持続的運動と比較して仕事量を減少させたレペティション運動が血管内皮機能に及ぼす影響
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| Published in | 体力科学 Vol. 68; no. 3; pp. 199 - 206 |
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| Main Authors | , , , , , |
| Format | Journal Article |
| Language | Japanese |
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一般社団法人日本体力医学会
01.06.2019
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0039-906X 1881-4751 |
| DOI | 10.7600/jspfsm.68.199 |
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| Author | 出口, 憲市 三浦, 哉 東, 亜弥子 橋本, 祐司 石川, みづき 田村, 靖明 |
|---|---|
| Author_xml | – sequence: 1 fullname: 三浦, 哉 organization: 徳島大学大学院社会産業理工学研究部 – sequence: 1 fullname: 石川, みづき organization: 徳島大学大学院総合科学教育部 – sequence: 1 fullname: 東, 亜弥子 organization: 徳島大学大学院総合科学教育部 – sequence: 1 fullname: 出口, 憲市 organization: 徳島県鳴門病院リハビリテーション部 – sequence: 1 fullname: 橋本, 祐司 organization: 徳島県鳴門病院リハビリテーション部 – sequence: 1 fullname: 田村, 靖明 organization: 徳島大学大学院総合科学教育部 |
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| References | 31) Bailey TG, Perissiou M, Windsor MT, Schulze K, Nam M, Magee R, Leicht AS, Green DJ, Greaves K, Golledge J, Askew CD. Effects of acute exercise on endothelial function in patients with abdominal aortic aneurysm. Am J Physiol Heart Circ Physiol 314: H19-H30, 2018. 14) Cosio-Lima LM, Thompson PD, Reynolds KL, Headley SA, Winter CR, Manos T, Lagasse MA, Todorovich JR, Germain M. The acute effect of aerobic exercise on brachial artery endothelial function in renal transplant recipients. Prev Cardiol 9: 211-214, 2006. 26) Guiraud T, Juneau M, Nigam A, Gayda M, Meyer P, Mekary S, Paillard F, Bosquet L. Optimization of high intensity interval exercise in coronary heart disease. Eur J Appl Physiol 108: 733-740, 2010. 15) Tinken TM, Thijssen DH, Hopkins N, Black MA, Dawson EA, Minson CT, Newcomer SC, Laughlin MH, Cable NT, Green DJ. Impact of shear rate modulation on vascular function in humans. Hypertension 54: 278-285, 2009. 19) Atkinson G, Batterham AM. Allometric scaling of diameter change in the original flow-mediated dilation protocol. Atherosclerosis 226: 425-427, 2013. 12) Corretti MC, Anderson TJ, Benjamin EJ, Celermajer D, Charbonneau F, Creager MA, Deanfield J, Drexler H, Gerhard-Herman M, Herrington D, Vallance P, Vita J, Vogel R. Guidelines for the ultrasound assessment of endothelial-dependent flow-mediated vasodilation of the brachial artery a report of the international brachial artery reactivity task force. J Am Coll Cardiol 39: 257-265, 2002. 13) Genta FT, Eleuteri E, Temporelli PL, Comazzi F, Tidu M, Bouslenko Z, Bertolin F, Vigorito C, Giannuzzi P, Giallauria F. Flow-mediated dilation normalization predicts outcome in chronic heart failure patients. J Cardiac Fail 19: 260-267, 2013. 4) Nickel KJ, Acree LS, Gardner AW. Effects of a single bout of exercise on arterial compliance in older adults. Angiology 62: 33-37, 2011. 6) Currie KD, McKelvie RS, Macdonald MJ. Flow-mediated dilation is acutely improved after high-intensity interval exercise. Med Sci Sports Exerc 44: 2057-2064, 2012. 21) Gnasso A, Carallo C, Irace C, De Franceschi MS, Mattioli PL, Motti C, Cortese C. Association between wall shear stress and flow-mediated vasodilation in healthy men. Atherosclerosis 156: 171-176, 2001. 7) 田村靖明, 三浦, 哉, 出口憲市, 東, 亜弥子, 橋本祐司, 石川みづき:レペティション形式の有酸素性運動が血管内皮機能に及ぼす影響, 体力科学, 66: 437-444, 2017. 8) 山地啓司. 最大酸素摂取量の科学, 杏林書院, 東京, 3-55, 2001. 22) Woodman RJ, Playford DA, Watts GF, Cheetham C, Reed C, Taylor RR, Puddey IB, Beilin LJ, Burke V, Mori TA & Green D. Improved analysis of brachial artery ultrasound using a novel edge-detection software system. J Appl Physiol 91: 929-937, 2001. 18) Atkinson G, Batterham AM. The percentage flow-mediated dilation index: A large-sample investigation of its appropriateness, potential for bias and causal nexus in vascular medicine. Vasc Med 18: 354-365, 2013. 27) Meyer P, Normandin E, Gayda M, Billon G, Guiraud T, Bosquet L, Fortier A, Juneau M, White M, Nigam A. High-intensity interval exercise in chronic heart failure: protocol optimization. J Card fail 18: 126-133, 2012. 30) Wadley AJ, Chen YW, Lip GY, Fisher JP, Aldred S. Low volume-high intensity interval exercise elicits antioxidant and anti-inflammatory effects in humans. J Sports Sci 34: 1-9, 2015. 29) 國友 勝:酸化ストレスと動脈硬化, YAKUGAKU ZASSHI 127: 1997-2014, 2007. 25) Pyke KE, Dwyer EM, Tschakovsky ME. Impact of controlling shear rate on flow-mediated dilation responses in the brachial artery of humans. J Appl Physiol 97: 499-508, 2004. 23) Duffy SJ, Castle SF, Harper RW, Meredith IT. Contribution of vasodilator prostanoids and nitric oxide to resting flow, metabolic vasodilation, and flow-mediated dilation in human coronary circulation. Circulation 100: 1951-1957, 1999. 24) Betik AC, Luckham VB, Hughson RL. Flow-mediated dilation in human brachial artery after different circulatory occlusion conditions. Am J Physiol Heart Circ Physiol 286: 442-448, 2004. 10) Billat LV. Interval Training for Performance: A scientific and empirical practice special recommendations for middle- and long-distance running. Part I: Aerobic interval training. Sports Med 31: 13-31, 2001. 11) 循環器病の診断と治療に関するガイドライン2013, 血管機能の非侵襲的評価方法に関するガイドライン. http://www.j-circ.or.jp/guideline/(閲覧日2018年12月25日 5) Rakobowchuk M, Tanguay S, Burgomaster KA, Howarth KR, Gibala MJ, MacDonald MJ. Sprint interval and traditional endurance training induce similar improvements in peripheral arterial stiffness and flow-mediated dilation in healthy humans. Am J Physiol Regul Integr Comp Physiol 295: R236-R242, 2008. 16) Birk GK, Dawson EA, Batterham AM, Atkinson G, Cable T, Thijssen DH, Green DJ. Effects of exercise intensity on flow mediated dilation in healthy humans. Int J Sports Med 34: 409-414, 2013. 20) Davies PF, Tripathi SC. Mechanical stress mechanisms and the cell. An endothelial paradigm. Circ Res 72: 239-245, 1993. 1) Haskell WL, Lee IM, Pate RR, Powell KE, Blair SN, Franklin BA, Macera CA, Heath GW, Thompson PD, Bauman A. Physical activity and public health: updated recommendation for adults from the American College of Sports Medicine and the American Heart Association. Circulation 116: 1081-1093, 2007. 3) Goto C, Higashi Y, Kimura M, Noma K, Hara K, Nakagawa K, Kawamura M, Chayama K, Yoshizumi M, Nara I. Effect of different intensities of exercise on endothelium-dependent vasodilation in humans role of endothelium-dependent nitric oxide and oxidative stress. Circulation 108: 530-535, 2003. 17) Ciolac EG, Bocchi EA, Bortolotto LA, Carvalho VO, Greve JMD, Guimaraes GV. Effects of high-intensity aerobic interval training vs. moderate exercise on hemodynamic, metabolic and neuro-humoral abnormalities of young normotensive women at high familial risk for hypertension. Hypertens Res 33: 836-843, 2010. 2) Kingwell BA, Berry KL, Cameron JD, Jennings GL, Dart AM. Arterial compliance increases after moderate-intensity cycling. Am J Physiol 273: 2186-2191, 1997. 9) American College of Sports Medicine position stand. The recommended quantity and quality of exercise for developing and maintaining cardiorespiratory and muscular fitness in healthy adults. Med Sci Sports Exerc 22: 265-274, 1990. 28) Guiraud T, Nigam A, Juneau M, Meyer P, Gayda M, Bosquet L. Acute responses to high-intensity intermittent exercise in CHD patients. Med Sci Sports Exerc 43: 211-217, 2011. |
| References_xml | – reference: 29) 國友 勝:酸化ストレスと動脈硬化, YAKUGAKU ZASSHI 127: 1997-2014, 2007. – reference: 18) Atkinson G, Batterham AM. The percentage flow-mediated dilation index: A large-sample investigation of its appropriateness, potential for bias and causal nexus in vascular medicine. Vasc Med 18: 354-365, 2013. – reference: 10) Billat LV. Interval Training for Performance: A scientific and empirical practice special recommendations for middle- and long-distance running. Part I: Aerobic interval training. Sports Med 31: 13-31, 2001. – reference: 5) Rakobowchuk M, Tanguay S, Burgomaster KA, Howarth KR, Gibala MJ, MacDonald MJ. Sprint interval and traditional endurance training induce similar improvements in peripheral arterial stiffness and flow-mediated dilation in healthy humans. Am J Physiol Regul Integr Comp Physiol 295: R236-R242, 2008. – reference: 11) 循環器病の診断と治療に関するガイドライン2013, 血管機能の非侵襲的評価方法に関するガイドライン. http://www.j-circ.or.jp/guideline/(閲覧日2018年12月25日). – reference: 21) Gnasso A, Carallo C, Irace C, De Franceschi MS, Mattioli PL, Motti C, Cortese C. Association between wall shear stress and flow-mediated vasodilation in healthy men. Atherosclerosis 156: 171-176, 2001. – reference: 28) Guiraud T, Nigam A, Juneau M, Meyer P, Gayda M, Bosquet L. Acute responses to high-intensity intermittent exercise in CHD patients. Med Sci Sports Exerc 43: 211-217, 2011. – reference: 22) Woodman RJ, Playford DA, Watts GF, Cheetham C, Reed C, Taylor RR, Puddey IB, Beilin LJ, Burke V, Mori TA & Green D. Improved analysis of brachial artery ultrasound using a novel edge-detection software system. J Appl Physiol 91: 929-937, 2001. – reference: 20) Davies PF, Tripathi SC. Mechanical stress mechanisms and the cell. An endothelial paradigm. Circ Res 72: 239-245, 1993. – reference: 3) Goto C, Higashi Y, Kimura M, Noma K, Hara K, Nakagawa K, Kawamura M, Chayama K, Yoshizumi M, Nara I. Effect of different intensities of exercise on endothelium-dependent vasodilation in humans role of endothelium-dependent nitric oxide and oxidative stress. Circulation 108: 530-535, 2003. – reference: 27) Meyer P, Normandin E, Gayda M, Billon G, Guiraud T, Bosquet L, Fortier A, Juneau M, White M, Nigam A. High-intensity interval exercise in chronic heart failure: protocol optimization. J Card fail 18: 126-133, 2012. – reference: 4) Nickel KJ, Acree LS, Gardner AW. Effects of a single bout of exercise on arterial compliance in older adults. Angiology 62: 33-37, 2011. – reference: 8) 山地啓司. 最大酸素摂取量の科学, 杏林書院, 東京, 3-55, 2001. – reference: 17) Ciolac EG, Bocchi EA, Bortolotto LA, Carvalho VO, Greve JMD, Guimaraes GV. Effects of high-intensity aerobic interval training vs. moderate exercise on hemodynamic, metabolic and neuro-humoral abnormalities of young normotensive women at high familial risk for hypertension. Hypertens Res 33: 836-843, 2010. – reference: 30) Wadley AJ, Chen YW, Lip GY, Fisher JP, Aldred S. Low volume-high intensity interval exercise elicits antioxidant and anti-inflammatory effects in humans. J Sports Sci 34: 1-9, 2015. – reference: 12) Corretti MC, Anderson TJ, Benjamin EJ, Celermajer D, Charbonneau F, Creager MA, Deanfield J, Drexler H, Gerhard-Herman M, Herrington D, Vallance P, Vita J, Vogel R. Guidelines for the ultrasound assessment of endothelial-dependent flow-mediated vasodilation of the brachial artery a report of the international brachial artery reactivity task force. J Am Coll Cardiol 39: 257-265, 2002. – reference: 9) American College of Sports Medicine position stand. The recommended quantity and quality of exercise for developing and maintaining cardiorespiratory and muscular fitness in healthy adults. Med Sci Sports Exerc 22: 265-274, 1990. – reference: 7) 田村靖明, 三浦, 哉, 出口憲市, 東, 亜弥子, 橋本祐司, 石川みづき:レペティション形式の有酸素性運動が血管内皮機能に及ぼす影響, 体力科学, 66: 437-444, 2017. – reference: 16) Birk GK, Dawson EA, Batterham AM, Atkinson G, Cable T, Thijssen DH, Green DJ. Effects of exercise intensity on flow mediated dilation in healthy humans. Int J Sports Med 34: 409-414, 2013. – reference: 1) Haskell WL, Lee IM, Pate RR, Powell KE, Blair SN, Franklin BA, Macera CA, Heath GW, Thompson PD, Bauman A. Physical activity and public health: updated recommendation for adults from the American College of Sports Medicine and the American Heart Association. Circulation 116: 1081-1093, 2007. – reference: 14) Cosio-Lima LM, Thompson PD, Reynolds KL, Headley SA, Winter CR, Manos T, Lagasse MA, Todorovich JR, Germain M. The acute effect of aerobic exercise on brachial artery endothelial function in renal transplant recipients. Prev Cardiol 9: 211-214, 2006. – reference: 31) Bailey TG, Perissiou M, Windsor MT, Schulze K, Nam M, Magee R, Leicht AS, Green DJ, Greaves K, Golledge J, Askew CD. Effects of acute exercise on endothelial function in patients with abdominal aortic aneurysm. Am J Physiol Heart Circ Physiol 314: H19-H30, 2018. – reference: 15) Tinken TM, Thijssen DH, Hopkins N, Black MA, Dawson EA, Minson CT, Newcomer SC, Laughlin MH, Cable NT, Green DJ. Impact of shear rate modulation on vascular function in humans. Hypertension 54: 278-285, 2009. – reference: 19) Atkinson G, Batterham AM. Allometric scaling of diameter change in the original flow-mediated dilation protocol. Atherosclerosis 226: 425-427, 2013. – reference: 2) Kingwell BA, Berry KL, Cameron JD, Jennings GL, Dart AM. Arterial compliance increases after moderate-intensity cycling. Am J Physiol 273: 2186-2191, 1997. – reference: 6) Currie KD, McKelvie RS, Macdonald MJ. Flow-mediated dilation is acutely improved after high-intensity interval exercise. Med Sci Sports Exerc 44: 2057-2064, 2012. – reference: 24) Betik AC, Luckham VB, Hughson RL. Flow-mediated dilation in human brachial artery after different circulatory occlusion conditions. Am J Physiol Heart Circ Physiol 286: 442-448, 2004. – reference: 13) Genta FT, Eleuteri E, Temporelli PL, Comazzi F, Tidu M, Bouslenko Z, Bertolin F, Vigorito C, Giannuzzi P, Giallauria F. Flow-mediated dilation normalization predicts outcome in chronic heart failure patients. J Cardiac Fail 19: 260-267, 2013. – reference: 25) Pyke KE, Dwyer EM, Tschakovsky ME. Impact of controlling shear rate on flow-mediated dilation responses in the brachial artery of humans. J Appl Physiol 97: 499-508, 2004. – reference: 26) Guiraud T, Juneau M, Nigam A, Gayda M, Meyer P, Mekary S, Paillard F, Bosquet L. Optimization of high intensity interval exercise in coronary heart disease. Eur J Appl Physiol 108: 733-740, 2010. – reference: 23) Duffy SJ, Castle SF, Harper RW, Meredith IT. Contribution of vasodilator prostanoids and nitric oxide to resting flow, metabolic vasodilation, and flow-mediated dilation in human coronary circulation. Circulation 100: 1951-1957, 1999. |
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| Title | 持続的運動と比較して仕事量を減少させたレペティション運動が血管内皮機能に及ぼす影響 |
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