用于治疗脂肪团和局部肥胖的微波能量装置:“Onda Coolwaves”国际咨询委员会的建议。

IF 3.7 3区 医学 Q2 ENGINEERING, BIOMEDICAL Bioengineering Pub Date : 2024-12-09 DOI:10.3390/bioengineering11121249
Klaus Hoffmann, Elena Zappia, Paolo Bonan, Federica Coli, Luigi Bennardo, Matteo Tretti Clementoni, Valerio Pedrelli, Domenico Piccolo, Irina Poleva, Benedetta Salsi, Cristina Cuciti, Maria Stella Tarico, Cinzia Incandela, Carmine Andrea Nunziata, Francesco D'Andrea, Elisabetta Perosino, Simona Carpagnano, Paola Abramo, Angeline Annine Yong, Renato Soriani Paschoal, Maria Daniela Villavicencio Romero, Aura Ibeth Ruiz Rosas, Daniel Ricardo Galimberti, Athina Matekovits, Susanne Hjøllund Kjeldsen, Tina Jensen, Paolo Mezzana, Heba Msallam, Simone Ribero, Steven Paul Nisticò
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引用次数: 0

摘要

近年来,由于对局部脂肪、脂肪团和皮肤松弛的非侵入性治疗的持续需求,身体轮廓市场增长迅速。现在有很多不同的方法可以改善体型。这篇综述的目的是提供一个详尽的主要建议的最佳使用的创新设备提供微波(MWs)减少多余的脂肪和脂肪团(Onda Coolwaves, DEKA,佛罗伦萨,意大利),来自最专业的国际用户的经验。这项新技术的可用性已经导致越来越多的治疗患者和临床研究。然而,据我们所知,对这种方法的长期疗效和安全性的评估仍然缺失。根据最新的数据,本纲要侧重于提供安全有效的治疗方案的理想参数、患者选择和治疗方法。未来的研究结果可能建议对本报告的结论或建议进行修改。
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Microwave-Energy-Based Device for the Treatment of Cellulite and Localized Adiposity: Recommendations of the "Onda Coolwaves" International Advisory Board.

The body contour market has grown rapidly in recent years, due to persistent requests for noninvasive treatments for localized fat adiposities, cellulite, and skin laxity. A variety of different methods are now available to improve body shaping. This review aims to provide an exhaustive compendium of the main recommendations for the optimal use of an innovative device delivering microwaves (MWs) for unwanted fat and cellulite reduction (Onda Coolwaves, DEKA, Florence, Italy), resulting from the experiences of the most expert international users. The availability of this new technology has led to an increasing number of treated patients and clinical studies. However, what is still missing, to the best of our knowledge, is an evaluation of the long-term efficacy and safety of this method. Based on the most recent data available, this compendium focuses on the ideal parameters, patient selection, and treatment methodology for providing safe and effective treatment protocols. Future research findings may suggest changes to the conclusions or recommendations in this report.

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来源期刊
Bioengineering
Bioengineering Chemical Engineering-Bioengineering
CiteScore
4.00
自引率
8.70%
发文量
661
期刊介绍: Aims Bioengineering (ISSN 2306-5354) provides an advanced forum for the science and technology of bioengineering. It publishes original research papers, comprehensive reviews, communications and case reports. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. All aspects of bioengineering are welcomed from theoretical concepts to education and applications. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. There are, in addition, four key features of this Journal: ● We are introducing a new concept in scientific and technical publications “The Translational Case Report in Bioengineering”. It is a descriptive explanatory analysis of a transformative or translational event. Understanding that the goal of bioengineering scholarship is to advance towards a transformative or clinical solution to an identified transformative/clinical need, the translational case report is used to explore causation in order to find underlying principles that may guide other similar transformative/translational undertakings. ● Manuscripts regarding research proposals and research ideas will be particularly welcomed. ● Electronic files and software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. ● We also accept manuscripts communicating to a broader audience with regard to research projects financed with public funds. Scope ● Bionics and biological cybernetics: implantology; bio–abio interfaces ● Bioelectronics: wearable electronics; implantable electronics; “more than Moore” electronics; bioelectronics devices ● Bioprocess and biosystems engineering and applications: bioprocess design; biocatalysis; bioseparation and bioreactors; bioinformatics; bioenergy; etc. ● Biomolecular, cellular and tissue engineering and applications: tissue engineering; chromosome engineering; embryo engineering; cellular, molecular and synthetic biology; metabolic engineering; bio-nanotechnology; micro/nano technologies; genetic engineering; transgenic technology ● Biomedical engineering and applications: biomechatronics; biomedical electronics; biomechanics; biomaterials; biomimetics; biomedical diagnostics; biomedical therapy; biomedical devices; sensors and circuits; biomedical imaging and medical information systems; implants and regenerative medicine; neurotechnology; clinical engineering; rehabilitation engineering ● Biochemical engineering and applications: metabolic pathway engineering; modeling and simulation ● Translational bioengineering
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