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type=\u0022text\/css\u0022 rel=\u0022stylesheet\u0022 href=\u0022\/\/d282kpwvnogo5m.cloudfront.net\/sites\/default\/files\/cdn\/css\/http\/css_Xg7z6oCTVgud_Q0huYz9x9iiD5H_2YPSJ5z2ZViSWdY.css\u0022 media=\u0022all\u0022 \/\u003E\n\u003Clink rel=\u0027stylesheet\u0027 type=\u0027text\/css\u0027 href=\u0027\/sites\/all\/modules\/contrib\/panels\/plugins\/layouts\/onecol\/onecol.css\u0027 \/\u003E\u003C\/head\u003E\u003Cbody\u003E\u003Cdiv class=\u0022panels-ajax-tab-panel panels-ajax-tab-panel-sageoa-tab-art\u0022\u003E\u003Cdiv class=\u0022panel-display panel-1col clearfix\u0022 \u003E\n  \u003Cdiv class=\u0022panel-panel panel-col\u0022\u003E\n    \u003Cdiv\u003E\u003Cdiv class=\u0022panel-pane pane-highwire-markup\u0022 \u003E\n  \n      \n  \n  \u003Cdiv class=\u0022pane-content\u0022\u003E\n    \u003Cdiv class=\u0022highwire-markup\u0022\u003E\u003Cdiv xmlns=\u0022http:\/\/www.w3.org\/1999\/xhtml\u0022 id=\u0022content-block-markup\u0022 xmlns:xhtml=\u0022http:\/\/www.w3.org\/1999\/xhtml\u0022\u003E\u003Cdiv class=\u0022article fulltext-view \u0022\u003E\u003Cspan class=\u0022highwire-journal-article-marker-start\u0022\u003E\u003C\/span\u003E\u003Cdiv class=\u0022section abstract\u0022 id=\u0022abstract-1\u0022\u003E\u003Ch2\u003ESummary\u003C\/h2\u003E\n            \u003Cp id=\u0022p-1\u0022\u003EThe risk-versus-benefit that is associated with sports in patients with hypertension has received a great deal of attention over the past several years, particularly related to sudden cardiac death in hypertensive athletes. While exercise is associated with lower overall cardiovascular morbidity and mortality, the risk of sudden death is increased during or immediately after exertion.\u003C\/p\u003E\n         \u003C\/div\u003E\u003Cul class=\u0022kwd-group\u0022\u003E\u003Cli class=\u0022kwd\u0022\u003EHypertensive Disease\u003C\/li\u003E\u003C\/ul\u003E\u003Cp id=\u0022p-2\u0022\u003EThe risk-versus-benefit that is associated with sports in patients with hypertension has received a great deal of attention over the past several years, particularly related to sudden cardiac death in hypertensive athletes. While exercise is associated with lower overall cardiovascular morbidity and mortality, the risk of sudden death is increased during or immediately after exertion. Robert Fagard, MD, PhD, KU Leuven University, Leuven, Belgium, discussed this paradox and what we now know about risk in this population.\u003C\/p\u003E\u003Cp id=\u0022p-3\u0022\u003EThe risk of exercise-related sudden death is higher among men (vs women), and this risk increases with age and exercise intensity. The gender disparity may be explained by the lower study participation rates, lower intensity of sports activities, and lower prevalence of ischemic heart disease for women compared with men. There are risk factors that appear to contribute to exercise-related sudden death such as hypertension, hypercholesterolemia, smoking, and preexisting heart disease\/cardiovascular abnormalities. Atherosclerotic coronary artery disease is commonly found in victims of exercise related sudden death aged above 35 years (\u223c75% of cases). Congenital heart disease, such as hypertrophic cardiomyopathy (\u223c33% of cases) and anomalies of the coronary arteries, are often found in younger patients aged under 35 years. However, 30% to 75% of victims report at least one prodromal symptoms prior to the incident of exercise-related sudden death. Therefore, there may be an opportunity to prevent exercise-related mortality by paying close attention to prodromal symptoms such as chest discomfort or pain, angina pectoris, impaired exercise tolerance, fatigue, dizziness, syncope, arrhythmias, and stomach aches [Fagard R, Staessen J, Vanhees L, Amery A. In: Sports Cardiology eds. Fagard RH \u0026amp; Bekaert IE, Martinus Nijhoff Publishers, 1986].\u003C\/p\u003E\u003Cp id=\u0022p-4\u0022\u003EAccording to results from the LIFE study, evaluating physical activity in patients with hypertension and left ventricular hypertrophy, modest exercise (\u0026gt;30 minutes twice weekly) significantly reduced the risk of cardiovascular death, stroke, myocardial infarction (MI), and all-cause mortality [Fossum E et al. \u003Cem\u003EJ Intern Med\u003C\/em\u003E 2007]. In an earlier study by Myers and colleagues, low exercise capacity was found to be a powerful predictor of mortality, independent from other risk factors for cardiovascular disease, including hypertension [Myers J et al. \u003Cem\u003EN Engl J Med\u003C\/em\u003E 2002].\u003C\/p\u003E\u003Cp id=\u0022p-5\u0022\u003EAerobic endurance training and dynamic resistance training may decrease blood pressure and have a favorable impact on other cardiovascular risk factors, but there are diagnostic measurements that may assist with risk management for hypertensive patients prior to athletic participation [Cornelissen VA \u0026amp; Fagard RH. \u003Cem\u003EHypertension\u003C\/em\u003E 2005]. ESH-ESC guidelines recommend a comprehensive diagnostic evaluation, including history and physical examination, blood pressure monitoring, blood panel (hemoglobin, hematocrit, potassium, creatinine, uric acid, glucose, and lipids), urine panel (microscopic, glucose, and protein analysis), and electrocardiography, with additional tests based on these findings and the severity of hypertension [ESH-ESC Guidelines. \u003Cem\u003EJ Hypertension\u003C\/em\u003E 2007]. Clinicians should also consider echocardiography and exercise testing with ECG and blood pressure monitoring, and extended evaluation in cases of associated clinical conditions, for competitive athletes with hypertension, and further pretraining screening, including ECG, exercise testing, and holter monitoring, dependent upon intensity of anticipated exercise, disease risk, and associated clinical conditions or symptoms, for hypertensive patients who intend to participate in recreational sports.\u003C\/p\u003E\u003Cp id=\u0022p-6\u0022\u003ESports and physical activity can be beneficial in hypertensive patients, provided that concomitant risk is determined prior to participation in such activities. The rate of exercise-related mortality may be reduced if proper attention is given to preexisting risk and prodromal symptoms. Clinicians should also consider evaluating individual patient risk according to ESH\/ESC guidelines, symptoms, and further prescreening results before making exercise recommendations.\u003C\/p\u003E\u003Cul class=\u0022copyright-statement\u0022\u003E\u003Cli class=\u0022fn\u0022 id=\u0022copyright-statement-1\u0022\u003E\u00a9 2010 MD Conference Express\u003C\/li\u003E\u003C\/ul\u003E\u003Cspan class=\u0022highwire-journal-article-marker-end\u0022\u003E\u003C\/span\u003E\u003C\/div\u003E\u003Cspan id=\u0022related-urls\u0022\u003E\u003C\/span\u003E\u003C\/div\u003E\u003Ca href=\u0022http:\/\/mdc.sagepub.com\/content\/10\/5\/18.abstract\u0022 class=\u0022hw-link hw-link-article-abstract\u0022 data-icon-position=\u0022\u0022 data-hide-link-title=\u00220\u0022\u003EView Summary\u003C\/a\u003E\u003C\/div\u003E  \u003C\/div\u003E\n\n  \n  \u003C\/div\u003E\n\u003C\/div\u003E\n  \u003C\/div\u003E\n\u003C\/div\u003E\n\u003C\/div\u003E\u003Cscript type=\u0022text\/javascript\u0022 src=\u0022http:\/\/mdc.sagepub.com\/sites\/all\/modules\/highwire\/highwire\/plugins\/highwire_markup_process\/js\/highwire_openurl.js?nzmr4q\u0022\u003E\u003C\/script\u003E\n\u003C\/body\u003E\u003C\/html\u003E"}