Patents Assigned to TC1 LLC
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Patent number: 11197990Abstract: A system for supplying power transcutaneously to an implantable device implanted within a subject is provided. The system includes an external connector including one of a microneedle array and a microwire holder. The system further includes a power cable electrically coupled to the external connector and configured to supply power to the one of the microneedle array and the microwire holder, and an internal connector configured to be implanted within the subject and electrically coupled to the implantable device, the internal connector including the other of the microneedle array and the microwire holder. The microneedle array includes a plurality of electrically conductive microneedles, the microwire holder includes a plurality of electrical contacts, and the microwire holder is configured to engage the microneedle array such that the plurality of electrically conductive microneedles extend through the skin of the subject and electrically couple to the plurality of electrical contacts.Type: GrantFiled: January 18, 2018Date of Patent: December 14, 2021Assignee: TC1 LLCInventors: Rahul Agarwal, Gene Bornzin, Edward Karst
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Patent number: 11191947Abstract: A fluid treatment system for a percutaneous cable and methods of assembly and use are described herein. In one aspect, the fluid treatment system includes a delivery tube comprising a distal end and a proximal end. The distal end is configured to surround at least a portion of the percutaneous cable. The percutaneous cable extends from within a patient to outside the patient through tissue at an exit site. The proximal end is connectable to a fluid source. Fluid from the fluid source is configured to be delivered to the exit site through the delivery tube. The fluid treatment system includes an anchor coupleable to the percutaneous cable to secure the percutaneous cable to the tissue at the exit site.Type: GrantFiled: December 13, 2018Date of Patent: December 7, 2021Assignee: TC1 LLCInventors: Christian Schade, Justin Callaway, Cori Pierce
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Patent number: 11196491Abstract: Apparatuses and methods relating to interfacing and controlling external batteries are described. In one embodiment, an external battery is integrated with a touch screen display. In one embodiment, the external battery provides an infrared communication link with a detachable device or system controller. In one embodiment, the external battery touch screen interface provides data received from a detachable device or system controller.Type: GrantFiled: December 21, 2018Date of Patent: December 7, 2021Assignee: TC1 LLCInventors: Eric Lee, Ethan Petersen, Joseph Stark, Ian McCutcheon, Steve Reichenbach
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Patent number: 11185683Abstract: An implantable system includes a ventricular assist device and a cuff for attachment to a heart. The ventricular assist device includes an inlet cannula. The cuff defines an opening for insertion of the inlet cannula into the opening. The cuff includes an annular fastening member and an attachment member. The annular fastening member is configured to be sutured to heart tissue. The attachment member includes flexible extensions. Each of the flexible extensions is configured to interface with the inlet cannula during insertion of the inlet cannula into the opening so as to cause the flexible extension to flex outward to accommodate passing of the inlet cannula along the opening. Each of the flexible extensions is configured to interface with the inlet cannula to impede extraction of the inlet cannula from the opening.Type: GrantFiled: December 5, 2019Date of Patent: November 30, 2021Assignee: TC1 LLCInventors: Justin Aron Callaway, Christopher James Cotter, Cori Pierce, Maria Dominika Kulinski, Ben Gamulo, Kevin Bourque, Jeff Narum
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Patent number: 11183724Abstract: The present disclosure is directed to an electrochemical cell connector for electrically connecting a plurality of electrochemical cells, and to battery packs including the electrochemical cell connector. The electrochemical cell connectors of the present disclosure are fabricated from a flexible circuit. The flexible circuit includes conductors, such as nickel conductors, soldered or otherwise attached thereto via holes or openings in the flexible circuit. These conductors may be welded or otherwise attached to an electrochemical cell, and the electrochemical cell connections made on the flexible circuit. In many embodiments, the conductors may be attached to the flexible circuit using industry standard automated assembly equipment thus streamlining the manufacturing process and improving overall quality of the product.Type: GrantFiled: June 28, 2019Date of Patent: November 23, 2021Assignee: TC1 LLCInventors: Dustin Roelle, Jesse Gage, Gregory Ray, Ethan Petersen, Jaime Romero
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Patent number: 11179558Abstract: Systems and related methods for supplying power to an implantable blood pump are provided. A system includes a base module and a plurality of energy storage devices. A first energy storage device is operatively coupled to the base module. A second energy storage device is operatively coupled to the first modular energy storage device. The energy storage devices are mechanically coupled in series, electrically coupled in parallel, and configured to provide redundant sources of power to drive an implantable blood pump.Type: GrantFiled: May 15, 2018Date of Patent: November 23, 2021Assignee: TC1 LLCInventors: Kevin Conyers, Jesse Gage, Carine Hoarau, Jaime Arturo Romero, Joseph C. Stark, III
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Patent number: 11179559Abstract: Methods and apparatus for wireless power transfer and communications are provided. In one embodiment, a wireless power transfer system comprises an external transmit resonator configured to transmit wireless power, an implantable receive resonator configured to receive the transmitted wireless power from the transmit resonator, and a user interface device comprising a resonant coil circuit, the resonant coil circuit being configured to receive magnetic communication signals from the transmit resonator or the receive resonator and to display information relating to the magnetic communication signals to a user of the user interface device.Type: GrantFiled: May 20, 2020Date of Patent: November 23, 2021Assignee: TC1 LLCInventor: John Freddy Hansen
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Patent number: 11173297Abstract: A catheter pump assembly is provided that includes an elongate body, an elongate flexible shaft disposed in the elongate body, and an impeller coupled with the distal end of the elongate flexible shaft. The drive system includes a drive component, a motor and a tension member. The tension member is coupled with the motor and the drive component and to cause the drive component to rotate, and thereby to cause the impeller to rotate.Type: GrantFiled: January 29, 2020Date of Patent: November 16, 2021Assignee: TC1 LLCInventor: Paul F. Muller
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Patent number: 11167123Abstract: Controllers and methods for heart treatments are disclosed herein. The controller can include a communication module that can send and receive data from heart therapy devices. The controller can include memory including stored instruction. The controller can include a processor. The processor can receive a signal of an impending electrical treatment at a processor. The processor can determine a current operating parameter of a blood pump communicatingly coupled with the processor. The processor can determine an adjustment to the operating parameter of the blood pump to affect an impedance of heart tissue to be affected by the impending electrical treatment. The processor can control the blood pump according to the adjustment to the operating parameter of the blood pump.Type: GrantFiled: March 7, 2019Date of Patent: November 9, 2021Assignee: TC1 LLCInventors: Rahul Agarwal, Allison Connolly, Yelena Nabutovsky, Julie Prillinger
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Patent number: 11160970Abstract: A catheter pump system is disclosed. The catheter pump system can include a shaft assembly and an impeller coupled with a distal portion of the shaft assembly. A motor assembly can impart rotation on the impeller through the shaft assembly, the motor assembly comprising a motor which rotates the shaft assembly. The catheter pump system can include a fluid pathway which conveys fluid proximally during operation of the catheter pump system. A seal can be disposed between the motor assembly and the impeller. The seal can be configured to impede or prevent the fluid from the fluid pathway from entering the motor assembly at least about an outer periphery of the shaft assembly. The seal can comprise an opening through which a portion of the shaft assembly extends.Type: GrantFiled: July 19, 2017Date of Patent: November 2, 2021Assignee: TC1 LLCInventors: Paul F. Muller, Keif M. Fitzgerald, Michael R. Butler, Todd Jenkins
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Publication number: 20210316132Abstract: The present invention generally relates to heart treatment systems. In some aspects, methods and systems are provided for facilitating communication between implanted devices. For example, an implantable cardiac rhythm management device may be configured to communicate with an implantable blood pump. The implantable cardiac rhythm management device may deliver heart stimulation rate information in addition to information associated with any detected abnormalities in heart function. In response, the pump may be configured to adjust pumping by the pump to better accommodate a patient's particular needs.Type: ApplicationFiled: June 22, 2021Publication date: October 14, 2021Applicant: TC1 LLCInventors: Daniel I. Harjes, John Freddy Hansen, Joseph C. Stark, III, Ghazal Anvar Mauro, Eric Lee, Justin A. Callaway, Onur Dur
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Publication number: 20210315681Abstract: The invention relates generally to methods and systems for irrigating particulates during heart pump implantation, and more specifically relates to irrigating and removing particulates that may be released when coring a patient's heart tissue. A method of irrigating particulates during blood pump implantation includes inserting a removable tissue irrigating device into a patient's heart. The removable tissue irrigating device includes a delivery tube and an irrigation conduit extending through the delivery tube. The irrigation conduit is extended out of an opening in the delivery tube to a deployed position from a stored position. The irrigation conduit is substantially disposed within the delivery tube when in the stored position and has a distal portion protruding out of the delivery tube when in the deployed position. Fluid is dispersed from the irrigation conduit into the patient's heart to remove particulates released during and/or after a coring procedure.Type: ApplicationFiled: June 24, 2021Publication date: October 14, 2021Applicant: TC1 LLCInventors: Stephen Franklin, Rachel Keen
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Patent number: 11129640Abstract: A cutting edge of a punch includes side segments and a central segment disposed between the side segments. When the punch head slides into a hollow blade, the central segment of the cutting edge meets the punch head before the side segments meet the punch head. The central segment starts cutting first, which can help avoid a dog-bone shaped hole when the punch is used on a blood vessel, such as the aorta.Type: GrantFiled: June 6, 2018Date of Patent: September 28, 2021Assignee: TC1 LLCInventors: John Duc Nguyen, Carine Hoarau, Steven H. Reichenbach, James Badia, Ruth Eleanor Beeby
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Publication number: 20210290936Abstract: Methods of operating a blood pump having a magnetically levitated impeller. A method of operating a blood pump includes controlling supply of drive currents to drive coils of the blood pump to magnetically rotate an impeller around an impeller axis of rotation within a blood flow channel of a blood pump. Supply of a bearing current to a levitation coil of the blood pump is controlled to magnetically levitate the impeller in a direction transverse to the impeller axis of rotation so as to minimize power consumption of the blood pump during operation of the blood pump.Type: ApplicationFiled: June 3, 2021Publication date: September 23, 2021Applicant: TC1 LLCInventor: Christopher J. Cotter
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Publication number: 20210265777Abstract: An implantable blood pump system is disclosed herein. The implantable blood pump system includes an implantable blood pump, a controller coupled to the blood pump, a connector receptacle, and a connector insert. The connector receptacle can include a plurality of contacts, and a following surface. The connector insert can be received within the connector receptacle to couple a plurality of insert contacts with the plurality of contacts of the connector receptacle. The connector insert can include walls defining a follower receptacle that can receive a portion of the following surface when the connector insert is in a desired alignment with respect to the connector receptacle, and a cam surface that can engage with the following surface to bias the connector insert to the desired alignment with respect to the connector receptacle when the connector insert is inserted into the connector receptacle.Type: ApplicationFiled: May 13, 2021Publication date: August 26, 2021Applicant: TC1 LLCInventors: John Mark Di Paola, Michael McCoy, John Duc Nguyen, Jaime Romero, Dustin Roelle, Andrew Wong, Dmitry Protsenko, Michael Sahines
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Publication number: 20210246902Abstract: A blood pump system includes a pump housing and an impeller for rotating in a pump chamber within the housing. The impeller has a first side and a second side opposite the first side. The system includes a stator having drive coils for applying a torque to the impeller and at least one bearing mechanism for suspending the impeller within the pump chamber. The system includes a position control mechanism for moving the impeller in an axial direction within the pump chamber to adjust a size of a first gap and a size of a second gap, thereby controlling a washout rate at each of the first gap and the second gap. The first gap is defined by a distance between the first side and the housing and the second gap is defined by a distance between the second side and the pump housing.Type: ApplicationFiled: April 26, 2021Publication date: August 12, 2021Applicant: TC1 LLCInventors: Masamichi Yanai, Shunzhou Yu, Tao Zhang
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Publication number: 20210244938Abstract: Connectors and related methods for fluidly coupling a blood pump with an aorta facilitate implantation of the blood pump. A method of fluidly coupling a blood pump with an aorta includes positioning a connector device defining a passageway extending between a proximal opening and a distal opening. The connector device includes a support member surrounding the distal opening. The support member is interfaced with a wall of the aorta so that the distal opening is at a desired location of an inlet opening in the aorta. The support member is attached to the aorta around the distal opening so as to form a fluid seal and stabilize the connector device. A slit is incised in the wall of the aorta to form the inlet opening in the aorta. A proximal opening of the tubular connector is fluidly coupled with an outflow graft tube of the blood pump.Type: ApplicationFiled: April 29, 2021Publication date: August 12, 2021Applicant: TC1 LLCInventor: Sarah Cohen
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Publication number: 20210236800Abstract: Systems, methods, and devices for improved cooling of an implantable blood pump employ a thermal conductor to conduct heat to blood flowing through the blood pump. A method includes drawing a flow of blood into a blood pump, passing the flow of blood through the blood pump such that heat flow is conducted to the flow of blood via the thermal conductor, and outputting the flow of blood from the blood pump.Type: ApplicationFiled: April 22, 2021Publication date: August 5, 2021Applicant: TC1 LLCInventor: John Freddy Hansen
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Patent number: 11076944Abstract: The invention relates generally to methods and systems for irrigating or capturing particulates during heart pump implantation, and more specifically relates to irrigating, capturing, and removing particulates that may be released when coring a patient's heart tissue. In one aspect, a method for capturing particulates during heart pump implantation is provided that includes inserting a removable particulate capture device into a patient's heart prior to a coring procedure upon the patient's heart. The removable particulate capture device includes an expandable basket movable between collapsed and expanded configurations. The method further includes expanding the expandable basket to the expanded configuration from the collapsed configuration when the removable particulate capture device is positioned within the patient's heart to capture the particulates released during the coring procedure.Type: GrantFiled: March 25, 2019Date of Patent: August 3, 2021Assignee: TC1 LLCInventors: Stephen Franklin, Rachel Keen
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Patent number: 11077294Abstract: In one embodiment, a catheter pump assembly is disclosed. The catheter pump assembly can include an impeller assembly. A catheter body can be coupled with the proximal end of the impeller assembly, the catheter body having a reduced stiffness section disposed proximally of the impeller assembly. A sheath assembly can be configured to be translate over the catheter body relative to the impeller assembly from an impeller assembly delivery position to an impeller assembly deployment position. When the sheath assembly is in the impeller assembly deployment position, a reduction in stiffness is provided between the distal end of the sheath assembly and the impeller assembly.Type: GrantFiled: November 14, 2017Date of Patent: August 3, 2021Assignee: TC1 LLCInventors: Richard L. Keenan, Keif M. Fitzgerald, Veronica J. Neiman, Phyllis Yuen