Abstract:
The present invention discloses an anti-fatigue driving massage device and usage method thereof. The anti-fatigue driving massage device comprises a control system, a control device, a fixing device, a magnetic film, a power supply and a man-machine interactive device, wherein the control system is respectively connected with the control device, the power supply and the man-machine interactive device; the control device is fixedly installed on the fixing device; the magnetic film is stuck to the muscle around an eye of a driver; the control device is a loop current control device with a coil or a control device with a motor and magnets; the fixing device is a spectacle frame or a sun shield; and the power supply is a battery or a vehicular electric power supply. In the present invention, the control system is used for automatically controlling the magnetic film at regular time to perform active anti-fatigue massage, stimulus and the like for alerting the driver and relieving the fatigue of the driver, so that the driver keeps a conscious driving state; and the driver does not need to perform any operation during driving, thereby improving the driving safety.
Abstract:
Hybrid orthotic devices configured to apply electrical stimulation to one or more body parts of a person are generally described. A hybrid orthotic device may comprise one or more sensors, one or more electrodes, and a controller configured to receive input signals from the one or more sensors and deliver output signals to the one or more electrodes. In certain cases, the controller may be configured to store one or more programs associated with functional activities (e.g., standing, sitting, and/or walking), and the programs may be configured to enable one or more body parts of the person to track a desired trajectory. In some embodiments, a program may implement a Robust Integral of the Sign of the Error (RISE) control method. The program may further implement control methods to compensate for electromechanical delay and/or muscle fatigue. In certain embodiments, a program may further implement neural network (NN)-based methods.
Abstract:
A device vibrates body tissue to reduce pain experience by the body tissue in a therapeutic procedure. The device includes a frame and a tip connectable to the frame which can be activated to produce vibration. An electromagnetic reader is connected to the frame and includes an antenna for sending and receiving electromagnetic radiation. An electromagnetic tag is connected to the removable tip, and also has an antenna for sending and receiving electromagnetic radiation in communication with the electromagnetic reader antenna. The antennas are disposed proximate to each other when the removable tip is connected to the frame, whereby the electromagnetic tag can transmit information to the electromagnetic reader.
Abstract:
A vibration module for applying vibrational tractions to a wearer's skin is presented. Use of the vibration module in headphones is illustrated for providing tactile sensations of low frequency for music, for massage, and for electrical recording and stimulation of the wearer. Damped, planar, electromagnetically-actuated vibration modules of the moving magnet type are presented in theory and reduced to practice, and shown to provide a substantially uniform frequency response over the range 40-200 Hz with a minimum of unwanted audio.
Abstract:
A device and method coupled to a therapy garment to apply pressure and repetitive compression forces to a body of a person has a positive air pulse generator and a user programmable time, frequency and pressure controller operable to regulate the duration of operation, frequency of the air pulses and a selected air pressure applied to the body of a person. The air pulse generator has rigid displacers that are angularly moved with crank power transmissions to draw air into the air pulse generator and discharge air pressure pulses to the therapy garment.
Abstract:
Wearable sensors and cybernetic systems that allow one or more operators to interact and control operations of electronic, mechanical, robotic, or biomedical systems, and methods of use in gynecology, female sexual response and female sexual well-being.
Abstract:
A device for applying electrical stimulation to a surface of the human body utilizes a calibrated, pre-arranged pattern of conducting, current emitting elements to distribute current throughout an entire surface at once, such as human face, without needing to alter the device to accommodate various are sizes, including varying face sizes.
Abstract:
A sound treatment system includes an audio system for transmitting tones of predetermined frequencies through a plurality of outputs. A sound transmitting device is electrically connectable to one or more of the outputs, and includes a speaker for transmitting the tones received. The speaker is adjacent to crystal which is vibrationally responsive to the tones. A method of using the system includes generating tonal segments of predetermined duration, modulating the frequencies, and compiling these into an audio program. One or more sound transmitting devices are placed on desired locations of the body, and their inputs connected to corresponding outputs of the audio system. The generating step includes compiling selected predetermined frequencies into an audio program to generate the tonal segments, as well as modulating tones of one or more desired frequencies to generate the tonal segments.
Abstract:
Devices, systems, and methods for automated optimization of muscle stimulation energy. In some embodiments the disclosure optimizes stimulation parameters and/or stimulation location.
Abstract:
A vibration module for applying vibrational tractions to a wearer's skin is presented. Use of the vibration module in headphones is illustrated for providing tactile sensations of low frequency for music, for massage, and for electrical recording and stimulation of the wearer. Damped, planar, electromagnetically-actuated vibration modules of the moving magnet type are presented in theory and reduced to practice, and shown to provide a substantially uniform frequency response over the range 40-200 Hz with a minimum of unwanted audio.