Method for semantic communication of device data between a source and receiving client
    5.
    发明授权
    Method for semantic communication of device data between a source and receiving client 有权
    源和接收客户端之间的设备数据的语义通信方法

    公开(公告)号:US09352109B2

    公开(公告)日:2016-05-31

    申请号:US13811922

    申请日:2011-07-26

    IPC分类号: A61M16/00 G06F19/00

    摘要: A treatment delivery system includes one or more medical therapy delivery devices (34) which deliver medical treatment or therapy to a patient, and one or more medical devices (10) which monitor results of the delivered medical therapy or treatment, clinical information, laboratory information, and health record information. The medical treatment delivery device has a proprietary communications protocol. A medical therapy delivery controller (18) semantically communicates among the medical device(s) and one or more medical treatment delivery devices. The controller has a user input (32) by which a user inputs therapy objectives in other than the proprietary communications protocol and a control processor (26) which generates treatment delivery device control commands, receives treatment or therapy results from a medical device (10), and adaptively adjusts the control commands based on the received treatment results. The control processor accesses a clinical decision support system (41), determines a physiological state of the patient from the received treatment results, and adjusts one of the therapy objectives and the control commands in accordance with input from the clinical decision support system.

    摘要翻译: 治疗递送系统包括向患者提供医疗或治疗的一个或多个药物治疗递送装置(34),以及一个或多个监测所递送的医学治疗或治疗结果的医疗装置(10),临床信息,实验室信息 ,和健康记录信息。 医疗处理装置具有专有通信协议。 药物治疗递送控制器(18)在医疗装置和一个或多个医疗处理递送装置之间语义地通信。 控制器具有用户输入(32),用户通过该用户输入(32)输入专用通信协议以外的治疗目标,以及产生治疗传递设备控制命令的控制处理器(26),从医疗设备(10)接收治疗或治疗结果, 并且基于接收的处理结果自适应地调整控制命令。 控制处理器访问临床决策支持系统(41),从接收到的治疗结果确定患者的生理状态,并且根据临床决策支持系统的输入调整治疗目标和控制命令之一。

    METHOD FOR SEMANTIC COMMUNICATION OF DEVICE DATA BETWEEN A SOURCE AND RECEIVING CLIENT
    6.
    发明申请
    METHOD FOR SEMANTIC COMMUNICATION OF DEVICE DATA BETWEEN A SOURCE AND RECEIVING CLIENT 有权
    一种来源和接收客户之间的设备数据的语义通信方法

    公开(公告)号:US20130118497A1

    公开(公告)日:2013-05-16

    申请号:US13811922

    申请日:2011-07-26

    IPC分类号: A61M16/00

    摘要: A treatment delivery system includes one or more medical therapy delivery devices (34) which deliver medical treatment or therapy to a patient, and one or more medical devices (10) which monitor results of the delivered medical therapy or treatment, clinical information, laboratory information, and health record information. The medical treatment delivery device has a proprietary communications protocol. A medical therapy delivery controller (18) semantically communicates among the medical device(s) and one or more medical treatment delivery devices. The controller has a user input (32) by which a user inputs therapy objectives in other than the proprietary communications protocol and a control processor (26) which generates treatment delivery device control commands, receives treatment or therapy results from a medical device (10), and adaptively adjusts the control commands based on the received treatment results. The control processor accesses a clinical decision support system (41), determines a physiological state of the patient from the received treatment results, and adjusts one of the therapy objectives and the control commands in accordance with input from the clinical decision support system.

    摘要翻译: 治疗递送系统包括向患者提供医疗或治疗的一个或多个药物治疗递送装置(34),以及一个或多个监测所递送的医学治疗或治疗结果的医疗装置(10),临床信息,实验室信息 ,和健康记录信息。 医疗处理装置具有专有通信协议。 药物治疗递送控制器(18)在医疗装置和一个或多个医疗处理递送装置之间语义地通信。 控制器具有用户输入(32),用户通过该用户输入(32)输入专用通信协议以外的治疗目标,以及产生治疗传递设备控制命令的控制处理器(26),从医疗设备(10)接收治疗或治疗结果, 并且基于接收的处理结果自适应地调整控制命令。 控制处理器访问临床决策支持系统(41),从接收到的治疗结果确定患者的生理状态,并且根据临床决策支持系统的输入调整治疗目标和控制命令之一。

    Body worn sensors network with redundant parameter prioritization and temporal alignment

    公开(公告)号:US10264968B2

    公开(公告)日:2019-04-23

    申请号:US13825978

    申请日:2011-09-21

    申请人: Brian David Gross

    发明人: Brian David Gross

    摘要: Each sensor of a plurality of sensors operates independently to perform at least a monitoring function acquiring sensor data indicative of a common physiological parameter and a grading function performed occasionally to assign a current signal quality grade for the sensor that is indicative of operational status of the monitoring function of the sensor. A data structure stores information pertaining to the plurality of sensors including at least priorities of the plurality of sensors respective to the common physiological parameter and the current signal quality grades for the sensors. Each sensor further operates to perform at least one output function generating an output signal conditional upon content of the data structure including at least the priorities and the current signal quality grades of the sensors indicating the output function should be performed.