REGIONAL OXIMETRY POD
    3.
    发明申请

    公开(公告)号:US20180146901A1

    公开(公告)日:2018-05-31

    申请号:US15801257

    申请日:2017-11-01

    Abstract: A regional oximetry pod drives optical emitters on regional oximetry sensors and receives the corresponding detector signals in response. The sensor pod has a dual sensor connector configured to physically attach and electrically connect one or two regional oximetry sensors. The pod housing has a first housing end and a second housing end. The dual sensor connector is disposed proximate the first housing end. The housing at least partially encloses the dual sensor connector. A monitor connector is disposed proximate a second housing end. An analog board is disposed within the pod housing and is in communications with the dual sensor connector. A digital board is disposed within the pod housing in communications with the monitor connector.

    SHIELDED CONNECTOR ASSEMBLY
    4.
    发明申请
    SHIELDED CONNECTOR ASSEMBLY 有权
    屏蔽连接器总成

    公开(公告)号:US20150140863A1

    公开(公告)日:2015-05-21

    申请号:US14518376

    申请日:2014-10-20

    Abstract: A connector assembly according to embodiments of the present disclosure is advantageously configured to allow a sensor connector to straightforwardly and efficiently join with and detach from a patient cable connector. Further, embodiments of the connector assembly advantageously reduce un-shielded area in an electrical connection between a patient cable and a sensor connector. In addition, embodiments of the connector assembly advantageously increase the shielding of detector signals coming from the patient sensor to the monitor.

    Abstract translation: 根据本公开的实施例的连接器组件有利地构造成允许传感器连接器直接且有效地与患者电缆连接器连接并脱离。 此外,连接器组件的实施例有利地减少患者电缆和传感器连接器之间的电连接中的未屏蔽区域。 此外,连接器组件的实施例有利地将来自患者传感器的检测器信号的屏蔽增加到监视器。

    REGIONAL OXIMETRY POD
    5.
    发明申请
    REGIONAL OXIMETRY POD 有权
    区域OXIMETRY POD

    公开(公告)号:US20150099951A1

    公开(公告)日:2015-04-09

    申请号:US14507639

    申请日:2014-10-06

    Abstract: A regional oximetry pod drives optical emitters on regional oximetry sensors and receives the corresponding detector signals in response. The sensor pod has a dual sensor connector configured to physically attach and electrically connect one or two regional oximetry sensors. The pod housing has a first housing end and a second housing end. The dual sensor connector is disposed proximate the first housing end. The housing at least partially encloses the dual sensor connector. A monitor connector is disposed proximate a second housing end. An analog board is disposed within the pod housing and is in communications with the dual sensor connector. A digital board is disposed within the pod housing in communications with the monitor connector.

    Abstract translation: 区域血氧饱和度测量盘驱动区域血氧测定传感器上的光发射器,并接收相应的检测器信号作为响应。 传感器盒具有双传感器连接器,其被配置为物理地附接和电连接一个或两个区域血氧测定传感器。 荚壳体具有第一壳体端部和第二壳体端部。 双传感器连接器设置在第一外壳端附近。 壳体至少部分地包围双传感器连接器。 显示器连接器设置在第二壳体端附近。 模拟板设置在荚壳体内并与双传感器连接器通信。 数字板被放置在与显示器连接器通信的盒壳体内。

    EAR SENSOR
    6.
    发明申请
    EAR SENSOR 有权
    EAR传感器

    公开(公告)号:US20140058230A1

    公开(公告)日:2014-02-27

    申请号:US13975008

    申请日:2013-08-23

    Abstract: An ear sensor provides a sensor body having a base, legs extending from the base and an optical housing disposed at ends of the legs opposite the base. An optical assembly is disposed in the housing. The sensor body is flexed so as to position the housing over a concha site. The sensor body is unflexed so as to attach the housing to the concha site and position the optical assembly to illuminate the concha site. The optical assembly is configured to transmit optical radiation into concha site tissue and receive the optical radiation after attenuation by pulsatile blood flow within the tissue.

    Abstract translation: 耳朵传感器提供一个传感器主体,该传感器本体具有一个底座,从该基座延伸的腿部和一个位于腿部相对于底座的端部的光学壳体。 光学组件设置在壳体中。 传感器主体被弯曲以便将壳体定位在外耳位置上。 传感器主体是未折叠的,以将壳体附接到外耳部位并且定位光学组件以照射外耳部位。 光学组件被配置为将光辐射传输到口腔部位组织中,并且在通过组织内的脉动血液流动衰减之后接收光学辐射。

    Patient-worn wireless physiological sensor

    公开(公告)号:US11412939B2

    公开(公告)日:2022-08-16

    申请号:US16242507

    申请日:2019-01-08

    Abstract: A wireless, patient-worn, physiological sensor configured to, among other things, help manage a patient that is at risk of forming one or more pressure ulcers is disclosed. According to an embodiment, the sensor includes a base having a top surface and a bottom surface. The sensor also includes a substrate layer including conductive tracks and connection pads, a top side, and a bottom side, where the bottom side of the substrate layer is disposed above the top side of the base. Mounted on the substrate layer are a processor, a data storage device, a wireless transceiver, an accelerometer, and a battery. In use, the sensor senses a patient's motion and wirelessly transmits information indicative of the sensed motion to, for example, a patient monitor. The patient monitor receives, stores, and processes the transmitted information.

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