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    • 2. 发明申请
    • DISPOSABLE DISPENSER FOR PATIENT INFUSION
    • 用于患者输注的可配置的分配器
    • WO2006123329A2
    • 2006-11-23
    • PCT/IL2006/000569
    • 2006-05-14
    • MEDINGO LTD.IDDAN, Gavriel, J.YODFAT, Ofer
    • IDDAN, Gavriel, J.YODFAT, Ofer
    • A61B8/14
    • A61M5/14244A61M5/003A61M5/14224A61M5/14232A61M5/14236A61M5/14248A61M5/16809A61M5/172A61M5/422A61M2205/0244A61M2205/3569A61M2205/3592A61M2205/3606
    • Embodiments of the invention are directed to methods and systems associated with a disposable dispenser (100, 200) of therapeutic fluid. Preferred embodiments having a small size of less than about 75mm in length, less than 50 mm in width and less than about 10 mm in thickness and may be releasably attached to the body (B). In one embodiments, the dispenser draws fluid from a flexible volume-conformable reservoir (4) and operates a dosing and metering pump (6, 61, 62, 63) incorporating a motor to deliver fluid through a fluid delivery tool (8, 81, 82). Disposed on the housing bottom (2B) is a peel-of-tape (22) that when removed, electrically connects a power supply (18) to power the operative components (3) of the dispenser into operation, exposes an adhesive (28) and a window (21) opened in the housing (2), and allows the fluid delivery tool (8) to extend for insertion into the skin (S).
    • 本发明的实施例涉及与治疗流体的一次性分配器(100,200)相关联的方法和系统。 优选实施例具有长度小于约75mm,宽度小于50mm,厚度小于约10mm的小尺寸,并且可以可释放地附接到主体(B)。 在一个实施例中,分配器从柔性体积适形的储存器(4)抽取流体,并且操作包含马达的计量泵和计量泵(6,61,62,63),以将流体输送通过流体输送工具(8,81,62) 82)。 设置在壳体底部(2B)上的是剥离胶带(22),当移除时,将电源(18)电连接以对分配器的操作部件(3)供电进行操作,暴露粘合剂(28) 以及在壳体(2)中敞开的窗口(21),并允许流体输送工具(8)延伸以插入皮肤(S)。
    • 10. 发明申请
    • SYSTEM AND METHOD FOR DETERMINING LOCATION AND ORIENTATION OF A DEVICE IN-VIVO
    • 用于确定设备内部位置和方位的系统和方法
    • WO2012104733A2
    • 2012-08-09
    • PCT/IB2012/000953
    • 2012-02-01
    • GIVEN IMAGING LTD.IDDAN, Gavriel, J.
    • IDDAN, Gavriel, J.
    • A61B1/31
    • A61B8/0841A61B1/00158A61B1/041A61B5/065A61B5/073A61B8/52A61B8/54A61B17/00234
    • A system and method for determining location and orientation of an in-vivo device, with respect to an external system in which the device is located include a frame with external magnets attached thereon. An in-vivo device is inserted into the patient's body, which is placed within the system, and the external magnets apply magnetic forces on the in-vivo device. A radio beacon transmitter is attached to the frame for transmitting a radio pulse. The in-vivo device includes an ultrasonic transmitter for transmitting an ultrasonic signal, which is triggered by the radio pulse. At least three transponders are placed on the patient' s body, each transponder sending a first acoustic signal triggered by the radio pulse, and each sending a second acoustic signal triggered by the device's ultrasonic signal. At least three sonic detectors are located on the frame for detecting each of the transponders' first and second sonic signals, and a processor measures time of detection of the transponders' signals and thus calculates location of the device in frame coordinates, and in body coordinates.
    • 用于确定体内装置的相对于装置所在的外部系统的位置和取向的系统和方法包括附接有外部磁体的框架。 将体内装置插入到放置在系统内的患者体内,外部磁体对体内装置施加磁力。 无线电信标发射机附接到帧以发送无线电脉冲。 体内装置包括用于发送由无线电脉冲触发的超声波信号的超声波发射器。 至少三个转发器被放置在患者身上,每个应答器发送由无线电脉冲触发的第一声信号,并且每个发送由设备的超声信号触发的第二声信号。 至少三个声波检测器位于帧上用于检测每个应答器的第一和第二声音信号,并且处理器测量应答器信号的检测时间,并且因此以帧坐标和身体坐标计算设备的位置 。