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Coronary hemodynamics before and after rotational atherectomy with adjunctive balloon angioplasty

B D Núñez1, E T Keelan, S T Higano

  • 1Division of Cardiovascular Diseases and Internal Medicine, Mayo Clinic and Foundation, Rochester, MN 55905, USA.

Insights

Rotational atherectomy temporarily reduces coronary flow, potentially due to microvascular issues, but vasodilators can restore it. Combined procedures improve hemodynamics but not flow reserve, suggesting device-independent mechanisms.

Area of Science:

  • Cardiology
  • Interventional Cardiology
  • Cardiovascular Physiology

Background:

  • The no-reflow phenomenon is a known complication after rotational atherectomy.
  • Coronary artery disease management often involves procedures to restore blood flow.

Purpose of the Study:

  • To assess coronary hemodynamic changes using Doppler flow wire after rotational atherectomy and balloon angioplasty.
  • To investigate the impact of these interventions on coronary flow and microvascular function.

Main Methods:

  • Doppler flow wire measurements of coronary hemodynamics in 10 patients before and after procedures.
  • Assessment of TIMI flow, Cineframes to opacification, lumen diameter, coronary flow, maximal velocity, vascular resistance, and coronary flow reserve.
  • Administration of intracoronary nitroglycerin and verapamil.

Main Results:

  • Rotational atherectomy alone reduced coronary flow (TIMI grade decrease) and increased opacification time, reversible with vasodilators.
  • Adjunctive balloon angioplasty improved lumen diameter, coronary flow, maximal velocity, and decreased vascular resistance.
  • Coronary flow reserve did not improve after either rotational atherectomy alone or combined procedures.

Conclusions:

  • Rotational atherectomy can cause transient coronary flow reduction, possibly via microvascular spasm or obstruction, responsive to vasodilators.
  • While improving macrovascular parameters, combined interventions do not enhance coronary flow reserve.
  • The lack of improvement in flow reserve suggests device-independent mechanisms that require further investigation.

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