Impact of Serial Coronary Stenoses on Various Coronary Physiologic Indices

Jung-Min Ahn1,2, Takaharu Nakayoshi1, Takehiro Hashikata1

  • 1Division of Cardiovascular Medicine and the Stanford Cardiovascular Institute, Stanford University School of Medicine (J.-M.A., T.N., T.H., K.K., H.A., J.L., W.F.F.).

Insights

Nonhyperemic pressure ratios like iFR and Pd/Pa are affected by hemodynamic interdependence in serial coronary stenoses. This effect is similar to FFR when stenoses are severe.

Area of Science:

  • Cardiovascular physiology
  • Interventional cardiology
  • Diagnostic techniques in cardiology

Background:

  • Assessing individual coronary lesions in serial stenoses is complex.
  • Nonhyperemic pressure ratios (iFR, Pd/Pa) may offer advantages over FFR due to stable resting flow.
  • Hemodynamic interdependence (cross-talk) during hyperemia can affect FFR accuracy.

Purpose of the Study:

  • To evaluate the degree of hemodynamic interdependence for iFR, resting Pd/Pa, and FFR.
  • To investigate these indices in a porcine model with serial coronary stenosis.

Main Methods:

  • Serial coronary stenoses were created in 6 swine using balloon catheters.
  • Hemodynamic interdependence was quantified by measuring absolute changes in iFR, Pd/Pa, and FFR.
  • Measurements were taken as the severity of one stenosis varied while another remained fixed.

Main Results:

  • Hemodynamic interdependence was observed for iFR (0.039±0.048), Pd/Pa (0.021±0.026), and FFR (0.034±0.034) (P<0.001).
  • Interdependence was lower for less severe stenoses (0.70-0.90).
  • Interdependence increased significantly for severe stenoses (<0.60), with values of 0.060±0.050 for iFR, 0.037±0.030 for Pd/Pa, and 0.051±0.037 for FFR (P<0.001).

Conclusions:

  • Nonhyperemic pressure ratios are influenced by hemodynamic interdependence when assessing serial coronary stenoses.
  • The impact of hemodynamic interdependence on nonhyperemic ratios is comparable to FFR in cases of severe serial stenoses.
Abstract

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