Coronary Intravascular Lithotripsy in Clinical Practice

The presence of coronary artery calcification is associated with lower procedural success rates and worse long-term clinical outcomes. Atherectomy devices, such as rotational atherectomy (RA), orbital atherectomy (OA), and excimer laser coronary atherectomy (ELCA), have been used as preparation devices for severely calcified lesions. Intravascular lithotripsy (IVL) has recently been used to safely and selectively disrupt calcified coronary lesions. It produces acoustic shockwaves, which interact with the coronary calcium to create multiplanar fractures. These calcium fractures increase vessel compliance and result in a desirable minimal stent area or the ability to finish with a drug-coated balloon (DCB) alone strategy. The IVL has established its safety and efficacy for calcified lesions and its advantages over atherectomy devices include ease of use on a workhorse wire, ability to modify deep calcium, and less debris embolization causing slow-flow or no-reflow. A combined strategy of atherectomy devices followed by IVL may be efficient. We describe our experience with IVL and procedural technique in our catheterization laboratory.

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Publication Details

Journal
Journal of Clinical Medicine
Published
2026-08-31
DOI
https://doi.org/10.3390/jcm15176763
Primary Topic
Coronary Interventions and Diagnostics
Type
article
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article

Coronary Intravascular Lithotripsy in Clinical Practice

Tomoki Horie, Tetsumin Lee, Daigo Kachi, Takashi Ashikaga et al.
Journal of Clinical Medicine
Coronary Interventions and Diagnostics
article

Coronary Intravascular Lithotripsy in Clinical Practice

Tomoki Horie, Tetsumin Lee, Daigo Kachi, Takashi Ashikaga, Maki Ohira, Masashi Nagase, Toru Misawa, Yasutoshi Nagata, Masakazu Kaneko, Toshihiro Nozato, Kazuki Matsuda, Mao Matsuyama
article en

Abstract

The presence of coronary artery calcification is associated with lower procedural success rates and worse long-term clinical outcomes. Atherectomy devices, such as rotational atherectomy (RA), orbital atherectomy (OA), and excimer laser coronary atherectomy (ELCA), have been used as preparation devices for severely calcified lesions. Intravascular lithotripsy (IVL) has recently been used to safely and selectively disrupt calcified coronary lesions. It produces acoustic shockwaves, which interact with the coronary calcium to create multiplanar fractures. These calcium fractures increase vessel compliance and result in a desirable minimal stent area or the ability to finish with a drug-coated balloon (DCB) alone strategy. The IVL has established its safety and efficacy for calcified lesions and its advantages over atherectomy devices include ease of use on a workhorse wire, ability to modify deep calcium, and less debris embolization causing slow-flow or no-reflow. A combined strategy of atherectomy devices followed by IVL may be efficient. We describe our experience with IVL and procedural technique in our catheterization laboratory.

Journal of Clinical MedicineVol. 15(17)
Musashino Red Cross Hospital (JP)
Good health and well-being
Openalex Percentile: Top 8%
Coronary Interventions and Diagnostics
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Coronary Intravascular Lithotripsy in Clinical Practice — Tomoki Horie, Tetsumin Lee, et al. · Journal of Clinical Medicine (2026) | TGRS Research Map | TGRS