Abstract:
A method of communicating with a transceiver (120). In one arrangement, the method of communicating with the transceiver can be performed in a systemless group environment. Synchronization information (150) can be received from a mobile transceiver (110) and used to synchronize to the mobile transceiver. The synchronization information can include a timing offset and a frequency offset. Synchronization can be maintained until a predetermined condition is met, for example, a predetermined amount of group inactivity.
Abstract:
A method for transferring messages between a first processor (102) and a second processor (104) includes the step of requesting an empty message buffer (106) from the first processor or master processor (102). The first processor (102) sends an empty message buffer pointer (108) which the second processor uses to locate the allocated memory within the shared memory (112). The second processor (104) then loads its message in the allocated memory area and sends the message (110). After receiving the message, the first processor (102) releases the allocated memory area found in shared memory (112) so that it can be used in the future. An electronic device such as a radio communication device that uses the shared memory scheme is also described.
Abstract:
The present invention provides methods for the use of compounds as depicted by structure I, pharmaceutical compositions containing the same, and methods for the prophylaxis, management and treatment of metabolic diseases and diseases modulated by MCD inhibition. The compounds disclosed in this invention are useful for the prophylaxis, management and treatment of diseases involving in malonyl-CoA regulated glucose/fatty acid metabolism pathway. In particular, these compounds and pharmaceutical composition containing the same are indicated in the prophylaxis, management and treatment of cardiovascular diseases, diabetes, cancer and obesity.
Abstract:
Methods, compositions and articles of manufacture for assaying a sample for a target polynucleotide are provided. A sample suspected of containing the target polynucleotide is contacted with a polycationic multichromophore and a sensor PBP that can bind to the target polynucleotide. The sensor PBP comprises a signaling chromophore to absorb energy from the excited multichromophore and emit light in the presence of the target polynucleotide. The methods can be used in multiplex form. Kits comprising reagents for performing such methods are also provided.
Abstract:
FIG. 1 is a front, right and top perspective view of a card box showing my new design; FIG. 2 is a rear, left and bottom perspective view thereof; FIG. 3 is a front view thereof; FIG. 4 is a rear view thereof; FIG. 5 is a left view thereof; FIG. 6 is a right view thereof; FIG. 7 is a top view thereof; FIG. 8 is a bottom view thereof; FIG. 9 is a partially exploded perspective view thereof, showing a top portion removed, and a middle portion and a bottom portion assembled; FIG. 10 is an exploded perspective view thereof, showing a top, middle and a bottom portion; and, FIG. 11 is an exploded perspective view thereof, showing a middle portion in an unfolded condition.
Abstract:
FIG. 1 is a front perspective view of a step machine, showing my new design; FIG. 2 is a rear perspective view thereof; FIG. 3 is a front elevational view thereof; FIG. 4 is a rear elevational view thereof; FIG. 5 is a left side view thereof, the right side view thereof being a mirror image of FIG. 5; FIG. 6 is a top plan view thereof; FIG. 7 is a partial enlarged view of FIG. 1; FIG. 8 is a partial enlarged view of FIG. 1; FIG. 9 is a partial enlarged view of FIG. 2; FIG. 10 is a partial enlarged view of FIG. 2; FIG. 11 is a partial enlarged view of FIG. 3; and, FIG. 12 is a partial enlarged view of FIG. 5. The dashed lines in the figures are for the purpose of illustrating portions of the step machine, which form no part of the claimed design. The dash-dot-dot lines in the FIGS. 2 and 4 are for the purpose of illustrating portions of the step machine, which form no part of the claimed design. The dash-dot-dash lines are for annotating enlarged views, which form no part of the claimed design.
Abstract:
The present invention provides a multifunctional fitness frame with a reversible pedal structure, which comprises a main frame, a pull ring arranged on the main frame and a pedal arranged on the main frame, wherein the pedal is arranged on the main frame in a reversible manner, and a support tube and a rotating shaft are also penetrated on the main frame; the pedal is turned over by the rotating shaft and leans against the support tube to facilitate the user to practice paddling; and the pedal can also be turned over and leaned against the ground by the rotating shaft to realize storage, so that the user can practice other actions conveniently.
Abstract:
Systems and methods for enhancing spectral domain optical coherence tomography (OCT] are provided. In particular, a system and method for calibration of spectral interference signals using an acquired calibration signal are provided. The calibration signal may be logarithmically amplified to further improve the accuracy of the calibration. From the calibration signal, a series of more accurate calibration data are calculated. An acquired spectral interference signal is calibrated using these calibration data. Moreover, systems that include logarithmic amplification of the spectral interference signal and variable band-pass filtering of the spectral interference signal are provided. Such systems increase the dynamic range and visualization capabilities relative to conventional spectral domain OCT systems.