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软组织切口时使用二极管红外激光的热成像变化。

Thermographic Changes During Soft Tissue Incisions with Diode Infrared Lasers.

机构信息

Laboratory for Periodontal-, Implant-, Phototherapy (La-PIP), Department of Periodontics and Endodontics, Stony Brook University, Stony Brook, New York, USA.

Department of Family, Population and Preventive Medicine, Stony Brook University, Stony Brook, New York, USA.

出版信息

Photobiomodul Photomed Laser Surg. 2023 Nov;41(11):638-643. doi: 10.1089/photob.2023.0033. Epub 2023 Oct 30.

Abstract

This study aimed to demonstrate temperature changes and heat transfer patterns in soft tissues when using infrared (IR) diode lasers, utilizing thermographic techniques. Bovine tongue slices (5 mm thick) were placed between two glass slides at 11 cm from a thermographic camera. Twenty-two centimeter-long incisions were made along the soft tissue parallel to the camera capture field. Incisions were performed using the 970 and 980 nm lasers (continuous wave, 2-watt, 320 μm-thick glass initiated, and noninitiated fiber tips, 30-sec irradiation). The maximum temperature changes in C (ΔT) and the vertical and lateral heat transfer (in mm) were recorded for 30 sec, using the thermographic images captured using the IR camera. The ΔT and the amount of lateral and vertical heat distribution were measured in 10-sec intervals for a 30-sec irradiation period. A repeated analysis of variance (ANOVA) ( < 0.05) statistical test was used to analyze the statistical differences between the average ΔT and heat transfer patterns between the initiated and noninitiated lasers. The maximum ΔT for the 970 nm diode laser with initiated tips at the 30-sec mark was 17.81 ± 11.48, while the maximum ΔT for the 980 nm diode laser with initiated tips was 13.24 ± 6.90 ( = 0.041). Statistically significant differences between the vertical and horizontal heat transfer patterns were noted between the initiated and noninitiated diode lasers. The 980 nm diode laser with initiated tips proved to have statistically significant greater vertical and lateral heat transfer when compared to the 970 nm diode laser. The 970 nm diode laser with noninitiated tips proved to have a statistically significant higher heat distribution when compared to the 980 nm laser with noninitiated tips. Different near-IR lasers present differences in lateral heat and tissue penetration, using initiated or noninitiated fibers, and due to these differences, power settings and irradiation period must be considered to avoid risks due to overheating.

摘要

本研究旨在利用热成像技术展示使用红外(IR)二极管激光器时软组织中的温度变化和热传递模式。将 5mm 厚的牛舌切片放置在两块玻璃幻灯片之间,距离热成像相机 11cm。沿着与相机捕获场平行的软组织切割 22 厘米长的切口。使用 970nm 和 980nm 激光器(连续波,2 瓦,320μm 厚的玻璃启动和非启动光纤尖端,30 秒辐射)进行切割。使用 IR 相机捕获的热成像图像记录 30 秒内的最大温度变化(ΔT)以及垂直和水平热传递(mm)。在 30 秒的辐射期间,以 10 秒的间隔测量 ΔT 以及水平和垂直热分布的量。使用重复方差分析(ANOVA)(<0.05)统计检验来分析启动和非启动激光器之间的平均ΔT 和热传递模式的统计差异。在 30 秒标记处具有启动尖端的 970nm 二极管激光器的最大 ΔT 为 17.81±11.48,而具有启动尖端的 980nm 二极管激光器的最大 ΔT 为 13.24±6.90(=0.041)。在启动和非启动二极管激光器之间,垂直和水平热传递模式之间存在统计学显著差异。与 970nm 二极管激光相比,具有启动尖端的 980nm 二极管激光具有统计学显著更大的垂直和水平热传递。与具有非启动尖端的 980nm 激光相比,具有非启动尖端的 970nm 二极管激光具有统计学显著更高的热量分布。不同的近红外激光器在使用启动或非启动光纤时在侧向热和组织穿透方面存在差异,由于这些差异,必须考虑功率设置和辐射周期,以避免因过热而带来的风险。

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