Abstract:
A bed comprises substrate support members, each including a load bearing and a base configured to provide contact with a floor. The load bearing member is configured to move vertically relative to the base, while the base and the load bearing member are configured to fit together to maintain lateral alignment of the base and the load bearing member. A load sensor is positioned between the base and the load bearing member, the load bearing member configured to transmit a load from the substrate to the load sensor. A printed circuit board is in communication with the load sensor. A controller is in communication with the printed circuit board of each substrate support member and is configured to receive and process data output by the printed circuit boards.
Abstract:
A graphical user interface (GUI) of a patient bed is used by a caregiver to manually enter location data indicative of a location in a healthcare facility at which the patient bed is located. A first screen for manually entering location data is displayed on the GUI after a threshold period of time elapses subsequent to a power plug of the patient bed being plugged into an alternating current (AC) outlet of the healthcare facility and subsequent to casters of the patient bed being braked. A voice prompt is also given from the patient bed after the threshold period of time elapses to remind the caregiver to manually enter the location data. After manual entry of the location data, circuitry of the patient bed transmits the location data entered by the caregiver and a bed identification (ID) from the bed for receipt by a remote computer for purposes of making a bed-to-room association.
Abstract:
A support platform supports a mattress. The support platform includes legs. Force sensors are coupled to the legs or to the support platform. The force sensors are configured to sense a force applied to each leg or support platform. A controller is configured to receive at least one force stream from at least one of the force sensors. The at least one force stream represents a force sensed by the force sensor. The controller is configured to, in responses to receiving the at least one force stream, determine a sleep parameter from the following group of sleep parameters: bed presence, weight, heart rate, respiration rate, and motions. The controller is configured to output at least one or more of those parameters to an end user.
Abstract:
An infant sleep device may include a platform for supporting an infant, a base upon which the platform is supported, and one or more weight sensors positioned to measure weight of an infant positioned on the platform.
Abstract:
A person support apparatus includes one or more thermal image sensors whose outputs are analyzed to perform one or more functions. Such functions include automatically turning on a brake, automatically turning on one or more lights, detecting when a patient associated with the person support apparatus has fallen, enabling a propulsion system of the patient support apparatus to be used, automatically controlling one or more environmental controls, and/or automatically arming an exit detection system after entry of a patient onto the person support apparatus. Multiple thermal images may be generated from multiple sensors to generate stereoscopic thermal images of portions of the person support apparatus and its surroundings.
Abstract:
A patient support system includes a patient support apparatus and a support surface mounted on the patient support apparatus. The patient support apparatus is reconfigurable among a plurality of different configurations for supporting a patient on the support surface in a plurality of positions. The support surface is mounted on the patient support apparatus to move in response to reconfiguration of the patient support apparatus.
Abstract:
An imaging system (500) includes a first scanner (502) with a first examination region (504) and a subject support (506). The subject support includes a tabletop (620) that positions a subject or object at at least two different positions in the examination region. A deflection of the tabletop is different at the at least two different positions. The subject support further includes a base (508) that positions the tabletop vertically in the examination region. A deflection delta predictor (522) predicts a deflection delta of the tabletop between the at least two different positions. The predicted deflection delta is used to correct for the deflection delta.
Abstract:
A person support apparatus includes one or more thermal image sensors whose outputs are analyzed to perform one or more functions. Such functions include automatically turning on a brake, automatically turning on one or more lights, detecting when a patient associated with the person support apparatus has fallen, enabling a propulsion system of the patient support apparatus to be used, automatically controlling one or more environmental controls, and/or automatically arming an exit detection system after entry of a patient onto the person support apparatus. Multiple thermal images may be generated from multiple sensors to generate stereoscopic thermal images of portions of the person support apparatus and its surroundings.
Abstract:
A crib having a child monitoring system. The crib comprises a frame and a base member that can be positioned at various heights on the frame. Further, the crib includes monitoring devices for monitoring a child within the crib. The monitoring devices may include a video camera, a weight sensor for determining if the child is positioned within the crib, and a breathing monitor. The crib may also include an audio system with one or more speakers for playing music or soothing sounds, and may further include a nightlight controlled by a motion sensor. A user input device, such as a touchscreen display is provided for operating the various features of the crib, wherein the input device is positioned on the crib frame. A docking station is also provided that is in wireless communication with the child monitoring system, wherein the docking station can receive a mobile electronic device therein.
Abstract:
A patient support apparatus (20) including a patient support surface (22) and a repositioning mechanism (24) for vertically and angularly repositioning the surface (22). The apparatus (20) including sensors (84) for automatically detecting and inhibiting attempts to vertically reposition the surface (22) when it is at a particular angular position, and attempts to angularly reposition the surface (22) when it is at a particular vertical position. The apparatus (20) also includes a tilt control system (88) for limiting the extent to which head or foot ends (36,38) of the surface (22) can be angularly repositioned, a scale (92) and a warning system (120) for communicating a warning when a change in the weight on the surface (22) is indicative of a patient moving or attempting to move off of the surface (22), a sensor (122) for detecting an increase in amperage during an operation and stopping the operation, and an ability to update microcontroller programming via a controller area network bus (102).