Calcific Plaque Modification by Acoustic Shock Waves

Author:

Karimi Galougahi Keyvan123,Patel Sanjay123,Shlofmitz Richard A.4,Maehara Akiko56,Kereiakes Dean J.7,Hill Jonathan M.8,Stone Gregg W.69,Ali Ziad A.46ORCID

Affiliation:

1. Royal Prince Alfred Hospital, Sydney, Australia (K.K.G., S.P.).

2. Sydney Medical School, Faculty of Medicine and Health, The University of Sydney, Australia (K.K.G., S.P.).

3. Heart Research Institute, Sydney, Australia (K.K.G., S.P.).

4. Saint Francis Hospital, Roslyn, NY (R.A.S., Z.A.A.).

5. NewYork-Presbyterian Hospital/Columbia University Medical Center (A.M., Z.A.A.).

6. Clinical Trials Center, Cardiovascular Research Foundation, New York, NY (A.M., G.W.S., Z.A.A.).

7. Lindner Research Center, The Christ Hospital, Cincinnati, OH (D.J.K.).

8. Royal Brompton Hospital, London, United Kingdom (J.M.H.).

9. Zena and Michael A. Wiener Cardiovascular Institute, Icahn School of Medicine at Mount Sinai, New York, NY (G.W.S.).

Abstract

Constituting a significant proportion of lesions treated with transcatheter interventions in the coronary arteries, moderate-to-severe calcification portends lower procedural success rates, increased periprocedural major adverse events, and unfavorable long-term clinical outcomes compared with noncalcific plaques. Adapted from the lithotripsy technology for treatment of nephrolithiasis, intravascular lithotripsy is a new technique for treatment of severely calcific lesions that uses acoustic shock waves in a balloon-based system to induce fracture in the calcium deposits to facilitate luminal gain and stent expansion. Herein, we summarize the physics and characteristics of the currently available intravascular lithotripsy system (Shockwave Medical, Santa Clara, CA), the clinical data on intravascular lithotripsy use in the coronary arteries, and future directions for adoption of the technique in percutaneous coronary intervention.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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