射频电不对称输送器(REAC)对压疮(PU)和烧伤(BI)的修复作用:两例报告

Radio Electric Asymmetric Conveyer (REAC) Reparative Effects on Pressure Ulcer (PU) and Burn Injury (BI): A Report of Two Cases.

作者信息

Fontani Vania, Coelho Pereira José Alfredo, Carréra Bittencourt Margarete, Rinaldi Salvatore

机构信息

Research Department, Rinaldi Fontani Foundation, Florence, ITA.

Department of Regenerative Medicine, Rinaldi Fontani Institute, Florence, ITA.

出版信息

Cureus. 2022 Jul 20;14(7):e27060. doi: 10.7759/cureus.27060. eCollection 2022 Jul.

Abstract

Pressure ulcer (PU) and burn injury (BI) represent two types of wounds that require broad and difficult fields of treatments. Despite various advances made in recent years, these injuries have few solutions that allow recovery in shorter times and with greater effectiveness. All this negatively affects the patient's quality of life. Since ancient times, with the use of torpedoes (a kind of fish capable of producing electric discharges), it has been believed that the use of electricity could favor the repair processes of various kinds of wounds. Today, technological evolution has allowed the creation of more and more advanced techniques that can determine a better reparative response of the injured tissues. The radio electric asymmetric conveyer (REAC) technology is one of these and the reparative tissue optimization (TO-RPR) treatment represents the specific treatment for these lesions. The two cases presented in this article are intended to highlight how two serious injuries of a different nature, when treated with the REAC TO-RPR, have the same rapid qualitative and quantitative recovery path that continues even after the end of the treatment cycle. The stability and progression of the effects are typical of REAC treatments, and in this article, it is possible to appreciate the clinical evidence. These results together with others previously published open a new therapeutic possibility in the treatment of wounds.

摘要

压疮(PU)和烧伤(BI)是两类需要广泛且复杂治疗领域的伤口。尽管近年来取得了各种进展,但这些损伤很少有能在更短时间内实现更有效恢复的解决方案。所有这些都对患者的生活质量产生了负面影响。自古以来,人们就认为使用电(通过使用电鳐这种能产生放电的鱼)可能有利于各类伤口的修复过程。如今,技术的发展使得越来越先进的技术得以创造出来,这些技术能够确定受伤组织更好的修复反应。无线电不对称输送器(REAC)技术就是其中之一,而修复组织优化(TO - RPR)治疗则代表了针对这些损伤的特定治疗方法。本文介绍的两个病例旨在突出说明,当用REAC TO - RPR治疗时,两种不同性质的严重损伤如何具有相同的快速定性和定量恢复路径,且在治疗周期结束后仍会持续。疗效的稳定性和进展是REAC治疗的典型特征,在本文中,可以看到临床证据。这些结果与之前发表的其他结果一起为伤口治疗开辟了新的治疗可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0416/9303832/3611cdf3b218/cureus-0014-00000027060-i01.jpg

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