Abstract:
Lumen-traveling biological interface devices and associated methods and systems are described. Lumen-traveling biological interface devices capable of traveling within a body lumen may include a propelling mechanism to produce movement of the lumen-traveling device within the lumen, electrodes or other electromagnetic transducers for detecting biological signals and electrodes, coils or other electromagnetic transducers for delivering electromagnetic stimuli to stimulus responsive tissues. Lumen-traveling biological interface devices may also include additional components such as sensors, an active portion, and/or control circuitry.
Abstract:
Lumen-traveling devices capable of controlled material release and associated methods and systems are described. Lumen-traveling devices capable of traveling within a body lumen may include a propelling mechanism to produce movement of the lumen-traveling device within the lumen, as well as additional components such as a sensor, a material release portion, and/or control circuitry. In some embodiments, a sensor may be used to detect a local condition, and a material may be released from the device in response.
Abstract:
An element for interacting with electromagnetic radiation is disclosed, including a first self-resonant body, a second self-resonant body, and a directional device interposed between the first self-resonant body and the second self-resonant body. The directional device is adapted to inhibit propagation of electromagnetic radiation from the second self-resonant body to the first self-resonant body.
Abstract:
Embodiments of a system including a remotely controlled reaction device and associated controller are described. Methods of use and control of the device are also disclosed. According to various embodiments, a reaction device is placed in an environment in order to perform a chemical reaction in an environment. Exemplary environments include a body of an organism, a body of water, or an enclosed volume of a fluid. In selected embodiments, an acoustic control signal may be used.
Abstract:
Embodiments of a system including a remotely controlled reaction device and associated controller are described. Methods of use and control of the device are also disclosed. According to various embodiments, a reaction device is placed in an environment in order to perform a chemical reaction in an environment. Exemplary environments include a body of an organism, a body of water, or an enclosed volume of a fluid. In selected embodiments, a magnetic field, an electric field, or electromagnetic control signal may be used.
Abstract:
Embodiments of devices and system for controllable nasal delivery of materials are described. Methods of use of such devices and system and software for controlling the operation of such devices and systems are also disclosed.
Abstract:
Embodiments include a device and a method. In an embodiment, a device provides a resource manager operable to select a resource management policy likely to provide a substantially optimum execution of an instruction group by comparing an execution of the instruction group pursuant to a first resource management policy applied to a hardware resource and an execution of the instruction group pursuant to a second resource management policy applied to the hardware resource.
Abstract:
Embodiments include a device and a method. In an embodiment, a device includes a processor having an associated hardware resource and operable to execute an instruction group. The device also includes a resource manager operable to implement a resource management policy for the hardware resource with respect to an execution of the instruction group, the resource management policy responsive to a prediction of a future performance of the hardware resource based at least in part on a historical performance of the hardware resource.
Abstract:
Embodiments include a controller apparatus, a computerized apparatus, a device, an apparatus, and a method. A controller-apparatus includes a monitoring circuit for detecting a computational error corresponding to an execution of an instruction of a sequence of instructions by a processor subsystem having an adjustable operating parameter. The controller apparatus also includes a recovery circuit for rolling back an execution of the sequence of instructions to a checkpoint in response to the detected computational error. The controller apparatus further includes a control circuit for adjusting the adjustable operating parameter in response to a performance criterion.
Abstract:
Embodiments include a computer processor-error controller, a computerized device, a device, an apparatus, and a method. A computer processor-error controller includes a monitoring circuit operable to detect a computational error corresponding to an execution of a second instruction by a processor operable to execute a sequence of program instructions that includes a first instruction that is fetched before the second instruction. The computer processor-error controller includes an error recovery circuit operable to restore an execution of the sequence of program instructions to the first instruction in response to the detected computational error.