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采用填充紧凑型超材料的波导孔径天线实现皮肤紧致效果的射频热疗系统。

Radio frequency hyperthermia system for skin tightening effect by filled waveguide aperture antenna with compact metamaterials.

作者信息

Kim Ikhwan, Lee Dong-Min, Shin Jae-Woo, Lee Gyoun-Jung, Kim Eun-Seong, Kim Nam-Young

机构信息

RFIC Bio Center, Kwangwoon University, Seoul, Republic of Korea.

Department Electronic Engineering, Kwangwoon University, Seoul, Republic of Korea.

出版信息

Front Bioeng Biotechnol. 2024 Mar 28;12:1378084. doi: 10.3389/fbioe.2024.1378084. eCollection 2024.

Abstract

Radio frequency (RF) hyperthermia focuses on raising the target area temperature to a value exceeding 45°C. Collagen is stimulated when the temperature rises to 45°C at the dermal layer, resulting in skin tightening. However, most studies on RF hyperthermia have focused on tumor ablation or using electrodes to radiate an electromagnetic field, which is highly inefficient. This study proposed a non-invasive RF hyperthermia skin-tightening system with a compact metamaterial-filled waveguide aperture antenna. The proposed RF system increased the temperature by 11.6°C and 35.3°C with 20 and 80 W of 2.45 GHz RF power, respectively, within 60 s and exhibited a very focused effective area. Furthermore, a metamaterial was proposed to reduce the size of the waveguide aperture antenna and focus the electromagnetic field in the near-field region. The proposed metamaterial-filled waveguide aperture antenna was compact, measuring 10 mm × 17.4 mm, with a peak gain of 2.2 dB at 2.45 GHz. The measured hyperthermia performance indicated that the proposed RF system exhibited better power- and time-efficient hyperthermia performance than other RF hyperthermia systems in the cosmetic skin lifting commercial market. The proposed RF hyperthermia systems will be applied into a new generation of beauty cosmetic devices.

摘要

射频(RF)热疗专注于将目标区域温度升高到超过45°C的值。当真皮层温度升至45°C时,胶原蛋白会受到刺激,从而导致皮肤紧致。然而,大多数关于射频热疗的研究都集中在肿瘤消融或使用电极辐射电磁场,效率非常低。本研究提出了一种采用紧凑型超材料填充波导孔径天线的非侵入性射频热疗皮肤紧致系统。所提出的射频系统在60秒内分别使用20瓦和80瓦的2.45吉赫兹射频功率将温度升高了11.6°C和35.3°C,并且显示出非常聚焦的有效区域。此外,还提出了一种超材料以减小波导孔径天线的尺寸并在近场区域聚焦电磁场。所提出的超材料填充波导孔径天线体积紧凑,尺寸为10毫米×17.4毫米,在2.45吉赫兹时的峰值增益为2.2分贝。热疗性能测量表明,在所研究的美容皮肤紧致商业市场中,所提出的射频系统比其他射频热疗系统具有更好的功率和时间效率的热疗性能。所提出的射频热疗系统将应用于新一代美容化妆品设备。

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