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Soft‐tissue effects of the holmium:YAG laser: An ultrastructural study on oral mucosa
Author(s) -
Kautzky Michael,
Susani Martin,
Steurer Martin,
Schenk Peter
Publication year - 1997
Publication title -
lasers in surgery and medicine
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.888
H-Index - 112
eISSN - 1096-9101
pISSN - 0196-8092
DOI - 10.1002/(sici)1096-9101(1997)20:3<265::aid-lsm5>3.0.co;2-o
Subject(s) - laser , lamina propria , ultrastructure , holmium , ablation , pathology , oral mucosa , electron microscope , anatomy , materials science , tongue , chemistry , epithelium , medicine , optics , physics
Background and Objective The specifics of the ablation mechanism of the holmium:YAG laser remain largely unexplored. Following laser exposure to the oral mucosa of rats, the ultrastructural damage profile obtaining to varying degrees in blood vessels, erythrocytes, nerves, and muscle cells was examined. An attempt was made to relate the cytoplasmatic alterations to the tissue ablation modes of midinfrared lasers described in the literature. Study Design/Materials and Methods: The biological effects of a new pulsed holmium:YAG laser (λ = 2,120 nm) on the oral mucosa of rats were examined by light and transmission electron microscopy. Laser incisions reaching into the muscle layer were made on different sites of the tongue of white rats. Laser energy (400 mJ, 2.5 μs pulse, 2 Hz) was delivered to the target via 400 μm nylon fibers. Results The fine‐structural morphology of the sublingual mucosa after laser surgery of the epithelial surface revealed no carbonization layer but a 150‐μm‐wide zone of lacunar structures extending to the lamina propria. In the muscle cells there is partial decomposition of the cell contents resulting in the development of electron optically empty spaces within the cortical cytoplasm underneath the intact plasma membrane of the muscle cell. The organelles within the cell remain ultrastructurally intact. Conclusion These features support the assumption of an additional nonthermal holmium:YAG laser‐tissue interaction. Lasers Surg. Medicine 20:265–271, 1997. © 1997 Wiley‐Liss, Inc.