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    • 1. 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
    • US20110209915A1
    • 2011-09-01
    • US12904775
    • 2010-10-14
    • Valery G. TelfortAmmar Al-AliRobert A. SmithJoel FechterShaun Fetherson
    • Valery G. TelfortAmmar Al-AliRobert A. SmithJoel FechterShaun Fetherson
    • H01B7/00
    • 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.
    • 用于降低对医疗患者的电击的危险的脉搏血氧饱和度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,以及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征的信号。 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视器的分离器电缆。 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配器电缆中,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。
    • 4. 发明申请
    • Systems and methods of processing scanned data
    • 处理扫描数据的系统和方法
    • US20060215231A1
    • 2006-09-28
    • US11329999
    • 2006-01-11
    • Roland BorreyMauritius SchmidtlerRobert TaylorJoel FechterHari Asuri
    • Roland BorreyMauritius SchmidtlerRobert TaylorJoel FechterHari Asuri
    • H04N1/40
    • G06K15/407G06K9/3208G06T5/00H04N1/40
    • An efficient method and system to enhance digital acquisition devices for analog data is presented. The enhancements offered by the method and system are available to the user in local as well as in remote deployments yielding efficiency gains for a large variety of business processes. The quality enhancements of the acquired digital data are achieved efficiently by employing virtual reacquisition. The method of virtual reacquisition renders unnecessary the physical reacquisition of the analog data in case the digital data obtained by the acquisition device are of insufficient quality. The method and system allows multiple users to access the same acquisition device for analog data. In some embodiments, one or more users can virtually reacquire data provided by multiple analog or digital sources. The acquired raw data can be processed by each user according to his personal preferences and/or requirements. The preferred processing settings and attributes are determined interactively in real time as well as non real time, automatically and a combination thereof.
    • 提出了一种增强模拟数据采集设备的有效方法和系统。 方法和系统提供的增强功能可以在本地和远程部署中为用户提供,从而为各种业务流程带来效率提升。 通过采用虚拟反馈技术,可以有效地实现采集数字数据的质量提升。 在采集设备获得的数字数据质量不足的情况下,虚拟反馈方法不需要对模拟数据的物理重新捕获。 该方法和系统允许多个用户访问相同的采集设备以进行模拟数据。 在一些实施例中,一个或多个用户可以虚拟地重新获取由多个模拟或数字源提供的数据。 所获取的原始数据可以由每个用户根据他的个人喜好和/或要求来处理。 优选的处理设置和属性被实时地以非实时的方式交互地确定并且它们的组合。