Abstract:
An illumination device (10) for medical and dental procedures is described. The illumination device (10) includes an elongate body (12) configured to contain two or more optical fibers (16) to transmit electromagnetic energy from a power source toward a target surface (62). The distal end (D) of the illumination device (10) is ^'Justrated as a unitary structure, and the proximal end (P) is illustrated as having multiple proximal end members (22A, 22B, 22C, 22D). The illumination device (10) includes two or more optical fibers (16) for transmitting energy toward the distal end (D), and at least one optical fiber (16) for transmitting energy from the distal end (D) toward the proximal end (P) of the device.
Abstract:
A cutting device that uses electromagnetic energy to create a cutting effect on or within a target surface is disclosed. The cutting device includes an optic guide and three or more nozzles located on a body member. The nozzles direct a volume of particles of air and liquid away from the body member, and the volume of particles of air and liquid can facilitate one or more of a disruptive effect and a cooling effect on the target surface. Energy emitted from the optic guide can interact with the particles to impart disruptive forces onto or within a target surface.
Abstract:
An identification connector (25) is disclosed that provides a link (16) between a laser housing (20) and a laser handpiece (11). The connector (25) integrates a laser delivery guide with ancillary connections and provides information for verifying proper connection and protection against use of unauthorized delivery system.
Abstract:
A high power source of electro-magnetic radiation having a multi-purpose housing is disclosed. The multi-purpose housing includes an interior filled with a material forming at least a light source and further comprising a reflector which can envelope a laser rod surrounded by light sources for providing light excitation to the laser rod. A material defining outer surfaces of the light sources extends out to and defines outer surfaces of the reflector. A high-reflectivity coating is disposed over an outer surface of the reflector, as is a protective coating. Also disposed over an outer surface of the reflector can be an optional heat sink, with cooling being performed by an optional arrangement of forced-air traveling over the heat sink. The light sources may be light source pumps, and the high-reflectivity coating may be formed to envelop the reflector.
Abstract:
A device for imparting therapeutic doses to living tissue is disclosed. The device includes a planar carrier including or structured to adjustably accommodate a multitude of electrodes. Positions of the electrodes may be altered by a user during a treatment procedure involving the impartation of therapeutic doses to the living tissue.
Abstract:
A device includes a handle coupled with an activated textured surface that can be implemented using a repetitive movement mechanism and a treatment energy source, such as an electromagnetic radiation source. The handle may be used to provide detection, treatment and/or management of sundry conditions including, for example, tooth discoloration, tissue damage, periodontal disease, tumors, pain, halitosis, and bronchitis. The activated textured surface may include a surface topography including corrugations, bristles, protuberances, or pits, or other surfaces for facilitating agitation, cleaning or other surface treatments.
Abstract:
A laser handpiece is described that connects to a laser base unit. The laser handpiece receives laser energy and ancillary inputs from a connector that connects to the laser base unit. A handpiece tip on the laser handpiece directs laser energy to a target surface.