When Calcium Gets Tough, the Tough Cardiologist Starts to Play

Eliezer Joseph Tassone1, Cesare Tripolino2, Gaetano Morabito2

  • 1Department of Cardiac Surgery, Cardiology Unit, Sant'Anna Hospital, Catanzaro, Italy, eliezerjoseph.tassone@gmail.com.

Cardiology
|January 11, 2019
PubMed

Insights

Coronary calcification poses challenges in stenting. Lithotripsy-enhanced disruption using the Shockwave Coronary Lithoplasty System offers a safer alternative for treating calcified restenosis within stents.

Area of Science:

  • Cardiology
  • Interventional Cardiology
  • Medical Devices

Background:

  • Coronary calcification presents significant challenges for interventional cardiologists, often leading to incomplete stent expansion and stent failure.
  • Traditional treatments like rotational atherectomy carry increased procedural risks.
  • Novel techniques are crucial for managing complex calcified coronary lesions.

Observation:

  • A 60-year-old male experienced restenosis within a previously stented ramus intermedius due to severe calcification.
  • Initial treatment with rotational atherectomy was followed by persistent symptoms.
  • The patient subsequently underwent lithotripsy-enhanced disruption of calcium using the Shockwave Coronary Lithoplasty System.

Findings:

  • The Shockwave Coronary Lithoplasty System successfully treated calcified restenosis within the existing stent.
  • This technique utilizes sonic waves to safely fracture calcified lesions.
  • This represents the first reported case of using this system for in-stent calcified restenosis.

Implications:

  • Lithotripsy-enhanced disruption offers a potentially safer and simpler approach for treating complex calcified coronary lesions, including in-stent restenosis.
  • This technology may expand treatment options for patients with challenging coronary anatomy.
  • Further research is warranted to establish the long-term efficacy and safety of this innovative technique.

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