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Selective vascular coagulation of rabbit colon using a flashlamp-excited dye laser operating at 577 nanometers

Authors :
William A. Farinelli
James M. Richter
Oon T. Tan
John A. Parrish
Norman S. Nishioka
R. Rox Anderson
Ben R. Bronstein
Source :
Gastroenterology. 95:1258-1264
Publication Year :
1988
Publisher :
Elsevier BV, 1988.

Abstract

Previous studies have demonstrated that brief pulses of selectively absorbed optical radiation can be used to confine thermal injury to pigmented targets within tissues. We performed studies in rabbits to assess the usefulness of this technique for selectively coagulating the colonic vasculature. By measuring the optical absorbance of rabbit colon with a spectrophotometer, it was determined that hemoglobin exhibits strong absorption relative to the rabbit colon at a wavelength of 577 nm. Because light must be absorbed to affect tissue, it was hypothesized that laser pulses of this wavelength would selectively damage blood vessels. This hypothesis was tested by examining the effect of 300-microseconds-long 577-nm laser pulses on rabbit colon in vivo. For delivered radiant exposures between 4 and 8 J/cm2, selective coagulation of the colonic vasculature could be produced without damage to the surrounding colon. At greater radiant exposures, vessel hemorrhage was occasionally noted but no transmural thermal injury was produced with delivered radiant exposures as high as 22 J/cm2. This technique may form the basis of a safe and simple treatment of vascular lesions of the colon such as angiodysplasia.

Details

ISSN :
00165085
Volume :
95
Database :
OpenAIRE
Journal :
Gastroenterology
Accession number :
edsair.doi.dedup.....19f03191c4cd8dbe1212d5ee172a3ce2