Abstract:
Various embodiments of methods and systems for improving and enhancing vision are disclosed. Adjustable lenses or optical systems may be used to provide adaptive vision modification. In some embodiments, vision modification may be responsive to the current state of the user's visual system. Certain embodiments provide correction of the subject's near and far vision. Other embodiments provide enhancement of vision beyond the physiological ranges of focal length or magnification.
Abstract:
A scanning system device has a predetermined aberration as it scans or switches light along selected optical paths. A deformable membrane receives the light and introduces an inverse “aberration” that offsets that of the scanning system. In one embodiment the scanning system includes a torsion arm that supports an oscillatory body. The torsion arm and/or body can be machined from metal, micromachined in silicon or formed in a variety of other ways. Alternatively, the scanning system may include a rotating polygonal scanner or other type of optical scanner. In another approach, an optical switch replaces the scanner.
Abstract:
Methods, apparatuses, computer program products, devices and systems are described that include accepting three-dimensional blood vessel data; applying a sleeve-fitting algorithm to the three-dimensional blood vessel data; and presenting a sleeve-fitting algorithm output in response to said applying the sleeve-fitting algorithm to the three-dimensional blood vessel data.
Abstract:
Embodiments of a material delivery device including a deformable reservoir and associated controllable output mechanism are described. Methods of use and control of the device are also disclosed. According to some embodiments, a material delivery device may be placed in an animal in order to controllably dispense at least one material into the animal. The material delivery device may include a programmable mechanism to control the release of the material into the animal. In selected embodiments, a remote controller may be used to program or to control the material delivery device. Some embodiments are described wherein a magnetic field, an electric field, or electromagnetic control signal may be used.
Abstract:
Certain aspects relate to providing an at least one audio source to at least one user. Certain aspects relate to selectively modifying an at least one first sound source to be provided to the at least one user, wherein the at least one first sound source is combined with an at least one second sound source, and wherein the selectively modifying is performed relative to the at least one audio source based at least in part on at least some specific information of the at least one first sound source. Other aspects relate to selectively modifying the at least one first sound source to be provided to the at least one user relative to the at least one second sound source based at least in part on at least some specific information of the at least one first sound source.
Abstract:
Certain aspects can relate to obtaining at least one image information that can be distorted at least partially resulting from an at least a portion of at least one distorting feature. Certain aspects can relate to determining the at least one relative orientation of the at least the portion of the at least one distorting feature relative to the at least one image information. Certain aspects can relate to computationally compensating at least some of the distortion of the at least the portion of the at least one distorting feature from the at least one image information based at least in part on the distortion characterizing imaging information as based on the at least one relative orientation of the at least the portion of the at least one distorting feature relative to the at least one image information.
Abstract:
Embodiments include an apparatus, a medical device, a method and a system. The medical device includes an ellipsoidally shaped reflector having a first focus and a second focus. The ellipsoidally shaped reflector also provides a translational coupling of electromagnetic energy from the first focus to the second focus. The medical device also includes a controllable electromagnetic energy source aligned to emit a non-biologically emitted electromagnetic energy in a proximity to the first focus.
Abstract:
One aspect relates to generating a repeatably displaceable emanating element display that may display at least part of an at least one synchronously modifiable oriented image based at least in part on alterable vehicle-related information, wherein the repeatably displaceable emanating element display may be synchronously modified as perceivable by a viewer at least partially by synchronizing an at least one repeatably displaceable display emanating element based at least in part on an orientation of the repeatably displaceable emanating element display as synchronously modified as perceivable by the viewer.