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Laser angioplasty of restenosed coronary stents: Results of a multicenter surveillance trial

  • Ralf Köster
  • , Christian W. Hamm
  • , Ricardo Seabra-Gomes
  • , Gunhild Herrmann
  • , Horst Sievert
  • , Carlos Macaya
  • , Eckart Fleck
  • , Klaus Fischer
  • , Johannes J.R.M. Bonnier
  • , Jean Fajadet
  • , J. ürgen Waigand
  • , Karl Heinz Kuck
  • , Michel Henry
  • , Marie Claude Morice
  • , Luciano Pizzulli
  • , Michael M. Webb-Peploe
  • , Arnd B. Buchwald
  • , Lars Ekström
  • , Eberhard Grube
  • , Saad Al Kasab
  • Antonio Colombo, Archimedes Sanati, Sjef M.P.G. Ernst, Michael Haude, Martin B. Leon, Charles Ilsley, Rafael Beyar, Yvo Taeymans, Uwe Gladbach, Karl Wegscheider, Patrick W. Serruys
  • University Medical Center Hamburg-Eppendorf
  • Hospital de Santa Cruz, Carnaxide
  • University of Kiel
  • Hospital Clinico San Carlos
  • Eindhoven University of Technology
  • Clinique Pasteur
  • Humboldt Universität zu Berlin
  • Franz Volhard Clinic
  • Franz Volhard Clinic
  • Franz Volhard Clinic
  • University Hospital Bonn
  • St Thomas' Hospital
  • University Medical Centre Göttingen
  • Sahlgrenska University Hospital
  • University of London
  • Prince Sultan Cardiac Center
  • Centro Cuore Columbus
  • London University
  • St. Antonius Hospital
  • University Clinics
  • Washington Hospital Center
  • Harefield Hospital
  • Rambam Medical Center
  • Ghent University Hospital
  • Spectranetics Inc.
  • Wegscheider Biometr. and Stat. Inc.
  • Erasmus MC

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

59 Citations (Scopus)

Abstract

OBJECTIVES: This study evaluated safety and efficacy of excimer laser angioplasty for treatment of restenosed or occluded coronary stents. BACKGROUND: Balloon angioplasty of in-stent restenosis is limited by a high recurrence rate. Debulking by laser angioplasty is a novel concept to treat in-stent restenosis. METHODS: A total of 440 patients with restenoses or occlusions in 527 stents were enrolled for treatment with concentric or eccentric laser catheters and adjunctive balloon angioplasty. RESULTS: Laser angioplasty success (≤50% diameter stenosis after laser treatment or successful passage with a 2.0-mm or 1.7-mm eccentric laser catheter) was achieved in 92% of patients. Adjunctive balloon angioplasty was performed in 99%. Procedural success (laser angioplasty success followed by ≤30% stenosis with or without balloon angioplasty) was 91%. There was neither a significant difference in success with respect to lesion length, nor were there differences between small and large vessels or native vessels and vein grafts. Success was higher and residual stenosis lower using large or eccentric catheters. Serious adverse events included death (1.6%, not directly laser catheter related), Q-wave myocardial infarction (0.5%), non-Q- wave infarction (2.7%), cardiac tamponade (0.5%) and stent damage (0.5%) . Perforations after laser treatment occurred in 0.9% of patients and after balloon angioplasty in 0.2%. Dissections were visible in 4.8% of patients after laser treatment and in 9.3% after balloon angioplasty. Reinterventions during hospitalization were necessary in 0.9% of patients; bypass surgery was performed in 0.2%. CONCLUSIONS: Excimer laser angioplasty with adjunctive balloon angioplasty is a safe and efficient technology to treat in-stent restenoses. These data justify a randomized comparison with balloon angioplasty.

Original languageEnglish
Pages (from-to)25-32
Number of pages8
JournalJournal of the American College of Cardiology
Volume34
Issue number1
DOIs
Publication statusPublished - Jul 1999
Externally publishedYes

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