Abstract:
A treatment system including a treatment device for treating a treatment area of a person's body is provided. The treatment device may include one or more treatment elements or treatment balls and a clamp or securement mechanism. The clamp or securement mechanism may include a first opposable portion and a second opposable portion, wherein at least one of the first opposable portion and the second opposable portion includes a receptacle configured to releasably hold a treatment element. The clamp or securement mechanism may be transitioned between an open configuration and a closed configuration. The treatment device may be used to apply pressure and a desired temperature to the treatment area, such as to apply pressure and a cold temperature to a portion of a person's ear to help treat ear injuries, which may help to reduce the likelihood of developing deformities (e.g., "cauliflower ear").
Abstract:
A method of neurostimulation may include delivering an electrical signal to a plurality of electrodes connected to a patient. The electrical signal may include a plurality of spaced-apart packets of electrical pulses. The method may include modulating at least one of a quantity of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, a width in time of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, an amplitude in voltage of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, a separation in time between adjacent ones of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, and a separation in time between adjacent ones of the plurality of packets of electrical pulses to modulate the electrical signal.
Abstract:
The present invention provides devices, systems and methods for delivering one or more thermal waveforms to the vestibular system and/or the nervous system of a patient. In some embodiments, the present invention provides a vestibular stimulation device configured both to generate a prescription for delivering one or more thermal waveforms and to deliver the prescribed thermal waveforms.
Abstract:
An electrical apparatus for treating ear barotrauma is described which includes an air-tight hollow body having an exterior surface and an interior surface. The interior surface defines a chamber having a first end and a second end. The first end is closed by an end wall of the body. The second end defines an ear receiving opening. An air-tight seal is positioned around the ear receiving opening to prevent air from escaping the chamber. A battery powered electric heat source is positioned within the chamber at the first end. The heat source is selectively activated by an external switch in order to selectively pressurize the chamber through heat expansion of air trapped within the chamber.
Abstract:
La invención se refiere a una pletina extensible, concebida para ser colocada en la parte superior de la cabeza, que presenta en cada uno de sus extremos, unida solidariamente a la pletina, una cazoleta. Las cazoletas son de material plástico o similar y están divididas verticalmente en dos zonas articuladas entre sí en su parte inferior, separadas por una malla de protección fijada solidariamente a la zona más cercana al oído, y que presentan en su parte superior un enganche para el cierre de la cazoleta. La zona perimetral más cercana al oído presenta una superficie acolchada para la protección del pabellón auditivo, y la zona más alejada del oído contiene en su interior una bolsa de calor seco.
Abstract:
A device for delivering caloric vestibular stimulation to an individual, includes: (a) an earpiece configured to be at least partially insertable into the ear canal of the individual for delivering a first thermal stimulus; (b) an input unit for receiving a user input indicating efficacy of said first thermal stimulus, and (c) a controller operatively associated with said earpiece and said input unit for: (i) controlling said earpiece to provide said first thermal stimulus, and (ii) receiving a signal corresponding to the user input and generating a control signal to control the earpiece and delivering a subsequent thermal stimulus different from said first thermal stimulus. In some embodiments, each thermal stimulus is an actively controlled time varying waveform stimulus.
Abstract:
A device and associated method for providing vestibular stimulation to an individual includes active elements positioned on or proximate an ear insert. The active elements include but are not limited to at least one electrode, at least one thermometer, and at least one thermoelectric transducer. The device includes a computerized control module regulating the active elements. The device incorporates an ear insert that allows the active elements to engage the individual's ear canal and therefore access the individual's vestibular system. Vestibular stimulation applied to the individual is customized for directly stimulating desired regions of the brain for therapeutic or diagnostic purposes. In a preferred embodiment, the device provides vestibular stimulation sufficient to promote physiological changes in the individual, the changes selected from the group consisting of circadian temperature cycle time shifts, ascorbic acid production, serotonin production, acetylcholine production, histamine production, and heat shock protein production.
Abstract:
A method of neurostimulation may include delivering an electrical signal to a plurality of electrodes connected to a patient. The electrical signal may include a plurality of spaced-apart packets of electrical pulses. The method may include modulating at least one of a quantity of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, a width in time of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, an amplitude in voltage of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, a separation in time between adjacent ones of the plurality of electrical pulses within ones of the plurality of packets of electrical pulses, and a separation in time between adjacent ones of the plurality of packets of electrical pulses to modulate the electrical signal.
Abstract:
Disclosed is a 3D scanner for recording topographic characteristics of a surface of at least part of a body orifice, where the 3D scanner comprises: - a main body comprising a mounting portion; - a tip which can be mounted onto and un-mounted from said mounting portion, where said tip is configured for being brought into proximity of said body orifice surface when recording said topographic characteristics such that at least one optical element of the tip is at least partly exposed to the environment in the body orifice during said recording; and - a heater system for heating said optical element, said heater system comprising a source of electromagnetic energy and a receptive element configured for receiving the electromagnetic energy and converting it into heat, where the generated heat is provided by way of thermal conduction directly to said optical element or indirectly through a heat conducting element; where the tip can be sterilized in a steam autoclave when un-mounted from the main body of the 3D scanner such that it subsequently can be reused.
Abstract:
A device for delivering caloric vestibular stimulation to an individual, includes: (a) an earpiece configured to be at least partially insertable into the ear canal of the individual for delivering said caloric vestibular stimulation; (b) a power supply operatively associated with said earpiece; and (c) a controller operatively associated with said power supply and said earpiece for configuring said caloric vestibular stimulation as at least a first and second time-varying waveform. Preferably, the waveforms are actively controlled waveforms.