LacombeSP,GoodmanJM,SpraggCM,LiuS,ThomasSG.Intervalandcontinuous exercise elicit equivalent postexercise hypotension in prehypertensive men, despitedifferencesinregulation.ApplPhysiolNutrMetab.2011;36(6):881-91. 33. GrahamMJ, Lucas SJ, Francois ME, Stavrianeas S, Parr EB, Thomas KN, et al. Low-volume intenseexerciseelicitspost-exercisehypotensionandsubsequent hypervolemia,irrespectiveofwhichlimbsareexercised.FrontPhysiol.2016May 31;7:199. 34. Morales-PalomoF,Ramirez-JimenezM,OrtegaJFetal.Acutehypotensionafter high-Intensityintervalexerciseinmetabolicsyndromepatients.IntJSportsMed. 2017;38(7):560-7. 35. Santos JM, Gouveia MC, Souza Jr FA, Silva Rodrigues CE, Santos JM, Oliveira AJS, et al. Effect of a high-intensity interval training session on post-exercise hypotension and autonomic cardiac activity in hypertensive elderly subjects. J ExercPhysiol.2018;21(3):58-70. 36. Maya ATD, Assunção MJ, Brito CJ, Vieira E, Rosa TS, Pereira FB, et al. High- intensity interval aerobic exercise induced a longer hypotensive effect when comparedtocontinuousmoderate.SportSciHealth.2018;14(2):379-85. 37. Boeno FP, Ramis TR, Farinha JB, Moritz C, Santos VP, Oliveira AR, et al. Hypotensiveresponsetocontinuousaerobicandhigh-intensityintervalexercise matchedbyvolumeinsedentarysubjects.IntJCardiovascSci.2019;32(1):48-54. 38. Pimenta FC, Montrezol FT, Dourado VZ, Silva LFM, Borba GA, Oliveira Vieira W,etal.High-intensity intervalexercisepromotespost-exercisehypotensionof greater magnitude compared to moderate-intensity continuous exercise. Eur J ApplPhysiol.2019;119(5):1235-43. 39. Forjaz CL, Cardoso CG Jr, Rezk CC, Santaella DF, Tinucci T. Postexercise hypotensionandhe modinamics:theroleofexerciseintensity.JSportsMedPhys Fitness.2004;44(1):54-62. 40. MacDonaldJR,MacDougallJD,HogbenCD.Theeffectsofexercisedurationon post-exercisehypotension. JHumHypertens.2000;14(2):125-9. 41. Cunha GA, Rios ACS, Moreno JR, Braga PL, Campbell CSG, Simões HG, et al. Post-exercise hypotension in hypertensive individuals submitted to aerobic exercisesofalternated intensitiesandconstant intensity-exercise.RevBrasMed Esporte.2006;12(6):313-7. 42. Jones H, George K, Edwards B, Atkinson G. Is the magnitude of acute post- exercise hypotension mediated by exercise intensity or total work done? Eur J ApplPhysiol.2007;102(1):33-40. 43. Halliwill JR, Buck TM, Lacewell AN, Romero SA. Postexercise hypotension and sustained postexercise vasodilatation: what happens after we exercise? Exp Physiol.2013;98(1):7-18. 44. BritoLCde,RezendeRA,SilvaJrND,TinucciT,CasariniDE,Cipolla-NetoJ,etal. Post-exercisehypotensionand itsmechanismsdifferaftermorningandevening exercise:arandomizedcrossoverstudy.PLoSOne. 2015;10(7):e0132458. 45. Chen CY, Bonham AC. Postexercise hypotension : central mechanisms. Exerc SportSciRev.2010;38(3):122-7. 46. Halliwill JR, Dinenno FA, Dietz NM. Alpha-adrenergic vascular responsiveness duringpostexercisehypotension inhumans. JPhysiol.2003;550(Pt1):279-86. 47. Floras JS, Sinkey CA, Aylward PE, Seals DR, Thoren PN, Mark AL. Postexercise hypotension and sympathoinhibition in borderline hypertensive men. Hypertension.1989;14(1):28-35. 48. Santana HA, Moreira SR, Asano RY, Sales MM, Córdova C, Campbell CS, et al. Exercise intensity modulates nitric oxide and blood pressure responses in hypertensiveolderwomen.AgingClinExpRes.2013;25(1):43-8. 49. HalliwillJR,MinsonCT,JoynerMJ.Effectofsystemicnitricoxidesynthaseinhibition onpostexercisehypotension inhumans. JApplPhysiol.2000;89(5):1830-6. 50. Brito LC, Queiroz AC, Forjaz CL. Influence of population and exercise protocol characteristics on hemodynamic determinants of post-aerobic exercise hypotension.Braz JMedBiolRes.2014;47(8):626-36. Este é um artigo de acesso aberto distribuído sob os termos da licença de atribuição pelo Creative Commons 14

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