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    • 1. 发明申请
    • MEDICAL SYSTEM AND METHOD EMPLOYING A DRUG DELIVERY ASSEMBLY
    • 使用药物输送装置的医疗系统和方法
    • US20090292226A1
    • 2009-11-26
    • US12124283
    • 2008-05-21
    • David Q. FengCurt R. EysterPaul J. Niklewski
    • David Q. FengCurt R. EysterPaul J. Niklewski
    • A61M21/00A61B5/11
    • A61B5/1107A61B5/0488A61B5/4821A61B5/4824A61B5/4839A61M5/1723A61M2202/0241A61M2202/048A61M2210/1064A61M2230/60
    • A medical system includes a muscular-tension-measuring device and a drug delivery assembly. The muscular-tension-measuring device is operatively connectable to a patient and includes a device output having a device output signal which varies with involuntary changes in muscular tension of the patient. The drug delivery assembly is operatively connectable to the patient for controllably delivering at least one drug to the patient. In one implementation, the device output signal varies with involuntary changes in muscular tension of the patient caused by pain and/or anxiety. In one employment, drug delivery is varied by a controller or a user based at least on variations in the device output signal. A method for conscious sedation of a patient includes measuring muscular tension of the patient and includes varying delivery of a conscious sedation drug to the patient based at least on variations in the measured muscular tension of the patient.
    • 医疗系统包括肌肉张力测量装置和药物递送组件。 肌肉张力测量装置可操作地连接到患者,并且包括具有随着患者的肌肉张力的不随意变化而变化的装置输出信号的装置输出。 药物递送组件可操作地连接到患者,用于可控地将至少一种药物递送至患者。 在一个实施方案中,装置输出信号随着由疼痛和/或焦虑引起的患者的肌肉张力的不随意变化而变化。 在一次就业中,药物递送由控制器或用户至少基于设备输出信号的变化而变化。 用于患者意识镇静的方法包括测量患者的肌肉张力,并且包括至少基于测量的患者肌肉张力的变化向患者输送有意识的镇静药物。
    • 2. 发明申请
    • DOCKING STATION FOR PATIENT BEDSIDE MONITORING UNITS
    • 患者双边监测单位的闭锁站
    • US20130046197A1
    • 2013-02-21
    • US13210517
    • 2011-08-16
    • Daniel F. Dlugos, JR.Gregory D. BishopCurt R. EysterPaul J. Niklewski
    • Daniel F. Dlugos, JR.Gregory D. BishopCurt R. EysterPaul J. Niklewski
    • A61B5/08A61B5/00G06F1/16G06F9/44G06F17/30A61M5/00G06F13/00
    • G16H40/63
    • A docking apparatus comprises a processor, a battery charging module, a storage device, and one or more ports, which are configured to couple with patient monitoring units. Each patient monitoring unit is operable to monitor at least one physiological parameter of a patient. The battery charging module charges the patient monitoring units through the ports. The storage device stores data received from the patient monitoring units through the ports. The processor transmits updates to the patient monitoring units through the ports. The ports may comprise sockets that receive plugs from cables of the patient monitoring units. The docking apparatus may comprise a plurality of separate dock housings associated with corresponding patient monitoring units. These dock housings being joined together in a daisy chain. The docking apparatus may also include a plurality of docking recesses in a single housing, with each docking recess being associated with a corresponding patient monitoring unit.
    • 对接装置包括处理器,电池充电模块,存储装置和一个或多个端口,其被配置为与患者监视单元耦合。 每个患者监测单元可操作以监测患者的至少一个生理参数。 电池充电模块通过端口对患者监护仪进行充电。 存储装置通过端口存储从患者监视单元接收的数据。 处理器通过端口向病人监视单元发送更新。 端口可以​​包括从患者监视单元的电缆接收插头的插座。 对接装置可以包括与相应的患者监视单元相关联的多个单独的底座壳体。 这些码头外壳以菊花链连接在一起。 对接装置还可以包括在单个壳体中的多个对接凹槽,每个对接凹部与相应的患者监视单元相关联。
    • 7. 发明申请
    • USER INTERFACE FEATURE FOR DRUG DELIVERY SYSTEM
    • 用于药物输送系统的用户界面功能
    • US20130046279A1
    • 2013-02-21
    • US13210530
    • 2011-08-16
    • Paul J. NiklewskiJames F. MartinDonn C. MuellerDavid Q. FengRoss G. KroghHemant Jampala
    • Paul J. NiklewskiJames F. MartinDonn C. MuellerDavid Q. FengRoss G. KroghHemant Jampala
    • A61M5/31
    • G06F19/3462
    • A medical system includes a monitoring unit and a drug delivery unit. The monitoring unit is operable to monitor at least one physiological parameter of a patient. The drug delivery unit includes an integral volume of a drug. A control logic is in communication with the monitoring unit and the drug delivery unit and is operable to regulate delivery of the drug to the patient from the integral volume, based on data associated with the at least one physiological parameter of the patient, in accordance with a safety shell control algorithm. A user interface feature is operable to receive input indicating administration of an external drug to the patient. The safety shell control algorithm responds to inputs received through the user interface feature indicating administration of an external drug to the patient, such as by modifying subsequent drug delivery regulation based on the administration of the external drug.
    • 医疗系统包括监测单元和药物输送单元。 监测单元可操作以监测患者的至少一个生理参数。 药物递送单元包括药物的整体体积。 控制逻辑与监测单元和药物递送单元通信,并且可操作以根据与患者的至少一个生理参数相关联的数据,从整体体积调节药物向患者的递送,根据 一种安全壳控制算法。 用户界面特征可操作以接收指示向患者施用外部药物的输入。 安全壳控制算法响应于通过用户界面特征接收的输入,指示向患者施用外部药物,例如通过基于外部药物的施用修改随后的药物递送调节。