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Original Articles

Sex-specific assessment of reduced coronary sinus flow in non-hypertensive patients with coronary artery disease at rest

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Article: 21553 | Received 26 May 2013, Accepted 26 Jun 2013, Published online: 16 Jul 2013

References

  • Leung DY, Ng AC. Emerging clinical role of strain imaging in echocardiography. Heart Lung Circ. 2010; 19: 161–74.
  • Flachskampf FA, Breithardt OA, Daniel WG. Role of deformation imaging in diagnosing myocardial ischemia. Herz. 2008; 33: 122–8.
  • Habib A, Lachman N, Christensen KN, Asirvatham SJ. The anatomy of the coronary sinus venous system for the cardiac electrophysiologist. Europace. 2009; 11(Suppl 5): v15–21.
  • Mohl W, Komamura K, Kasahara H, Heinze G, Glogar D, Hirayama A, etal. Myocardial protection via the coronary sinus. Circ J. 2008; 72: 526–33.
  • Vrublevsky AV, Boshchenko AA, Karpov RS. Reduced coronary flow reserve in the coronary sinus is a predictor of hemodynamically significant stenoses of the left coronary artery territory. Eur J Echocardiogr. 2004; 5: 294–303.
  • Vrublevsky AV, Boshchenko AA, Karpov RS. Simultaneous transesophageal Doppler assessment of coronary flow reserve in the left anterior descending artery and coronary sinus allows differentiation between proximal and non-proximal left anterior descending artery stenoses. Eur J Echocardiogr. 2004; 5: 25–33.
  • Ramos Filho J, Ramires JA, Turina M, Medeiros CJ, Lachat M, Tsutsui J. Study of coronary sinus flow reserve through transesophageal Doppler echocardiography in normal subjects. Arq Bras Cardiol. 2002; 79: 97–106.
  • Zheng ZX, Ji P, Mao HW, Hu JQ. Reduced antegrade flow in the coronary sinus is a predictor of coronary artery stenosis in hypertensive patients. J Ultrasound Med. 2012; 31: 7–14.
  • Liu ZB, Tan YP, Fang P, Song W, Wu SB, Cong Y. Detection and reproducibility of coronary sinus with transthoracic Doppler echocardiography. Chin J Med Imaging Technol. 2005; 21: 1888–90.
  • Judkins MP. Selective coronary arteriography, I: a percutaneous transfemoral technic. Radiology. 1967; 89: 815–24.
  • Arbab-Zadeh A, Hoe J. Quantification of coronary arterial stenoses by multidetector CT angiography in comparison with conventional angiography methods, caveats, and implications. JACC Cardiovasc Imaging. 2011; 4: 191–202.
  • Veselka J, Cadova P, Tomasov P, Theodor A, Zemanek D. Dual-source CT angiography for detection and quantification of in-stent restenosis in the left main coronary artery: comparison with intracoronary ultrasound and coronary angiography. J Invasive Cardiol. 2011; 23: 460–4.
  • Meerkin D, Marom H, Cohen-Biton O, Einav S. Three-dimensional vessel analyses provide more accurate length estimations than the gold standard QCA. J Interv Cardiol. 2010; 23: 152–9.
  • Chung SH, Kim YJ, Hur J, Lee HJ, Choe KO, Kim TH, etal. Evaluation of coronary artery in-stent restenosis by 64-section computed tomography: factors affecting assessment and accurate diagnosis. J Thorac Imaging. 2010; 25: 57–63.