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    • 87. 发明申请
    • ELECTROWETTING OPTICAL SWITCH
    • 电光开关
    • WO2004027490A1
    • 2004-04-01
    • PCT/IB2003/004030
    • 2003-09-12
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.HENDRIKS, Bernardus, H., W.KUIPER, Stein
    • HENDRIKS, Bernardus, H., W.KUIPER, Stein
    • G02B26/02
    • G02B3/14G02B26/005G11B7/1369G11B7/13925G11B2007/0006
    • A switchable optical element having a first discrete state and a different, second discrete state. The element comprises a fluid system including a first fluid (44) and a different, second fluid (46), a wavefront modifier (26) having a face (28); and a fluid system switch for acting on the fluid system to switch between the first and second discrete states of the element. When the element is in the first discrete state, the face (28) of the wavefront modifier (26) is substantially covered by the first fluid (44). When the element is in the second discrete state, the face of the wavefront modifier is substantially covered by the second fluid (46). The fluid system switch comprises a configuration of electrodes arranged to act on the fluid system by the application of electrowetting forces and a voltage control system arranged to control voltages applied to the configuration of electrodes to switch between the first and second discrete states of the element.
    • 一种具有第一离散状态和不同的第二离散状态的可切换光学元件。 该元件包括流体系统,该流体系统包括第一流体(44)和不同的第二流体(46),具有面(28)的波前修正器(26); 以及用于作用在流体系统上以在元件的第一和第二离散状态之间切换的流体系统开关。 当元件处于第一离散状态时,波前修正器(26)的面(28)基本上被第一流体(44)覆盖。 当元件处于第二离散状态时,波前修正器的表面基本上被第二流体(46)覆盖。 流体系统开关包括布置成通过施加电润湿力作用在流体系统上的电极的配置,以及被配置为控制施加到电极配置的电压以在元件的第一和第二离散状态之间切换的电压控制系统。
    • 88. 发明申请
    • ELECTROWETTING DEVICE
    • 电镀设备
    • WO2011042835A1
    • 2011-04-14
    • PCT/IB2010/054378
    • 2010-09-29
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.KUIPER, SteinWEEKAMP, Johannes Wilhelmus
    • KUIPER, SteinWEEKAMP, Johannes Wilhelmus
    • G02B3/14G02B26/02
    • G02B3/14G02B26/005
    • The invention relates to an electrowetting-on-dielectric device (200). This is an electro wetting device comprising one or more cells, wherein each cell comprises an electrowetting composition of first and second immiscible fluids, the first fluid being an electrolytic solution (240), a first electrode (230), separated from the electrowetting composition by a dielectric (231), and a voltage source (260) for applying an operating voltage difference between the first electrode (230) and the electrolytic solution to operate the electrowetting device. According to the invention, the first electrode (230) of the electrowetting-on-dielectric device (200) comprises a valve metal, and the electrolytic solution (240) is capable of anodizing the valve metal to form a metal oxide at the operating voltage difference. This provides the electrowetting-on-dielectric device (200) with self- repairing properties thereby preventing breakdown of the dielectric. As a result, the electrowetting device can be operated at a low voltage, and it has an improved reliability.
    • 本发明涉及一种电润湿介电装置(200)。 这是一种包含一个或多个电池的电润湿装置,其中每个电池包括第一和第二不混溶流体的电润湿组合物,第一流体是电解溶液(240),第一电极(230),由电润湿组合物与电润湿组合物分离 电介质(231)和用于在第一电极(230)和电解液之间施加工作电压差的电压源(260),以操作电润湿装置。 根据本发明,电润湿介电装置(200)的第一电极(230)包括阀金属,并且电解液(240)能够在操作电压下阳极氧化阀金属以形成金属氧化物 区别。 这提供了具有自修复特性的电介质电介质器件(200),从而防止电介质的破坏。 结果,电润湿装置可以在低电压下操作,并且其可靠性提高。
    • 90. 发明申请
    • OBTAINING OPTICAL TISSUE PROPERTIES
    • 获得光学组织特性
    • WO2008068685A1
    • 2008-06-12
    • PCT/IB2007/054846
    • 2007-11-29
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.HENDRIKS, Bernardus, H., W.KUIPER, SteinDE BOER, Ruth, W., I.BRAUN, Augustinus, L.VAN BEEK, Michael, C.RENSEN, Wouter, H., J.
    • HENDRIKS, Bernardus, H., W.KUIPER, SteinDE BOER, Ruth, W., I.BRAUN, Augustinus, L.VAN BEEK, Michael, C.RENSEN, Wouter, H., J.
    • A61B5/00
    • A61B5/0066A61B5/0071A61B5/0075A61B5/0084A61B5/6848
    • This application describes a medical device (230) for obtaining optical tissue properties of a target material. The medical device (230) comprises an elongated body (231) having a longitudinal axis (232) and an optical fiber being integrated within the elongated body (231). The optical fiber has a second fiber end (242, 242a, 242b), which is arranged at a side wall (233) of the elongated body (231) and which provides a lateral field of view with respect to the longitudinal axis (232). According to an embodiment many optical fibers are integrated each having an optical outlet (242, 242a, 242b) around the elongated body (231). Using the outlets (242, 242a, 242b) to do diffuse optical tomography and also use optical fibers to do an optical inspection, one can get information on the presence of tumors in a volume around the medical device (230) and a tissue characterization in the vicinity of the medical device (230). Thereby, an optical biopsy may be carried out, wherein no real tissue is removed. According to another embodiment an optical detection system is integrated into a real biopsy needle (330) allowing inspection and taking real biopsy simultaneously.
    • 本申请描述了用于获得目标材料的光学组织性质的医疗装置(230)。 医疗装置(230)包括具有纵向轴线(232)的细长主体(231)和整合在细长主体(231)内的光纤。 光纤具有第二光纤端(242,242a,242b),其被布置在细长主体(231)的侧壁(233)处,并且相对于纵向轴线(232)提供横向视场, 。 根据实施例,许多光纤被集成为每个都具有围绕细长主体(231)的光学出口(242,242a,242b)。 使用出口(242,242a,242b)进行漫射光学层析成像,并且还使用光纤进行光学检查,可以获得关于医疗装置周围的体积肿瘤的存在的信息(230)和组织表征 医疗装置(230)的附近。 因此,可以进行光学活检,其中不去除真实的组织。 根据另一个实施例,光学检测系统被集成到实际的活检针(330)中,允许同时进行检查和进行实际的活检。