Detection and quantification of embolic particles during percutaneous coronary intervention to stable plaque: it

Atsunori Okamura1, Hiroshi Ito, Katsuomi Iwakura

  • 1Division of Cardiology, Sakurabashi Watanabe Hospital, 2-4-32 Umeda, Kita-ku, Osaka 530-0001, Japan.

Insights

Embolic particles, detected as high-intensity transient signals (HITS) during percutaneous coronary intervention (PCI), are common after stenting. Increased HITS correlate with coronary microvessel dysfunction and myocardial injury in stable angina patients.

Area of Science:

  • Cardiology
  • Interventional Cardiology
  • Biomedical Engineering

Background:

  • Embolic particles released during percutaneous coronary intervention (PCI) may cause myocardial injury.
  • Detecting these embolic particles has been a significant challenge, hindering confirmation of their impact.

Purpose of the Study:

  • To detect embolic particles during PCI using high-intensity transient signals (HITS) with a Doppler guidewire.
  • To investigate the impact of these embolic particles on coronary flow dynamics and myocardial injury in patients with stable angina pectoris.

Main Methods:

  • 31 patients with stable angina underwent balloon angioplasty and stenting, with continuous monitoring of coronary flow velocity.
  • Coronary flow velocity reserve (CFVR) and coronary resistance index (CRI) were calculated post-PCI.
  • Cardiac troponin T (cTnT) levels were measured to assess myocardial injury.

Main Results:

  • High-intensity transient signals (HITS) were detected in 87% of patients, predominantly after stenting.
  • The total number of HITS correlated with coronary resistance index (CRI) and relative CFVR.
  • Elevated cTnT levels were observed in 13 patients, with a significantly higher number of HITS in this group compared to those without elevated cTnT.

Conclusions:

  • Embolic particles are frequently released during PCI of stable plaque, particularly after stenting.
  • A quantitative relationship exists between the amount of HITS and the degree of coronary microvessel dysfunction and myocardial injury.
Abstract