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    • 41. 发明申请
    • MICROFLUIDIC DEVICES AND METHODS FOR PRODUCING PULSED MICROFLUIDIC JETS IN A LIQUID ENVIRONMENT
    • 用于在液体环境中生产脉冲微流体喷射的微流体装置和方法
    • WO00071038A1
    • 2000-11-30
    • PCT/US2000/013762
    • 2000-05-19
    • A61B17/22A61B17/32A61F9/007A61F9/011A61B17/39
    • A61B17/3203A61B2017/22008A61B2017/32032A61B2018/263A61F9/00736A61F9/00825
    • Micro-fluid devices (10), and methods for their use in producing pulsed micro-fluid jets in a fluid environment are provided. The subject micro-fluid devices are characterized by the presence of a micro-fluid chamber (14) at their distal ends. The micro-fluid chamber (14) is bounded by an opening (16) at one end, a vapor producing means (18) opposite the opening (16), and sidewalls between the opening, and the vapor producing means (18). The micro-fluid chambers (14) are further characterized in that the only way fluid can exit the micro-fluid chambers is through the opening (16). In using the subject devices to produce a fluid jet in a fluid environment, the chamber is first contacted with the fluid environment. The vapor producing means (18) is then actuated in a manner sufficient to produce a vapor bubble (11) in the chamber (14) which, in turn, produces a micro-fluid jet in the fluid environment. The subject devices (10), and methods find use in a variety of different applications, e.g., cutting tissue, introducing fluid into a cell, and the like.
    • 提供微流体装置(10)及其在流体环境中生产脉冲微流体射流中的方法。 目标微流体装置的特征在于在其远端处存在微流体室(14)。 微流体室(14)由一端的开口(16),与开口(16)相对的蒸气产生装置(18)以及开口和蒸气产生装置(18)之间的侧壁限定。 微流体室(14)的特征还在于流体可以离开微流体室的唯一方式是通过开口(16)。 在使用主体装置在流体环境中产生流体射流时,腔室首先与流体环境接触。 然后,蒸汽产生装置(18)以足以在室(14)中产生蒸汽气泡(11)的方式被致动,这又在流体环境中产生微流体射流。 主题装置(10)和方法可用于各种不同的应用,例如切割组织,将流体引入细胞等。
    • 48. 发明公开
    • SKIN TREATMENT SYSTEM AND METHOD
    • HAUTBEHANDLUNGSSYSTEM
    • EP2804659A1
    • 2014-11-26
    • EP13762558.8
    • 2013-06-25
    • Koninklijke Philips N.V.
    • BRATCHENIA, AliaksandrVERHAGEN, Rieko
    • A61M37/00A61B18/20A61N1/32A61M5/30A61N5/06
    • A61N5/062A61B18/203A61B18/26A61B2018/00452A61B2018/0047A61B2018/00577A61B2018/202A61B2018/263A61B2018/266A61M5/14248A61M37/00A61M2005/3022A61M2037/0007A61M2205/058A61N5/0616
    • A system (101) for treatment of an epithelial tissue layer (3) is provided. The system comprises a reservoir (107), for containing an amount of a flowable medium, arranged to enable the medium, when contained in the reservoir, to be in contact with a surface (5) of the epithelial tissue layer, a light source (109) for generating a laser beam (11) during at least a predetermined pulse time, and an optical system for focusing the laser beam into a focal spot (15), and for positioning the focal spot in a target position. The target position of the focal spot is within the reservoir and within the medium, when contained in the reservoir, and the dimension of the focal spot and the power of the generated laser beam are such that, in the focal spot, the laser beam has a power density, which is above the characteristic threshold value for the medium, above which, for the predetermined pulse time, a laser induced optical breakdown event occurs in the medium. A method for treatment of an epithelial tissue layer is also provided.
    • 提供了一种用于治疗上皮组织层(3)的系统(101)。 该系统包括用于容纳一定量的可流动介质的储存器(107),其布置成使得当容纳在储存器中时能够使介质与上皮组织层的表面(5)接触,光源( 109),用于在至少预定的脉冲时间内产生激光束(11);以及光学系统,用于将激光束聚焦到焦斑(15)中,并将焦点定位在目标位置。 焦点的目标位置在储存器内并且在介质内,当容纳在储存器中时,焦点的尺寸和所产生的激光束的功率使得在焦点中激光束具有 功率密度高于介质的特征阈值,其中在预定脉冲时间内,在介质中发生激光诱导光击穿事件。 还提供了治疗上皮组织层的方法。