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Manish Gada, Santa Clara US

Manish Gada, Santa Clara, CA US

Patent application numberDescriptionPublished
20100092655Clamp Mandrel Fixture And A Method Of Using The Same To Minimize Coating Defects - A mounting assembly for supporting a stent and a method of using the same to coat a stent is disclosed.04-15-2010
20100183799Stent Coating Method And Apparatus - An apparatus includes a mandrel for supporting a stent during a composition deposition process. The mandrel includes an elongated body for insertion into a longitudinal bore of a stent. The body comprises carbide.07-22-2010
20110001271Thermal Treatment Of An Implantable Medical Device - A method of manufacturing an implantable medical device, such as a drug eluting stent, is disclosed. The method includes subjecting an implantable medical device that includes a polymer to a thermal condition. The thermal condition can result in reduction of the rate of release of an active agent from the device subsequent to the implantation of the device and/or improve the mechanical properties of a polymeric coating on the device.01-06-2011
20110003068Thermal Treatment Of An Implantable Medical Device - A method of manufacturing an implantable medical device, such as a drug eluting stent, is disclosed. The method includes subjecting an implantable medical device that includes a polymer to a thermal condition. The thermal condition can result in reduction of the rate of release of an active agent from the device subsequent to the implantation of the device and/or improve the mechanical properties of a polymeric coating on the device.01-06-2011
20110008529Thermal Treatment Of An Implantable Medical Device - A method of manufacturing an implantable medical device, such as a drug eluting stent, is disclosed. The method includes subjecting an implantable medical device that includes a polymer to a thermal condition. The thermal condition can result in reduction of the rate of release of an active agent from the device subsequent to the implantation of the device and/or improve the mechanical properties of a polymeric coating on the device.01-13-2011
20110022163Implantable Medical Device Comprising Copolymer Of L-Lactide With Improved Fracture Toughness - The present invention relates to implantable medical devices comprising a L-lactide-constitutional unit-containing copolymer having a wt % percent crystallinity of 40% or less.01-27-2011
20110062638Controlling Crystalline Morphology Of A Bioabsorbable Stent - Methods to expand polymer tubing with desirable or optimum morphology and mechanical properties for stent manufacture and fabrication of a stent therefrom are disclosed.03-17-2011
20110260352Stabilizing Semi-Crystalline Polymers To Improve Storage Performance Of Medical Devices - Methods are disclosed for improving the storage performance of polymeric stents that reduce or eliminate the effects of long term aging on the properties of the stents. A polymeric stent or a polymeric tube from which a stent is made is heated to a temperature between ambient and the glass transition temperature of the polymer for a period of time. The heating causes densification or an increase in density of the polymer which stabilizes the properties of the polymer in later processing steps and storage. The stent can be made from a polymeric tube that is expanded at a temperature above the glass transition temperature and cooled to maintain an expanded diameter.10-27-2011

Patent applications by Manish Gada, Santa Clara, CA US