Abstract:
A person support apparatus includes a frame and a support surface cooperating with the frame to support a person. The person support apparatus also has a sensor coupled to one of the frame and the support surface. The sensor detects at least one characteristic associated with the person. A controller is coupled to the sensor. In response to at least one of a condition of the frame, a condition of the support surface, a position of the person, or a condition of the person, the controller operates to control the sensor by at least one of changing a gain of the sensor and changing a manner in which a signal from the sensor is filtered. In some instances, the controller turns the sensor off.
Abstract:
A system includes a unit having associated therewith first identification (ID) data. The unit is mountable to a room wall and has a first transmitter that transmits the first ID data wirelessly. The system also includes a hospital bed having associated therewith second ID data. The hospital bed is spaced from the unit and has a wireless receiver that receives the first ID data transmitted by the unit. The hospital bed has a second transmitter that transmits the first ID data and the second ID data wirelessly.
Abstract:
A bed includes a frame, a controller coupled to the frame, and a patient position detection system coupled to the frame and coupled to the controller. The patient position detection system has at least three modes of operation of varying sensitivities for determining whether a person supported on the frame has moved by a sufficient amount to activate an alarm.
Abstract:
A bed includes a frame, a controller coupled to the frame, and a patient position detection system coupled to the frame and coupled to the controller. The patient position detection system has multiple modes of operation of varying sensitivities for determining whether a person supported on the frame has moved by a sufficient amount to activate an alarm. The frame includes a plurality of barriers. An alert light is coupled to one of the barriers.
Abstract:
A hospital bed has wireless communication circuitry operable to transmit wirelessly bed status data. A surface supported by the bed has wireless communication circuitry operable to transmit wirelessly surface status data. The wireless communication circuitry of the hospital bed and the wireless communication circuitry of the surface communicate with a network independently. A hospital bed with an integrated surface has wireless communication circuitry operable to transmit wirelessly bed status data and surface status data. The wireless bed status data and the wireless surface status data are received by wireless access points of a network of a healthcare facility.
Abstract:
A system including a patient support apparatus that has an adjustable height, a brake and a siderail. The system also includes a processor receiving at least two of the following signals: a first signal indicating a brake condition of the brake, a second signal indicating a siderail condition of the siderail, and a third signal indicating a height condition of the patient support apparatus. The system has a user input configured to allow a person to make a selection of any one or more of the brake, siderail and height conditions for monitoring. The system includes a light that has a first state when any of the selected brake, siderail and height conditions indicate an alarm condition and that has a second state when all of the selected brake, siderail and height conditions of the selection indicate no alarm condition.
Abstract:
A bed includes a frame, a controller coupled to the frame, and a patient position detection system coupled to the frame and coupled to the controller. The patient position detection system has at least three modes of operation of varying sensitivities for determining whether a person supported on the frame has moved by a sufficient amount to activate an alarm.
Abstract:
A headwall is adapted for use with a bed in a room of a healthcare facility. The headwall comprises a wall unit mounted relative to a wall of the room and a floor unit extending along a floor of the room. The bed docks to the floor unit. It is disclosed to use the headwall to provide services to patient care equipment mounted to a side rail of the bed. Such patient care equipment is, for example, a chest drainage unit, an infusion unit, or a vacuum bandage unit located in a cavity of the side rail.
Abstract:
A system includes a unit having associated therewith first identification (ID) data. The unit is mountable to a room wall and has a first transmitter that transmits the first ID data wirelessly. The system also includes a hospital bed having associated therewith second ID data. The hospital bed is spaced from the unit and has a wireless receiver that receives the first ID data transmitted by the unit. The hospital bed has a second transmitter that transmits the first ID data and the second ID data wirelessly.
Abstract:
A person-support structure includes a control system, an input configured to communicate a first input signal to the control system, and a sensor configured to sense a physiological characteristic of a person supported on the person-support structure. The sensor communicates a second input signal corresponding to the physiological characteristic to the control system. The control system calculates a condition score as a function of the first input signal and the physiological characteristic of the person and compares the condition score to a predetermined threshold. The control system scales at least one of the physiological characteristic of the person and the predetermined threshold as a function of the first input signal.