精确光学剂量法在低水平激光治疗口腔软组织中的应用

E. Stoykova, O. Sabotinov
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引用次数: 7

摘要

新型低水平激光治疗(LLLT)广泛应用于口腔黏膜和腮腺疾病的治疗。根据指示,使用不同的光学尖端和光导来产生所需形状的光束。然而,据我们所知,所开发的辐照几何通常是在假定布格-朗伯定律有效的情况下提出的。由于600- 1200nm范围内的多重散射占主导地位,破坏了发射激光束与组织内吸收剂量空间分布的相关性,这与实际情况不太相符。这项工作的目的是利用灵活的蒙特卡罗代码基于辐射传递理论的牙周组织的LLLT程序的剂量学。定量研究了组织光学参数(吸收散射系数、组织折射率、各向异性因子)对会聚或发散光束发射光束与能量沉积相关性降低的影响。我们在牙周组织的三维模型中评估了由我们开发的LLLT系统的能量沉积,该模型使用该区域的横截面图像和牙龈和牙齿的内部结构信息创建。激光源为连续波二极管激光器,输出功率为5 ~ 30 mW,在650 ~ 675 nm范围内发射椭圆光束。为了确定辐照光束的几何形状,我们使用了CCD相机Spiricon LBA 300。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Precise optical dosimetry in low-level laser therapy of soft tissues in oral cavity
The new low level laser therapy (LLLT) is widely applied for treatment of diseases of the oral mucosa and parodont. Depending on indication, different optical tips and light-guides are used to create beams with a required shape. However, to the best of our knowledge, the developed irradiation geometries are usually proposed assuming validity of Bouger-Lambert law. This hardly corresponds to the real situation because of the dominating multiple scattering within 600-1200 nm range that destroys correlation between the emitted laser beam and the spatial distribution of the absorbed dose inside the tissue. The aim of this work is to base the dosimetry of the LLLT procedures of periodontal tissues on radiation transfer theory using a flexible Monte-Carlo code. We studied quantitatively the influence of tissue optical parameters (absorption and scattering coefficients, tissue refraction index, anisotropy factor) on decreasing of correlation between the emitted beam and the energy deposition for converging or diverging beams. We evaluated energy deposition for the developed by us LLLT system in a 3-D model of periodontal tissues created using a cross-sectional image of this region with internal structural information on the gingival and the tooth. The laser source is a CW diode laser emitting elliptical beam within 650-675 nm at output power 5-30 mW. To determine the geometry of the irradiating beam we used CCD camera Spiricon LBA 300.
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