Abstract:
This disclosure provides systems and methods for non-invasive treatment to a region of interest with improved efficiency. The systems and methods can include a treatment device having an energy source and a rolling member. The rolling member can include a wall disposed between the energy source and the region of interest. Treatment can be provided at a first location, followed by moving the treatment device, then energy transmission can be terminated if coupling between the energy source and the region of interest is interrupted or treatment can be provided at a second location if the coupling between the energy source and the region of interest is uninterrupted.
Abstract:
Disclosed herein is a method of converting and reconstructing a signal, including: at a data generator, acquiring signal-analyzed data from an original signal, wherein the signal-analyzed data includes at least one feature point acquired from the original signal; transmitting and receiving the signal-analyzed data and at least one reference data corresponding to the signal-analyzed data; and reconstructing the original signal based on the signal-analyzed data and the at least one reference data to acquire a reconstructed 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.
Abstract:
Systems for auto-calibrating a pneumatic compression system may include one or more manifolds from an inflation fluid source and one or more individually inflatable cells. One or more pressure sensors may be associated with the one or more manifolds and/or each of the individually inflatable cells. Each of the pressure sensors may provide either dynamic or static pressure data to a controller. A method for auto-calibrating the compression system may include introducing a portion of inflation fluid into a cell while measuring a dynamic cell pressure, stopping the introduction of fluid, measuring a static cell pressure, and comparing, by the computing device, the dynamic cell pressure and the static cell pressure. The comparison between dynamic and static cell pressures may be used to calculate a dynamic target cell pressure equivalent to a desired static target cell pressure.
Abstract:
A muscular strength assisting apparatus may include: a wearing unit configured to enclose a part of a user's body; a tightening unit configured to pull the wearing unit in one or both directions; and/or a control unit configured to drive the tightening unit to tighten the part of the user's body on which the wearing unit is located, when it is determined that muscular contraction occurs at the part of the user's body on which the wearing unit is located. A method of controlling a muscular strength assisting apparatus may include: determining whether muscular contraction occurs at a part of a user's body that is enclosed by a wearing unit; and/or driving a tightening unit pulling the wearing unit in one direction or both directions to tighten the part of the user's body on which the wearing unit is located when it is determined that the muscular contraction occurs.
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.
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:
The present invention relates to a massage apparatus in which a plurality of acupressure assemblies apply acupressure to the human body in close contact with the human body and move individually or in connection with each other, thereby inducing a user's joints to exercise.According to an aspect of the present invention, there is provided a massage apparatus comprising: a support frame; and one or more acupressure assemblies, each of which comprises one or more acupressure members rotated by power and is supported by the support frame, wherein the acupressure assemblies rotate in one direction around one axis of the support frame.
Abstract:
A method for treating urinary incontinence is provided. The method includes providing a device having an expandable portion having an outer surface, a first electrode, and a second electrode, the first and second electrodes coupled to the outer surface of the expandable portion and configured to cause a contraction of a muscle in communication with the electrodes. The method further includes causing the expandable portion to inflate such that the first and second electrodes contact vaginal walls and causing a contraction of a muscle in communication with the electrode.
Abstract:
A method for interpreting patient treatment results and data is described. The Method uses an electric chiropractic adjusting instrument and software program and preferably comprises the following steps of adjusting a spine of a patient using the electric chiropractic adjusting instrument; gathering electric chiropractic instrument adjustment thrust data, patient spine response to thrusts of the electric chiropractic adjustment instrument, and objective clinician findings; recording the electric chiropractic instrument adjustment thrust data, the patient spine response to the thrusts, and the objective clinician findings in a database; providing real time results and findings; and generating reports based on the thrust data, the patient spine response to the thrusts of the electric chiropractic adjustment instrument, and the objective clinician findings.