Department of Operative and Preventive Dentistry, Bonn University, Welschnonnenstrasse 17, 53111, Bonn, Germany.
Institute for Medical Biometry, Informatics and Epidemiology (IMBIE), Bonn University, Sigmund-Freud-Strasse 25, 53105, Bonn, Germany.
Lasers Med Sci. 2021 Oct;36(8):1633-1647. doi: 10.1007/s10103-020-03243-4. Epub 2021 Jan 26.
Within the scope of this ex vivo study, the cut efficiency was investigated with eight diode laser wavelengths in the range from 400 to 1500 nm. Incisions on porcine gingiva samples were generated in CW-mode at a power range of 0.5-4 W using a bare fiber (∅ = 320 μm) in contact and non-contact mode at a cut speed of 2 mm/s. Cut depths, cut widths, and thermal damages were recorded based on histological sections and were evaluated via measurement masks. Moreover, with respect to the controllability of a therapeutic measure, an efficiency factor was defined. At powers above 2 W, for 445 nm, the maximum cut depth was 820 μm and 344 μm for 810 nm, respectively. At all wavelength and power ranges, the cut width averaged 125 μm. At minimum output power (0.5 W), the spatial expansion of the thermal damage in the tissue surface layer corresponds in the blue/green wavelength range from the very beginning of the laser impact to the fiber core diameter. It could be shown that increases in the diode laser power output do not correlate to the same extent with the incision depth nor with thermal damage to tissue.
在这项离体研究的范围内,研究了 8 种二极管激光波长(范围从 400nm 到 1500nm)的切割效率。使用裸露光纤(∅=320μm),在接触和非接触模式下,以 2mm/s 的切割速度,在 0.5-4W 的功率范围内,对猪牙龈样本进行 CW 模式的切口。根据组织学切片记录切口深度、切口宽度和热损伤,并通过测量掩模进行评估。此外,为了评估治疗措施的可控性,定义了一个效率因子。在功率高于 2W 时,445nm 激光的最大切口深度为 820μm,810nm 激光的最大切口深度为 344μm。在所有波长和功率范围内,切口宽度平均为 125μm。在最小输出功率(0.5W)下,组织表面层热损伤的空间扩展从激光作用开始到光纤芯径,在蓝/绿光范围内与切口深度和组织热损伤几乎没有相关性。结果表明,二极管激光输出功率的增加与切口深度和组织热损伤的相关性并不相同。