Frequency Domain-optical Coherence Tomography of Coronary Arteries Using a Diluted Iodinated Contrast-saline Mix with

Zoltan Varga1, Naveen Rajpurohit1, Shenjing Li2

  • 1Cardiology, University of South Dakota, Sanford Heart Hospital, Sioux Falls, USA.

Cureus
|August 22, 2019
PubMed

Insights

This study shows that using smaller 5-Fr catheters and diluted contrast for optical coherence tomography (OCT) via radial access is feasible. This method reduces contrast usage and potential complications, maintaining good image quality for coronary artery assessment.

Area of Science:

  • Cardiovascular Imaging
  • Interventional Cardiology

Background:

  • Current optical coherence tomography (OCT) often requires large 6-Fr guide catheters and undiluted contrast via femoral access.
  • This necessitates significant contrast volume and can lead to vascular complications.
  • Red blood cell (RBC) washout and contrast delivery challenges necessitate large catheter lumens.

Purpose of the Study:

  • To evaluate the feasibility of performing frequency domain (FD)-OCT using smaller 5-Fr guide catheters.
  • To assess the use of diluted iodinated contrast media via radial artery access for coronary angiography.
  • To determine if this approach impacts image quality and patient outcomes.

Main Methods:

  • A case series of 11 patients undergoing coronary artery assessment with second-generation FD-OCT.
  • Procedures utilized a 5-Fr guide catheter inserted via the radial artery.
  • A novel 70:30 mixture of iodinated contrast and heparinized saline was employed for injections.

Main Results:

  • Successful OCT imaging was achieved in all 11 patients via radial access.
  • Good quality imaging was obtained, enabling assessment of target coronary vessels.
  • OCT guided a change in management for 64% of patients, with no reported complications.
  • Average contrast volume per injection was reduced to 10 mL.

Conclusions:

  • Feasibility of performing FD-OCT with 5-Fr catheters and diluted contrast via radial access is demonstrated.
  • This technique reduces overall contrast media exposure and potentially lowers vascular complication rates.
  • The approach maintains diagnostic image quality for coronary interventions.

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