Patents by Inventor Peter Brady
Peter Brady has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 8721643Abstract: An instrumented orthopaedic implant, such as an intramedullary (IM) nail, is disclosed. The implant has the capacity to provide an accurate measurement of the applied mechanical load across the implant. The implant includes sensors and associated electronic components located in recesses on the outer surface of the implant. The implant houses the sensing apparatus, the interface circuitry, the data transmitter, and the power receiver. The hermetically sealed housing is adapted for implantation in the body of a patient. The implant is used with a controller which communicates with it by telemetry, and there is an acting unit connected to the electronic components which is adapted to carry out a function based upon a condition detected by the sensors.Type: GrantFiled: July 16, 2012Date of Patent: May 13, 2014Assignee: Smith & Nephew, Inc.Inventors: Robert L. Morgan, Mark David Wickham, Peter A. Brady, Sied W. Janna, Gene Edward Austin, Darren James Wilson
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Publication number: 20140081382Abstract: An open frame prosthesis is formed with looped end terminations at its proximal and distal ends. At one end of the prosthesis, the filaments or strands are welded together in pairs to form strand couplings. A plurality of loop segments are connected to the strand couplings, one loop segment for each pair of adjacent strand couplings. In one version of the prosthesis, strands at the opposite end are bent to form looped ends. In another version, loop segments are connected to pairs of strand couplings at both ends of the prosthesis. The loop segments can be connected to the couplings by welding, fusion bonds, or tubes, which are either crimped or heat shrunk.Type: ApplicationFiled: November 19, 2013Publication date: March 20, 2014Applicant: Boston Scientific Scimed, Inc.Inventors: Gary J. Leanna, Paul K. Norton, Peter Brady, Dean Molloy, Michael E. Zupkofska
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Patent number: 8570187Abstract: A telemetric system includes a telemetric implant, a reader unit adapted to read signals from the telemetric implant, and an antenna adapted for connection to the reader unit and to receive signals from the telemetric implant. The antenna has a first coil, a second coil, and a connector. The first coil is electrically connected to the second coil, and the connector allows for movement of the first and second coils relative to each other. The antenna may be used to send radio-frequency power to the telemetric implant and receives data from the telemetric implant.Type: GrantFiled: September 5, 2008Date of Patent: October 29, 2013Assignee: Smith & Nephew, Inc.Inventors: Sied W. Janna, Darren James Wilson, Martin S. Goodchild, Peter A. Brady
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Patent number: 8486070Abstract: An instrumented orthopaedic implant, such as an intramedullary (IM) nail, is disclosed. The implant has the capacity to provide an accurate measurement of the applied mechanical load across the implant. The implant includes sensors and associated electronic components located in recesses on the outer surface of the implant. The implant houses the sensing apparatus, the interface circuitry, the data transmitter, and the power receiver. The hermetically sealed housing is adapted for implantation in the body of a patient. The implant is used with a controller which communicates with it by telemetry, and there is an acting unit connected to the electronic components which is adapted to carry out a function based upon a condition detected by the sensors.Type: GrantFiled: August 23, 2006Date of Patent: July 16, 2013Assignee: Smith & Nephew, Inc.Inventors: Robert L. Morgan, Mark David Wickham, Peter A. Brady, Sied W. Janna, Gene Edward Austin, Darren James Wilson
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Publication number: 20130042795Abstract: A method controls mass and heat loading of sludge feed into a fluidized bed combustor (FBC) controlled via regulation of a polymer dosage or a sludge feed rate including: continuously monitoring at least one performance characteristic of the FBC; producing an input signal characteristic; analyzing the input signal and determining a first rate of change of the characteristic; generating an output signal based on the first rate of change to control addition of polymer to the FBC; generating a second output signal to control addition of sludge feed to the FBC; and determining a transition point between the addition of polymer and addition of sludge, which transition point is an upper limit of a first rate change to maintain flow so that the value of the characteristic is maintained proximate at the upper limit.Type: ApplicationFiled: October 19, 2012Publication date: February 21, 2013Inventors: Ky DANGTRAN, Robert KELLY, Peter BRADY
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Publication number: 20120277746Abstract: An instrumented orthopaedic implant, such as an intramedullary (IM) nail, is disclosed. The implant has the capacity to provide an accurate measurement of the applied mechanical load across the implant. The implant includes sensors and associated electronic components located in recesses on the outer surface of the implant. The implant houses the sensing apparatus, the interface circuitry, the data transmitter, and the power receiver. The hermetically sealed housing is adapted for implantation in the body of a patient. The implant is used with a controller which communicates with it by telemetry, and there is an acting unit connected to the electronic components which is adapted to carry out a function based upon a condition detected by the sensors.Type: ApplicationFiled: July 16, 2012Publication date: November 1, 2012Applicant: SMITH & NEPHEW, INC.Inventors: Robert L. Morgan, Mark David Wickham, Peter A. Brady, Sied W. Janna, Gene Edward Austin, Darren James Wilson
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Publication number: 20120101564Abstract: An open frame prosthesis is formed with looped end terminations at its proximal and distal ends. At one end of the prosthesis, the filaments or strands are welded together in pairs to form strand couplings. A plurality of loop segments are connected to the strand couplings, one loop segment for each pair of adjacent strand couplings. In one version of the prosthesis, strands at the opposite end are bent to form looped ends. In another version, loop segments are connected to pairs of strand couplings at both ends of the prosthesis. The loop segments can be connected to the couplings by welding, fusion bonds, or tubes, which are either crimped or heat shrunk.Type: ApplicationFiled: December 29, 2011Publication date: April 26, 2012Applicant: BOSTON SCIENTIFIC SCIMED, INC.Inventors: Gary J. Leanna, Paul K. Norton, Peter Brady, Dean Molloy, Michael E. Zupkofska
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Publication number: 20120046120Abstract: A golf swing training device allows a golfer to practice a correct swing technique. The golf swing training device includes a base; a vertical arm connected to the base; a bar secured to the vertical arm; a ring secured to the bar.Type: ApplicationFiled: July 7, 2011Publication date: February 23, 2012Inventor: David Peter Brady
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Patent number: 8109988Abstract: An open frame prosthesis is formed with looped end terminations at its proximal and distal ends. At one end of the prosthesis, the filaments or strands are welded together in pairs to form strand couplings. A plurality of loop segments are connected to the strand couplings, one loop segment for each pair of adjacent strand couplings. In one version of the prosthesis, strands at the opposite end are bent to form looped ends. In another version, loop segments are connected to pairs of strand couplings at both ends of the prosthesis. The loop segments can be connected to the couplings by welding, fusion bonds, or tubes, which are either crimped or heat shrunk.Type: GrantFiled: December 30, 2009Date of Patent: February 7, 2012Assignee: Boston Scientific Scimed, Inc.Inventors: Gary J. Leanna, Paul K. Norton, Peter Brady, Dean Molloy, Michael E. Zupkofska
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Publication number: 20110205083Abstract: A telemetric system (10, 300) is disclosed. The telemetric system (10, 300) includes a telemetric implant (400, 500), a reader unit (20) adapted to read signals from the telemetric implant (400, 500), and an antenna (12, 212, 312) adapted for connection to the reader unit (20, 320) and to receive signals from the telemetric implant (400, 500). The antenna (12, 212, 312) has a first coil (14, 214, 314), a second coil (16, 216, 316), and a connector (18, 318). The first coil (14, 214, 314) is electrically connected to the second coil (16, 216, 316), and the connector (18, 318) allows for movement of the first and second coils (14, 214, 314, 16, 216, 316) relative to each other. The antenna (12, 212, 312) may be used to send radio-frequency power to the telemetric implant (400, 500) and receives data from the telemetric implant (400, 500).Type: ApplicationFiled: September 5, 2008Publication date: August 25, 2011Applicant: SMITH & NEPHEW, INC.Inventors: Sied W. Janna, Darren J. Wilson, Martin S. Goodchild, Peter A. Brady
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Publication number: 20110079315Abstract: An implantable stent includes a plurality of elongate wires braided to form a hollow tubular structure having a tubular wall to define an interior surface and an exterior surface and having opposed open first and second ends, wherein the opposed open first and second ends are atraumatic ends. The atraumatic ends of the stent are desirably free of any loose wire ends. The wires include composite wires to enhance visibility of the wires to provide improved external imaging of the wires in the body. The elongate composite wires of the stent may be metallic wires having an outer metallic portion including a first metal, such as nitinol, and an inner metallic core portion including a second metal, which is a radiopaque material, such as gold, barium sulfate, ferritic particles, platinum, platinum-tungsten, palladium, platinum-iridium, rhodium, tantalum or combinations thereof.Type: ApplicationFiled: December 13, 2010Publication date: April 7, 2011Applicant: BOSTON SCIENTIFIC SCIMED, INC.Inventors: Paul K. Norton, Michael Zupkofska, Peter Brady, Gary J. Leanna, Claude O. Clerc, William Bertolino, Grainne Hanley
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Patent number: 7857844Abstract: An implantable stent includes a plurality of elongate wires braided to form a hollow tubular structure having a tubular wall to define an interior surface and an exterior surface and having opposed open first and second ends, wherein the opposed open first and second ends are atraumatic ends The atraumatic ends of the stent are desirably free of any loose wire ends. The wires include composite wires to enhance visibility of the wires to provide improved external imaging of the wires in the body. The elongate composite wires of the stent may be metallic wires having an outer metallic portion including a first metal, such as nitinol, and an inner metallic core portion including a second metal, which is a radiopaque material, such as gold, barium sulfate, ferritic particles, platinum, platinum-tungsten, palladium, platinum-iridium, rhodium, tantalum or combinations thereof.Type: GrantFiled: October 30, 2008Date of Patent: December 28, 2010Assignee: Boston Scientific Scimed Inc.Inventors: Paul K. Norton, Michael Zupkofska, Peter Brady, Gary L. Leanna, Claude O. Clerc, William Bertolino, Grainne Hanley
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Publication number: 20100161034Abstract: An open frame prosthesis is formed with looped end terminations at its proximal and distal ends. At one end of the prosthesis, the filaments or strands are welded together in pairs to form strand couplings. A plurality of loop segments are connected to the strand couplings, one loop segment for each pair of adjacent strand couplings. In one version of the prosthesis, strands at the opposite end are bent to form looped ends. In another version, loop segments are connected to pairs of strand couplings at both ends of the prosthesis. The loop segments can be connected to the couplings by welding, fusion bonds, or tubes, which are either crimped or heat shrunk.Type: ApplicationFiled: December 30, 2009Publication date: June 24, 2010Applicant: BOSTON SCIENTIFIC SCIMED, INC.Inventors: Gary J. Leanna, Paul K. Norton, Peter Brady, Dean Molloy, Michael E. Zupkofska
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Publication number: 20100152621Abstract: A system (800) for processing accelerometer data is disclosed. The system (800) includes an accelerometer (806), a first processor (810), a power supply (816), and a second processor (804). The accelerometer (806) measures a physiological acceleration parameter. The first processor (810) is operatively connected to the accelerometer (806). The first processor (810) is configured to receive the acceleration parameter from the accelerometer (806) and configured to output machine readable acceleration data. The machine readable acceleration data includes time domain accelerometer data. The power supply (816) is electrically connected to the first processor (810). The second processor (804) is configured to receive the machine readable acceleration data and transform the time domain accelerometer data into frequency domain accelerometer data. The frequency domain accelerometer data may be used to estimate patient healing status.Type: ApplicationFiled: February 23, 2007Publication date: June 17, 2010Applicant: SMITH & NEPHEW, INC.Inventors: Sied W. Janna, Darren James Wilson, Peter A. Brady
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Patent number: 7655039Abstract: An open frame prosthesis is formed with looped end terminations at its proximal and distal ends. At one end of the prosthesis, the filaments or strands are welded together in pairs to form strand couplings. A plurality of loop segments are connected to the strand couplings, one loop segment for each pair of adjacent strand couplings. In one version of the prosthesis, strands at the opposite end are bent to form looped ends. In another version, loop segments are connected to pairs of strand couplings at both ends of the prosthesis. The loop segments can be connected to the couplings by welding, fusion bonds, or tubes, which are either crimped or heat shrunk.Type: GrantFiled: May 24, 2004Date of Patent: February 2, 2010Assignee: Boston Scientific Scimed, Inc.Inventors: Gary J. Leanna, Paul K. Norton, Peter Brady, Dean Molloy, Michael E. Zupkofska
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Publication number: 20090054972Abstract: An implantable stent includes a plurality of elongate wires braided to form a hollow tubular structure having a tubular wall to define an interior surface and an exterior surface and having opposed open first and second ends, wherein the opposed open first and second ends are atraumatic ends The atraumatic ends of the stent are desirably free of any loose wire ends. The wires include composite wires to enhance visibility of the wires to provide improved external imaging of the wires in the body. The elongate composite wires of the stent may be metallic wires having an outer metallic portion including a first metal, such as nitinol, and an inner metallic core portion including a second metal, which is a radiopaque material, such as gold, barium sulfate, ferritic particles, platinum, platinum-tungsten, palladium, platinum-iridium, rhodium, tantalum or combinations thereof.Type: ApplicationFiled: October 30, 2008Publication date: February 26, 2009Applicant: BOSTON SCIENTIFIC, SCIMED, INC.Inventors: Paul K. Norton, Michael Zupkofska, Peter Brady, Gary L. Leanna, Claude O. Clerc, William Bertolino, Grainne Hanley
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Patent number: 7462192Abstract: An implantable stent includes a plurality of elongate wires braided to form a hollow tubular structure having a tubular wall to define an interior surface and an exterior surface and having opposed open first and second ends, wherein the opposed open first and second ends are atraumatic ends The atraumatic ends of the stent are desirably free of any loose wire ends. The wires include composite wires to enhance visibility of the wires to provide improved external imaging of the wires in the body. The elongate composite wires of the stent may be metallic wires having an outer metallic portion including a first metal, such as nitinol, and an inner metallic core portion including a second metal, which is a radiopaque material, such as gold, barium sulfate, ferritic particles, platinum, platinum-tungsten, palladium, platinum-iridium, rhodium, tantalum or combinations thereof.Type: GrantFiled: November 10, 2005Date of Patent: December 9, 2008Assignee: Boston Scientific Scimed, Inc.Inventors: Paul K. Norton, Michael Zupkofska, Peter Brady, Gary J. Leanna, Claude O. Clerc, William Bertolino, Grainne Hanley
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Publication number: 20080300597Abstract: An instrumented orthopaedic implant, such as an intramedullary (IM) nail, is disclosed. The implant has the capacity to provide an accurate measurement of the applied mechanical load across the implant. The implant includes sensors and associated electronic components located in recesses on the outer surface of the implant. The implant houses the sensing apparatus, the interface circuitry, the data transmitter, and the power receiver. The hermetically sealed housing is adapted for implantation in the body of a patient. The implant is used with a controller which communicates with it by telemetry, and there is an acting unit connected to the electronic components which is adapted to carry out a function based upon a condition detected by the sensors.Type: ApplicationFiled: August 23, 2006Publication date: December 4, 2008Applicant: SMITH & NEPHEW, INC.Inventors: Robert L. Morgan, Mark David Wickham, Peter A. Brady, Sied W. Janna, Gene Edward Austin, Darren James Wilson
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Publication number: 20070266921Abstract: A multi-hull boat 50 comprising a pair of side by side hulls 21, and a wingdeck 22 extending between the hulls 21, wherein the hulls 21 include inner topsides 23 which are adapted to inhibit the hulls 21 from pitching.Type: ApplicationFiled: May 18, 2006Publication date: November 22, 2007Inventor: Peter Brady
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Publication number: 20070130805Abstract: The present invention relates to a system for individualizing a shoe. The system includes a shoe with a first surface region having at least one first design element and at least one second design element having a contact surface. The contact surface and/or the surface region are configured such that the second design element can be rubbed onto any arbitrary location on the surface region of the shoe.Type: ApplicationFiled: December 1, 2006Publication date: June 14, 2007Applicant: adidas International Marketing B.V.Inventors: Peter Brady, Catarina Cardoso, Eric Huban, Adam Hopwood, Susanne Knauer, Daniel Rabus