会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 32. 发明申请
    • PULSE OXIMETRY SYSTEM WITH LOW NOISE CABLE HUB
    • 具有低噪声电缆总线的脉冲氧化系统
    • WO2011047211A1
    • 2011-04-21
    • PCT/US2010/052758
    • 2010-10-14
    • MASIMO CORPORATIONAL-ALI, Ammar
    • AL-ALI, Ammar
    • A61B5/00A61B5/0428H01R13/52
    • H01R31/065A61B5/04282A61B5/14551A61B5/7203A61B7/00A61B2560/045A61B2562/222H01R2201/12
    • A pulse oximetry system for reducing the risk of electric shock to a medical patient can include physiological sensors, at least one of which has a light emitter that can impinge light on body tissue of a living patient and a detector responsive to the light after attenuation by the body tissue. The detector can generate a signal indicative of a physiological characteristic of the living patient. The pulse oximetry system may also include a splitter cable that can connect the physiological sensors to a physiological monitor. The splitter cable may have a plurality of cable sections each including one or more electrical conductors that can interface with one of the physiological sensors. One or more decoupling circuits may be disposed in the splitter cable, which can be in communication with selected ones of the electrical conductors. The one or more decoupling circuits can electrically decouple the physiological sensors.
    • 用于降低对医疗病人的电击风险的脉搏血氧饱和度测量系统可以包括生理传感器,其中至少一个具有能够将光照射到活体患者的身体组织上的光发射器和响应衰减后的光的检测器 身体组织。 检测器可以产生指示活体患者的生理特性的信号。 脉搏血氧饱和度测量系统还可以包括可将生理传感器连接到生理监测器的分离器电缆。 分离器电缆可以具有多个电缆部分,每个电缆部分包括可以与生理传感器中的一个接口的一个或多个电导体。 一个或多个去耦电路可以设置在分离器电缆中,其可以与所选择的电导体连通。 一个或多个去耦电路可以使生理传感器电耦合。
    • 36. 发明申请
    • RIBBON CABLE SUBSTRATE PULSE OXIMETRY SENSOR
    • RIBBON电缆基板脉冲OXIMETRY传感器
    • WO2002066977A2
    • 2002-08-29
    • PCT/US2001/049560
    • 2001-12-27
    • MASIMO CORPORATION
    • AL-ALI, Ammar
    • G01N33/50
    • A61B5/14552H01R12/63H01R13/6683H01R2201/12Y10T29/49124
    • A pulse oximetry sensor is constructed using ribbon cable as a substrate for component mounting and interconnection as well as for forming a patient cable connector. The ribbon cable is constructed of multiple conductors spaced apart within an insulation layer and is advantageously cut to length to form a substrate for a particular type of sensor, such as a neonatal, pediatric or adult sensor. A detector is attached to a pair of conductors at a component end of the substrate, after insulation is stripped from the conductor tips. Another pair of conductors is cut to a length between the substrate ends. An emitter is attached to the shortened conductors after insulation is stripped from the conductor tips. Insulation is also stripped from the conductor tips at a connector end of the substrate. Pins are attached to each of these tips, and the pins are used to form a patient cable connector. The assembled substrate is mounted to an adhesive tape that is configured to removably attach the sensor to a patient so that the emitter transmits light into a tissue portion of the patient and the detector correspondingly receives emitted light that is not absorbed by the tissue. The ribbon cable may have one or more conductive layers with embedded conductors for electrical noise shielding, particularly at the detector.
    • 使用带状电缆作为用于部件安装和互连的基板以及形成患者电缆连接器来构造脉搏血氧饱和度传感器。 带状电缆由在绝缘层内间隔开的多个导体构成,并且有利地被切割成长度以形成用于特定类型的传感器(例如新生儿,儿科或成人传感器)的基底。 在绝缘被从导体尖端剥离之后,检测器被附接到基板的组件端处的一对导体。 另一对导体被切割成基底端之间的长度。 绝缘体从导体尖端剥离后,发射极连接到缩短的导体上。 在基板的连接器端处,绝缘体也从导体尖端剥离。 引脚连接到每个这些尖端,并且引脚用于形成患者电缆连接器。 将组装的基板安装到胶带,该胶带被配置为将传感器可移除地附接到患者,使得发射器将光透射到患者的组织部分中,并且检测器相应地接收未被组织吸收的发射光。 带状电缆可以具有一个或多个具有用于电噪声屏蔽的嵌入导体的导电层,特别是在检测器处。
    • 37. 发明申请
    • FINGER COT OXIMETRIC PROBE
    • FINGER COT OIMIMETRIC PROBE
    • WO1995002358A1
    • 1995-01-26
    • PCT/US1994007866
    • 1994-07-13
    • MASIMO CORPORATION
    • MASIMO CORPORATIONBRANIGAN, BrendanKIANI-AZARBAYJANY, Esmaiel
    • A61B05/00
    • A61B5/6826A61B5/14552A61B5/6838G06Q20/18
    • An oximetric sensor probe (21) is movably coupled to a patient's finger to facilitate transillumination and detection of optical energy through a portion of the patient's finger without subjecting the finger to significant deformation. The finger is received within a finger cot (22) having a cupshaped closed end (26) and an opposite open end (24) that is rolled up upon itself and is adapted to be unrolled longitudinally along the finger to form a tubular enclosure which closely surrounds the finger. An optical source (34) and an optical detector (36) are arranged in spaced axial alignment with each other on opposite sides of the finger so that optical energy transmitted by the source (34) through the finger is received by the detector (36). The detected light is analyzed to noninvasively determine the saturation of oxygen within the patient's blood. By virtue of the nonadhesive connection between the probe (21) and the finger, decoupling the optical path between the source (34) and detector (36) is minimized in the event that the patient moves his finger during testing. The optical source (34) and optical detector (36) also are separable from the finger cot (22) such that the optical sensor (23) may be reused with another finger cot.
    • 血氧测量传感器探针(21)可移动地联接到患者的手指以便于透过患者手指的一部分的透照和检测光能,而不会使手指受到显着的变形。 手指被接收在具有杯形封闭端(26)和相对的开口端(24)的指状床(22)内,该开口端卷绕在自身上并且适于沿着手指纵向展开以形成密封的管状外壳 围着手指。 光源(34)和光学检测器(36)在手指的相对侧彼此间隔开地轴向对准布置,使得由源(34)通过手指传输的光能被检测器(36)接收, 。 分析检测到的光以非侵入性地确定患者血液中氧气的饱和度。 通过探头(21)和手指之间的无粘性连接,在患者在测试过程中移动手指的情况下,将源(34)和检测器(36)之间的光路去耦合最小化。 光源(34)和光学检测器(36)也可以与手指托(22)分离,使得光学传感器(23)可以用另一个手指托使用。