Patents by Inventor Michael Hong
Michael Hong 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: 20260191532Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: ApplicationFiled: March 3, 2026Publication date: July 9, 2026Applicant: Abbott Cardiovascular Systems Inc.Inventors: Theodore W. Ketai, Jacob Greenberg, Daniel Hale, Tanmay Mishra, Gabriel Gonzales, Raghuveer Basude, Michael Hong
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Patent number: 12661116Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: GrantFiled: May 15, 2024Date of Patent: June 23, 2026Assignee: Abbott Cardiovascular Systems Inc.Inventors: Kent Dell, Theodore Ketai, Tanmay Mishra, Stephanie Jones, Jacob Greenberg, Michael Hong, Daniel Hale, Francisco Valencia, Steven Tyler
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Publication number: 20260116256Abstract: An advanced integrated energy storage and distribution system for electric vehicles is disclosed. The system incorporates a rear centralized zonal architecture, event-driven power sourcing, integrated vehicle core hardware controls, a high voltage pack with low voltage body controls, a functionally redundant low voltage architecture, and DCFC split contactor control for enhanced safety, among other things. This comprehensive system significantly reduces complexity, improves packaging, enhances reliability, increases safety, and provides functional redundancy compared to conventional designs. The integration of these innovations results in a highly efficient, safe, and cost-effective power management solution for electric vehicles.Type: ApplicationFiled: May 22, 2025Publication date: April 30, 2026Inventors: Sanjeewa Keven SUGATAPALA, Kyle LOBO, Glenn Morris FEINBERG, Joseph Daniel HIMMELHEBER, Michael HONG, Long Phi HUYNH, Frederik Francois BOTES, Ramachandra VANNALA
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Patent number: 12588908Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: GrantFiled: June 4, 2024Date of Patent: March 31, 2026Assignee: Abbott Cardiovascular Systems Inc.Inventors: Theodore W. Ketai, Jacob Greenberg, Daniel Hale, Tanmay Mishra, Gabriel Gonzales, Raghuveer Basude, Michael Hong
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Publication number: 20250128041Abstract: An elongated tubing for use in a permissive seal assembly. The elongated tubing includes a proximal end, a distal end, and a widened central segment. A conformable path extends between the proximal and distal end, and a rigidified path extends between the proximal end and the distal end.Type: ApplicationFiled: October 18, 2024Publication date: April 24, 2025Inventors: Michael Hong, Aditya Priyonath Murugesh, Ajit Nair
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Publication number: 20240366223Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: ApplicationFiled: May 15, 2024Publication date: November 7, 2024Applicant: Abbott Cardiovascular Systems Inc.Inventors: Kent DELL, Theodore KETAI, Tanmay MISHRA, Stephanie JONES, Jacob GREENBERG, Michael HONG, Daniel HALE, Francisco VALENCIA, Steven TYLER
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Publication number: 20240326265Abstract: A visual grabber device includes a successively connected restraint tube, spring tube, and buffer tube, a visual pick-up unit and a driving unit. The visual grabbing unit includes a grabber body and a camera tube for viewing the target object. The camera tube is equipped with a camera and light. The grabber body comprises several pick-up grabbing claws, and the side wall of the camera tube includes a claw groove for each grabbing claw. The driving unit includes a flexible or rigid push-pull rod. One end of the grabber body is connected to the front end of the push-pull rod, and the rear end of the push-pull rod is connected to a rear connector and a center tube. The end of the center tube is connected to a pressing box, which includes a circuit board, and the camera is electrically connected to the circuit board.Type: ApplicationFiled: July 21, 2023Publication date: October 3, 2024Inventor: Michael Hong
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Publication number: 20240315695Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: ApplicationFiled: June 4, 2024Publication date: September 26, 2024Applicant: Abbott Cardiovascular Systems Inc.Inventors: Theodore W. Ketai, Jacob Greenberg, Daniel Hale, Tanmay Mishra, Gabriel Gonzales, Raghuveer Basude, Michael Hong
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Publication number: 20240293655Abstract: Systems, methods, and kits include a sheath assembly including a stabilizer, a stabilizer foot coupled to the stabilizer and including a stabilizer eyelet configured to secure a suture, a gripping mechanism coupled to the stabilizer remote from the stabilizer foot and including a valve eyelet configured to secure the suture, an introducer sheath extending through the gripping mechanism, the stabilizer, and the stabilizer foot, and an entry luer coupled to the introducer sheath. A hemostatic valve includes a hemostatic valve entry port coupled to the entry luer, a bypass port, and an access port. A stopcock includes a stopcock entry port, a collection port, and a stopcock valve providing selective communication between the stopcock entry port and the collection port. A collection bag is connected to the collection port. An angioplasty device can be disposed within the introducer sheath.Type: ApplicationFiled: March 1, 2024Publication date: September 5, 2024Inventors: Michael Hong, Steven Tyler, Ravish Sachar
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Patent number: 12029425Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: GrantFiled: September 22, 2021Date of Patent: July 9, 2024Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Theodore W. Ketai, Jacob Greenberg, Daniel Hale, Tanmay Mishra, Gabriel Gonzales, Raghuveer Basude, Michael Hong
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Patent number: 12016561Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: GrantFiled: August 7, 2020Date of Patent: June 25, 2024Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Kent Dell, Theodore Ketai, Tanmay Mishra, Stephanie Jones, Jacob Greenberg, Michael Hong, Daniel Hale, Francisco Valencia, Steven Tyler
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Patent number: 11987552Abstract: A phenol compound comprises a phenyl group, a hydroxy group directly bonded to the phenyl group, and at least one polymeric substituent bound to the phenyl group. The polymeric substituent comprises three or more monomers units. A method for producing a polyurethane polymer comprises the steps of (a) providing a polyol; (b) providing a polyisocyanate compound; (c) providing the phenol compound described above; (d) combining the polyol, the polyisocyanate compound, and the phenol compound to produce a reaction mixture; and (e) allowing the polyol and the polyisocyanate compound to react to produce a polyurethane polymer.Type: GrantFiled: July 26, 2019Date of Patent: May 21, 2024Assignee: Milliken & CompanyInventors: Nicholas G. Moon, Haihu Qin, Sharon A. Free, Mark E. Ragsdale, Michael Hong
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Patent number: 11530374Abstract: A laundry care composition comprises a laundry care ingredient or adjunct and at least one compound that is capable of changing from a first color state (i.e., the initial color state in the composition) to a second color state that is perceptibly different from the first color state. A method for treating textile articles comprises the steps of: (a) providing a laundry care composition as described above; (b) adding the laundry care composition to a liquid medium; and (c) placing the textile articles in the liquid medium.Type: GrantFiled: May 5, 2015Date of Patent: December 20, 2022Assignee: Milliken & CompanyInventors: Benjamin R. Butterfield, Eduardo Torres, Sanjeev K. Dey, Michael Hong, Haihu Qin, Dominick J. Valenti
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Patent number: 11378954Abstract: A multi-processor architecture for automated driving systems can be used to improve performance and provide design flexibility. For example, a multi-processor architecture can be used to implement command generation and safety functionality in different processors. The command generation processor can be a high performing processor compared with the safety processor. The safety processor can verify the safety of commands output from the command generation processor and provide additional I/O channels that are typically absent on high performing processors. Additionally, processing of some sensor data can be moved to expansion modules with additional processors to reduce bottlenecks and provide design flexibility for systems with different sensing requirements.Type: GrantFiled: June 28, 2017Date of Patent: July 5, 2022Assignee: Faraday&Future Inc.Inventors: Anil Paryani, Michael Hong, Aziz Umit Batur, Bibhrajit Halder, Hong S. Bae
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Patent number: 11299049Abstract: The present disclosure relates to a vehicle power system. In some examples, the vehicle power system can include a plurality of redundant low-power buses coupled to respective low-power batteries. The low-power buses can be powered by a vehicle battery having a higher voltage than the voltage of the low-power batteries by way of a DCDC converter, for example. In some examples, the DCDC converter can be coupled to the low-power buses via a plurality of switches included in an Auxiliary Voltage Controller (AVC). The DCDC converter and the AVC can be housed in a common package to reduce the size, weight, and complexity of the power system while also improving the power system's durability.Type: GrantFiled: March 9, 2018Date of Patent: April 12, 2022Assignee: FARADAY & FUTURE INC.Inventors: John Steven Linehan, Steven E. Schulz, Michael Hong, Anil Paryani, Isaac Benjamin Meadows, Evan Roger Fischer
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Publication number: 20220054132Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: ApplicationFiled: September 22, 2021Publication date: February 24, 2022Applicant: EVALVE, INC.Inventors: Theodore W. Ketai, Jacob Greenberg, Daniel Hale, Tanmay Mishra, Gabriel Gonzales, Raghuveer Basude, Michael Hong
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Patent number: 11201378Abstract: A battery system of an electric vehicle is disclosed. The battery system can include at least a first battery string including a number of battery modules, wherein the first battery string has an output that is coupled to the first power bus through a string switch, and wherein each of battery modules includes a plurality of battery cells connected in series. The battery system can also include a number of battery module monitors, wherein each of the battery module monitors is coupled to the battery cells of a corresponding one of the battery modules. The battery system can further include module monitor protection circuitry coupled to each of the battery module monitors, wherein the module monitor protection circuitry includes a plurality of protection circuits.Type: GrantFiled: May 17, 2017Date of Patent: December 14, 2021Assignee: Faraday & Future Inc.Inventors: Long Phi Huynh, Michael Hong, Anthony Sansone
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Patent number: 11141158Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: GrantFiled: August 16, 2018Date of Patent: October 12, 2021Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Theodore W. Ketai, Jacob Greenberg, Daniel Hale, Tanmay Mishra, Gabriel Gonzales, Raghuveer Basude, Michael Hong
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Publication number: 20200360018Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: ApplicationFiled: August 7, 2020Publication date: November 19, 2020Applicant: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Kent DELL, Theodore KETAI, Tanmay MISHRA, Stephanie JONES, Jacob GREENBERG, Michael HONG, Daniel HALE, Francisco VALENCIA, Steven TYLER
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Patent number: 10792039Abstract: The invention provides devices, systems and methods for tissue approximation and repair at treatment sites. The devices, systems and methods of the invention will find use in a variety of therapeutic procedures, including endovascular, minimally-invasive, and open surgical procedures, and can be used in various anatomical regions, including the abdomen, thorax, cardiovascular system, heart, intestinal tract, stomach, urinary tract, bladder, lung, and other organs, vessels, and tissues. The invention is particularly useful in those procedures requiring minimally-invasive or endovascular access to remote tissue locations, where the instruments utilized must negotiate long, narrow, and tortuous pathways to the treatment site. In addition, many of the devices and systems of the invention are adapted to be reversible and removable from the patient at any point without interference with or trauma to internal tissues.Type: GrantFiled: November 18, 2019Date of Patent: October 6, 2020Assignee: ABBOTT CARDIOVASCULAR SYSTEMS INC.Inventors: Kent Dell, Theodore Ketai, Tanmay Mishra, Stephanie Jones, Jacob Greenberg, Michael Hong, Daniel Hale, Francisco Valencia, Steven Tyler