Abstract:
Architectures and techniques for treating conditions of the eye, such as presbyopia, utilize sources of treatment energy, such as electromagnetic energy emitting devices, to implement non-corneal manipulations. According to these devices and methods, the sources of treatment energy are activated to direct energy onto parts of the eye, such as the conjunctiva and sclera, to treat presbyopia. The treatments can affect at least one property of the eye and enhance an accommodation of the eye.
Abstract:
A radiation emitting apparatus is disclosed that emits a substantially homogenous beam of radiation from an irregularly shaped output end. As described herein, a radiation emitting apparatus includes a bundled fiberguide coupled to an energy distribution tuner. The bundled fiber guide is coupled to the energy distribution tuner to receive a substantially uniform distribution of high power energy. The bundled fiber guide is configured to distribute the energy to emit a substantially uniform distribution of lower power energy toward a target surface, such as a body surface. The bundled fiber guide may include a plurality of fused optic fibers, a plurality of beam splitting mirror elements, or tapered waveguides.
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:
Tissue coverings customized with images of underlying tissue are disclosed. Wounds, unwanted features, blemishes and the like may be camouflaged or masked by the tissue coverings, which can include photographic images of a patient's underlying tissue.
Abstract:
An apparatus having an excitation source that includes at least one laser diode and also having a handpiece with a disposable, bendable tip cannula is disclosed.
Abstract:
A fluid conditioning system is adapted to condition the fluid used in medical and dental cutting, irrigating, evacuating, cleaning, and drilling operations. The fluid may be conditioned by adding flavors, antiseptics and/or tooth whitening agents such as peroxide, medications, and pigments. In addition to the direct benefits obtained from introduction of these agents, the laser cutting properties may be varied from the selective introduction of the various agents.
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.
Abstract:
An electromagnetic energy output device in the form of laser handpiece and a trunk assembly is disclosed. The electromagnetic energy output device includes a digital camera and electromagnetic energy waveguides for emitting illumination or excitation light energy to enhance user viewability of a target surface and signal analysis and to receive electromagnetic energy such as return excitation light. An image acquisition fitting routes images acquired at or in a vicinity of the distal end of the electromagnetic energy output device. The image acquisition fitting can include an attachable or clip-on element or set of elements. In other implementations, the image acquisition fitting may be securable, in whole or in part, within an interior of the electromagnetic energy output device.
Abstract:
A laser handpiece is disclosed, including a shaped fiber optic tip having a side-firing output end with a double bevel-cut shape. The shaped fiber optic tip can be configured to side- fire laser energy in a direction away from a laser handpiece and toward sidewalls of a treatment or target site.
Abstract:
A laser handpiece is disclosed, including a shaped fiber optic tip having a side-firing output end with a non-cylindrical shape. The shaped fiber optic tip can be configured to side-fire laser energy in a direction away from a laser handpiece and toward sidewalls of a treatment or target site.