Department of Periodontics and Endodontics, Laboratory for Periodontal-, Implant-, Phototherapy (La-PIP), Stony Brook University, Stony Brook, New York, USA.
Pediatric Cardiovascular Clinical Research Core, Pediatric Heart Center, Vagelos College of Physicians and Surgeons, Columbia University, Stony Brook, New York, USA.
Photobiomodul Photomed Laser Surg. 2024 Sep;42(9):598-603. doi: 10.1089/photob.2024.0005. Epub 2024 Sep 4.
The purpose of this study was to demonstrate heat transfer within oral soft tissues using different lasers under the effect of local anesthetics (LA). Bovine tongue slices were placed in between two glass slides and at a distance from a thermographic camera. In total, 2-cm-long 240 incisions were made along the surface of the tissue parallel to glass slides and the camera capture field. Incisions were performed using 445-nm and infrared (IR) lasers (970 nm and 980 nm on a continuous wave at 2 W) with 320 µm-initiated (concentrated energy at the tip provided by a blue articulated paper and laser irradiation) and noninitiated (defused energy) fiber (30-sec irradiation period). LA was injected into the specimens before irradiation. The temperature changes in °C (ΔT) and vertical and lateral heat transfer (in mm) were recorded at 10-sec intervals for 30 sec, using thermographic images. The amount of lateral and vertical heat transfer was measured. A repeated analysis of variance statistical comparison test was used to analyze differences between the lateral (width) and the vertical (height) heat transfer for initiated and noninitiated lasers and different lasers. The maximum ΔT in °C utilizing initiated tips of 970, 980, or 445 nm were 11.82 ± 3.46, 7.66 ± 3.24, and 18.94 ± 7.01 and using noninitiated tips were 8.27 ± 1.69, 8.87 ± 2.40, and 12.31 ± 8.65, respectively. Heat transfers (height/width) for initiated were 40.65 ± 10.40/90.65 ± 10.77 mm, 41.50 ± 11.83/83.95 ± 11.20 mm, and 33.70 ± 9.10/95.10 ± 11.17 mm and for noninitiated lasers were 52.95 ± 6.89/96.10 ± 11.17 mm, 47.75 ± 7.41/93.75 ± 14.96 mm, and 31.35 ± 11.40/75.20 ± 19.68 mm, respectively. A statistically significant difference was found between all lasers ( < 0.05) for initiated and noninitiated lasers (except for 970/980 nm for noninitiated lasers). Lower penetration depth ( < 0.05) at 445-nm diode and greater lateral heat spreading ( < 0.05) were identified under LA especially utilizing noninitiated tips without significant difference in IR lasers. LA might negatively influence soft tissues creating scattering when noninitiated tips are used and IR diode laser technology.
本研究旨在演示在局部麻醉剂(LA)作用下,不同激光在口腔软组织内的传热情况。将牛舌切片置于两片玻璃载玻片之间,并与热成像相机保持一定距离。总共在组织表面平行于玻璃载玻片和相机拍摄场进行了 240 个 2cm 长的切口。使用 445nm 和红外(IR)激光器(970nm 和 980nm 连续波 2W)进行切割,使用 320μm 起始(尖端提供集中能量的蓝色铰接纸和激光辐射)和非起始(扩散能量)光纤(30 秒辐射期)。在照射前将 LA 注入标本。使用热图像在 30 秒内以 10 秒的间隔记录组织的温度变化(°C)和垂直和水平热传递(mm)。测量了水平和垂直热传递的量。使用重复方差分析统计比较检验分析了起始和非起始激光以及不同激光的水平(宽度)和垂直(高度)热传递之间的差异。利用起始尖端的 970nm、980nm 或 445nm 的最大°C ΔT 分别为 11.82 ± 3.46、7.66 ± 3.24 和 18.94 ± 7.01,非起始尖端的最大°C ΔT 分别为 8.27 ± 1.69、8.87 ± 2.40 和 12.31 ± 8.65。起始激光的热传递(高度/宽度)分别为 40.65 ± 10.40/90.65 ± 10.77mm、41.50 ± 11.83/83.95 ± 11.20mm 和 33.70 ± 9.10/95.10 ± 11.17mm,非起始激光的热传递(高度/宽度)分别为 52.95 ± 6.89/96.10 ± 11.17mm、47.75 ± 7.41/93.75 ± 14.96mm 和 31.35 ± 11.40/75.20 ± 19.68mm。对于起始和非起始激光,所有激光之间均存在统计学差异(<0.05)(除非起始激光的 970nm/980nm 外)。在 LA 下,尤其是在使用非起始尖端时,发现 445nm 二极管的穿透深度较低(<0.05),横向热扩散较大(<0.05),而 IR 激光则无明显差异。LA 可能会对软组织产生负面影响,当使用非起始尖端时会产生散射,而 IR 二极管激光技术也是如此。