Abstract:
A system and method providing low-power operation in a multimode communication device. Various aspects of the present invention may, for example, include at least one radio module that is adapted to communicate in a plurality of communication modes. The at least one radio module may also be adapted to operate in at least a first power-save mode. At least one module may, for example, be adapted to analyze at least one non-informational aspect of a signal (e.g., a received radio signal) to determine whether a first communication network corresponding to a first communication mode of the plurality of communication modes might be available. The at least one module may then, for example, be adapted to determine, based at least in part on the determined availability of the first communication network, whether to operate the at least one radio module in a respective mode other than the first power-save mode.
Abstract:
Fluid sensor methods and systems adapted for monitoring and/or controlling distillation operations in fluidic systems, such as batch distillation operations or continuous distillation operations, are disclosed. Preferred embodiments are directed to process monitoring and/or process control for unit operations involving endpoint determination of a distillation, for example, as applied to a liquid-component-switching operation (e.g., a solvent switching operation), a liquid-liquid separation operation, a solute concentration operation, a dispersed-phase concentration operation, among others.
Abstract:
Formulations and methods of use thereof for restoring neuronal, muscular (cardiac and striated) and/or retinal tissue function in children and adults afflicted with chronic neurodegenerative diseases, such as neurodegenerative movement disorders and ataxias, seizure disorders, motor neuron diseases, and inflammatory demyelinating disorders, are described herein. Examples of disorders include Alzheimer's disease (AD), Parkinson's disease (PD), and amyotrophic lateral sclerosis (ALS). The method involves administering a pharmaceutical composition containing an effective amount of a tetrahydrobenzathiazole, preferably a formulation consisting substantially of the R(+) enantiomer of pramipexole. R(+) pramipexole is generally administered in doses ranging from 0.1-300 mg/kg/daily, preferably 0.5-50 mg/kg/daily, and most preferably 1-10 mg/kg/daily for oral administration. Daily total doses administered orally are typically between 10 mg and 500 mg. Alternatively, R(+) pramipexole can be administered parenterally to humans with acute brain injury in single doses between 10 mg and 100 mg and/or by continuous intravenous infusions between 10 mg/day and 500 mg/day.
Abstract translation:用于恢复患有慢性神经变性疾病的儿童和成人的神经元,肌肉(心脏和条纹)和/或视网膜组织功能的制剂及其使用方法,例如神经变性运动障碍和共济失调,癫痫发作,运动神经元疾病和炎性脱髓鞘 病症在本文中描述。 疾病的实例包括阿尔茨海默病(AD),帕金森病(PD)和肌萎缩性侧索硬化(ALS)。 该方法包括施用含有有效量的四氢苯并噻唑的药物组合物,优选基本上由普拉克索的R(+)对映异构体组成的制剂。 R(+)普拉克索通常以0.1-300mg / kg /日,优选0.5-50mg / kg /日,最优选1-10mg / kg /日的剂量施用于口服给药。 口服给药的每日总剂量通常在10mg至500mg之间。 或者,R(+)普拉克索可以以10mg至100mg的单次剂量和/或通过10mg /天至500mg /天的连续静脉内输注肠胃外给予急性脑损伤的人。
Abstract:
Systems and methods of printer resource sharing in a communication network are provided. In one embodiment, the system may comprise, for example, at least one communication device, a communication network, print server software, and at least one personal printer resource. The communication device may be deployed at a location. The communication network may be communicatively coupled to that communication device. The print server software may receive from the communication device via the communication network a request for printing of information content. The print server software may respond by coordinating the printing of the information content. The at least one personal printer resource may be communicatively coupled to the at least one communication device. The print server software may reside outside of the at least one personal printer resource, and the at least one personal printer resource may be accessed for printing by the communication device via the communication network.
Abstract:
A wireless terminal displays its location and navigation information (map segment) on its display. The wireless terminal accesses a Global Positioning System (GPS) receiver of the wireless terminal to determine its location coordinates. The wireless terminal determines a maximum data size for navigation information to be downloaded. The wireless terminal sends a navigation information download request to a map server via a supporting wireless network infrastructure that includes the location coordinates and the maximum data size. The wireless terminal receives navigation information that has a data size no greater than the maximum data size and displays the navigation information on the display. The wireless terminal may display a map segment and an icon representing the wireless terminal at a location corresponding to the location coordinates of the wireless terminal with respect to the map segment. The wireless terminal may download a premises map from a premises map server.
Abstract:
This modular wireless headset supports voice communications over a servicing network when paired to a public base unit. This modular wireless headset provides access to servicing networks that is both secure and private. The headset includes a wireless microphone and wireless earpiece. This wireless microphone and earpiece may communicate between themselves wirelessly or via a direct physical link. The wireless earpiece may exchange radio frequency (RF) signals with the public base unit and render content exchanged within the RF signals to a user. The wireless earpiece includes a first wireless interface, a first processing circuit, a speaker, a user interface, and an authentication module. The wireless interface is operable to wirelessly communicate with the base unit as well as the wireless microphone. The processing circuit may recover content such as voice communications wirelessly communicated from the base unit. The speaker then renders these communications audible. The user interface couples to the processing circuit to receive user commands such as network interface commands that direct the headset to register with the base unit. The authentication module prepares the wireless earpiece and wireless microphone, registers of the wireless headset to the base unit, and handles authentication between the headset and certain servicing networks.
Abstract:
A modular wireless headset to support voice communications that includes a wireless microphone, a wireless earpiece, and a tether. Both the wireless microphone and wireless earpiece have receptacles operable to receive the tether and one or both of the wireless microphone and wireless earpiece have portable power supplies operable to power the containing module. The tether allows the wireless earpiece or wireless microphone to provide power to operate and/or recharge the microphone or wireless earpiece when the wireless microphone or wireless earpiece is coupled with the tether.
Abstract:
A wireless terminal transmits an information request regarding a business via a supporting wireless network infrastructure. The wireless terminal receives an information response via the supporting wireless network infrastructure that includes information regarding the business and the GPS coordinates of the business. The wireless terminal determines its location coordinates. The wireless terminal displays an indication of the relative position of the wireless terminal with respect to the business. The wireless terminal may access a map segment according to the location coordinates of the wireless terminal and to the GPS coordinates of the business and display the map segment along icons that represent the wireless terminal and the business. These icons are displayed on the map segment at locations corresponding to their location coordinates.
Abstract:
The present invention is directed to a multiple description transmission system that provides redundancy to combat transmission channel impairments. The multiple description transmission system includes a first and second wireless telephone. The first wireless telephone includes the following: an array of microphones, wherein each microphone in the array of microphones is configured to receive voice input from a user and to produce a voice signal corresponding thereto; an encoder coupled to the microphone array and configured to encode each of the voice signals; and a transmitter coupled to the encoder and configured to transmit each of the encoded voice signals. The second wireless telephone includes the following: a receiver configured to receive the transmitted signals; a decoder coupled to the receiver and configured to decode the signals received by the receiver, thereby producing an output signal; and a loudspeaker that receives the output signal and produces a pressure sound wave corresponding thereto.
Abstract:
A system for reporting and processing a matched trade from a market in response to orders submitted by traders includes a management subsystem for developing configuration data regarding products that are to be traded and traders who are authorized to trade. The system further includes a trade processing subsystem for receiving first data representing the matched trade and which processes the first data to create second data representing a processed trade wherein the second data are transmitted to a first recipient and a reporting subsystem for receiving market information and which processes the market information and transmits the processed market information to a second recipient. Methods of reporting and/or processing are also disclosed.