Bagis Selda, Comelekoglu Ulku, Sahin Gunsah, Buyukakilli Belgin, Erdogan Canan, Kanik Arzu
Department of Physical Medicine and Rehabilitation, University of Mersin, Turkey.
Lasers Surg Med. 2002;30(5):376-80. doi: 10.1002/lsm.10057.
We evaluated the acute electrophysiologic effects of low-energy pulsed laser irradiation, measured by extracellular recording technique on compound action potential configuration and nerve excitability in the isolated frog sciatic nerve
STUDY DESIGN/MATERIALS AND METHODS: A pulsed gallium-arsenide (GaAs) laser (wavelength, 904 nm; pulse duration, 220 nanoseconds; peak power per pulse, 27 W; spot size, 0.28 cm(2); total applied energy density, 0.005-2.5 J/cm(2)) was used for the experiment. Sixty isolated nerves were divided into six groups (n = 10), each of which received a different repetition frequency. In each group, action potentials were recorded, before laser irradiation, which served as the control data. The extracellular action potentials were recorded for each combination of 1, 3, 5, 7, 10, 13, and 15 minutes of irradiation time and 4, 8, 16, 32, 64, 128 repetition frequency by using a BIOPAC MP 100 Acquisition System Version 3.5.7 (Santa Barbara USA). Action potential latency, duration of depolarization and repolarization, and the stimulating voltage were measured. Statistical evaluation was performed using linear correlation analysis by SPSS 9.05.
Although there was no correlation between applied energy density and action potential latency, the duration of depolarization and repolarization phases (P > 0.05), there was a weak correlation between applied energy density and stimulating voltage.
The study showed that low-energy GaAs irradiation at 42 different energy density between 0.005 and 2.5 J/cm(2) generates no effect on action potential configuration and nerve excitability.
我们通过细胞外记录技术评估低能量脉冲激光照射对离体青蛙坐骨神经复合动作电位形态和神经兴奋性的急性电生理效应。
研究设计/材料与方法:使用脉冲砷化镓(GaAs)激光(波长904nm;脉冲持续时间220纳秒;每个脉冲的峰值功率27W;光斑尺寸0.28cm²;总施加能量密度0.005 - 2.5J/cm²)进行实验。60条离体神经分为6组(每组n = 10),每组接受不同的重复频率。在每组中,在激光照射前记录动作电位,作为对照数据。使用BIOPAC MP 100采集系统版本3.5.7(美国圣巴巴拉),针对照射时间为1、3、5、7、10、13和15分钟以及重复频率为4、8、16、32、64、128的每种组合记录细胞外动作电位。测量动作电位潜伏期、去极化和复极化持续时间以及刺激电压。使用SPSS 9.05通过线性相关分析进行统计评估。
尽管施加能量密度与动作电位潜伏期、去极化和复极化阶段持续时间之间无相关性(P>0.05),但施加能量密度与刺激电压之间存在弱相关性。
该研究表明,在0.005至2.5J/cm²之间的42种不同能量密度下进行低能量GaAs照射,对动作电位形态和神经兴奋性无影响。