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皮肤激光刺激的新见解——取决于皮肤和激光类型

New Insights into Cutaneous Laser Stimulation - Dependency on Skin and Laser Type.

作者信息

Frahm Ken Steffen, Gervasio Sabata, Arguissain Federico, Mouraux André

机构信息

Integrative Neuroscience Group, CNAP - Center for Neuroplasticity and Pain, SMI®, Department of Health Science & Technology, Aalborg University, Denmark.

Neural Engineering and Neurophysiology Group, SMI®, Department of Health Science & Technology, Aalborg University, Denmark.

出版信息

Neuroscience. 2020 Nov 10;448:71-84. doi: 10.1016/j.neuroscience.2020.09.021. Epub 2020 Sep 12.

Abstract

Cutaneous laser stimulation is a proficient tool to investigate the function of the nociceptive system. However, variations in laser-skin interactions, causes by different skin anatomies and laser wavelength, affects the robustness of nociceptor activation. Thus, thoroughly understanding how the skin is heated by a laser pulse is important to characterize the thermal response properties of nociceptors. The study aim was to investigate how skin type and laser wavelength influences nociceptor activation during laser stimulation. Ten healthy subjects were exposed to brief CO (low skin penetrance) and Nd:YAP (high skin penetrance) laser stimuli delivered to the dorsum and palm of the hand, using three different intensities. Reaction times and perception intensities were recorded. A computational model simulated heat transfer in the skin and nociceptor activation in different skin types across different wavelengths and intensities. Intensity ratings were significantly lower and reaction-times significantly increased for CO laser stimuli in the palm compared to the dorsum. This was not the case for Nd:YAP laser stimuli. The computational model showed that these differences can be explained by the different skin absorption of CO and Nd:YAP lasers. For CO laser stimuli, the thicker stratum corneum of the glabrous skin reduces nociceptor activation, whereas the high penetrating Nd:YAP laser elicits a similar nociceptor activation, irrespective of skin type. Nociceptor activation during laser stimulation highly depends on skin composition and laser wavelength, especially for lasers having a low penetrance wavelength. A computational model showed that this difference could be explained primarily due to differences in skin composition.

摘要

皮肤激光刺激是研究伤害性感受系统功能的一种有效工具。然而,不同皮肤解剖结构和激光波长所导致的激光与皮肤相互作用的差异,会影响伤害感受器激活的稳健性。因此,深入了解皮肤如何被激光脉冲加热对于表征伤害感受器的热反应特性很重要。该研究的目的是调查皮肤类型和激光波长如何影响激光刺激过程中伤害感受器的激活。10名健康受试者的手背和手掌接受了短暂的CO(皮肤穿透性低)和Nd:YAP(皮肤穿透性高)激光刺激,使用了三种不同强度。记录反应时间和感知强度。一个计算模型模拟了不同皮肤类型在不同波长和强度下皮肤中的热传递以及伤害感受器的激活。与手背相比,手掌接受CO激光刺激时强度评级显著更低,反应时间显著增加。Nd:YAP激光刺激则并非如此。计算模型表明,这些差异可以用CO和Nd:YAP激光不同的皮肤吸收率来解释。对于CO激光刺激,无毛皮肤较厚的角质层会减少伤害感受器的激活,而高穿透性的Nd:YAP激光则会引发相似的伤害感受器激活,与皮肤类型无关。激光刺激过程中伤害感受器的激活高度依赖于皮肤组成和激光波长,尤其是对于具有低穿透性波长的激光。一个计算模型表明,这种差异主要可以用皮肤组成的差异来解释。

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