冠動脈分野の2023年の進歩

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Published in日本心臓血管外科学会雑誌 Vol. 53; no. 5; pp. 308 - 311
Main Author 本田, 賢太朗
Format Journal Article
LanguageJapanese
Published 特定非営利活動法人 日本心臓血管外科学会 15.09.2024
Online AccessGet full text
ISSN0285-1474
1883-4108
DOI10.4326/jjcvs.53.308

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Author 本田, 賢太朗
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References 16) Ford TJ, Yii E, Sidik N et al. Ischemia and no obstructive coronary artery disease: prevalence and correlates of coronary vasomotion disorders. Circ Cardiovasc Interv 2019; 12: e008126.
13) Del Buono MG, Montone RA, Camilli M et al. Coronary microvascular dysfunction across the spectrum of cardiovascular diseases: JACC state-of-the-art review. J Am Coll Cardiol 2021; 78: 1352-71.
17) Honda K, Yuzaki M, Kaneko M et al. Functional evaluation of the myocardial ischemia after coronary artery bypass surgery using coronary flow velocity reserve in left ventricular hypertrophy. Semin Thorac Cardiovasc Surg 2019; 31: 166-73.
9) Koshy AN, Stone GW, Sartori S et al. Outcomes following percutaneous coronary intervention in patients with multivessel disease who were recommended for but declined coronary artery bypass graft surgery. J Am Heart Assoc 2024; 13: 1-11.
8) .
2) Lawton JS, Tamis-Holland JE, Bangalore S et al. 2021 ACC/AHA/SCAI Guideline for Coronary Artery Revascularization: a report of the American College of Cardiology/American Heart Association Joint Committee on clinical practice guidelines. Circulation 2022; 145: e18-114.
14) Mehta PK, Quesada O, Al-Badri A et al. Ischemia and no obstructive coronary arteries in patients with stable ischemic heart disease. Int J Cardiol 2022; 348: 1-8.
4) Saito T, Kurazumi H, Suzuki R et al. Perivascular adipose tissue is a major source of nitric oxide in saphenous vein grafts harvested via the no-touch technique. J Am Heart Assoc 2022; 11: e020637.
3) Hochman JS, Anthopolos R, Reynolds HR et al. Survival after invasive or conservative management of stable coronary disease. Circulation 2023; 147: 8-19.
12) Crea F, Montone RA, Rinaldi R. Pathophysiology of coronary microvascular dysfunction. Circ J 2022; 86: 1319-28.
15) Mohammed AA, Zhang H, Abdu FA et al. Effect of nonobstructive coronary stenosis on coronary microvascular dysfunction and long-term outcomes in patients with INOCA. Clin Cardiol 2023; 46: 204-13.
5) Taggart DP, Benedetto U, Gerry S et al. Bilateral versus single internal-thoracic-artery grafts at 10 years. N Engl J Med 2019; 380: 437-46.
20) Yang Z, Liu Y, Li Z et al. Coronary microvascular dysfunction and cardiovascular disease: pathogenesis, associations and treatment strategies. Biomed Pharmacother 2023; 164: 115011.
7) Aboul Hassan SS, Awad AK, Stankowski T et al. Impact of incomplete revascularization on long-term survival based on revascularization strategy. Ann Thorac Surg 2024 (in press). https://www.sciencedirect.com/science/article/pii/S0003497524003746
19) Salvatore T, Galiero R, Caturano A et al. Coronary microvascular dysfunction in diabetes mellitus: pathogenetic mechanisms and potential therapeutic options. Biomedicines 2022; 10: 1-36.
6) Gaudino M, Bakaeen FG, Benedetto U et al. Arterial grafts for coronary bypass. Circulation 2019; 140: 1273-84.
18) Honda K, Yuzaki M, Kaneko M et al. Functional assessment of improvement of myocardial ischemia using coronary flow velocity reserve after coronary artery bypass surgery in hemodialysis. J Card Surg 2019; 34: 663-9.
11) <JCS2022_CAD update.pdf>.
10) Ding T, Yuan X, Chen K et al. Simultaneous hybrid coronary revascularization vs conventional strategies for multivessel coronary artery disease: a 10-year follow-up. JACC Cardiovasc Interv 2023; 16: 50-60.
1) Maron DJ, Hochman JS, Reynolds HR et al. Initial invasive or conservative strategy for stable coronary disease. N Engl J Med 2020; 382: 1395-407.
References_xml – reference: 19) Salvatore T, Galiero R, Caturano A et al. Coronary microvascular dysfunction in diabetes mellitus: pathogenetic mechanisms and potential therapeutic options. Biomedicines 2022; 10: 1-36.
– reference: 17) Honda K, Yuzaki M, Kaneko M et al. Functional evaluation of the myocardial ischemia after coronary artery bypass surgery using coronary flow velocity reserve in left ventricular hypertrophy. Semin Thorac Cardiovasc Surg 2019; 31: 166-73.
– reference: 8) .
– reference: 4) Saito T, Kurazumi H, Suzuki R et al. Perivascular adipose tissue is a major source of nitric oxide in saphenous vein grafts harvested via the no-touch technique. J Am Heart Assoc 2022; 11: e020637.
– reference: 13) Del Buono MG, Montone RA, Camilli M et al. Coronary microvascular dysfunction across the spectrum of cardiovascular diseases: JACC state-of-the-art review. J Am Coll Cardiol 2021; 78: 1352-71.
– reference: 10) Ding T, Yuan X, Chen K et al. Simultaneous hybrid coronary revascularization vs conventional strategies for multivessel coronary artery disease: a 10-year follow-up. JACC Cardiovasc Interv 2023; 16: 50-60.
– reference: 15) Mohammed AA, Zhang H, Abdu FA et al. Effect of nonobstructive coronary stenosis on coronary microvascular dysfunction and long-term outcomes in patients with INOCA. Clin Cardiol 2023; 46: 204-13.
– reference: 14) Mehta PK, Quesada O, Al-Badri A et al. Ischemia and no obstructive coronary arteries in patients with stable ischemic heart disease. Int J Cardiol 2022; 348: 1-8.
– reference: 1) Maron DJ, Hochman JS, Reynolds HR et al. Initial invasive or conservative strategy for stable coronary disease. N Engl J Med 2020; 382: 1395-407.
– reference: 6) Gaudino M, Bakaeen FG, Benedetto U et al. Arterial grafts for coronary bypass. Circulation 2019; 140: 1273-84.
– reference: 18) Honda K, Yuzaki M, Kaneko M et al. Functional assessment of improvement of myocardial ischemia using coronary flow velocity reserve after coronary artery bypass surgery in hemodialysis. J Card Surg 2019; 34: 663-9.
– reference: 12) Crea F, Montone RA, Rinaldi R. Pathophysiology of coronary microvascular dysfunction. Circ J 2022; 86: 1319-28.
– reference: 7) Aboul Hassan SS, Awad AK, Stankowski T et al. Impact of incomplete revascularization on long-term survival based on revascularization strategy. Ann Thorac Surg 2024 (in press). https://www.sciencedirect.com/science/article/pii/S0003497524003746
– reference: 11) <JCS2022_CAD update.pdf>.
– reference: 16) Ford TJ, Yii E, Sidik N et al. Ischemia and no obstructive coronary artery disease: prevalence and correlates of coronary vasomotion disorders. Circ Cardiovasc Interv 2019; 12: e008126.
– reference: 5) Taggart DP, Benedetto U, Gerry S et al. Bilateral versus single internal-thoracic-artery grafts at 10 years. N Engl J Med 2019; 380: 437-46.
– reference: 2) Lawton JS, Tamis-Holland JE, Bangalore S et al. 2021 ACC/AHA/SCAI Guideline for Coronary Artery Revascularization: a report of the American College of Cardiology/American Heart Association Joint Committee on clinical practice guidelines. Circulation 2022; 145: e18-114.
– reference: 9) Koshy AN, Stone GW, Sartori S et al. Outcomes following percutaneous coronary intervention in patients with multivessel disease who were recommended for but declined coronary artery bypass graft surgery. J Am Heart Assoc 2024; 13: 1-11.
– reference: 3) Hochman JS, Anthopolos R, Reynolds HR et al. Survival after invasive or conservative management of stable coronary disease. Circulation 2023; 147: 8-19.
– reference: 20) Yang Z, Liu Y, Li Z et al. Coronary microvascular dysfunction and cardiovascular disease: pathogenesis, associations and treatment strategies. Biomed Pharmacother 2023; 164: 115011.
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StartPage 308
Title 冠動脈分野の2023年の進歩
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