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低强度激光激活中的生物刺激窗口:激光、扫描仪和美国国家航空航天局的发光二极管阵列系统。

Biostimulatory windows in low-intensity laser activation: lasers, scanners, and NASA's light-emitting diode array system.

作者信息

Sommer A P, Pinheiro A L, Mester A R, Franke R P, Whelan H T

机构信息

Central Institute of Biomedical Engineering, Department of Biomaterials, University of Ulm, Germany.

出版信息

J Clin Laser Med Surg. 2001 Feb;19(1):29-33. doi: 10.1089/104454701750066910.

Abstract

OBJECTIVE

The purpose of this study was to assess and to formulate physically an irreducible set of irradiation parameters that could be relevant in the achieving reproducible light-induced effects in biological systems, both in vitro and in vivo.

BACKGROUND DATA

Light-tissue interaction studies focusing on the evaluation of irradiation thresholds are basic for the extensively growing applications for medical lasers and related light-emitting systems. These thresholds are of central interest in the rejuvenation of collagens, photorefractive keratectomy, and wound healing.

METHODS

There is ample evidence that the action of light in biological systems depends at least on two threshold parameters: the energy density and the intensity. Depending on the particular light delivery system coupled to an irradiation source, the mean energy density and the local intensity have to be determined separately using adequate experimental methods.

RESULTS

From the observations of different research groups and our own observations, we conclude that the threshold parameters energy density and intensity are biologically independent from each other.

CONCLUSIONS

This independence is of practical importance, at least for the medical application of photobiological effects achieved at low-energy density levels, accounting for the success and the failure in most of the cold laser uses since Mester's pioneering work.

摘要

目的

本研究的目的是评估并从物理角度制定一组不可简化的辐照参数,这些参数可能与在体外和体内生物系统中实现可重复的光诱导效应相关。

背景数据

专注于辐照阈值评估的光 - 组织相互作用研究,对于医学激光及相关发光系统不断增长的广泛应用而言至关重要。这些阈值在胶原蛋白修复、光折射角膜切除术和伤口愈合中具有核心意义。

方法

有充分证据表明,光在生物系统中的作用至少取决于两个阈值参数:能量密度和强度。根据与辐照源耦合的特定光传输系统,必须使用适当的实验方法分别确定平均能量密度和局部强度。

结果

从不同研究小组的观察以及我们自己的观察中,我们得出结论,阈值参数能量密度和强度在生物学上相互独立。

结论

这种独立性具有实际重要性,至少对于在低能量密度水平实现的光生物学效应的医学应用而言如此,这解释了自梅斯特开创性工作以来大多数冷激光应用的成功与失败。

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