Vladimir P.
Vladimir P. Cabildo, Bellevue, WA US
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20120110129 | WEBSITE REDEVELOPMENT WRAPPER - Existing network-based services can be reused by a new network service providing an updated interface to the existing services. A client request directed to the new network service triggers a back-end request from the new network service to the existing network service. The back-end request comprises aspects of the client's request and additional formatting rules and other information to override specific aspects of the existing network service. The existing network service generates a back-end response with its existing functionality that is being reused, and applies the specified overrides. Additional information to be utilized by the new network service in responding to the client can be added to the back-end response. The new network service can then form and transmit a response to the client by utilizing the central portion of the back-end response and appending additional information to it, including the information specified by the existing network-service. | 05-03-2012 |
Vladimir P. Filonenko, Moscow RU
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20150144407 | POLYCRYSTALLINE COMPACTS, EARTH-BORING TOOLS INCLUDING SUCH COMPACTS, AND METHODS OF FABRICATING POLYCRYSTALLINE COMPACTS - A polycrystalline compact includes diamond grains, cubic boron nitride grains, and grains of an additional nitride, carbide, or boride. The additional nitride, carbide, or boride may be aluminum nitride, gallium nitride, silicon nitride, titanium nitride, silicon carbide, titanium carbide, titanium boride, titanium diboride, and/or aluminum boride. The diamond grains, the cubic boron nitride grains, and the grains of the additional nitride, carbide, or boride are intermixed and interbonded to form a polycrystalline material. An earth-boring tool includes a bit body and such a polycrystalline diamond compact secured to the bit body. Methods of fabricating polycrystalline compacts include forming a mixture comprising diamond grains, non-cubic boron nitride grains, and a metal or semimetal; encapsulating the mixture in a container; and subjecting the encapsulated mixture to high-pressure and high-temperature conditions to form a polycrystalline material. | 05-28-2015 |
Vladimir P. Filonenko, Troistk Moskovskaya Oblast RU
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20100143230 | METHOD FOR PREPARATION OF NEW SUPERHARD B-C-N MATERIAL AND MATERIAL MADE THEREFROM - According to some embodiments, a method of preparing a superhard material involves using mixtures of boron with carbon nitride of C | 06-10-2010 |
Vladimir P. Nicolski, Blaine, MN US
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20140214105 | TANDEM SERIES COUPLED IMPLANTABLE SUBCUTANEOUS CARDIOVERTER DEFIBRILLATORS AND METHOD - An implantable subcutaneous cardioverter defibrillator system for therapeutically stimulating a portion of a patient's body. First and second implantable subcutaneous cardioverter defibrillators are coupled together with a conductor. The first implantable subcutaneous cardioverter defibrillator is configured to deliver therapeutic energy in a first polarity between a first electrode and the conductor. The second implantable subcutaneous cardioverter defibrillator is configured to deliver therapeutic energy in a second polarity, opposite of said first polarity, between a second electrode and the conductor. The system is configured to synchronize delivery of the therapeutic energy by the first implantable subcutaneous cardioverter defibrillator and delivery of the therapeutic energy by the second implantable subcutaneous cardioverter defibrillator. | 07-31-2014 |
Vladimir P. Sivokha, Tomsk RU
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20090162243 | RADIOPAQUE ALLOY AND MEDICAL DEVICE MADE OF THIS ALLOY - A radiopaque alloy based on titanium nickelide and having shape memory and superelastic properties includes, according to one embodiment, at least one radiopaque alloying element selected from the group consisting of gold, platinum, and palladium at a concentration of from about 10 at. % to about 20 at. %, and at least one additional alloying element selected from the group consisting of aluminum, chromium, cobalt, iron, and zirconium, where the additional alloying element has a concentration of from about 0.5 at. % to about 4 at. %. The alloy includes titanium at a concentration of from about 48 at. % to about 52 at. %, and the balance of the alloy is nickel. The radiopaque alloy preferably exhibits superelastic behavior suitable for medical device applications in the human body. | 06-25-2009 |
Vladimir P. Torchilin, Charlestown, MA US
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20120156499 | STABLE POLYELECTROLYTE COATED NANOPARTICLES - Stable nanoparticles comprising poorly soluble drugs are disclosed, as well as methods of making and methods of using such nanoparticles, e.g., as therapeutics and diagnostics. | 06-21-2012 |
Vladimir P. Voitsitskiy, Moscow RU
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20100047738 | Device for Forming a Bone Bed for Dental Implants - A device for forming a bone bed for dental implants having a head composed of crystal of partially stabilized zirconium dioxide with a nanostructure having a crystallographic axis that coincides with the axis of the bone bed forming device. The head has cutting elements formed as a rotatable plate. The plate has two broad facets formed by circular arcs that are convex relative to the axis of bone bed forming device. Transition from one of the convex circular arc to another convex circular arc is smoothed by circular arcs that are concave relative to the axis of bone bed forming device. Grooves form first and second cutting members with narrow facets of the plate. The head has an end part shaped as a truncated sphere possessing a recess formed by two planes arranged at an angle of 90° relative to each other and passing through the truncated sphere center and two points belonging to two diagonally arranged plate ribs. A third cutting member is formed by the intersection of one of the above mentioned two planes and a spherical surface of one of the narrow plate facets of the end part of the head. | 02-25-2010 |
Vladimir P. Voronin, Tomsk RU
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20090162243 | RADIOPAQUE ALLOY AND MEDICAL DEVICE MADE OF THIS ALLOY - A radiopaque alloy based on titanium nickelide and having shape memory and superelastic properties includes, according to one embodiment, at least one radiopaque alloying element selected from the group consisting of gold, platinum, and palladium at a concentration of from about 10 at. % to about 20 at. %, and at least one additional alloying element selected from the group consisting of aluminum, chromium, cobalt, iron, and zirconium, where the additional alloying element has a concentration of from about 0.5 at. % to about 4 at. %. The alloy includes titanium at a concentration of from about 48 at. % to about 52 at. %, and the balance of the alloy is nickel. The radiopaque alloy preferably exhibits superelastic behavior suitable for medical device applications in the human body. | 06-25-2009 |
Vladimir P. Voytsitskiy, Moscow RU
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20110105295 | Zirconium dioxide-based material - The invention relates to the field of synthetic materials and is industrially applicable in the manufacture of wear-resistant construction parts for use under conditions of elevated temperatures, loads, and aggressive media, for cutting and machining tools, and in medical equipment. The technical problem of optimization of the performance parameters of the material, including crack resistance, hardness, and wear resistance, is solved. The objective is achieved by the fact that a material based on zirconium dioxide, containing yttrium and obtained by directed crystallization from batch mixture melted in a cold container, contains at least two tetragonal phases whose axes of tetragonality are 80-90°. The components of the batch mixture for obtaining the material are contained in the following ratio (in mol %): yttrium oxide, 2.8-3.7; zirconium dioxide, the remainder. To obtain the material, a thermal insulating layer | 05-05-2011 |
Vladimir P. Zharov, Little Rock, AR US
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20100189650 | Near-Infrared Responsive Carbon Nanostructures - The present invention provides for compositions comprising carbon nanotubes (CNT) and gold (Au). The present invention further provides methods of manufacture of gold-carbon nanotubes (gCNT). The present invention provides methods of using gCNT for biological application. | 07-29-2010 |