Abstract:
A handheld device has an array of light sources, for example light emitting diodes. The array is divided into different groups and selection circuitry selects a group of energy sources to be driven at any given time. Control circuitry controls the selection so that the different groups of light sources are driven at different times.
Abstract:
A device configured to cut hair using laser light includes a handle portion and a shaving portion. The handle portion includes a battery and a laser light source. The laser light source is coupled to and configured to receive power from the battery. The laser light source is also configured to generate laser light having a wavelength selected to target a predetermined chromophore to effectively cut a hair shaft. The shaving portion includes a support and a single fiber optic supported by the support. The fiber optic has a proximal end, a distal end, an outer wall, and a cutting region positioned towards the distal end and extending along a portion of the side wall. The fiber optic is positioned to receive the laser light from the laser light source at the proximal end, conduct the laser light from the proximal end toward the distal end, and emit the light out of the cutting region and toward hair when the cutting region is brought in contact with the hair.
Abstract:
Methods of treatment of tissue with electromagnetic radiation (EMR) to produce lattices of EMR-treated islets in the tissue are disclosed. Also disclosed are devices and systems for producing lattices of EMR-treated islets in tissue, and cosmetic and medical applications of such devices and systems.
Abstract:
A device configured to cut hair using laser light includes a handle portion and a shaving portion. The handle portion includes a battery and a laser light source. The laser light source is coupled to and configured to receive power from the battery. The laser light source is also configured to generate laser light having a wavelength selected to target a predetermined chromophore to effectively cut a hair shaft. The shaving portion includes a support and a single fiber optic supported by the support. The fiber optic has a proximal end, a distal end, an outer wall, and a cutting region positioned towards the distal end and extending along a portion of the side wall. The fiber optic is positioned to receive the laser light from the laser light source at the proximal end, conduct the laser light from the proximal end toward the distal end, and emit the light out of the cutting region and toward hair when the cutting region is brought in contact with the hair.
Abstract:
A device configured to cut hair using laser light includes a handle portion and a shaving portion. The handle portion includes a battery and a laser light source. The laser light source is coupled to and configured to receive power from the battery. The laser light source is also configured to generate laser light having a wavelength selected to target a predetermined chromophore to effectively cut a hair shaft. The shaving portion includes a support and a single fiber optic supported by the support. The fiber optic has a proximal end, a distal end, an outer wall, and a cutting region positioned towards the distal end and extending along a portion of the side wall. The fiber optic is positioned to receive the laser light from the laser light source at the proximal end, conduct the laser light from the proximal end toward the distal end, and emit the light out of the cutting region and toward hair when the cutting region is brought in contact with the hair.
Abstract:
A portable hair treatment device 1 includes a hand held portion or wand 2 containing a laser and associated optics for effecting skin treatment. The device includes a main base unit 3 including a recess shaped to receive the hand held unit 2 when not in use. At least one of the base unit 3 and the wand 2 includes a portable power source, e.g. a battery, to enable self-powered use.
Abstract:
Methods of treatment of tissue with electromagnetic radiation (EMR) to produce lattices of EMR-treated islets in the tissue are disclosed. Also disclosed are devices and systems for producing lattices of EMR-treated islets in tissue, and cosmetic and medical applications of such devices and systems.
Abstract:
A method for providing localized heating of the dermal layers of skin of a patient, using energy in the form of a group of pulses having defined parameters in a controlled manner. This method preferably uses an optical delivery system to deliver pulsed energy to a specific spot of skin so that targeted layers of the affected skin are heated to a desired temperature range. The temperature range is optimally selected to maximize treatment efficacy while minimizing pain to the patient. Example applications include reducing wrinkles, acne, hair, scar tissue, warts, and promoting wound healing. In this method, the temperature of the selected locus rises quickly to the desired temperature range, then is maintained within a controlled range with a relatively flat temperature profile. The method maintains the temperature by controlling one or more of a pulse energy intensity, pulse width, and pulse frequency or time delay between pulses.
Abstract:
The present application relates to a device for cutting hair (1). The device has a skin contacting face (3) that is arranged to be placed against a surface of the skin (6) of a user during use, and an optical system configured to direct a cutting laser beam (8) across a cutting zone (5) parallel to and spaced from said skin contacting face (3) to cut hairs extending into the cutting zone (5). The device also has a skin sensor (18) configured to detect one or more optical properties of the surface of the skin (6), and a control unit (20) configured to adjust one or more characteristics of the optical system in dependence on the one or more optical properties of the skin (6) detected by the skin sensor (18). The present application also relates to a system for cutting hair comprising a device for cutting hair and a base unit for receiving the device.
Abstract:
Disclosed is a portable hair removal apparatus using a laser light beam that can be used for various skin beauty treatments such as hair removal, skin massage, skin whitening, and cuticle removal. The portable hair removal apparatus includes a main body with a mounting portion, a laser light beam cartridge which is mounted to or removed from the mounting portion and which is equipped with a laser light beam outputting portion, and a cooling cartridge which is mounted to and removed from the mounting portion and is equipped with a contact-type heat absorbing portion.