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体外双波长(2780/940nm)激光辐照后牙种植体表面温度。

Dental implant surface temperatures following double wavelength (2780/940 nm) laser irradiation in vitro.

机构信息

Faculty of Medicine, Department of Clinical Dentistry, University of Bergen, Bergen, Norway.

Faculty of Medicine, Department of Clinical Dentistry -Periodontics, University of Bergen, Bergen, Norway.

出版信息

Clin Exp Dent Res. 2021 Aug;7(4):512-521. doi: 10.1002/cre2.369. Epub 2020 Dec 4.

Abstract

OBJECTIVE

To estimate the implant surface temperature at titanium dental implants during calibrated irradiation using double wavelength laser.

MATERIAL AND METHODS

A double wavelength laser, 2780 nm Er,Cr:YSGG and 940 nm diode, was calibrated and used to irradiate pristine titanium dental implants, OsseoSpeed, TiUnite and Roxolid SLActive, representing different surface modifications. Initial calibration (21 implants; 7 implants/group) intended to identify optimal wavelength/specific output power/energy that not critically increased the temperature or altered the micro-texture of the implant surface. Subsequent experimental study (30 implants; 10 implants/group) evaluated implant surface temperature changes over 190 s. Irradiation using a computerized robotic setup.

RESULTS

Based on the initial calibration, the following output powers/energies were employed: Er,Cr:YSGG laser 18.4 mJ/pulse (7.3 J/cm )-36.2 mJ/pulse (14.4 J/cm ) depending on implant surface; diode laser 3.3 W (1321.0 W/cm ). During double wavelength irradiation, implant surface temperatures dropped over the first 20 s from baseline 37°C to mean temperatures ranging between 25.7 and 26.3°C. Differences in mean temperatures between OsseoSpeed and TiUnite implants were statistically significant (p < 0.001). After the initial 20 s, mean temperatures continued to decrease for all implant surfaces. The decrease was significantly greater for TiUnite and Roxolid SLActive compared with OsseoSpeed implants (p < 0.001).

CONCLUSION

Calibrated double wavelength laser irradiation did not critically influence the implant surface temperature. During laser irradiation the temperature decreased rapidly to steady-state levels, close to the water/air-spray temperature.

摘要

目的

使用双波长激光估算经校准辐照时钛牙科种植体的种植体表面温度。

材料和方法

校准了双波长激光(2780nm Er,Cr:YSGG 和 940nm 二极管),并将其用于辐照原始钛牙科种植体,OsseoSpeed、TiUnite 和 Roxolid SLActive,代表不同的表面改性。初始校准(21 个种植体;每组 7 个种植体)旨在确定最佳波长/特定输出功率/能量,以确保不会剧烈升高种植体表面温度或改变其微观纹理。随后的实验研究(30 个种植体;每组 10 个种植体)评估了 190 秒内种植体表面温度的变化。使用计算机控制的机器人设置进行辐照。

结果

基于初始校准,采用了以下输出功率/能量:Er,Cr:YSGG 激光 18.4mJ/脉冲(7.3J/cm )-36.2mJ/脉冲(14.4J/cm ),取决于种植体表面;二极管激光 3.3W(1321.0W/cm )。在双波长辐照下,种植体表面温度在最初的 20 秒内从 37°C 的基线降至平均温度范围为 25.7°C 至 26.3°C。OsseoSpeed 和 TiUnite 种植体之间的平均温度差异具有统计学意义(p<0.001)。最初的 20 秒后,所有种植体表面的平均温度继续下降。与 OsseoSpeed 种植体相比,TiUnite 和 Roxolid SLActive 种植体的下降幅度明显更大(p<0.001)。

结论

经校准的双波长激光辐照不会剧烈影响种植体表面温度。在激光辐照期间,温度迅速下降至稳定状态,接近水/气喷流温度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7ea/8404505/98c91f55b7ef/CRE2-7-512-g005.jpg

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