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    • 71. 发明申请
    • FLUID TITRATION SYSTEM
    • 流体搅拌系统
    • US20120046557A1
    • 2012-02-23
    • US13287060
    • 2011-11-01
    • Massi E. Kiani
    • Massi E. Kiani
    • A61B5/02
    • A61B5/6826A61B5/0295A61B5/14551A61B5/6838A61M5/142A61M2205/3306A61M2205/3313
    • A fluid titration system has an optical sensor, a physiological monitor, a titration controller and an infusion device. The optical sensor transmits multiple wavelengths of light into a tissue site of a person and detects the optical radiation after attenuation by pulsatile blood flowing within the tissue site. The physiological monitor receives a resulting sensor signal and derives a plethysmograph that corresponds to the pulsatile blood flow. The monitor also calculates a plethysmograph variability measure that is responsive to changes in perfusion at the tissue site. A titration controller generates a fluid control output according to the variability measure. The infusion device administers a liquid solution via an intravenous (IV) connection to the person according to the fluid control output so as to regulate at least one of a fluid flow start, rate and stop.
    • 液体滴定系统具有光学传感器,生理监测器,滴定控制器和输注装置。 光学传感器将多个波长的光发射到人的组织部位,并通过在组织部位内流动的脉动血液来检测衰减后的光辐射。 生理监测器接收所得到的传感器信号并导出对应于脉动血流量的体积描记器。 显示器还计算出对组织部位灌注变化有反应的体积描记器变异性测量。 滴定控制器根据可变性度量产生流体控制输出。 输注装置通过根据流体控制输出的人静脉内(IV)连接来施用液体溶液,以调节流体流动开始,速率和停止中的至少一个。
    • 73. 发明申请
    • FLUID TITRATION SYSTEM
    • 流体搅拌系统
    • US20090076462A1
    • 2009-03-19
    • US12208998
    • 2008-09-11
    • Massi E. Kiani
    • Massi E. Kiani
    • A61M5/00A61B5/00
    • A61B5/6826A61B5/0295A61B5/14551A61B5/6838A61M5/142A61M2205/3306A61M2205/3313
    • A fluid titration system has an optical sensor, a physiological monitor, a titration controller and an infusion device. The optical sensor transmits multiple wavelengths of light into a tissue site of a person and detects the optical radiation after attenuation by pulsatile blood flowing within the tissue site. The physiological monitor receives a resulting sensor signal and derives a plethysmograph that corresponds to the pulsatile blood flow. The monitor also calculates a plethysmograph variability measure that is responsive to changes in perfusion at the tissue site. A titration controller generates a fluid control output according to the variability measure. The infusion device administers a liquid solution via an intravenous (IV) connection to the person according to the fluid control output so as to regulate at least one of a fluid flow start, rate and stop.
    • 液体滴定系统具有光学传感器,生理监测器,滴定控制器和输注装置。 光学传感器将多个波长的光发射到人的组织部位,并通过在组织部位内流动的脉动血液来检测衰减后的光辐射。 生理监测器接收所得到的传感器信号并导出对应于脉动血流量的体积描记器。 显示器还计算出对组织部位灌注变化有反应的体积描记器变异性测量。 滴定控制器根据可变性度量产生流体控制输出。 输注装置通过根据流体控制输出的人静脉内(IV)连接来施用液体溶液,以调节流体流动开始,速率和停止中的至少一个。
    • 74. 发明授权
    • Pulse oximeter probe-off detection system
    • 脉搏血氧仪探头检测系统
    • US06771994B2
    • 2004-08-03
    • US10374303
    • 2003-02-24
    • Massi E. KianiMohamed K. Diab
    • Massi E. KianiMohamed K. Diab
    • A61B500
    • A61B5/6843A61B5/14552
    • The present invention provides a number of improvements that can be incorporated into a pulse oximeter probe to detect when a probe has become dislodged from a patient and/or to prevent a probe-off condition. A probe-off condition occurs when the optical probe becomes partially or completely dislodged from the patient, but continues to detect an AC signal within the operating region of the pulse oximeter. In one aspect, the present invention provides electrical contacts that contact the skin of a patient when the probe is properly attached. In another aspect, the present invention provides a number of louvers placed in front of the sensor's photodetector to filter out oblique light rays that do not originate from a point in front of the detector. Accordingly, if the emitter and photodetector are not properly aligned, the photodetector will not produce a signal within the valid operating range of the pulse oximeter. In accordance with a method of the present invention the pulse oximeter can sound an alarm or display a warning if it determines that the probe is not properly attached to the patient.
    • 本发明提供了许多可以结合到脉搏血氧计探针中以检测探针什么时候已经从患者脱离和/或防止探针状态的改进。 当光学探针从患者部分或完全脱落而继续检测到在脉搏血氧计的操作区域内的AC信号时,会发生探测条件。 一方面,本发明提供了当探针适当地附接时与患者的皮肤接触的电触点。 在另一方面,本发明提供了放置在传感器的光电检测器前方的多个百叶窗,以过滤出不是源于检测器前面的点的倾斜光线。 因此,如果发射器和光电检测器未正确对准,则光电检测器将不会在脉冲血氧计的有效工作范围内产生信号。 根据本发明的方法,如果脉搏血氧计确定探头未正确地附接到患者,则脉搏血氧计可以发出警报或显示警告。
    • 80. 发明授权
    • Virtual display
    • 虚拟显示
    • US07990382B2
    • 2011-08-02
    • US11648972
    • 2007-01-03
    • Massi E. Kiani
    • Massi E. Kiani
    • G06T17/00
    • G06T11/20
    • Display objects are defined that are capable of visually indicating physiological measurements and physiological monitor status. A virtual display utilizing these display objects is characterized by selecting those display objects corresponding to one or more particular physiological parameters, organizing the selected display objects within a virtual display area corresponding to at least a portion of a physical display, and associating data objects corresponding to the one or more physiological parameters with the selected display objects.
    • 定义显示对象,其能够可视地指示生理测量和生理监视状态。 使用这些显示对象的虚拟显示器的特征在于,选择与一个或多个特定生理参数对应的那些显示对象,在对应于物理显示器的至少一部分的虚拟显示区域内组织所选择的显示对象,并且将对应于 所述一个或多个生理参数与所选择的显示对象。