Ultrasound Evaluation of a Single Treatment With a Temperature Controlled Multi-Frequency Monopolar Radio Frequency Device for the Improvement of Localized Adiposity on the Abdomen and Flanks

IF 1.5 4区 医学 Q3 DERMATOLOGY Journal of Drugs in Dermatology Pub Date : 2020-01-01 DOI:10.36849/JDD.2020.4568
Amy Taub, James Bartholomeusz
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引用次数: 2

Abstract

BACKGROUND AND OBJECTIVES: Energy modalities used for fat reduction include cryotherapy, focused and unfocused ultrasound, radiofrequency, and laser. Two devices have been proven to reduce fat layer thickness using ultrasound as measurement after a single treatment. We hypothesized that a novel, high frequency monopolar radiofrequency device could increase the fat temperature enough to reduce its thickness as measured by ultrasound, without excessively increasing the temperature of the skin, leading to a safe, tolerable, and clinically relevant reduction of fat. STUDY DESIGN/MATERIALS AND METHODS: A high frequency monopolar radiofrequency platform was used to treat twelve patients on the abdomen or flanks (truSculpt® 3D, Cutera, Brisbane, CA). Each patient received one treatment session, consisting of 15-minute increments for four areas (60 minutes total). Each area (approximately 144 cm2) was treated with a gliding handpiece technique to a skin temperature of 44-45˚C, correlating to in vivo measurements of the subcutaneous layer of >45˚C. Patients were evaluated at eight- and twelve-weeks following treatment. Clinical efficacy was measured using 360˚ positioned clinical photography. Fat layer reduction was measured with ultrasound. Safety was assessed by the treating physician; patient comfort was assessed during treatment via a 10-point pain scale. RESULTS: All patients responded to treatment. Ultrasound measurements indicated mean fat layer reduction of 4.6 mm, which correlated with a 24% reduction in fat layer thickness at 12 weeks. A significant improvement was noted between the 8-week and the 12-week follow up. A high level of inter-patient consistency was achieved with most patients (10/12= 83%) having an average fat thickness reduction of >20%. No adverse events were observed, and pain scores during the treatment session ranged from 2 to 4 out of 10. CONCLUSION: High frequency monopolar radiofrequency device produced consistent and statistically significant fat thickness reduction from a single 60-minute treatment session, with minimal discomfort and no demonstrated side effects. Results are comparable to other hypo- and hyper-thermic fat treatment technologies. KEY WORDS: fat reduction, radiofrequency, monopolar RF, fat thickness reduction, body sculpting J Drugs Dermatol. 2020;19(1):28-34. doi:10.36849/JDD.2020.4568

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温控多频单极射频装置单次治疗改善腹部及侧腹局部肥胖的超声评价
背景和目的:用于减脂的能量方式包括冷冻疗法、聚焦和非聚焦超声、射频和激光。两种设备已被证明可以在单次治疗后使用超声波作为测量来减少脂肪层厚度。我们假设一种新型的高频单极射频设备可以将脂肪温度提高到足以减少超声测量的厚度,而不会过度增加皮肤温度,从而导致安全,耐受和临床相关的脂肪减少。研究设计/材料和方法:使用高频单极射频平台治疗12例腹部或侧腹患者(truSculpt®3D, Cutera, Brisbane, CA)。每位患者接受一次治疗,包括四个区域15分钟的增量(总共60分钟)。每个区域(约144 cm2)使用滑动机头技术处理到44-45˚C的皮肤温度,与>45˚C的皮下层的体内测量值相关。在治疗后8周和12周对患者进行评估。采用360˚定位临床摄影测量临床疗效。超声检测脂肪层减少情况。安全性由治疗医师评估;在治疗期间,通过10分疼痛量表评估患者的舒适度。结果:所有患者对治疗均有反应。超声测量显示脂肪层平均减少4.6 mm,与12周时脂肪层厚度减少24%相关。在8周和12周的随访中发现了显著的改善。大多数患者(10/12= 83%)的平均脂肪厚度减少>20%,实现了患者间的高度一致性。没有观察到不良事件,治疗期间的疼痛评分在2到4分(满分10分)之间。结论:高频单极射频装置在单次60分钟的治疗过程中产生一致且具有统计学意义的脂肪厚度减少,不适最小,无副作用。结果与其他低温和高温脂肪处理技术相当。关键词:减脂,射频,单极射频,减脂,塑形[j] .药物与皮肤杂志,2020;19(1):28-34。doi: 10.36849 / JDD.2020.4568
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来源期刊
CiteScore
2.20
自引率
13.30%
发文量
289
审稿时长
3-6 weeks
期刊介绍: The Journal of Drugs in Dermatology (JDD) is a peer-reviewed publication indexed with MEDLINE®/PubMed® that was founded by the renowned Dr. Perry Robins MD. Founded in 2002, it offers one of the fastest routes to disseminate dermatologic information and is considered the fastest growing publication in dermatology. We present original articles, award-winning case reports, and timely features pertaining to new methods, techniques, drug therapy, and devices in dermatology that provide readers with peer reviewed content of the utmost quality. Our high standards of content are maintained through a balanced, peer-review process. Articles are reviewed by an International Editorial Board of over 160 renowned experts.
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