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    • 4. 发明申请
    • A SKIN TREATMENT DEVICE
    • 皮肤处理装置
    • WO2017097923A1
    • 2017-06-15
    • PCT/EP2016/080300
    • 2016-12-08
    • KONINKLIJKE PHILIPS N.V.
    • VARGHESE, BabuBARAGONA, MarcoPALERO, Jonathan, AlambraJURNA, MartinHORTON, Margaret, RuthEZERSKAYA, Anna
    • A61B18/20A61N5/06
    • A61B18/203A61B2018/0047A61B2018/2035A61B2018/2266A61N5/0616A61N2005/067
    • The invention relates to a skin treatment device (10) for fractional treatment of the skin (100) of a human being. A radiation source (5) emits a multi-mode laser beam (20) with a superposition (23) of mutually different higher-order laser modes. The multi-mode laser beam is configured by said superposition of different laser modes to simultaneously cause a first plurality of high-intensity zones, where the thermal threshold (TC) for collagen denaturation for the treatment zone (50) of the skin is at least reached, and a second plurality of low-intensity zones where the thermal threshold (TF) for fibroblast stimulation for the treatment zone of the skin is at least reached. This is advantageous for obtaining a skin treatment device with a simple and therefore low-cost fractional laser skin treatment system for combined collagen denaturation and fibroblast stimulation. The skin treatment device is based on non-uniform laser radiation in the form of the multi-mode laser beam.
    • 本发明涉及一种用于对人的皮肤(100)进行分级处理的皮肤处理装置(10)。 辐射源(5)发射具有相互不同的高阶激光模式的叠加(23)的多模式激光束(20)。 通过所述不同激光模式的叠加来配置多模式激光束以同时引起第一多个高强度区域,其中用于皮肤的治疗区域(50)的胶原变性的热阈值(TC)至少为 以及第二多个低强度区域,其中至少达到用于皮肤的治疗区域的成纤维细胞刺激的热阈值(TF)。 这对于获得具有用于组合胶原蛋白变性和成纤维细胞刺激的简单且因此低成本的分数激光皮肤处理系统的皮肤处理装置是有利的。 皮肤处理装置基于多模式激光束形式的非均匀激光辐射。
    • 9. 发明申请
    • A HAND-HELD DEVICE FOR PERFORMING A TREATMENT OPERATION
    • WO2020035405A1
    • 2020-02-20
    • PCT/EP2019/071406
    • 2019-08-09
    • KONINKLIJKE PHILIPS N.V.
    • PALERO, Jonathan, AlambraVAN ABEELEN, Frank, AntonMOESKOPS, Bastiaan, Wilhelmus, MariaBOURQUIN, Yannyk, Parulian, JulianTHUMMA, Kiran, Kumar
    • A81B18/20
    • According to an aspect, there is provided a hand-held skin treatment device (2) for applying light to skin of a subject to perform a treatment operation. The hand-held device (2) comprises a rigid main housing (4) accommodating a cooling unit (19); a first treatment head portion (12) coupled to the main housing (4) for performing the treatment operation on a first skin portion, wherein the first treatment head portion (12) comprises a first optical waveguide (16) having a first skin-contact surface (17) with a first total surface area, a first light source (14) for generating light and applying the light to the first skin portion via the first optical waveguide (16) and the first skin-contact surface (17), and a first heat sink (18) thermally coupled to the first light source (14) and to the cooling unit (19); a second treatment head portion (20) for performing the treatment operation on a second skin portion adjacent to the first skin portion, wherein the second treatment head portion (20) comprises a second optical waveguide (24) having a second skin-contact surface (25) with a second total surface area, a second light source (22) for generating light and applying the light to the second skin portion via the second optical waveguide (24) and the second skin-contact surface (25), and a second heat sink (26) thermally coupled to the second light source (22); wherein the hand-held device (2) is operable in (i) a first configuration in which the first and second treatment head portions (12; 20) are in a first spatial arrangement relative to the main housing (4) such that, in an operational position of the main housing (4) relative to the skin, only the first skin-contact surface (17) is arranged in a treatment position relative to the main housing (4) such as to be able to contact the skin over the first total surface area; and (ii) a second configuration in which the second treatment head portion (20) is coupled to the main housing (4) and the second heat sink (26) is thermally coupled to the cooling unit (19), and in which the first and second treatment head portions (12; 20) are in a second spatial arrangement relative to the main housing (4), different from the first spatial arrangement, such that, in the operational position of the main housing (4), the first skin-contact surface (17) and the second skin-contact surface (25) are each arranged in a treatment position relative to the main housing (4) such as to be able to contact the skin over, respectively, the first total surface area and the second total surface area.