Intracoronary Doppler and Pressure   
The reliability of fractional flow reserve measurement in patients with diabetes mellitus
Coron Artery Dis, 2009. 20(5): p. 317-21.
A. Sahinarslan, et al.,
Relationship between hyperglycemia and coronary vascular resistance in non-diabetic patients
Int J Cardiol, 2009.
H. Ichiki, et al.,
Prognostic value of transthoracic coronary flow reserve in medically treated patients with proximal left anterior descending artery stenosis of intermediate severity
Eur J Echocardiogr, 2009. 10(1): p. 127-32.
P. Meimoun, et al.,
Relationship between functional exercise capacity and functional stenosis in patients with stable angina and intermediate coronary stenosis
Circ J, 2009. 73(12): p. 2308-14.
S. Tanaka, et al.,
Patients with coronary slow flow phenomenon demonstrate normal myocardial blood flow and arterial wave reflection between acute episodes
Int J Cardiol, 2009. 131(3): p. 321-5.
J. E. Sharman, et al.,
Prognostic correlates of combined coronary flow reserve assessment on left anterior descending and right coronary artery in patients with negative stress echocardiography by wall motion criteria
Heart, 2009. 95(17): p. 1423-8.
L. Cortigiani, et al.,
Non-invasive coronary flow reserve after successful primary angioplasty for acute anterior myocardial infarction is an independent predictor of left ventricular recovery and in-hospital cardiac events
J Am Soc Echocardiogr, 2009. 22(9): p. 1071-9.
P. Meimoun, et al.,
Long-term prognostic role of coronary flow velocity reserve in patients with aortic valve stenosis - insights from the SZEGED Study
Clin Physiol Funct Imaging, 2009. 29(6): p. 447-52.
A. Nemes, et al.,
Myocardial bridging in absence of coronary artery disease: proposal of a new classification based on clinical-angiographic data and long-term follow-up
Cardiology, 2009. 112(1): p. 13-21.
E. R. Schwarz, et al.,
Long-term clinical outcome after fractional flow reserve-guided treatment in patients with angiographically equivocal left main coronary artery stenosis
Circulation, 2009. 120(15): p. 1505-12.
M. Hamilos, et al.,
Inhomogeneous vasomotor effects of moderate selective and non-selective endothelin-receptor blockade in stable coronary artery disease
Heart, 2009. 95(15): p. 1258-64.
P. Wexberg, et al.,
Influence of abnormal glucose metabolism on coronary microvascular function after a recent myocardial infarction
JACC Cardiovasc Imaging, 2009. 2(10): p. 1159-66.
B. B. Logstrup, et al.,
Improvement of fractional flow reserve and collateral flow by treatment with external counterpulsation (Art.Net.-2 Trial)
Eur J Clin Invest, 2009. 39(10): p. 866-75.
E. E. Buschmann, et al.,
The impact of sleep deprivation on the coronary circulation
Int J Cardiol, 2009.
T. Sekine, et al.,
Impairment of coronary flow reserve in aortic stenosis
J Appl Physiol, 2009. 106(1): p. 113-21.
D. Garcia, et al.,
Fractional flow reserve versus angiography for guiding percutaneous coronary intervention
N Engl J Med, 2009. 360(3): p. 213-24.
P. A. Tonino, et al.,
The impact of multiple vessel disease on fractional flow reserve
Acta Cardiol, 2009. 64(1): p. 79-83.
A. Sahinarslan, et al.,
Features of cardiac allograft coronary endothelial dysfunction
Am J Cardiol, 2009. 103(8): p. 1154-8.
E. Raichlin, et al.,
Evaluation of coronary microvascular function in patients with end-stage renal disease, and renal allograft recipients
Atherosclerosis, 2009. 202(2): p. 498-504.
H. Bozbas, et al.,
Evaluation of intermediate coronary stenosis with intravascular ultrasound and fractional flow reserve: Its use and abuse
Catheter Cardiovasc Interv, 2009. 73(4): p. 441-8.
V. Magni, A. Chieffo and A. Colombo,
Endothelial-mediated coronary flow reserve in patients with mild thyroid hormone deficiency
Eur J Endocrinol, 2009. 161(2): p. 323-9.
B. Biondi, et al.,
Endothelial and non-endothelial coronary blood flow reserve and left ventricular dysfunction in systemic hypertension
Clinics (Sao Paulo), 2009. 64(4): p. 327-35.
A. M. Rocha, et al.,
The delta fractional flow reserve can predict lesion severity and long-term prognosis
Atherosclerosis, 2009. 203(1): p. 178-84.
S. A. Kocaman, et al.,
Coronary microvascular resistance index immediately after primary percutaneous coronary intervention as a predictor of the transmural extent of infarction in patients with ST-segment elevation anterior acute myocardial infarction
JACC Cardiovasc Imaging, 2009. 2(3): p. 263-72.
H. Kitabata, et al.,
Coronary flow velocity reserve and aortic distensibility indices in hypertensive patients with hypercholesterolaemia and normal epicardial coronary arteries
Clin Exp Hypertens, 2009. 31(4): p. 380-7.
A. Nemes, T. Forster and M. Csanady,
Coronary flow reserve is impaired in hypertensive patients with subclinical renal damage
Am J Hypertens, 2009. 22(2): p. 191-6.
G. P. Bezante, et al.,
Comparison of the intracoronary continuous infusion method using a microcatheter and the intravenous continuous adenosine infusion method for inducing maximal hyperemia for fractional flow reserve measurement
Am Heart J, 2009. 157(6): p. 1050-6.
M. H. Yoon, et al.,
Clinical outcome in patients with intermediate stenosis of left anterior descending coronary artery after deferral of revascularization on the basis of noninvasive coronary flow reserve measurement
Echocardiography, 2009. 26(4): p. 431-40.
A. D'Andrea, et al.,
Comparison of non-invasive multi-slice computed tomography coronary angiography versus invasive coronary angiography and fractional flow reserve for the evaluation of men with known coronary artery disease
Am J Cardiol, 2009. 104(5): p. 653-6.
J. M. van Werkhoven, et al.,
Acute effects of smoking light cigarettes on coronary microvascular functions
Clin Cardiol, 2009. 32(4): p. 210-4.
O. Ciftci, et al.,
Additive prognostic value of coronary flow reserve in patients with chest pain syndrome and normal or near-normal coronary arteries
Am J Cardiol, 2009. 103(5): p. 626-31.
R. Sicari, et al.,
Association of serum adiponectin levels and coronary flow reserve in women with normal coronary angiography
Eur J Cardiovasc Prev Rehabil, 2009. 16(3): p. 290-6.
S. Eroglu, et al.,
Baseline fractional flow reserve and stent diameter predict optimal post-stent fractional flow reserve and major adverse cardiac events after bare-metal stent deployment
JACC Cardiovasc Interv, 2009. 2(4): p. 357-63.
H. Samady, et al.,