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    • 2. 发明授权
    • Devices and methods for improving accuracy of fluid delivery
    • 用于提高流体输送精度的装置和方法
    • US09446185B2
    • 2016-09-20
    • US12921702
    • 2009-03-12
    • Ofer YodfatAvihoo P. Keret
    • Ofer YodfatAvihoo P. Keret
    • A61M5/142A61M5/168F04B43/12
    • A61M5/14232A61M5/14248A61M5/16804A61M5/16831A61M5/16877A61M2205/50F04B43/1253
    • Devices and methods for delivering therapeutic fluid to a patient's body are described. The devices may comprise a dispensing unit having a reservoir, a driving mechanism having a movable member for delivering therapeutic fluid to a patient's body, at least one sensor for sensing a relative position of the movable member and generating a signal, and a processor for controlling the driving mechanism to deliver an amount of therapeutic fluid that compensates for a change in the flow of the therapeutic fluid occurring during fluid delivery. The methods may be implemented by operating the driving mechanism, receiving a signal based on the position of the movable member, determining an amount of therapeutic fluid to deliver, and controlling the driving mechanism to deliver an amount of fluid that compensates for a change in flow occurring during fluid delivery.
    • 描述了将治疗流体递送到患者身体的装置和方法。 所述装置可以包括具有储存器的分配单元,具有用于将治疗流体递送到患者身体的可移动构件的驱动机构,用于感测可移动构件的相对位置并产生信号的至少一个传感器,以及用于控制 用于输送一定量的治疗液体的驱动机构,其补偿在流体递送期间发生的治疗性流体的流动的变化。 这些方法可以通过操作驱动机构,基于可移动部件的位置接收信号,确定要输送的治疗流体的量,以及控制驱动机构来输送补偿流量变化的流体量来实现 在流体输送期间发生。
    • 4. 发明授权
    • Reciprocating delivery of fluids to the body with analyte concentration monitoring
    • 通过分析物浓度监测向体内往复运送流体
    • US08814822B2
    • 2014-08-26
    • US12116546
    • 2008-05-07
    • Ofer YodfatRuthy KaidarGali Shapira
    • Ofer YodfatRuthy KaidarGali Shapira
    • A61M31/00
    • A61B5/14865A61B5/14532A61B5/150022A61B5/150229A61B5/150389A61B5/150503A61B5/157A61B5/4839A61B5/6848A61B2560/0412A61B2560/0443A61M5/14248A61M5/1723A61M2005/1726
    • A volume of an analyte-enriched fluid can be withdrawn out of a user's subcutaneous compartment using a patch unit that includes a reversible pumping mechanism. The volume can be withdrawn out of the body and into the patch unit through a cannula inserted into the subcutaneous compartment so that an analyte concentration in the volume can be measured using a sensing element within the patch unit. After analyte concentration analysis, at least the volume can be delivered back into the subcutaneous compartment by operating the pumping mechanism in a forward direction. biologically compatible fluid can optionally be pumped into the subcutaneous compartment from a reservoir in the patch unit and then allowed to partially or completely equilibrate with the analyte concentration in the interstitial fluid of the subcutaneous compartment via a permeable or semi-permeable cannula surface before being drawn back into the patch unit for analysis. Related systems, apparatus, methods, and/or articles are also described.
    • 可以使用包括可逆泵送机构的贴片单元将一定体积的富含分析物的流体从使用者的皮下隔室中取出。 体积可以通过插入到皮下室中的插管从体内抽出并进入贴片单元,使得可以使用贴片单元内的感测元件来测量体积中的分析物浓度。 在分析物浓度分析之后,通过沿向前的方向操作泵送机构,至少体积可被输送回皮下室。 生物相容的流体可以任选地从贴片单元中的储器泵入皮下隔室中,然后在被拉伸之前通过可渗透或半渗透的套管表面部分地或完全地与皮下室的间质液中的分析物浓度平衡 回到补丁单位进行分析。 还描述了相关系统,装置,方法和/或制品。
    • 5. 发明授权
    • Detachable portable infusion device
    • 可拆卸便携式输液装置
    • US08747348B2
    • 2014-06-10
    • US13419182
    • 2012-03-13
    • Ofer YodfatDanna Perlman
    • Ofer YodfatDanna Perlman
    • A61M5/168
    • A61M5/14248A61M5/1413A61M5/1723A61M2005/14268A61M2205/14A61M2205/3569A61M2205/3592
    • A portable therapeutic apparatus and a method for controlling the apparatus are provided. In one aspect the apparatus and the method can be implemented using a patch unit (100, 200) removably attachable to a cradle unit (20), said cradle unit removably attachable to the body of the patient; a position detector (1000) comprising a patch portion (900) and a cradle portion (800), said patch portion coupled to the patch unit, said cradle portion coupled to the cradle unit; a processor adapted for receiving a position indication signal from the at least one position detector, said position indication signal corresponding to a physical proximity of the patch portion to the cradle portion, and, wherein the portable therapeutic apparatus is adapted for at least one therapeutic function selected from the group consisting of delivering a therapeutic fluid into the body of the patient and sensing a bodily analyte.
    • 提供一种便携式治疗仪器和一种用于控制该装置的方法。 在一个方面,所述装置和方法可以使用可移除地附接到支架单元(20)的贴片单元(100,200)来实现,所述支架单元可移除地附接到患者身体; 位置检测器(1000),包括贴片部分(900)和支架部分(800),所述贴片部分耦合到贴片单元,所述支架部分联接到支架单元; 适于从所述至少一个位置检测器接收位置指示信号的处理器,所述位置指示信号对应于所述补片部分到所述支架部分的物理接近,并且其中所述便携式治疗仪适用于至少一种治疗功能 选自将治疗流体递送到患者体内并感测身体分析物的组。
    • 8. 发明授权
    • Methods and devices for delivering fluid to a reservoir of a fluid delivery device
    • 用于将流体输送到流体输送装置的储存器的方法和装置
    • US08636041B2
    • 2014-01-28
    • US11989680
    • 2007-08-16
    • Ofer Yodfat
    • Ofer Yodfat
    • B65B1/04
    • A61J1/2096A61J1/201A61J1/2058A61M5/14244A61M5/14248A61M2005/14268A61M2209/045
    • Medical devices and methods for delivering therapeutic fluids transcutaneously to a body of a patient via a fluid delivery device and an adapter is provided. A Luer slip connector is provided at a first connecting end of the adapter. A therapeutic fluid container is connected with the second connecting end such that the container's neck is received in the second connecting end and a hollow penetrating member provided in the adapter punctures the septum of the container to admit the therapeutic fluid into a needle-less syringe from the container. After, fluid emerges from the tip of the penetrating member, the second connecting end of the adapter is attached to the fluid delivery device, thereby filling the reservoir with the fluid and pushing the syringe plunger forward to inject fluid into reservoir.
    • 提供了经由流体输送装置和适配器将治疗性流体经皮递送至患者身体的医疗装置和方法。 在适配器的第一连接端设置Luer滑动连接器。 治疗性流体容器与第二连接端连接,使得容器的颈部容纳在第二连接端,并且设置在适配器中的中空穿透构件刺穿容器的隔膜,以将治疗流体接纳到无针注射器中 容器 之后,流体从穿透构件的尖端出来,适配器的第二连接端附接到流体输送装置,从而用流体填充储存器并向前推动注射器柱塞以将流体注入储存器。