Intraluminal vapor bubble induced by excimer laser pulse causes microsecond arterial dilation and invagination leading to extensive wall damage in the rabbit.
- 1 April 1993
- journal article
- abstracts
- Published by Wolters Kluwer Health in Circulation
- Vol. 87 (4) , 1258-1263
- https://doi.org/10.1161/01.cir.87.4.1258
Abstract
BACKGROUND Previous in vitro studies demonstrated that during excimer laser ablation of aortic tissue in saline, a fast-expanding and imploding vapor bubble is formed. The present in vivo study was designed to demonstrate the formation of a fast-expanding intraluminal bubble in flowing blood and to assess any damage to the adjacent arterial wall. METHODS AND RESULTS Excimer laser pulses (one to 10, at 55 mJ/mm2 per pulse) were delivered coaxially in the femoral and iliac arteries of nine normal rabbits. Time-resolved flash photography of dissected arteries in situ demonstrated a 50% diameter increase within 75 microseconds after the laser pulse and a subsequent invagination (150-500 microseconds) that corresponded with the temporal course of the bubble expansion (up to 3.2 mm in diameter) and implosion observed in a hemoglobin solution. One day after laser light delivery, light microscopy (47 arterial segments) showed abrasion of the internal elastic lamina, medial necrosis, and extensive dissection planes filled with red blood cells. The degree (up to 100% medial necrosis) and extent of damage (up to 1.9 mm in length) increased with the number of delivered laser pulses. CONCLUSIONS In blood, each excimer laser pulse generated a fast-expanding and imploding vapor bubble. In vivo, the intraluminal vapor bubble produced microsecond dilation and invagination of the adjacent arterial segment, which induced dissections and extensive wall damage far beyond the penetration depth of 308-nm laser light (< 100 microns). This unique pattern of extensive wall damage observed in the rabbit might explain the mechanism of dissection observed in humans and might have an impact on the acute and chronic outcome after excimer laser coronary angioplasty.Keywords
This publication has 14 references indexed in Scilit:
- Laser-induced dissections: Pathogenesis and implications for therapyJournal of the American College of Cardiology, 1992
- Excimer laser-facilitated balloon angioplasty of a nondilatable lesionJournal of the American College of Cardiology, 1991
- Angioscopy after coronary excimer laser angioplastyJournal of the American College of Cardiology, 1991
- Percutaneous coronary excimer laser-assisted angioplasty: Initial multicenter experience in 141 patientsJournal of the American College of Cardiology, 1991
- Percutaneous excimer laser coronary angioplastyThe American Journal of Cardiology, 1990
- Early and late arterial healing response to catheter‐Induced laser, thermal, and mechanical wall damage in the rabbitLasers in Surgery and Medicine, 1990
- Effect of blood upon the selective ablation of atherosclerotic plaque witha pulsed dye laserLasers in Surgery and Medicine, 1990
- Percutaneous, in vivo excimer laser angioplasty: Results in two experimental animal modelsLasers in Surgery and Medicine, 1988
- Laser ablation of human atherosclerotic plaque without adjacent tissue injuryJournal of the American College of Cardiology, 1985
- Microvasculature Can Be Selectively Damaged Using Dye Lasers: A Basic Theory and Experimental Evidence in Human SkinLasers in Surgery and Medicine, 1981