摘要:
A system (202) generates patient alarms using a stepped alarm scheme. The system (202) includes one or more processors (220) programmed to receive physiological scores and/or physiological parameter values; compare the physiological scores and/or the physiological parameter values to a plurality of alarm levels; in response to a physiological score and/or physiological parameter value falling within an uninhibited zone of the alarm levels, issue an alarm; and set a first inhibition period for the uninhibited alarm level after issuing the alarm.
摘要:
A messaging system (100) for routing clinical messages includes an event handler and a standardized protocol (105). The event handler (106) receives one or more inbound messages from one or more event sources (102). The event sources (102) include one or more worklist items. The event handler (106) further stores the worklist items in an event database (198) and generates and communicates outbound messages for one or more worklist items in the event database (198) that need to be acted upon, as determined by one or more rules. The standardized protocol (105) is used to represent the inbound messages and the outbound messages.
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.
摘要:
Each sensor of a plurality of sensors (10) operates independently to perform at least a monitoring function (32) acquiring sensor data indicative of a common physiological parameter and a grading function (38) 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 (44, 44′) 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 (36) 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.
摘要:
A messaging system (100) for routing clinical messages includes an event handler and a standardized protocol (105). The event handler (106) receives one or more inbound messages from one or more event sources (102). The event sources (102) include one or more worklist items. The event handler (106) further stores the worklist items in an event database (198) and generates and communicates outbound messages for one or more worklist items in the event database (198) that need to be acted upon, as determined by one or more rules. The standardized protocol (105) is used to represent the inbound messages and the outbound messages.
摘要:
A patient monitoring station (44) includes a display (12) that displays a plurality of sectors (60), each sector including one or more tiles (64). A controller (46) displays patient data received from a patient information server (10) in a corresponding sector of the display. The controller is programmed to populate the tiles of the sectors with patient data according to a selected clinical theme.
摘要:
A medical device and caretaking management system (10) includes a plurality of medical devices (14) that transmit equipment data and patient data. A central or distributed monitoring system (12) receives the equipment data and patient data from the plurality of medical devices, derives an acuity for each of the patients, and assigns caregivers and equipment based on the derived acuity for display on a display device (26).
摘要:
A medical device and caretaking management system (10) includes a plurality of medical devices (14) that transmit equipment data and patient data. A central or distributed monitoring system (12) receives the equipment data and patient data from the plurality of medical devices, derives an acuity for each of the patients, and assigns caregivers and equipment based on the derived acuity for display on a display device (26).
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:
A system (202) generates patient alarms using a stepped alarm scheme. The system (202) includes one or more processors (220) programmed to receive physiological scores and/or physiological parameter values; compare the physiological scores and/or the physiological parameter values to a plurality of alarm levels; in response to a physiological score and/or physiological parameter value falling within an uninhibited zone of the alarm levels, issue an alarm; and set a first inhibition period for the uninhibited alarm level after issuing the alarm.