Patent classifications
A61H39/002
Skin treatment system
A skin regeneration therapy combining precise bioelectric signals, light, and biologics for skin treatment and regeneration. Precise bioelectric signals give clear instructions to the stimulated cell DNA/RNA to produce specific regenerative proteins on demand. Bioelectric signals give clear instructions to cell membranes on what to let in and what to let out and serve as an equivalent or surrogate of environmental stimuli to cause a cell action in response.
Method for conducting stimulus treatment
A method of conducting a stimulus treatment includes the steps of examining health conditions of a subject to obtain examination data information of the subject, registering the examination data information in an information accumulation device, planning a schedule of the stimulus treatment determined to be suitable for the subject based on the examination data, and conducting the stimulation application treatment by applying a stimulation to a stimulation receiving site of the subject with a stimulation application device so as to increase the blood flow in the subject by 60% or more after the application of stimulation, as compared to the blood flow before the application of the stimulation.
ELECTRICALLY BASED MEDICAL TREATMENT DEVICE AND METHOD
Embodiments of medical treatment including skin treatment using electrical energy, especially with the primary purpose for skin treatment for aesthetics are described generally herein. Other embodiments may be described and claimed.
METHODS FOR DELIVERING PULSED ELECTRIC CURRENT TO LIVING TISSUE
A patient treatment unit for delivering non-invasive pulsed energy to living tissue with a probe stimulus generator circuit configured to output, as a treatment signal, a sequence of DC electrical pulses at a controlled pulse frequency of about 20 kHz and having a pulse voltage defined by a variable supply voltage of the probe stimulus generator circuit. The unit includes primary and secondary probes for contacting a body, an intensity adjustment circuit configured to control the variable supply voltage, and an electronic timer display configured to display an elapsed time in decimal numbers in minute and second format. An electrical current of the pulses is in a range of 0.1-2 mA while the probes are contacting the body. An operating output voltage across the probes while conducting the treatment signal does not exceed a maximum operating output voltage of 165 VDC while the probes are contacting the body.
SYSTEMS AND METHOD FOR DELIVERING PULSED ELECTRIC CURRENT TO LIVING TISSUE
A patient treatment unit for delivering non-invasive pulsed energy to living tissue with a probe stimulus generator circuit configured to output, as a treatment signal, a sequence of DC electrical pulses at a controlled pulse frequency of about 20 kHz and having a pulse voltage defined by a variable supply voltage of the probe stimulus generator circuit. The unit includes primary and secondary probes for contacting a body, an intensity adjustment circuit configured to control the variable supply voltage, and an electronic timer display configured to display an elapsed time in decimal numbers in minute and second format. An electrical current of the pulses is in a range of 0.1-2 mA while the probes are contacting the body. An operating output voltage across the probes while conducting the treatment signal does not exceed a maximum operating output voltage of 165 VDC while the probes are contacting the body.
Implantable Electroacupuncture System and Method
A method comprises generating, by an implantable stimulator, stimulation sessions at a duty cycle that is less than 0.05 and applying, by the implantable stimulator, the stimulation sessions to a patient. The duty cycle is a ratio of T3 to T4. Each stimulation session included in the stimulation sessions has a duration of T3 minutes and occurs at a rate of once every T4 minutes. The implantable stimulator is powered by a primary battery having an internal impedance greater than 5 ohms.
AUTONOMOUS NEUROSTIMULATION UNIT
An autonomous neurostimulation unit used in the modulation of the nervous system is provided and has: at least one pair of pads, each formed by at least one inner layer of ceramic; an intermediate layer; and a conductive alloy coating. The material of the layer of coating is different and has different conductivity in each of the pads of the pair. The unit can be used in the modulation of the nervous system, with neurostimulation methods that are adapted to each patient.
Apparatus for relaxing smooth muscles of human body
An apparatus includes a controller body configured to determine whether a light irradiation mode is selected and an operation is started through a user's manipulation, the controller body comprising a wireless transmission unit configured to transform an LED driving signal output according to the selected light irradiation mode into a radio signal and transmit the radio signal, and a wireless electrode probe configured to wirelessly receive the LED driving signal from the controller body by establishing wireless communication with the wireless transmission unit. The wireless electrode probe is configured to be driven by the LED driving signal received from the controller body to emit the light of a predetermined wavelength range, which increases concentration of a material for relaxing smooth muscles of a human body.
Systems and methods for improving heart-rate variability
The present invention discloses neuro-stimulation systems and methods for affecting cardiovascular function, particularly for improving heart rate variability and treating arrhythmia.
HANDHELD ACUPUNCTURE TAPPING DEVICE
A handheld acupuncture tapping device includes a case that is divided into a head and a handheld part. At least one control button is disposed on the outer surface of the case, and at least one light unit, a vibration unit, a control module, and a contact unit are disposed within the case. The control module is electrically connected to the light unit and the vibration unit for driving the light unit and the vibration unit to generate a light and a vibration signal respectively. Further, the user can control the control module by the control button to adjust the intensity of the light and the waveform, frequency and amplitude of the vibration signal. The contact unit is disposed in front of the light unit and the vibration unit, so that the light and the vibration signal are projected on the contact unit and transmitted to an outside. The user can use the light and the vibration signal generated by the handheld acupuncture tapping device to tap or massage the treatment part.