Abstract:
A mobile device for detecting an electrical signal generated by an ingestible event marker is disclosed. The mobile device includes a detection subsystem to receive an electrical signal generated by an ingestible event marker from a detection arrangement. A processing subsystem is coupled to the detection subsystem to decode the electrical signal. A radio subsystem is configured to transmit the decoded electrical signal to a wireless node. A system includes the mobile device and the detection arrangement. A method includes receiving the electrical signal generated by the ingestible event marker at the mobile device, decoding the electrical signal to extract information associated with the ingestible event marker, and transmitting the information to a wireless node.
Abstract:
A system including a sensor, a mobile device, and a computer system is disclosed. The sensor is configured to detect physiologic data from the body of the patient. The mobile device includes a patient data input device. The computer system, communicatively coupled to the mobile device, includes a patient record indicating: patient data comprising a plurality of patient activities, and detected physiological data received from the sensor via the mobile device. The computer system is configured to identify an unhealthy physiological data value from the detected physiological data of the patient record, correlate the unhealthy physiological data value to a patient activity of the patient data, select a therapeutic recommendation to address the unhealthy physiological data value, and transmit the selected therapeutic recommendation to the patient, via the mobile device, at a future time associated with the patient activity correlated to the unhealthy physiological data value.
Abstract:
The system of the present invention includes a conductive element, an electronic component, and a partial power source in the form of dissimilar materials. Upon contact with a conducting fluid, a voltage potential is created and the power source is completed, which activates the system. The electronic component controls the conductance between the dissimilar materials to produce a unique current signature. The system can be used in a variety of different applications, including as components of ingestible identifiers, such as may be found in ingestible event markers, e.g., pharmainformatics enabled pharmaceutical compositions.
Abstract:
A loose wearable receiver system is disclosed. A loose wearable receiver system is a body-associated personal communicator capable of detecting, monitoring, analyzing, and/or transmitting information about a wearer. The loose wearable system may be operable to detect an electrical current signature from an ingestible device indicator system. The loose wearable system may store and/or access data on a remote system. The loose wearable system may comprise a wearable component configured to be removably worn, such as on a limb. The loose wearable system comprises a compartment and optionally a battery-powered electronics module configured to be removably attached to the compartment or a charging station for charging a battery within the wearable system.
Abstract:
The system of the present invention includes a conductive element, an electronic component, and a partial power source in the form of dissimilar materials. Upon contact with a conducting fluid, a voltage potential is created and the power source is completed, which activates the system. The electronic component controls the conductance between the dissimilar materials to produce a unique current signature. The system can also measure the conditions of the environment surrounding the system.
Abstract:
A device including an integrated circuit, a partial power source, including first and second materials associated with the integrated circuit is disclosed. The first and second materials are configured to provide a voltage potential difference when in contact with a conductive fluid to power up the device. A signal amplification element secured around the integrated circuit relative to the first and second materials is configured to facilitate extension of a current flow path between the first and second materials. A modulator is configured to control conductance between the first and second materials to generate a detectable signal that is partially defined by the current flow extending through the conductive fluid. A communication module is coupled to the partial power source and is configured to communicate with a receiver and an antenna electrically coupled to the communication module, which uses the antenna to communicate with the receiver.
Abstract:
Controlled activation identifiers for use in ingestible compositions, such as pharma-informatics enabled compositions, are provided. The identifiers include a controlled activation element that provides for activation of the identifier in response to the presence of a predetermined stimulus at a target site of interest. The invention finds use in a variety of different applications, including but not limited to, monitoring of therapeutic regimen compliance, tracking the history of pharmaceutical agents, etc.
Abstract:
Sensing is carried out from locations considerably removed from the stomach. Cooperating sensor electronics are placed at each of two wrists of the patient. The potential discomfort and inconvenience of an abdominal patch are reduced or eliminated, and alternative power sources become available.
Abstract:
A method may comprise receiving and sampling a signal. The signal may encode a data packet. A slice may be generated and stored comprising a pair of values for each of a selected number of samples of the signal representing a correlation of the signal to reference functions in the receiver. The presence of the data packet may then be detected and the detected packet decoded from the stored slices. The generating and storing slices may be carried out as the received signal is sampled. The sampled values of the signal may be discarded as the slices are generated and stored. The slice representation of the signal can be manipulated to generate filters with flexible bandwidth and center frequency.
Abstract:
An apparatus includes a food product, at least one ingestible device associated with the food product to communicate information and at least one coating material surrounding the at least one ingestible device is disclosed. The ingestible device is associated with an ingestible medication to be ingested in conjunction with the food product. The coating is configured to release the at least one ingestible device upon the occurrence of an event.