Anagha
Anagha Bhakay, Harrison, NJ US
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20130295190 | Systems and Methods for Superdisintegrant-Based Composite Particles for Dispersion and Dissolution of Agents - The present disclosure provides improved systems and methods utilizing colloidal/ultrafine superdisintegrant-based composite particles for dispersion and/or dissolution of active pharmaceutical agents. In general, the present disclosure utilizes a surfactant-free or near surfactant-free formulation by incorporating a wet milled SDI as a dispersant in the formulation. As such, the present disclosure provides for the preparation of surfactant-free or substantially surfactant-free formulations (e.g., nano-composite micro-particle formulations) by incorporating a wet-milled superdisintegrant (SDI) as the dispersant in the formulations. The advantageous SDI particles (e.g., colloidal/ultrafine SDI particles) of the present disclosure can be used to break-up the aggregates (e.g., nanoparticle aggregates) of the active agents (e.g. poorly water-soluble drugs) in the formulations (e.g., micro-particle formulations) and enhance the recovery of the nanoparticles of active agents during aqueous re-dispersion and their dissolution rate in vitro and in vivo. | 11-07-2013 |
Anagha Damre, Mumbai IN
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20100305094 | FUSED TRICYCLIC COMPOUNDS AS INHIBITORS OF TUMOR NECROSIS FACTOR-ALPHA - Compounds of formula 1: | 12-02-2010 |
20100324026 | FUSED TRICYCLIC COMPOUNDS AS INHIBITORS OF TUMOR NECROSIS FACTOR-ALPHA - Compounds of formula 1: | 12-23-2010 |
Anagha Deshmane, Cleveland Heights, OH US
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20130271137 | Magnetic Resonance Trajectory Correcting - Apparatus, methods, and other embodiments associated with magnetic resonance (MR) trajectory correcting using GRAPPA operator gridding (GROG) are described. One example method includes identifying an on angle or regular portion of a projection in an MR trajectory and then computing base GROG weights for that portion. The example method includes identifying a shift direction and a shift amount for the projection. The shift direction is configured to shift the projection towards a desired point in k-space and the shift amount is configured to shift the projection by a desired amount in the shift direction. With a shift direction and amount available, the example method corrects for a gradient delay by manipulating the MR source signal data using the shift direction and the shift amount. In one embodiment, a gradient delay can be determined and used to calibrate an MRI apparatus. | 10-17-2013 |
Anagha Pandharpurkar, Fremont, CA US
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20100058277 | Method and system for organizing data generated by electronic design automation tools - A method and system for organizing a plurality of files generated by an Electronic Design and Automation (EDA) tool into composite objects is disclosed. The system provides a plurality of rules, which may be configured for various EDA tools. These rules may be configured for any EDA tool by specifying various parameters such as filename patterns, file formats, directory name patterns, and the like. Using these rules which are configured for an EDA tool, the files that form a part of the design objects are identified and packaged in the form of composite objects. | 03-04-2010 |