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532纳米和660纳米激光在不同组织类型中的波长相关穿透深度比较

Comparison of Wavelength-Dependent Penetration Depth of 532 nm and 660 nm Lasers in Different Tissue Types.

作者信息

Aldalawi Ali A, Suardi Nursakinah, Ahmed Naser Mahmoud, Al-Farawn Mahdi A S, Dheyab Mohammed Ali, Jebur Wisam I, Kadhim Faisal J

机构信息

School of Physics, Universiti Sains Malaysia, Gelugor Penang, Malaysia.

Department of Vocational, Ministry of Education, Hilla, Iraq.

出版信息

J Lasers Med Sci. 2023 Aug 29;14:e28. doi: 10.34172/jlms.2023.28. eCollection 2023.

Abstract

The depth of laser light penetration into tissue is a critical factor in determining the effectiveness of photodynamic therapy (PDT). However, the optimal laser light penetration depth necessary for achieving maximum therapeutic outcomes in PDT remains unclear. This study aimed to assess the effectiveness of laser light penetration depth at two specific wavelengths, 532 nm and 660 mm. Chicken and beef of different thicknesses (1, 3, 5, 10, and 20 mm±0.2 mm) were used as in vitro tissue models. The samples were subjected to irradiation by a low-level laser diode of 532 and 660 nm in continuous mode for 10 minutes. with power densities of 167 and 142 J/cm, respectively. Laser light transmission through the tissue was measured using a power meter. For beef samples, the 660 nm wavelength achieved a maximum transmission intensity of 30.7% at 1 cm thickness, while the 532 nm laser had a transmission intensity of 6.5%. Similarly, in chicken breast samples, the maximum transmission occurred at 1 cm thickness with 68.1% for the 660 nm wavelength and 18.2% for the 532 nm laser. Results consistently demonstrated a significant correlation (<0.05) between tissue thickness and laser light penetration. Thicker tissues exhibited faster declines in light transmission intensity compared to thinner tissues within 10 minutes. These findings highlight the importance of further research to enhance light delivery in thicker tissues and improve the efficacy of PDT in various medical conditions.

摘要

激光穿透组织的深度是决定光动力疗法(PDT)有效性的关键因素。然而,在PDT中实现最大治疗效果所需的最佳激光穿透深度仍不明确。本研究旨在评估532纳米和660毫米这两个特定波长下激光穿透深度的有效性。不同厚度(1、3、5、10和20毫米±0.2毫米)的鸡肉和牛肉被用作体外组织模型。样品以连续模式接受532纳米和660纳米的低水平激光二极管照射10分钟,功率密度分别为167和142焦每平方厘米。使用功率计测量激光透过组织的情况。对于牛肉样品,660纳米波长在1厘米厚度时达到最大透射强度30.7%,而532纳米激光的透射强度为6.5%。同样,在鸡胸肉样品中,最大透射发生在1厘米厚度,660纳米波长为68.1%,532纳米激光为18.2%。结果一致表明组织厚度与激光穿透之间存在显著相关性(<0.05)。与较薄组织相比,较厚组织在10分钟内光透射强度下降更快。这些发现凸显了进一步研究以增强较厚组织中光传递并提高PDT在各种医疗状况下疗效的重要性。

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