Jarvis David, MacIver Bruce M, Tanelian Darrell L
Department of Anesthesia, Stanford University School of Medicine, Stanford, CA 94305 U.S.A. Department of Anaesthesia, Royal Adelaide Hospital, North Terrace, Adelaide 5000 Australia.
Pain. 1990 Nov;43(2):235-242. doi: 10.1016/0304-3959(90)91077-V.
The effect of helium-neon laser irradiation (632.5 nm) on A delta- and C-fiber sensory afferents was investigated in the rabbit cornea, to determine the physiologic basis for reports that low power (0.1-5 mW) helium-neon (He-Ne) lasers produce acute analgesia and alleviate chronic pain. Multiple and single unit extracellular recordings from nociceptive corneal afferent nerves (C-fiber cold, C-fiber chemical, A delta mechanical and A delta bimodal) were used to study the effects of He-Ne laser radiation upon the electrophysiologic responses to mechanical, thermal, chemical and electrical stimulation of the cornea. Action potentials were analyzed for latency, amplitude, rise time, duration and frequency. Exposure of the neural receptive field and/or nerve bundle to a 4-mm diameter He-Ne laser (0-5 mW; 0-1800 sec) did not alter spontaneous or evoked neural activity. In addition, single unit action potential parameters were not altered by laser irradiation. Modeling of thermal changes produced by He-Ne radiation on corneal nerves indicated that effects predicted for receptor and axonal depths in both skin and cornea were minimal (less than 0.15 degrees C) and unlikely to alter sensory transduction or transmission.
研究了氦氖激光(632.5纳米)照射对兔角膜Aδ和C纤维感觉传入神经的影响,以确定低功率(0.1 - 5毫瓦)氦氖激光产生急性镇痛和缓解慢性疼痛的报道的生理基础。使用来自伤害性角膜传入神经(C纤维冷觉、C纤维化学觉、Aδ机械觉和Aδ双峰觉)的多单位和单单位细胞外记录来研究氦氖激光辐射对角膜机械、热、化学和电刺激的电生理反应的影响。分析动作电位的潜伏期、幅度、上升时间、持续时间和频率。将神经感受野和/或神经束暴露于直径4毫米的氦氖激光(0 - 5毫瓦;0 - 1800秒)下,不会改变自发或诱发的神经活动。此外,激光照射不会改变单单位动作电位参数。对氦氖辐射在角膜神经上产生的热变化进行建模表明,预测的皮肤和角膜中感受器和轴突深度的影响极小(小于0.15摄氏度),不太可能改变感觉转导或传递。