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首页> 外文期刊>Plastic and reconstructive surgery >A unique combination of infrared and microwave radiation accelerates wound healing.
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A unique combination of infrared and microwave radiation accelerates wound healing.

机译:红外线和微波辐射的独特结合可加速伤口愈合。

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Light or electromagnetic radiation has been reported to enhance wound healing. The use of selected spectra, including infrared and microwave, has been described; however, no studies to date have examined the potential benefit of combining these spectra. In this study, a device that emits electromagnetic radiation across both the infrared and microwave ranges was used. To test the effects of this unique electromagnetic radiation spectrum on wound healing, two clinically relevant wound-healing models (i.e., tensile strength of simple incisions and survival of McFarlane flaps) were selected. After the creation of a simple full-thickness incision ( = 35 rats) or a caudally based McFarlane flap ( = 33 rats), animals were randomly assigned to one of three treatment groups: untreated control, infrared, or combined electromagnetic radiation. Treatment was administered for 30 minutes, twice daily for 18 days in animals with simple incisions, and 15 days in animals with McFarlane flaps. The wound area or flap was harvested and analyzed, blinded to the treatment regimens. A value of less than 0.05 obtained by analysis of variance was considered to be statistically significant. Animals receiving combined electromagnetic radiation demonstrated increased tensile strength (2.62 N/mm ) compared with animals receiving infrared radiation (2.36 N/mm ) or untreated controls (1.73 N/mm, < 0.001). Animals with McFarlane flaps receiving combined electromagnetic radiation had increased flap survival (78.0 percent) compared with animals receiving infrared radiation (69.7 percent) and untreated controls (63.1 percent, < 0.01). Thus, combined electromagnetic radiation provided a distinct advantage in wound healing that might augment current treatment regimens.
机译:据报道,光或电磁辐射可增强伤口愈合。已经描述了所选光谱的使用,包括红外和微波;但是,迄今为止,尚无研究检查组合这些光谱的潜在好处。在这项研究中,使用了一种可在红外和微波范围内发射电磁辐射的设备。为了测试这种独特的电磁辐射光谱对伤口愈合的影响,选择了两种临床相关的伤口愈合模型(即简单切口的抗张强度和McFarlane瓣的存活率)。在创建简单的全层切口(= 35只大鼠)或基于尾巴的McFarlane皮瓣(= 33只大鼠)后,将动物随机分配到以下三个治疗组之一:未治疗的对照组,红外线或联合电磁辐射。在有简单切口的动物中给予30分钟的治疗,每天两次,持续18天,在具有McFarlane皮瓣的动物中给予15天。收集伤口区域或皮瓣并进行分析,不了解治疗方案。通过方差分析获得的小于0.05的值被认为具有统计学意义。与接受红外辐射(2.36 N / mm 2)或未经处理的对照组(1.73 N / mm,<0.001)相比,接受组合电磁辐射的动物表现出更高的拉伸强度(2.62 N / mm)。与接受红外线辐射(69.7%)和未经治疗的对照组(63.1%,<0.01)相比,带有组合电磁辐射的麦克法兰皮瓣的动物皮瓣存活率提高了(78.0%)。因此,组合的电磁辐射在伤口愈合中提供了明显的优势,可以增强当前的治疗方案。

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