Abstract:
Methods, computer program products, and systems are described that include accepting at least one indication of use of an inhalation device configured to dispense a bioactive agent to an individual and presenting at Least one artificial sensory experience to monitor at Least one side effect of the bioactive agent on the individual.
Abstract:
In one embodiment, a multi-layer insulation (MLI) composite material includes a first thermally-reflective layer and a second thermally-reflective layer spaced from the first thermally-reflective layer. At least one of the first or second thermally-reflective layers includes bandgap material that is reflective to infrared electromagnetic radiation. A region between the first and second thermally-reflective layers impedes heat conduction between the first and second thermally-reflective layers. Other embodiments include a storage container including a container structure that may be at least partially formed from such MLI composite materials, and methods of using such MLI composite materials.
Abstract:
Methods, computer program products, and systems are described that include measuring at least one effect of an inhalation device-dispensed bioactive agent and artificial sensory experience on an individual and modifying at least one of the inhalation device-dispensed bioactive agent or the artificial sensory experience at least partially based on the at least one effect.
Abstract:
A computationally implemented method includes, but is not limited to: for determining one or more behavioral fingerprints associated with one or more network accessible users; relationally mapping the one or more behavioral fingerprints to generate a trust verification schema associated with the one or more network accessible users; and determining whether to authenticate one or more transactions via the trust verification schema. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
A method is generally described which includes environmental alteration. The method includes determining a placement of at least one vessel capable of moving water to lower depths in the water via wave induced downwelling. The method also includes placing the at least one vessel in the determined placement. Further, the method includes generating movement of the water adjacent the surface of the water in response to the placing.
Abstract:
Devices, methods, and systems are described for administration to at least one biological tissue of at least one device including at least one altered microorganism. In an embodiment, the altered microorganism includes at least one nucleic acid construct encoding at least one therapeutic agent.
Abstract:
The present invention may include measuring energy usage of one or more appliances for a selected usage metric, receiving reference energy usage data indicative of energy usage of one or more reference appliances for the selected usage metric, comparing the measured energy usage of the one or more appliances for the selected usage metric to the one or more received sets of reference energy usage data for the selected usage metric, and reporting an amount of energy savings based on the comparison of measured energy usage of the one or more appliances and the one or more received sets of reference energy data.
Abstract:
Methods and systems for programmed dispensation of consumable compositions are provided. A method for sterilizing a beverage container may include, but is not limited to: (a) detecting a sterilization status of a container; and (b) controlling functionality of a controllable device according to the sterilization status. A system for sterilizing a beverage container may include, but is not limited to: (a) means for detecting a sterilization status of a container; and (b) means for controlling functionality of a controllable device according to the sterilization status.
Abstract:
Apparatus, methods, and systems provide emitting and negatively-refractive focusing of electromagnetic energy. In some approaches the negatively-refractive focusing includes negatively-refractive focusing from an interior field region with an axial magnification substantially greater than one. In some approaches the negatively-refractive focusing includes negatively-refractive focusing with a transformation medium, where the transformation medium may include an artificially-structured material such as a metamaterial.
Abstract:
Breast implants including sensor modules and related methods are described herein. Breast implants include those with: a shell configured to be substantially filled with a viscous material; a plurality of projections extending from an external surface of the shell, the projections forming a plurality of compartments adjacent to the external surface of the shell; at least one fluid-permeable cover attached to the projections, the cover completely enveloping the shell and the plurality of projections; and a plurality of sensor modules attached to the shell and positioned at a distance from each other, each of the sensor modules oriented to detect one or more analytes in a fluid within one of the plurality of compartments, wherein each of the plurality of sensor modules includes a unique identifier and is configured to utilize energy transmitted from an external source.