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    • 1. 发明授权
    • Oximetry monitored, patient controlled analgesia system
    • 监测血氧饱和度,患者控制止痛系统
    • US5957885A
    • 1999-09-28
    • US744486
    • 1996-11-06
    • Stephen J. BollishRobert J. Duffy
    • Stephen J. BollishRobert J. Duffy
    • A61M5/00A61M5/14A61M5/172G06F19/00A61M31/00
    • A61M5/1723G06F19/3468A61M2005/1405A61M2005/14208A61M2230/06A61M2230/205
    • A patient care system comprising an interface unit, a Patient Controlled Analgesia (PCA) unit, and a pulse oximetry unit is disclosed. The PCA unit provides PCA administration, including administration of a dose of analgesic upon request, and the pulse oximetry unit provides constant monitoring of the patient's blood oxygen saturation level and pulse rate. The interface unit provides for communication between and control of the PCA unit and the pulse oximetry unit, and further provides an interface between the user and the system. When the pulse oximetry unit indicates to the interface unit that the patient's blood oxygen saturation level and pulse rate has reached a user-specified minimum, the interface unit initiates visual and audio alarms and controls the PCA unit by shutting off the PCA unit. The interface unit also contains communication ports, which the interface unit can use to send signals to external devices, such as to alert alerts medical personnel.
    • 公开了包括界面单元,患者控制镇痛(PCA)单元和脉搏血氧测定单元的患者护理系统。 PCA单元提供PCA管理,包括根据需要施用一定剂量的止痛剂,并且脉搏血氧饱和度测量单元提供对患者血氧饱和度水平和脉率的持续监测。 接口单元提供PCA单元和脉搏血氧测定单元之间的通信和控制,并进一步提供用户与系统之间的接口。 当脉搏血氧饱和度测量单元向接口单元指示患者的血氧饱和度和脉搏率达到用户指定的最小值时,接口单元启动视觉和音频报警,并通过关闭PCA单元来控制PCA单元。 接口单元还包含通信端口,接口单元可用于向外部设备发送信号,例如提醒医务人员。
    • 2. 发明授权
    • Method and apparatus for preprogrammed infusion of IV medicaments
    • 用于IV药物预处理灌注的方法和装置
    • US5219330A
    • 1993-06-15
    • US798937
    • 1991-11-26
    • Stephen J. BollishRobert A. BrambleEric L. Firing
    • Stephen J. BollishRobert A. BrambleEric L. Firing
    • A61M5/172
    • A61M5/172Y10S128/12
    • An apparatus for infusing TPN fluids to a patient includes a source of fluid, a pump for infusing fluid from the source to the patient, and a computer for controlling the operation of the pump. During the operation of the apparatus the infusion rate of the pump is varied according to an infusion regimen that is based on the volume of fluid to be infused and the time during which the fluid is to be infused. This regimen is characterized by a trifurcated ramp up region having interrelated incremental rates of infusion which transition the pump from a zero rate of infusion to a steady state rate of infusion. The infusion regimen is also characterized by a period of steady state infusion which follows the ramp up region, and a ramp down region in which the infusion rate is decremented from the steady state rate based on the remaining volume of fluid to be infused to the patient and the remaining time for infusing this remaining volume of fluid. Infusion rate changes in both the ramp up and ramp down regions is accomplished in steps. Depending on the calculated steady state infusion rate, the step sizes may be either 5 ml/hr or 1 ml/hr. The different time intervals between steps in the ramp up region are related to each other and to the total time for infusing fluids to the patient and the time intervals between steps in the ramp down region are controlled by the computer.