Abstract:
The present disclosure relates to an electronic device and a method which may visually provide information to a user, and notify the user of the information through other senses (e.g., a tactile sense, a hearing sense, etc.). The method includes performing voice guidance of information displayed on the touch screen in a predetermined order, detecting a user's input through the touch screen, and changing the order and performing the voice guidance in the changed order, when the detected user's input is a direction change input.
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 system for treating soft tissue of a patient. The system includes a treatment head and a computer portion. The treatment head includes a probe and an electrode operably coupled to the probe. The probe and electrode are configured to respectively deliver a mechanical force impulse and an electrical stimulation to the soft tissue when placed in operable contact with the soft tissue. The computer portion includes a CPU and is configured to coordinate the delivery of the mechanical force impulse and electrical stimulation relative to each other. The system is configured to sense a shockwave in the soft tissue of the patient, the shockwave resulting from the mechanical force impulse delivered to the soft tissue via the probe. The system is also configured to analyze a characteristic of the sensed shockwave and configure the electrical stimulation to be delivered to the soft tissue via the electrode based on the characteristic analysis of the sensed shockwave. The characteristic may be at least one of frequency of the sensed shockwave, amplitude of the sensed shockwave, and/or wave shape (form) of the sensed shockwave.
Abstract:
Embodiments of the present invention provide a massager device, system, and method. A massager is configured to communicate (directly or indirectly) a user feedback message to a target in response to a determination that an event has occurred. The massager may be a sexual aid. User feedback messages may be generated based on various pre-sets and/or user selections established to determine a message medium type, content for inclusion in the user feedback message, the target, the event, and other customizations. The content of the user feedback messages may be generated according to a content selection method, such as random, user-customized, pre-sets, categorical, or based on usage parameters, such as biometric, massager settings, and temporal data.
Abstract:
A training apparatus includes a fixed frame, an training rod, a motor, a rotation information detection sensor, a tilt angle calculation unit, a feedback current detection unit, a position difference calculation unit, and a determination unit. The training rod tilts with at least one degree of freedom. The motor tilts the training rod. The rotation information detection sensor outputs an amount of rotation of the motor. The tilt angle calculation unit calculates a tilt angle. The feedback current detection unit detects a feedback current value. The position difference calculation unit calculates a position difference every time when a first time period elapses. The determination unit determines an error when the position difference generated during the first time period is a first threshold or higher, or when the feedback current value keeps a first current value or higher for a second time period or longer.
Abstract:
The present disclosure includes a finger exoskeleton including a plurality of joints and a plurality of sensors configured to measure rotation of at least some of the plurality of joints of the finger exoskeleton. The finger exoskeleton also includes a series elastic actuator comprising a spring element, the series elastic actuator configured to rotate at least one of the plurality of joints. The finger exoskeleton also includes a computing device configured to control operation of the series elastic actuator based on a torque of the at least one of the plurality of joints, the torque determined at least based on the spring element and rotation of the at least one of the plurality of joints. The present disclosure also includes associated methods and hand exoskeletons.
Abstract:
Systems and related methods for controlling delivery of a stimulus to a pinna of a subject with a stimulator worn on the pinna are described. A wearable stimulation device includes a mechanical, electrical, or other type of stimulator secured to a pinna of a subject. A personal computing device in communication with the wearable stimulation device controls delivery of stimuli and other aspects of operation of the device. The personal computing device also controls delivery of a sound signal (for example, music) to the user of the stimulation device in association with the neural stimulus. In some aspects recommendations regarding neural stimuli and other stimuli or experiences to be delivered in association with the neural stimuli are provided via a computing system in communication with the personal computing device or the wearable stimulation device.
Abstract:
A device and method coupled to a therapy garment to apply repetitive pressure pulses to a patient body, including a controller operable to regulate at least the duration of operation, frequency of the air pulses and selected air pressure applied to the patient. Aspects of the therapy system may be operable in accordance with operating parameters and a memory device captures session and summary data associated with one or more therapy sessions. The apparatus may comprise a wireless transmitter operable to wirelessly transmit session and summary data relative to one or more therapy sessions to a remote location.
Abstract:
A CPR machine (100) is configured to perform compressions on a patient's (182) chest that alternate with releases. The CPR machine includes a compression mechanism (148), and a driver system (141) configured to drive the compression mechanism. A compression force may be sensed, and the driving is adjusted accordingly if there is a surprise. For instance, driving may have been automatic according to a motion-time profile, which is adjusted if the compression force is not as expected (850). An optional chest-lifting device (152) may lift the chest between the compressions, to assist actively the decompression of the chest. A lifting force may be sensed, and the motion-time profile can be adjusted if the compression force or the lifting force is not as expected. An advantage is that a changing condition in the patient or in the retention of the patient within the CPR machine may be detected and responded to.
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.