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Tuesday 27 January 2015

Fractional Flow Reserve Measurement For Assessing Coronary Stenosis

Coronary Heart Disease which occurs as a result of atherosclerotic plaque-build up in the inner walls of coronary arteries is a common heart ailment that has been affecting millions of people worldwide. The field of cardiac science and interventional cardiology has been striving hard to devise an optimal approach to manage coronary artery disease (CAD).  Evaluating the physiological significance and severity of lesions is a challenging factor in most cases which is why pressure-based Fractional Flow Reserve measurement method was introduced. FFR provides a well-validated index in deciding between coronary stenting and medical therapy. Thses days, it is considered an indispensable clinical tool in the catheterization laboratory.

Pressure-based Fractional Flow reserve measurement provides the ratio of normal blood flow to the maximum achievable blood flow in the same coronary artery, given the maximal vasodilated condition. Lesions that measure a FFR value of less than 0.75 need percutaneous coronary intervention (PCI) with stenting, while lesions of a value higher than 0.75 should be managed with pharmacological treatment. Minimally invasive FFR technique possesses several special features that make it a gold standard for diagnosis in the catheterization laboratory. A well-defined cut-off value, unequivocally normal value for every patient and narrow gray zone are some of the major characteristics. Fluoroscopy guided pullback pressure recording performed during the catheterization proves to be a great tool in obtaining detailed spatial information and evaluating the hemodynamic effect of stenoses. The sensor placed in the distal coronary artery during FFR procedure is simply pulled back under fluoroscopic guidance to measure the pressure levels across the blood vessel. Helping the interventional cardiologist to assess the extent of lesions and exact location of the pressure drop, fluoroscopy guided pullback pressure recording proves to be a great diagnostic tool for different patient subsets.

Bifurcation lesions that involve the proximal main vessel, the distal main vessel and the side branch are one of the most challenging lesion subsets. Associated with restenosis, greater complications and lower success rates, severe coronary artery bifurcation lesions pose a major challenge for the interventional cardiologists. PCI is not considered as a favourable approach to treat the symptomatic coronary artery bifurcation lesions. However, with the advent of fractional flow reserve method and pullback pressure measurements, FFR guided PCI assures excellent results and safer outcomes.