Patents by Inventor Jorge Hernan Jimenez
Jorge Hernan Jimenez 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: 11116542Abstract: Systems and methods for accessing, stabilizing and sealing a device attached to a tissue surface comprising a tissue attaching device having an outer base ring defining an opening therethrough and a distally projecting tissue attachment element. The systems variously utilize annular sealing flanges distally attached to the outer base ring outside or inside the tissue attachment element to create a fluid tight seal. The systems variously utilize coils with regions of differing pitch to create sealing tissue pressure. Methods for installing an apical attaching device with a transapical port into a patient, comprising assessing the patient's viability for installation of the apical attaching device by determining an Index of Tissue Elasticity (ITE).Type: GrantFiled: June 21, 2018Date of Patent: September 14, 2021Assignee: Apica Cardiovascular LimitedInventors: Jorge Hernan Jimenez, Dustin Seth West, Brendan Cunniffe, Thomas Feeney, James L. Greene, Robin Stephens
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Publication number: 20200101210Abstract: Embodiments of the present invention provide devices, systems, and methods for implanting and using a connector in a tissue wall to establish, maintain, control, and close a fluid communication between opposing surfaces of the tissue wall. The connector may include an anchoring device, a port, and a coupler device. The anchoring device may be configured for advancing at least partially through the tissue wall. The port may be positioned about a proximal end of the anchoring device, and the port may define an aperture therethrough. The coupler device may be positioned about a proximal end of the port, and the coupler device may be configured for coupling to a medical device.Type: ApplicationFiled: December 3, 2019Publication date: April 2, 2020Inventors: Jorge Hernan Jimenez, Dustin Seth West, James L. Greene
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Patent number: 10518012Abstract: Embodiments of the present invention provide devices, systems, and methods for implanting and using a connector in a tissue wall to establish, maintain, control, and close a fluid communication between opposing surfaces of the tissue wall. The connector may include an anchoring device, a port, and a coupler device. The anchoring device may be configured for advancing at least partially through the tissue wall. The port may be positioned about a proximal end of the anchoring device, and the port may define an aperture therethrough. The coupler device may be positioned about a proximal end of the port, and the coupler device may be configured for coupling to a medical device.Type: GrantFiled: September 15, 2015Date of Patent: December 31, 2019Assignee: APK Advanced Medical Technologies, Inc.Inventors: Jorge Hernan Jimenez, Dustin Seth West, James L. Greene
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Publication number: 20180296212Abstract: Systems and methods for accessing, stabilizing and sealing a device attached to a tissue surface comprising a tissue attaching device having an outer base ring defining an opening therethrough and a distally projecting tissue attachment element. The systems variously utilize annular sealing flanges distally attached to the outer base ring outside or inside the tissue attachment element to create a fluid tight seal. The systems variously utilize coils with regions of differing pitch to create sealing tissue pressure. Methods for installing an apical attaching device with a transapical port into a patient, comprising assessing the patient's viability for installation of the apical attaching device by determining an Index of Tissue Elasticity (ITE).Type: ApplicationFiled: June 21, 2018Publication date: October 18, 2018Inventors: Jorge Hernan Jimenez, Dustin Seth West, Brendan Cunniffe, Thomas Feeney, James L. Greene, Robin Stephens
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Publication number: 20180296340Abstract: Papillary muscle position control devices, systems, and methods are provided. A papillary muscle position control device generally includes a first anchor, a second anchor, and a support structure. The first anchor can be configured to fixedly connect to an in-situ valve of a heart ventricle. The second anchor can be configured to fixedly connect to a muscle wall of the valve. The support structure can be configured to have an adjustable length and be coupled to the first anchor and second anchor such that adjusting the length of the support structure varies a distance between the first anchor and the second anchor.Type: ApplicationFiled: June 18, 2018Publication date: October 18, 2018Inventors: Ajit P. Yoganathan, Jorge Hernan Jimenez
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Patent number: 10039531Abstract: The cinching apparatus (800) comprising: an anchoring component having a distal end a proximal end; the distal end of the anchoring component having an engaging member (805). A locking component (815) and a tension member (820) wherein the anchoring component is enabled to be positioned on a first target site of a tissue component and the locking component (815) is enabled to be positioned on a second target site of a tissue component of the heart, and the tension member (820) can be coupled to both the anchoring component and the locking component (815) to adjust the distance between the first and second target sites.Type: GrantFiled: December 15, 2006Date of Patent: August 7, 2018Assignee: Georgia Tech Research CorporationInventors: Ajit P. Yoganathan, Jorge Hernan Jimenez
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Patent number: 10028741Abstract: Systems and methods for accessing, stabilizing and sealing a device attached to a tissue surface comprising a tissue attaching device having an outer base ring defining an opening therethrough and a distally projecting tissue attachment element. The systems variously utilize annular sealing flanges distally attached to the outer base ring outside or inside the tissue attachment element to create a fluid tight seal. The systems variously utilize coils with regions of differing pitch to create sealing tissue pressure. Methods for installing an apical attaching device with a transapical port into a patient, comprising assessing the patient's viability for installation of the apical attaching device by determining an Index of Tissue Elasticity (ITE).Type: GrantFiled: July 24, 2015Date of Patent: July 24, 2018Assignee: Apica Cardiovascular LimitedInventors: Jorge Hernan Jimenez, Dustin Seth West, Brendan Cunniffe, Thomas Feeney, James L. Greene, Robin Stephens
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Patent number: 10010419Abstract: Papillary muscle position control devices, systems, and methods are provided. According to an exemplary embodiment, a papillary muscle position control device generally comprises a first anchor, a second anchor, and a support structure. The first anchor can be configured to fixedly connect to an in situ valve of a heart ventricle. The second anchor can be configured to fixedly connect to a muscle wall of the valve. The support structure can be configured to have an adjustable length and be coupled to the first anchor and second anchor such that adjusting the length of the support structure varies a distance between the first anchor and the second anchor. Other embodiments are also claimed and described.Type: GrantFiled: September 7, 2015Date of Patent: July 3, 2018Assignee: Georgia Tech Research CorporationInventors: Ajit P. Yoganathan, Jorge Hernan Jimenez
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Patent number: 9950146Abstract: Various embodiments of the present invention provide a conduit device including an attaching device configured for defining a helical pathway through a tissue wall and complementary ring in cooperation for securing the device within an aperture defined in the tissue wall. Some embodiments of the present invention further provide a system for implanting a conduit device in a tissue wall. More specifically, some embodiments provide a system including a coring device for defining an aperture in a tissue by removing and retaining a tissue core and securely implanting a conduit device therein so as to provide fluid communication between a first and second surface of the tissue wall via the conduit device.Type: GrantFiled: March 2, 2016Date of Patent: April 24, 2018Assignees: EMORY UNIVERISTY, GEORGIA TECH RESEARCH CORPORATIONInventors: Thomas A. Vassiliades, Ajit Yoganathan, Jorge Hernan Jimenez
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Publication number: 20160317793Abstract: Various embodiments of the present invention provide a conduit device including an attaching device configured for defining a helical pathway through a tissue wall and complementary ring in cooperation for securing the device within an aperture defined in the tissue wall. Some embodiments of the present invention further provide a system for implanting a conduit device in a tissue wall. More specifically, some embodiments provide a system including a coring device for defining an aperture in a tissue by removing and retaining a tissue core and securely implanting a conduit device therein so as to provide fluid communication between a first and second surface of the tissue wall via the conduit device.Type: ApplicationFiled: March 2, 2016Publication date: November 3, 2016Inventors: Thomas A. Vassiliades, Ajit Yoganathan, Jorge Hernan Jimenez
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Patent number: 9308015Abstract: Various embodiments of the present invention provide a conduit device including an attaching device configured for defining a helical pathway through a tissue wall and complementary ring in cooperation for securing the device within an aperture defined in the tissue wall. Some embodiments of the present invention further provide a system for implanting a conduit device in a tissue wall. More specifically, some embodiments provide a system including a coring device for defining an aperture in a tissue by removing and retaining a tissue core and securely implanting a conduit device therein so as to provide fluid communication between a first and second surface of the tissue wall via the conduit device.Type: GrantFiled: September 2, 2014Date of Patent: April 12, 2016Assignees: Emory University, Georgia Tech Research CorporationInventors: Thomas A. Vassiliades, Ajit Yoganathan, Jorge Hernan Jimenez
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Publication number: 20160067395Abstract: Embodiments of the present invention provide devices, systems, and methods for implanting and using a connector in a tissue wall to establish, maintain, control, and close a fluid communication between opposing surfaces of the tissue wall. The connector may include an anchoring device, a port, and a coupler device. The anchoring device may be configured for advancing at least partially through the tissue wall. The port may be positioned about a proximal end of the anchoring device, and the port may define an aperture therethrough. The coupler device may be positioned about a proximal end of the port, and the coupler device may be configured for coupling to a medical device.Type: ApplicationFiled: September 15, 2015Publication date: March 10, 2016Inventors: Jorge Hernan Jimenez, Dustin Seth West, James L. Greene
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Publication number: 20160051800Abstract: The present invention provides a vascular conduit device including a deformable flange and complementary securing ring in cooperation for securing the device within an aperture defined in a tissue wall. The present invention further provides a system for implanting such a vascular conduit device in a tissue wall. More specifically, the present invention provides a system including a coring device for defining an aperture in a tissue wall (such as a ventricle and/or a blood vessel) and securely implanting a vascular conduit device therein so as to provide fluid communication between a first and second surface of the tissue wall via the vascular conduit device.Type: ApplicationFiled: August 21, 2015Publication date: February 25, 2016Inventors: Thomas A. Vassiliades, Ajit Yoganathan, Jorge Hernan Jimenez
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Publication number: 20150374494Abstract: Papillary muscle position control devices, systems, and methods are provided. According to an exemplary embodiment, a papillary muscle position control device generally comprises a first anchor, a second anchor, and a support structure. The first anchor can be configured to fixedly connect to an in situ valve of a heart ventricle. The second anchor can be configured to fixedly connect to a muscle wall of the valve. The support structure can be configured to have an adjustable length and be coupled to the first anchor and second anchor such that adjusting the length of the support structure varies a distance between the first anchor and the second anchor. Other embodiments are also claimed and described.Type: ApplicationFiled: September 7, 2015Publication date: December 31, 2015Inventors: Ajit P. Yoganathan, Jorge Hernan Jimenez
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Publication number: 20150342602Abstract: Systems and methods for accessing, stabilizing and sealing a device attached to a tissue surface comprising a tissue attaching device having an outer base ring defining an opening therethrough and a distally projecting tissue attachment element. The systems variously utilize annular sealing flanges distally attached to the outer base ring outside or inside the tissue attachment element to create a fluid tight seal. The systems variously utilize coils with regions of differing pitch to create sealing tissue pressure. Methods for installing an apical attaching device with a transapical port into a patient, comprising assessing the patient's viability for installation of the apical attaching device by determining an Index of Tissue Elasticity (ITE).Type: ApplicationFiled: July 24, 2015Publication date: December 3, 2015Inventors: Jorge Hernan Jimenez, Dustin Seth West, Brendan Cunniffe, Thomas Feeney, James L. Greene, Robin Stephens
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Patent number: 9138228Abstract: The present invention provides a vascular conduit device including a deformable flange and complementary securing ring in cooperation for securing the device within an aperture defined in a tissue wall. The present invention further provides a system for implanting such a vascular conduit device in a tissue wall. More specifically, the present invention provides a system including a coring device for defining an aperture in a tissue wall (such as a ventricle and/or a blood vessel) and securely implanting a vascular conduit device therein so as to provide fluid communication between a first and second surface of the tissue wall via the vascular conduit device.Type: GrantFiled: October 14, 2005Date of Patent: September 22, 2015Assignees: Emory University, Georgia Tech Research InstituteInventors: Thomas A. Vassiliades, Ajit Yoganathan, Jorge Hernan Jimenez
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Patent number: 9125742Abstract: Papillary muscle position control devices (900) systems and methods are provided. According to an exemplary embodiment, a papillary muscle position control device generally comprises a first anchor (905), a second anchor (920), and a support structure (915). The first anchor can be configured to fixedly connect to an in situ valve of a heart ventricle. The second anchor can be configured to fixedly connect to a muscle wall of the valve. The support structure can be configured to have an adjustable length and be coupled to the first anchor and second anchor such that adjusting the length of the support structure varies a distance between the first anchor and the second anchor. Other embodiments are also claimed and described.Type: GrantFiled: December 15, 2006Date of Patent: September 8, 2015Assignee: Georgia Tech Research FoundationInventors: Ajit P. Yoganathan, Jorge Hernan Jimenez
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Publication number: 20140371518Abstract: Various embodiments of the present invention provide a conduit device including an attaching device configured for defining a helical pathway through a tissue wall and complementary ring in cooperation for securing the device within an aperture defined in the tissue wall. Some embodiments of the present invention further provide a system for implanting a conduit device in a tissue wall. More specifically, some embodiments provide a system including a coring device for defining an aperture in a tissue by removing and retaining a tissue core and securely implanting a conduit device therein so as to provide fluid communication between a first and second surface of the tissue wall via the conduit device.Type: ApplicationFiled: September 2, 2014Publication date: December 18, 2014Inventors: Thomas A. Vassiliades, Ajit Yoganathan, Jorge Hernan Jimenez
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Patent number: 8858489Abstract: Various embodiments of the present invention provide a conduit device including an attaching device configured for defining a helical pathway through a tissue wall and complementary ring in cooperation for securing the device within an aperture defined in the tissue wall. Some embodiments of the present invention further provide a system for implanting a conduit device in a tissue wall. More specifically, some embodiments provide a system including a coring device for defining an aperture in a tissue by removing and retaining a tissue core and securely implanting a conduit device therein so as to provide fluid communication between a first and second surface of the tissue wall via the conduit device.Type: GrantFiled: March 18, 2013Date of Patent: October 14, 2014Assignees: Emory University, Georgia Tech Research CorporationInventors: Thomas A. Vassiliades, Ajit Yoganathan, Jorge Hernan Jimenez
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Patent number: 8568473Abstract: The present invention describes a cardiac prosthetic system (400) comprising: an anchoring conduit (200) having a harbor (415), the harbor including a first releasably engaging component (515); a temporary valve (305) and a heart valve prosthesis (420) having a second releasably engaging component (445) enabled to be securely coupled and uncoupled from the first releasably engaging component (515) of the harbor (415).Type: GrantFiled: December 15, 2006Date of Patent: October 29, 2013Assignee: Georgia Tech Research CorporationInventors: Ajit P. Yoganathan, Jorge Hernan Jimenez