Patents by Inventor Matthew A. Coleman
Matthew A. Coleman 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: 20240096038Abstract: Systems and methods for matching content elements to surfaces in a spatially organized 3D environment. The method includes receiving content, identifying one or more elements in the content, determining one or more surfaces, matching the one or more elements to the one or more surfaces, and displaying the one or more elements as virtual content onto the one or more surfaces.Type: ApplicationFiled: November 29, 2023Publication date: March 21, 2024Applicant: MAGIC LEAP, INC.Inventors: Denys Bastov, Victor Ng-Thow-Hing, Benjamin Zaaron Reinhardt, Leonid Zolotarev, Yannick Pellet, Aleksei Marchenko, Brian Everett Meaney, Marc Coleman Shelton, Megan Ann Geiman, John A. Gotcher, Matthew Schon Bogue, Shivakumar Balasubramanyam, Jeffrey Edward Ruediger, David Charles Lundmark
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Patent number: 11923086Abstract: Provided herein is a digital care circle platform for electronic communication between a senior and virtual care circle members. The digital care circle platform may include a chatbot and an application associated with the senior, a mobile application associated with the plurality of virtual care circle members, at least one processor in communication with at least one memory device, and one or more servers, sensors, wearables, and transceivers. The at least one processor may be configured to: (i) accept event posts from the senior via the chatbot and application and from each virtual care circle member of the plurality of virtual care circle members via the mobile application, (ii) detect pro-active check-ins from the senior, and (iii) generate, once a pro-active check-in is detected, an electronic communication detailing the pro-active check-in as a pro-active check-in event, and transmit the pro-active check-in event to the virtual care circle members.Type: GrantFiled: June 20, 2022Date of Patent: March 5, 2024Assignee: State Farm Mutual Automobile Insurance CompanyInventors: Stephen Dunstan, Kami LaVallier, Edward P. Matesevac, Mary Kay Mueller, Vallory Clardy, Matthew Morrison, Nirav Patel, Francesco Radicati, Beth Ann Snell, Cara Lawlor Quigley, Caroline Mead, Kelsey Schachter, Brea Dutt, Lindsay Meyer, Leny Santana, Marta Coleman, Christine Pizzo
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Patent number: 11923087Abstract: Provided herein is an engagement and care support platform (“ECSP”) computer system including at least one processor in communication with at least one memory device for facilitating senior user engagement. The processor is programmed to: (i) register a user through an application, (ii) register a caregiver associated with the user through the application, (iii) generate a senior profile based upon user personal and scheduling data, (iv) build a daily interactive user interface that reflects the senior profile, (v) display the daily interactive user interface at a first client device associated with the user, (vi) cause the first client device to initiate a daily interaction prompt to the user, (vii) determine whether any user interaction was received in response to the daily interaction prompt, and (viii) transmit a daily update message to a second client device associated with the caregiver, including an indication of whether any user interaction was received.Type: GrantFiled: July 1, 2022Date of Patent: March 5, 2024Assignee: State Farm Mutual Automobile Insurance CompanyInventors: Stephen Dunstan, Kami LaVallier, Edward P. Matesevac, Mary Kay Mueller, Vallory Clardy, Matthew Morrison, Nirav Patel, Francesco Radicati, Beth Ann Snell, Cara Lawlor Quigley, Caroline Mead, Kelsey Schachter, Brea Dutt, Lindsay Meyer, Leny Santana, Marta Coleman, Christine Pizzo
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Publication number: 20240066187Abstract: A radiopaque lined heat shrinkable tubing is disclosed. A non-limiting example of a radiopaque lined heat shrinkable tubing is a multilayer construction having an inner layer and an outer layer, wherein the inner layer includes a thermoplastic that is highly loaded with a radiopaque filler, and the outer layer includes a fluoropolymer heat shrink tube.Type: ApplicationFiled: August 25, 2023Publication date: February 29, 2024Inventors: Brian R. Tomblin, Matthew Cox, Shannon M. Giovannini, Jacob Coleman, Parastoo Azamian
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Publication number: 20230416414Abstract: The present invention provides a nanodisc with a membrane scaffold protein. The nanodisc includes a membrane scaffold protein, a telodendrimer and a lipid. The membrane scaffold protein can be apolipoprotein. The telodendrimer has the general formula PEG-L-D-(R)n, wherein D is a dendritic polymer; L is a bond or a linker linked to the focal point group of the dendritic polymer; each PEG is a poly(ethylene glycol) polymer; each R is and end group of the dendritic polymer, or and end group with a covalently bound hydrophobic group, hydrophilic group, amphiphilic compound, or drug; and subscript n is an integer from 2 to 20. Cell free methods of making the nanodiscs are also provided.Type: ApplicationFiled: June 13, 2023Publication date: December 28, 2023Inventors: Juntao LUO, Wei HE, Kit S. LAM, Paul HENDERSON, Matthew A. COLEMAN
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Patent number: 11816163Abstract: In one aspect, the present disclosure relates to a system for improved transactional mainframes, the system comprising a processor, a database, an application programming interface (API) module, and a transaction import module. The API module can be configured to: receive transaction data comprising a transaction type, a user identifier, one or more transaction card identifiers, and one or more fields associated with the transaction card identifiers; validate the transaction data using one or more of the stored validation rules associated with the one or more transaction card identifiers; generate one or more transaction cards; and store the transaction data and transaction cards to the database. The transaction import module can be configured to submit the transaction cards to the mainframe, view the status of submitted records, and enable retrying of transaction cards that failed to process.Type: GrantFiled: October 1, 2021Date of Patent: November 14, 2023Assignee: Capital One Services, LLCInventors: Marc Hudak, Swathi Challkere Vijayaprakash, Matthew Coleman, Ashish Bassi, Anurag Andoji, Joe Vaughan, PhaniKrishna Hari, Michael Garner
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Patent number: 11788937Abstract: Methods and systems for collecting, transporting and extracting high quality fluid samples for laboratory analyses are disclosed. The systems and methods disclosed are especially important for collecting fluid samples in a manner that most closely resembles the fluids as captured and safely maintains the samples during transportation and extraction at the laboratory.Type: GrantFiled: June 9, 2019Date of Patent: October 17, 2023Inventor: Todd Matthew Coleman
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Publication number: 20230240168Abstract: A vehicle may operate in a first mode in which an electric motor operates in a forward state such that the rear ground traction members of the vehicle are driven forwardly by the electric motor while a hydraulic pump is powered by the electric motor and may alternatively operate in a second mode in which the electric motor operates in a reversed state such that the rear ground traction members are driven forwardly by the electric motor while the electric motor is operably decoupled from the hydraulic pump by a one-way clutch/bearing ring coupled between the electric motor and the hydraulic pump.Type: ApplicationFiled: February 3, 2023Publication date: August 3, 2023Applicant: Zimeno, Inc. dba Monarch TractorInventors: Zachary Meyer OMOHUNDRO, Matthew Michael O'Brien, Matthew Coleman TINDALL, Karan KAUSHIK
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Patent number: 11713359Abstract: The present invention provides a nanodisc with a membrane scaffold protein. The nanodisc includes a membrane scaffold protein, a telodendrimer and a lipid. The membrane scaffold protein can be apolipoprotein. The telodendrimer has the general formula PEG-L-D-(R)n, wherein D is a dendritic polymer; L is a bond or a linker linked to the focal point group of the dendritic polymer; each PEG is a poly(ethylene glycol) polymer, each R is and end group of the dendritic polymer, or and end group with a covalently bound hydrophobic group, hydrophilic group, amphiphilic compound, or drug; and subscript n is an integer from 2 to 20. Cell free methods of making the nanodiscs are also provided.Type: GrantFiled: May 5, 2021Date of Patent: August 1, 2023Assignee: LAWRENCE LIVERMORE NATIONAL SECURITY, LLCInventors: Juntao Luo, Wei He, Kit S. Lam, Paul Henderson, Matthew A. Coleman
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Patent number: 11661591Abstract: This disclosure provides microbes engineered to detect virulent and spore states of pathogens and release an appropriate therapeutic response accordingly and compositions and methods of use of the same.Type: GrantFiled: September 14, 2020Date of Patent: May 30, 2023Assignee: Lawrence Livermore National Security, LLCInventors: Mimi-Cho Yung, Matthew A. Coleman, Patrik D'haeseleer, Howard Harris, Yongqin Jiao, Kenneth W. Overton, Dan Mcfarland Park, Brent W. Segelke, Sergio E. Wong
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Publication number: 20230008484Abstract: Various electric scooter docking stations are described herein. In some embodiments, the docking stations facilitate the collection, movement, and/or storage of electric scooters in a compact, elegant, and efficient configuration. For example, the docking stations can be configured to take advantage of the unique shape of a scooter, providing the storage and positioning of many scooters in a compact area. Also, the docking stations can be simple structures that facilitate the self-powered movement of electric scooters within a station.Type: ApplicationFiled: March 18, 2022Publication date: January 12, 2023Inventors: Forrest Jean NORTH, Javier Gonzalez CARRACELAS, Ricardo Abdiel Mora GONZALEZ, Steven Thomas SNYDER, Michelle Valerie CARLOMUSTO, Justin David ALMELEH, Matthew Coleman TINDALL, Ana Gabriela Costilla GONZALEZ, Federico VORRATH SEPÚLVEDA, Ernesto Alejandro Cantu ZAMARRÓN, David Osman DOLUCA, Erik Daryl AYLEN, Kyle Allen HARTELT
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Publication number: 20220283171Abstract: Provided herein are methods and systems for the production of a nanolipoprotein particle (NLP) that includes a scaffold protein a membrane forming lipid and optionally a target protein. At least one of the scaffold protein and target protein can be provided through an IVT system. The membrane forming lipid, scaffold protein and optionally the target protein can be assembled for a time and under conditions that allow obtaining high yield NLPs, NPLs with an increased solubility, an NLP of a controlled size, and/or an NLP having a size predetermined to include a pre-selected target protein.Type: ApplicationFiled: March 21, 2022Publication date: September 8, 2022Inventors: Matthew A. COLEMAN, Paul D. HOEPRICH, Brent W. SEGELKE
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Patent number: 11433557Abstract: A buffer block apparatus for securing a node may be described. The buffer block apparatus may include a first surface having disposed thereon at least one first zero-point feature configured for a first zero-point interface with a robotic assembly apparatus; and a second surface, different from the first surface, configured to connect with a first surface of a node and form a first rigid connection between the buffer block apparatus and the node, wherein the buffer block apparatus provides at least one reference coordinate system with respect to the node.Type: GrantFiled: August 27, 2019Date of Patent: September 6, 2022Assignee: DIVERGENT TECHNOLOGIES, INC.Inventors: Eahab Nagi El Naga, Keith Allen Fleming, Matthew Cooper Keller, Lukas Philip Czinger, Chukwubuikem Marcel Okoli, Michael Thomas Kenworthy, Matthew Coleman Tindall, Justin David Almeleh, Matthew Michael O'Brien, Broc William TenHouten, Oussama Rawas, Juan Cuauhtemoc Munoz, Muhammad Faizan Zafar, Jamison Van Bruch, Thomas Samuel Bowden, Jr., Alex James Hamade
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Publication number: 20220211866Abstract: A telodendrimer-nanolipoprotein particle (t-NLP), comprising one or more membrane forming lipids, one or more telodendrimers, and a scaffold protein and a Chlamydia major outer membrane protein (MOMP) comprising a MOMP hydrophobic region, and related compositions methods and systems.Type: ApplicationFiled: December 23, 2021Publication date: July 7, 2022Inventors: Matthew A. COLEMAN, Nicholas O. FISCHER, Amy RASLEY, Craig D. BLANCHETTE, Todd PETERSON
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Patent number: 11300572Abstract: Provided herein are methods and systems for the production of a nanolipoprotein particle (NLP) that includes a scaffold protein a membrane forming lipid and optionally a target protein. At least one of the scaffold protein and target protein can be provided through an IVT system. The membrane forming lipid, scaffold protein and optionally the target protein can be assembled for a time and under conditions that allow obtaining high yield NLPs, NPLs with an increased solubility, an NLP of a controlled size, and/or an NLP having a size predetermined to include a pre-selected target protein.Type: GrantFiled: October 12, 2018Date of Patent: April 12, 2022Assignee: LAWRENCE LIVERMORE NATIONAL SECURITY, LLCInventors: Matthew A. Coleman, Paul D. Hoeprich, Brent W. Segelke
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Patent number: 11279250Abstract: Various electric scooter docking stations are described herein. In some embodiments, the electric scooter docking stations facilitate collection, movement, and/or storage of the electric scooters in a compact, elegant, and efficient configuration. For example, the electric scooter docking stations can be configured to take advantage of a unique shape of an electric scooter, providing the storage and positioning of many electric scooters in a compact area. Also, the electric scooter docking stations can be simple structures that facilitate self-powered movement of electric scooters within the electric scooter docking stations.Type: GrantFiled: August 14, 2020Date of Patent: March 22, 2022Assignee: NEPTUNE SCOOTERSInventors: Forrest Jean North, Javier Gonzalez Carracelas, Ricardo Abdiel Mora Gonzalez, Steven Thomas Snyder, Michelle Valerie Carlomusto, Justin David Almeleh, Matthew Coleman Tindall, Ana Gabriela Costilla Gonzalez, Federico Vorrath Sepúlveda, Ernesto Alejandro Cantu Zamarrón, David Osman Doluca, Erik Daryl Aylen, Kyle Allen Hartelt
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Publication number: 20220019625Abstract: In one aspect, the present disclosure relates to a system for improved transactional mainframes, the system comprising a processor, a database, an application programming interface (API) module, and a transaction import module. The API module can be configured to: receive transaction data comprising a transaction type, a user identifier, one or more transaction card identifiers, and one or more fields associated with the transaction card identifiers; validate the transaction data using one or more of the stored validation rules associated with the one or more transaction card identifiers; generate one or more transaction cards; and store the transaction data and transaction cards to the database. The transaction import module can be configured to submit the transaction cards to the mainframe, view the status of submitted records, and enable retrying of transaction cards that failed to process.Type: ApplicationFiled: October 1, 2021Publication date: January 20, 2022Applicant: Capital One Services, LLCInventors: Marc Hudak, Swathi Challkere Vijayaprakash, Matthew Coleman, Ashish Bassi, Anurag Andoji, Joe Vaughan, PhaniKrishna Hari, Michael Garner
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Patent number: 11207422Abstract: A telodendrimer-nanolipoprotein particle (t-NLP), comprising one or more membrane forming lipids, one or more telodendrimers, and a scaffold protein and a Chlamydia major outer membrane protein (MOMP) comprising a MOMP hydrophobic region, and related compositions methods and systems.Type: GrantFiled: May 1, 2018Date of Patent: December 28, 2021Assignee: LAWRENCE LIVERMORE NATIONAL SECURITY, LLCInventors: Matthew A. Coleman, Nicholas O. Fischer, Amy Rasley, Craig D. Blanchette, Todd Peterson
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Publication number: 20210317234Abstract: The present invention provides a nanodisc with a membrane scaffold protein. The nanodisc includes a membrane scaffold protein, a telodendrimer and a lipid. The membrane scaffold protein can be apolipoprotein. The telodendrimer has the general formula PEG-L-D-(R)n, wherein D is a dendritic polymer; L is a bond or a linker linked to the focal point group of the dendritic polymer; each PEG is a poly(ethylene glycol) polymer, each R is and end group of the dendritic polymer, or and end group with a covalently bound hydrophobic group, hydrophilic group, amphiphilic compound, or drug; and subscript n is an integer from 2 to 20. Cell free methods of making the nanodiscs are also provided.Type: ApplicationFiled: May 5, 2021Publication date: October 14, 2021Inventors: Juntao LUO, Wei HE, Kit S. LAM, Paul HENDERSON, Matthew A. COLEMAN
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Patent number: 11138268Abstract: In one aspect, the present disclosure relates to a system for improved transactional mainframes, the system comprising a processor, a database, an application programming interface (API) module, and a transaction import module. The API module can be configured to: receive transaction data comprising a transaction type, a user identifier, one or more transaction card identifiers, and one or more fields associated with the transaction card identifiers; validate the transaction data using one or more of the stored validation rules associated with the one or more transaction card identifiers; generate one or more transaction cards; and store the transaction data and transaction cards to the database. The transaction import module can be configured to submit the transaction cards to the mainframe, view the status of submitted records, and enable retrying of transaction cards that failed to process.Type: GrantFiled: August 5, 2019Date of Patent: October 5, 2021Assignee: Capital One Services, LLCInventors: Marc Hudak, Swathi Challkere Vijayaprakash, Matthew Coleman, Ashish Bassi, Anurag Andoji, Joe Vaughan, PhaniKrishna Hari, Michael Garner