LOW-PROFILE SINGLE AND DUAL VASCULAR ACCESS DEVICE

    公开(公告)号:WO2018089849A3

    公开(公告)日:2018-05-17

    申请号:PCT/US2017/061179

    申请日:2017-11-10

    Abstract: A low-profile access port for subcutaneous implantation within a patient is disclosed. The access port includes a receiving cup that provides a relatively large subcutaneous target to enable catheter-bearing needle access to the port without difficulty. In one embodiment, a low- profile access port comprises a body including a conduit with an inlet port at a proximal end, and a receiving cup. The receiving cup is funnel shaped to direct a catheter-bearing needle into the conduit via the inlet port. The conduit is defined by the body and extends from the inlet port to an outlet defined by a stem. A bend in the conduit enables catheter advancement past the bend while preventing needle advancement. A valve/seal assembly is also disposed in the conduit and enables passage of the catheter therethrough while preventing fluid backflow. The body includes radiopaque indicia configured to enable identification of the access port via x- ray imaging.

    LOW-PROFILE SINGLE AND DUAL VASCULAR ACCESS DEVICE
    2.
    发明申请
    LOW-PROFILE SINGLE AND DUAL VASCULAR ACCESS DEVICE 审中-公开
    低剖面单一和双重血管通路装置

    公开(公告)号:WO2018089849A2

    公开(公告)日:2018-05-17

    申请号:PCT/US2017/061179

    申请日:2017-11-10

    Abstract: A low-profile access port for subcutaneous implantation within a patient is disclosed. The access port includes a receiving cup that provides a relatively large subcutaneous target to enable catheter-bearing needle access to the port without difficulty. In one embodiment, a low- profile access port comprises a body including a conduit with an inlet port at a proximal end, and a receiving cup. The receiving cup is funnel shaped to direct a catheter-bearing needle into the conduit via the inlet port. The conduit is defined by the body and extends from the inlet port to an outlet defined by a stem. A bend in the conduit enables catheter advancement past the bend while preventing needle advancement. A valve/seal assembly is also disposed in the conduit and enables passage of the catheter therethrough while preventing fluid backflow. The body includes radiopaque indicia configured to enable identification of the access port via x- ray imaging.

    Abstract translation: 披露了一种用于皮下植入患者体内的小型接入端口。 进入端口包括容纳杯,该容纳杯提供相对较大的皮下目标以使得带有导管的针能够毫无困难地进入端口。 在一个实施例中,低轮廓进入端口包括主体,该主体包括在近端处具有入口的导管和接收杯。 接收杯呈漏斗状,以通过入口将具有导管的针头引导到导管中。 导管由主体限定并从入口延伸至由杆限定的出口。 导管中的弯头使导管前进超过弯头,同时防止针前进。 阀门/密封组件也设置在导管中并且能够使导管通过,同时防止流体回流。 身体包括不透射线的标记,配置为能够通过X射线成像识别进入端口。

    ACCESS PORT IDENTIFICATION SYSTEMS AND METHODS
    3.
    发明公开
    ACCESS PORT IDENTIFICATION SYSTEMS AND METHODS 有权
    系统和用于鉴定ACCESS SPORTS

    公开(公告)号:EP2416828A1

    公开(公告)日:2012-02-15

    申请号:EP10762377.9

    申请日:2010-04-07

    Applicant: C.R. Bard Inc.

    Abstract: An access port for subcutaneous implantation is disclosed. Such an access port may comprise a body for capturing a septum for repeatedly inserting a needle into a cavity defined within the body. Further, the access port may include at least one feature structured and configured for identification of the access port subsequent to subcutaneous implantation. Methods of identifying a subcutaneously implanted access port are also disclosed. For example, a subcutaneously implanted access port may be provided and at least one feature of the subcutaneously implanted access port may be perceived. Further, the subcutaneously implanted access port may be identified in response to perceiving the at least one feature. In one embodiment, an identification feature is engraved or otherwise defined by the access port, so as to be visible after implantation via x-ray imaging technology.

    ACCESS PORT IDENTIFICATION SYSTEMS AND METHODS
    5.
    发明授权
    ACCESS PORT IDENTIFICATION SYSTEMS AND METHODS 有权
    访问端口标识系统和方法

    公开(公告)号:EP2416828B1

    公开(公告)日:2018-02-14

    申请号:EP10762377.9

    申请日:2010-04-07

    Applicant: C.R. Bard Inc.

    Abstract: An access port for subcutaneous implantation is disclosed. Such an access port may comprise a body for capturing a septum for repeatedly inserting a needle into a cavity defined within the body. Further, the access port may include at least one feature structured and configured for identification of the access port subsequent to subcutaneous implantation. Methods of identifying a subcutaneously implanted access port are also disclosed. For example, a subcutaneously implanted access port may be provided and at least one feature of the subcutaneously implanted access port may be perceived. Further, the subcutaneously implanted access port may be identified in response to perceiving the at least one feature. In one embodiment, an identification feature is engraved or otherwise defined by the access port, so as to be visible after implantation via x-ray imaging technology.

    IMPLANTABLE ACCESS PORT INCLUDING A SANDWICHED RADIOPAQUE INSERT
    6.
    发明公开
    IMPLANTABLE ACCESS PORT INCLUDING A SANDWICHED RADIOPAQUE INSERT 有权
    与分层使用透射线植入入口

    公开(公告)号:EP2887995A2

    公开(公告)日:2015-07-01

    申请号:EP13830592.5

    申请日:2013-08-21

    Applicant: C.R. Bard Inc.

    CPC classification number: A61M39/0208 A61B90/94 A61B2090/3966 A61M2039/0238

    Abstract: An access port for subcutaneous implantation is disclosed. The access port may include a body for capturing a septum for repeatedly inserting a needle therethrough into a cavity defined within the body. The access port may further include at least one feature structured and configured for identification of the access port subsequent to subcutaneous implantation. Methods of identifying a subcutaneously implanted access port are also disclosed. For example, a subcutaneously implanted access port may be provided and at least one feature of the subcutaneously implanted access port may be perceived. The subcutaneously implanted access port may be identified in response to perceiving the at least one feature. In one embodiment, an identification feature is included on a molded insert that is sandwiched between base and cap portions of the access port so as to be visible after implantation via x-ray imaging technology.

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