Patents by Inventor Jonathan Stuart
Jonathan Stuart 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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Publication number: 20250082593Abstract: The present invention relates to novel compounds which are capable of inhibiting certain amine oxidase enzymes. These compounds are useful for treatment of a variety of indications, e.g., fibrosis, cancer and/or angiogenesis in human subjects as well as in pets and livestock. In addition, the present invention relates to pharmaceutical compositions containing these compounds, as well as various uses thereof.Type: ApplicationFiled: November 21, 2024Publication date: March 13, 2025Applicant: Syntara LimitedInventors: Alison Dorothy FINDLAY, Craig Ivan TURNER, Mandar DEODHAR, Jonathan Stuart FOOT, Wolfgang JAROLIMEK, Wenbin ZHOU, Alberto BUSON, Angelique Elsa GRECO
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Patent number: 12203223Abstract: The present invention is directed to products, such as paper and paperboard products, comprising a substrate containing cellulose and top ply comprising microfibrillated cellulose and inorganic particulate, to methods of making such paper and paperboard products, and associated uses of such paper and paperboard products. The microfibrillated cellulose and inorganic particulate material are applied at the stage when the wet substrate is in the process of being formed on the wire of a papermaking machine, thereby avoiding the additional cost of more extensive equipment and machinery as well as in separate drying of a coating. The microfibrillated cellulose facilitates the application of inorganic particulate onto the surface of a wet paper or paperboard substrate when applied thusly, by trapping the inorganic particulate on the surface of the substrate and by giving the composite sufficient strength and a suitable pore structure to make it suitable for printing and other end-use demands.Type: GrantFiled: June 29, 2023Date of Patent: January 21, 2025Assignee: FIBERLEAN TECHNOLOGIES, LTD.Inventors: Per Svending, Jonathan Stuart Phipps, Johannes Kritzinger, Tom Reeve-Larson, Tania Selina, David Skuse
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Patent number: 12194228Abstract: A surgical humidification system includes a source of gas flow and a humidifier that receives the gas flow and outputs a humidified gas to a delivery conduit. The delivery conduit has an outlet and a suitable interface, such as a diffuser, is connected to the outlet. The interface can be positioned near or within an open surgical cavity of a patient to supply the humidified gas to the cavity. The system also includes a pressure relief arrangement that operates to relieve pressure from the system above a normal operating pressure. The pressure relief arrangement can be located in a non-sterile portion of the system, such as upstream from the humidifier, for example.Type: GrantFiled: April 11, 2022Date of Patent: January 14, 2025Assignee: Fisher & Paykel Healthcare LimitedInventors: Paul David Phillips, Jonathan Stuart McFedries, Colette Marie Hanley
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Patent number: 12178791Abstract: The present invention relates to novel compounds which are capable of inhibiting certain amine oxidase enzymes. These compounds are useful for treatment of a variety of indications, e.g., fibrosis, cancer and/or angiogenesis in human subjects as well as in pets and livestock. In addition, the present invention relates to pharmaceutical compositions containing these compounds, as well as various uses thereof.Type: GrantFiled: August 2, 2019Date of Patent: December 31, 2024Assignee: SYNTARA LIMITEDInventors: Alison Dorothy Findlay, Craig Ivan Turner, Mandar Deodhar, Jonathan Stuart Foot, Wolfgang Jarolimek, Wenbin Zhou, Alberto Buson, Angelique Elsa Greco
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Publication number: 20240133123Abstract: The present invention is directed to products, such as paper and paperboard products, comprising a substrate containing a recycled cellulose-containing material and top ply comprising one or more inorganic particulate material; to methods of making such paper and paperboard products, and associated uses of such paper and paperboard products. The microfibrillated cellulose and inorganic particulate material are applied at a stage when the substrate comprising a wet web of pulp is in the process of being formed on the wire of a papermaking machine, thereby avoiding the additional cost of more extensive equipment and machinery as well as in separate drying of a coating. The microfibrillated cellulose facilitates the application of inorganic particulate onto the surface of a wet paper or paperboard substrate.Type: ApplicationFiled: November 7, 2023Publication date: April 25, 2024Applicant: FIBERLEAN TECHNOLOGIES LIMITEDInventors: Per SVENDING, Jonathan Stuart PHIPPS, Tom REEVE-LARSON, Tania SELINA, David SKUSE
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Publication number: 20240102249Abstract: The present invention is directed to products, such as paper and paperboard products, comprising a substrate containing cellulose and top ply comprising microfibrillated cellulose and inorganic particulate, to methods of making such paper and paperboard products, and associated uses of such paper and paperboard products. The microfibrillated cellulose and inorganic particulate material are applied at the stage when the wet substrate is in the process of being formed on the wire of a papermaking machine, thereby avoiding the additional cost of more extensive equipment and machinery as well as in separate drying of a coating. The microfibrillated cellulose facilitates the application of inorganic particulate onto the surface of a wet paper or paperboard substrate when applied thusly, by trapping the inorganic particulate on the surface of the substrate and by giving the composite sufficient strength and a suitable pore structure to make it suitable for printing and other end-use demands.Type: ApplicationFiled: June 29, 2023Publication date: March 28, 2024Applicant: FIBERLEAN TECHNOLOGIES LIMITEDInventors: Per SVENDING, Jonathan Stuart PHIPPS, Johannes KRITZINGER, Tom REEVE-LARSON, Tania SELINA, David SKUSE
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Publication number: 20240074743Abstract: A diffuser for use with a wound retractor and configured to deliver gases includes an interface tube for connecting to a gases supply and a diffuser interface positioned at a proximal end of the interface tube, the diffuser interface configured for delivering gases received from the gases supply through the interface tube, and the diffuser interface comprising a diffusion mechanism configured to deliver gases in a diffusion direction. A wound retractor with an integrated diffuser is also disclosed. The wound retractor includes an upper ring, a lower ring, a sleeve extending between and connecting the upper ring to the lower ring, and an integrated diffuser interface having a gases inlet and a diffusion mechanism.Type: ApplicationFiled: September 7, 2023Publication date: March 7, 2024Inventors: Bernard Tsz Lun Ip, Joseph Patrick Walter Strevens, Jessica Rachel Fogarin, Jonathan Stuart McFedries, James Alexander Gordon, Michael Joseph Blackhurst, Jonathan David Harwood, Ali Ghalib Abdul Rahman Ghalib, Natalie May Robertson
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Patent number: 11846072Abstract: The present invention is directed to products, such as paper and paperboard products, comprising a substrate containing a recycled cellulose-containing material and top ply comprising one or more inorganic particulate material; to methods of making such paper and paperboard products, and associated uses of such paper and paperboard products. The microfibrillated cellulose and inorganic particulate material are applied at a stage when the substrate comprising a wet web of pulp is in the process of being formed on the wire of a papermaking machine, thereby avoiding the additional cost of more extensive equipment and machinery as well as in separate drying of a coating. The microfibrillated cellulose facilitates the application of inorganic particulate onto the surface of a wet paper or paperboard substrate.Type: GrantFiled: April 2, 2021Date of Patent: December 19, 2023Assignee: FiberLean Technologies LimitedInventors: Per Svending, Jonathan Stuart Phipps, Tom Reeve-Larson, Tania Selina, David Skuse
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Publication number: 20230349907Abstract: The present invention relates to novel bioprobes which are capable of binding to certain amine oxidase enzymes. These bioprobes are useful in methods of detecting and determining the concentration of certain amine oxidase enzymes in a sample as well as in methods for the quantitative assessment of inhibition of certain amine oxidases.Type: ApplicationFiled: February 5, 2021Publication date: November 2, 2023Applicant: Pharmaxis Ltd.Inventors: Alison Dorothy Findlay, Craig Ivan Turner, Mandar Deodhar, Jonathan Stuart Foot, Wolfgang Jarolimek, Heidi Schilter Sambade, Wenbin Zhou, Lara Anne Perryman
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Patent number: 11779321Abstract: A diffuser for use with a wound retractor and configured to deliver gases includes an interface tube for connecting to a gases supply and a diffuser interface positioned at a proximal end of the interface tube, the diffuser interface configured for delivering gases received from the gases supply through the interface tube, and the diffuser interface comprising a diffusion mechanism configured to deliver gases in a diffusion direction. A wound retractor with an integrated diffuser is also disclosed. The wound retractor includes an upper ring, a lower ring, a sleeve extending between and connecting the upper ring to the lower ring, and an integrated diffuser interface having a gases inlet and a diffusion mechanism.Type: GrantFiled: December 23, 2020Date of Patent: October 10, 2023Assignee: Fisher & Paykel Healthcare LimitedInventors: Bernard Tsz Lun Ip, Joseph Patrick Walter Strevens, Jessica Rachel Fogarin, Jonathan Stuart McFedries, James Alexander Gordon, Michael Joseph Blackhurst, Jonathan David Harwood, Ali Ghalib Abdul Rahman Ghalib, Natalie May Robertson
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Patent number: 11732421Abstract: The present invention is directed to products, such as paper and paperboard products, comprising a substrate containing cellulose and top ply comprising microfibrillated cellulose and inorganic particulate, to methods of making such paper and paperboard products, and associated uses of such paper and paperboard products. The microfibrillated cellulose and inorganic particulate material are applied at the stage when the wet substrate is in the process of being formed on the wire of a papermaking machine, thereby avoiding the additional cost of more extensive equipment and machinery as well as in separate drying of a coating. The microfibrillated cellulose facilitates the application of inorganic particulate onto the surface of a wet paper or paperboard substrate when applied thusly, by trapping the inorganic particulate on the surface of the substrate and by giving the composite sufficient strength and a suitable pore structure to make it suitable for printing and other end-use demands.Type: GrantFiled: February 1, 2022Date of Patent: August 22, 2023Assignee: FiberLean Technologies LimitedInventors: Per Svending, Jonathan Stuart Phipps, Johannes Kritzinger, Tom Reeve-Larson, Tania Selina, David Skuse
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Publication number: 20230257342Abstract: The present invention relates to novel compounds which are capable of inhibiting semicarbazide-sensitive amine oxidase (SSAO/VAP-1) and monoamine oxidase B (MAO-B). These compounds are useful for treatment of a variety of neuromuscular diseases, such as muscular dystrophies, and neuroinflammatory diseases, including both peripheral and central disorders in human subjects, as well as in pets and livestock. In addition, the present invention relates to pharmaceutical compositions containing these compounds, as well as various uses thereof.Type: ApplicationFiled: June 25, 2021Publication date: August 17, 2023Inventors: Alan Duncan Robertson, Alison Dorothy Findlay, Alberto Buson, Craig Ivan Turner, Dieter Wolfgang Hamprecht, Jonathan Stuart Foot, Mandar Deodhar, Wolfgang Jarolimek, Serena Becchi, Bernard Walter Balleine, Marcella Canton, Libero Vitiello, Bert Blaauw
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Publication number: 20230103392Abstract: Fibres and nonwoven materials comprising microfibrillated cellulose, and optionally inorganic particulate material and/or additional additives, and optionally a water soluble or dispersible polymer. Nonwoven materials made from fibres comprising microfibrillated cellulose, and optionally inorganic particulate material and/or a water soluble or dispersible polymer.Type: ApplicationFiled: November 18, 2022Publication date: April 6, 2023Applicant: FiberLean Technologies LimitedInventors: Jonathan Stuart Phipps, Sean Ireland, David Skuse
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Publication number: 20230082376Abstract: Disclosed herein is a cannula and/or medical instrument accessory configured for providing localized insufflation or venting of gases with respect to a surgical cavity of a patient (such as the pneumoperitoneum) and allowing insertion of medical instruments into the surgical cavity through the cannula. A medical instrument accessory such as a cannula and/or medical instrument accessory can be used for localizing insufflation or venting of gas or fluid near operating end of a medical instrument. The medical instrument accessory can comprise a body mountable over at least a portion of a medical instrument shaft, the body having an inner lumen, proximal end and distal end, the distal end comprising an opening, wherein the distal end is arranged in use at or adjacent an operating end of the medical instrument.Type: ApplicationFiled: February 12, 2021Publication date: March 16, 2023Inventors: Zach Jonathan WARNER, Jonathan Stuart MCFEDRIES, Lucila San Jose DE JESUS, German KLINK, Simon REVELLY, Joshua Robert LEE, Katie-Ann Jane BUCKELS, Rory Alexander MONRO, Jemma Tamsin SOMERVILLE, Bernard Tsz Lun IP, Zane Paul GELL, Danielle Elizabeth EVANS, Eu-Lee TEH, Monika BAUMANN, Jasmine Emerald Michelle LOUIE, Abigail Sharmini Rajen ARULANDU, Jose FLORES VAZQUEZ, Lotte Gertrudis Theodora VAN DEN HEUIJ, James Michael GILBERT
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Publication number: 20230060416Abstract: A composition for addition to a ceiling tile, flooring product, or other construction product may include microfibrillated cellulose and optionally an inorganic particulate material. The ceiling tile, flooring product, or other construction product may further include perlite, mineral wool, wood pulp, starch and other additives, where the wood pulp and other inorganic particulate materials are bonded to the microfibrillated cellulose. Methods of manufacturing the compound are also disclosed.Type: ApplicationFiled: October 28, 2022Publication date: March 2, 2023Inventors: David SKUSE, Jonathan Stuart PHIPPS, Sean IRELAND, Yun Jin
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Patent number: 11572659Abstract: Fibres and nonwoven materials comprising microfibrillated cellulose, and optionally inorganic particulate material and/or additional additives, and optionally a water soluble or dispersible polymer. Nonwoven materials made from fibres comprising microfibrillated cellulose, and optionally inorganic particulate material and/or a water soluble or dispersible polymer.Type: GrantFiled: August 31, 2020Date of Patent: February 7, 2023Assignee: FiberLean Technologies LimitedInventors: Jonathan Stuart Phipps, Sean Ireland, David Skuse
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Publication number: 20230018926Abstract: The present embodiments relate to audio effect processing, and more particularly to a method for creating reverberation impulse responses from prerecorded or live source materials forms the basis of a family of reverberation effects. In one embodiment, segments of audio are selected and processed to form an evolving sequence of reverberation impulse responses that are applied to the original source material—that is, an audio stream reverberating itself. In another embodiment, impulse responses derived from one audio track are applied to another audio track. In a further embodiment, reverberation impulse responses are formed by summing randomly selected segments of the source audio, and imposing reverberation characteristics, including reverberation time, wet equalization, wet-dry mix, and predelay. By controlling the number and timing of the selected source audio segments, the method produces a collection of impulse responses that represent a trajectory through the source material.Type: ApplicationFiled: July 1, 2022Publication date: January 19, 2023Inventors: Eoin Francis Callery, Jonathan Stuart Abel, Kyle Swenson Spatt
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Patent number: 11512020Abstract: A composition for addition to a ceiling tile, flooring product, or other construction product may include microfibrillated cellulose and optionally an inorganic particulate material. The ceiling tile, flooring product, or other construction product may further include perlite, mineral wool, wood pulp, starch and other additives, where the wood pulp and other inorganic particulate materials are bonded to the microfibrillated cellulose. Methods of manufacturing the compound are also disclosed.Type: GrantFiled: April 22, 2020Date of Patent: November 29, 2022Assignee: FiberLean Technologies LimitedInventors: David Skuse, Jonathan Stuart Phipps, Sean Ireland, Yun Jin
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Patent number: D972767Type: GrantFiled: January 17, 2020Date of Patent: December 13, 2022Assignee: Signify Holding B.V.Inventors: John Sungmin Park, Jonathan Stuart Levy, Kwong Hung Man, Ryan Robert James Gates, Christopher Cameron McDonald, Shao Fang Shannon Chang
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Patent number: D974415Type: GrantFiled: December 23, 2020Date of Patent: January 3, 2023Assignee: EXMARK MANUFACTURING COMPANY INCORPORATEDInventors: Kevin James Nelson, Jonathan Stuart Guarneri