Abstract:
Treatment of cardiac tissue via an implantable heart treatment device is described. A device embodiment includes, but is not limited to, a substrate; an electromagnetic signal generator configured to generate one or more electric signals configured to stimulate one or more tissues of a heart; a metabolic molecule supply device configured to supply one or more metabolic molecules to one or more tissues of the heart; and control circuitry operably coupled to the electromagnetic signal generator and the metabolic molecule supply device, the control circuitry configured to generate one or more control signals according to at least a first control protocol and a second control protocol, dependent upon a status of a ventricular fibrillation event of the heart.
Abstract:
A computationally implemented system and method that is designed to, but is not limited to: electronically presenting user interface content outputted by code operated by one or more computer operating systems, the user interface content presented on one or more electronic user interface outputs and related at least in part to employment information associated with one or more employees as being involved with one or more electric vehicles and related at least in part to wireless transfer of electrical energy to the one or more electric vehicles. In addition to the foregoing, other method aspects are described in the claims, drawings, and text forming a part of the present disclosure.
Abstract:
Positional applicator devices and methods are for application of stretchable electronics relative to subsurface features of an object. In some embodiments, a positional applicator device for applying a stretchable electronic device to a surface of an object includes: a holder for a stretchable electronic device; a signal emitter positioned to direct an emitted signal toward a surface of an object; a receiver positioned to detect a return signal from the surface of the object; circuitry operably connected to the signal emitter and the receiver, the circuitry configured to compare the emitted signal with the return signal in order to identify surface and subsurface features of the object; circuitry configured to compare the identified features with a map of surface and subsurface features of the object stored in memory; and a positioner, the positioner structured to apply the stretchable electronic device to a position on the surface of the object.
Abstract:
Systems and related methods for controlling delivery of a stimulus to a pinna of a subject with a stimulator worn on the pinna are described. A wearable stimulation device includes a mechanical, electrical, or other type of stimulator secured to a pinna of a subject. A personal computing device in communication with the wearable stimulation device controls delivery of stimuli and other aspects of operation of the device. The personal computing device also controls delivery of a sound signal (for example, music) to the user of the stimulation device in association with the neural stimulus. In some aspects recommendations regarding neural stimuli and other stimuli or experiences to be delivered in association with the neural stimuli are provided via a computing system in communication with the personal computing device or the wearable stimulation device.
Abstract:
Systems and related methods for controlling delivery of a stimulus to a pinna of a subject with a stimulator worn on the pinna are described. A wearable stimulation device includes a mechanical, electrical, or other type of stimulator secured to a pinna of a subject. A personal computing device in communication with the wearable stimulation device controls delivery of stimuli and other aspects of operation of the device. The personal computing device presents various types of information relating to operation and control of the device to a user of the wearable stimulation device. In some aspects recommendations regarding neural stimuli and other stimuli or experiences to be delivered in association with the neural stimuli are provided via a computing system in communication with the personal computing device or the wearable stimulation device.
Abstract:
A tattooing apparatus including a needle having at least one tip. The needle is configured to move between a first position in which the tip is located above the surface of a skin, and a second position in which the tip is located at a penetration depth underneath the skin surface. The needle is further configured to deposit an ink between the skin surface and the penetration depth. The tattooing apparatus further includes a needle drive mechanism configured to move the needle between the first position and the second position. The tattooing apparatus includes a sensor configured to output a feedback signal corresponding to a skin thickness characteristic. The tattooing apparatus further includes a controller configured to receive the feedback signal, wherein the controller is configured to adjust the penetration depth based on the skin thickness characteristic.
Abstract:
Structures and protocols are presented for signaling a status or decision concerning a wireless service or device within a region to a network participant or other communication device (smartphone or motor vehicle, e.g.).
Abstract:
A device embodiment includes, but is not limited to, a deformable substrate; a sensor assembly coupled to the deformable substrate, the sensor assembly including a proximity sensor configured to generate one or more sense signals associated with a proximity of an environmental object relative to the body portion; circuitry operably coupled to the sensor assembly and configured to receive the one or more sense signals and to determine whether the proximity of the environmental object relative to the body portion changes over a time period; and a reporting device operably coupled to the circuitry and configured to generate one or more communication signals associated with one or more of the environmental object or a change in proximity of the environmental object relative to the body portion responsive to instruction by the circuitry.
Abstract:
A computer system includes but is not limited to a primary processing circuitry, a bus coupled to the primary processing circuitry, and memory circuitry coupled to the bus. The memory circuitry is physically separated from the primary processing circuitry. The memory circuitry includes at least one integrated memory circuit and computational circuitry. The at least one integrated memory circuit configured to store and retrieve data and to provide to the bus, during accessing intervals, requested data for the primary processing circuitry. The computational circuitry co-located with the at least one integrated memory circuit, the computational circuitry co-located with integrated memory circuit can be configured for performing supplemental functions at least partially during time periods that are not accessing intervals.
Abstract:
The present disclosure provides for identification systems and related methods of use. The disclosed identification systems can include a first ink and a second ink, each of which can comprise one or more time-dependent properties. The first and second inks can be disposed in a spatial pattern on a substrate. A time-dependent property of the first ink can cause a portion of the first ink to migrate from one location to another location over time, and a time-dependent property of the second ink can cause a portion of the second ink to migrate from one location to another location over time. Migration of the inks can also cause the spatial pattern to change from a first state at a first time to a second state at a second time. Evaluation and/or interpretation of the state of the spatial pattern at a second time can provide information about a product.