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水过滤红外A(wIRA)在伤口愈合方面的原理及作用机制

Principles and working mechanisms of water-filtered infrared-A (wIRA) in relation to wound healing.

作者信息

Hoffmann Gerd

机构信息

Johann Wolfgang Goethe University Frankfurt/Main, Institute of Sports Sciences, Frankfurt/Main, Germany.

出版信息

GMS Krankenhhyg Interdiszip. 2007 Dec 28;2(2):Doc54.

PMID:20204085
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2831244/
Abstract

The experience of the pleasant heat of the sun in moderate climatic zones arises from the filtering of the heat radiation of the sun by water vapor in the atmosphere of the earth. The filter effect of water decreases those parts of infrared radiation (most parts of infrared-B and -C and the absorption bands of water within infrared-A), which would cause - by reacting with water molecules in the skin - only an undesired thermal load to the surface of the skin. Technically water-filtered infrared-A (wIRA) is produced in special radiators, whose full spectrum of radiation of a halogen bulb is passed through a cuvette, containing water, which absorbs or decreases the described undesired wavelengths of the infrared radiation. Within infrared the remaining wIRA (within 780-1400 nm) mainly consists of radiation with good penetration properties into tissue and therefore allows - compared to unfiltered heat radiation - a multiple energy transfer into tissue without irritating the skin, similar to the sun's heat radiation in moderate climatic zones. Typical wIRA radiators emit no ultraviolet (UV) radiation and nearly no infrared-B and -C radiation and the amount of infrared-A radiation in relation to the amount of visible light (380-780 nm) is emphasized. Water-filtered infrared-A as a special form of heat radiation with a high tissue penetration and with a low thermal load to the skin surface acts both by thermal (related to heat energy transfer) and thermic (temperature depending, with a relevant change of temperature) as well as by non-thermal (without a relevant transfer of heat energy) and non-thermic (not depending on temperature, without a relevant change of temperature) effects. wIRA produces a therapeutically usable field of heat in the tissue and increases tissue temperature, tissue oxygen partial pressure, and tissue perfusion. These three factors are vital for a sufficient tissue supply with energy and oxygen. As wound healing and infection defense (e.g. granulocyte function including their antibacterial oxygen radical formation) depend decisively on a sufficient supply with energy and oxygen, one explanation for the good clinical effect of wIRA on wounds and wound infections can be the improvement of both the energy supply per time (increase of metabolic rate) and the oxygen supply. In addition wIRA has non-thermal and non-thermic effects, which are based on putting direct stimuli on cells and cellular structures.wIRA can considerably alleviate the pain (with remarkably less need for analgesics) and diminish an elevated wound exudation and inflammation and can show positive immunomodulatory effects. wIRA can advance wound healing or improve an impaired wound healing both in acute and in chronic wounds including infected wounds. Even the normal wound healing process can be improved.wIRA is contact-free, easily applied, without discomfort to the patient, with absent consumption of material and with a good effect in the depth. The irradiation of the typically uncovered wound is carried out with a wIRA radiator.

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/f30d8e10b36f/KHI-02-54-g-006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/ba8e1b1e6c4e/KHI-02-54-g-001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/d2f998dccaf1/KHI-02-54-g-002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/f40ac037640c/KHI-02-54-g-003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/1118d4069388/KHI-02-54-g-004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/11bb6d306213/KHI-02-54-g-005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/f30d8e10b36f/KHI-02-54-g-006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/ba8e1b1e6c4e/KHI-02-54-g-001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/d2f998dccaf1/KHI-02-54-g-002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/f40ac037640c/KHI-02-54-g-003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/1118d4069388/KHI-02-54-g-004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/11bb6d306213/KHI-02-54-g-005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cde/2831244/f30d8e10b36f/KHI-02-54-g-006.jpg
摘要

在温带气候区感受到太阳宜人的热度,是因为地球大气中的水蒸气对太阳热辐射进行了过滤。水的过滤作用减少了红外辐射的某些部分(大部分红外 -B 和 -C 以及红外 -A 中的水吸收带),这些部分若与皮肤中的水分子发生反应,只会给皮肤表面带来不必要的热负荷。从技术上讲,水过滤红外 -A(wIRA)是在特殊的散热器中产生的,卤素灯泡的全光谱辐射穿过一个装有水的比色皿,水会吸收或减少上述不需要的红外辐射波长。在红外范围内,剩余的 wIRA(780 - 1400 纳米)主要由具有良好组织穿透特性的辐射组成,因此与未过滤的热辐射相比,它能在不刺激皮肤的情况下,多次将能量传递到组织中,类似于温带气候区太阳的热辐射。典型的 wIRA 散热器不发射紫外线(UV)辐射,几乎也不发射红外 -B 和 -C 辐射,并且强调了红外 -A 辐射量与可见光(380 - 780 纳米)量的关系。水过滤红外 -A 作为一种特殊形式的热辐射,具有高组织穿透性和低皮肤表面热负荷,通过热效应(与热能传递相关)、热动力效应(取决于温度,伴有相关温度变化)以及非热效应(无相关热能传递)和非热动力效应(不取决于温度,无相关温度变化)发挥作用。wIRA 在组织中产生一个可用于治疗的热场,提高组织温度、组织氧分压和组织灌注。这三个因素对于组织获得充足的能量和氧气供应至关重要。由于伤口愈合和抗感染防御(例如粒细胞功能,包括其抗菌氧自由基的形成)决定性地依赖于充足的能量和氧气供应,wIRA 对伤口和伤口感染具有良好临床效果的一个解释可能是每次能量供应(代谢率增加)和氧气供应的改善。此外,wIRA 具有非热和非热动力效应,这基于对细胞和细胞结构施加直接刺激。wIRA 可以显著减轻疼痛(对镇痛药的需求显著减少),减少伤口渗出和炎症的加剧,并可显示出积极的免疫调节作用。wIRA 可以促进急性和慢性伤口(包括感染伤口)的伤口愈合或改善受损的伤口愈合。甚至正常的伤口愈合过程也可以得到改善。wIRA 无需接触,易于应用,不会给患者带来不适,不消耗材料,且在深部有良好效果。典型的未覆盖伤口的照射是用 wIRA 散热器进行的。

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