Abstract:
An adjustable bed handheld remote control may include a handheld housing, a touch sensor on a front face of the handheld housing, a transmitter and the like. The touch sensor may be presented in a slider form and may be adapted to facilitate a user in adjusting a frame position of an adjustable bed. The transmitter may be electrically coupled to a processor and may receive input from the touch sensor, for communication control signals to the adjustable bed in accordance with the input received from the touch sensor.
Abstract:
Stretching of the pectoral muscles and other elements of the upper torso is optimized by pivoting arm guides arranged to be supported by the outstretched arms of a user reclining on an elevated support.
Abstract:
A space saving sauna unit for delivering infrared light therapy to the body of a user is integrated with a piece of furniture and is sized for single occupancy, wherein a single user may receive infrared light therapy via a plurality of infrared heat sources housed in the enclosed portion of the sauna unit. The sauna enclosure may be integrated with any suitable piece of furniture, such as, but not limited to, a dresser, desk, television armoire, bed, or other piece of furniture. The plurality of infrared heat sources are operated by a set of controls and may include a time-lapsed automatic shut down feature for automatically deactivating the infrared heat sources after a predetermined amount of time has lapsed. A manually operated vent system allows for temperature control. The sauna unit may also include one or more interior audio speakers and an LED light therapy mask.
Abstract:
An adjustable foundation includes a base frame and an articulating frame movably supported by the base frame for longitudinal movement with respect to the base frame. A mattress platform is positioned on the articulating frame. A concealing assembly is positioned below the mattress platform and at least partially conceals the base frame. The concealing assembly is attached to the articulating frame for simultaneous longitudinal movement therewith.
Abstract:
A tactile transducer treatment system includes a foundation that is configured to support a mattress. At least one tactile transducer device is mounted to the foundation. A processing system is coupled to the at least one tactile transducer device. A memory system is coupled to the processing system and includes instruction that, when executed by the processing system, cause the processing system to provide a treatment engine. The treatment engine is configured to drive the at least one tactile transducer using an audio file that includes a binaural audio soundtrack and an isochronic tone soundtrack to produce a tactile response in the foundation. That tactile response has been found to be beneficial in the treatment of a number of patient conditions including autism, attention deficit disorder, attention deficit hyperactivity disorder, post-traumatic stress disorder, bed wetting, and/or a variety of sleep disorders.
Abstract:
A method includes providing an adjustable bed frame including one or more articulating portions, associating an air inflatable mattress with the adjustable bed frame, and associating the air inflatable mattress with an air pump to regulate air pressure in the air inflatable mattress, wherein the air inflatable mattress includes flex regions about which the air inflatable mattress can flex. The method also includes providing a touchscreen Bluetooth remote control adapted to control at least one aspect of the adjustable bed frame, wherein the at least one aspect includes operation of the air pump. The method also includes establishing a unique communication link between a controller and the touchscreen Bluetooth remote control, the controller configured to control both the adjustable bed frame and the air pump. An aspect of the adjustable bed frame may be controlled by via communication over the unique communication.
Abstract:
A system for patient rehabilitation is disclosed. The system includes a first movable frame including an articulating bed, wherein the bed is configured to be selectively articulated to an inclined position, a suspension system, wherein the suspension system is disposed within the articulating bed and is selectively adjustable to accommodate varying patient height, a harness, wherein the harness is selectively engageable with the suspension system, wherein the harness is selectively adjustable to accommodate varying patient sizes, a second movable frame including a walker, wherein the walker includes a pair of legs and a motor, wherein approximation of the two movable frames permits the patient to easily utilize the walker from the bed. A method of using the system for patient rehabilitation is also disclosed.
Abstract:
This disclosure concerns a wireless communication system adapted to produce a closed-loop feedback scheme between a handheld remote control and an adjustable bed controller. The adjustable bed controller is adapted to, in response to a receipt of a motion command from the handheld remote control via the closed-loop feedback scheme, adjust, with feedback, a portion of an adjustable bed. The feedback is based on a comparison of sensor feedback and a predetermined position stored in a memory of the adjustable bed controller. The handheld remote control can receive, through the closed-loop feedback scheme, a returned confirmation reflecting the state of the position of the bed segment in response to the control signal.
Abstract:
The present invention provides an adjustable bed handheld remote control that may include a handheld housing, a touch sensor on a front face of the handheld housing, a transmitter and the like. The touch sensor may be presented in a slider form and may be adapted to facilitate a user in adjusting a frame position of an adjustable bed. The transmitter may be electrically coupled to a processor and may receive input from the touch sensor, for communication control signals to the adjustable bed in accordance with the input received from the touch sensor.