Patents by Inventor Joshua Uth
Joshua Uth 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: 7850660Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: GrantFiled: June 24, 2005Date of Patent: December 14, 2010Assignee: Ethicon Endo-Surgery, Inc.Inventors: Joshua Uth, Randal T. Byrum, Sean P. Conlon
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Publication number: 20100217199Abstract: A method of repositioning an injection port comprises positioning the injection port at a first location in a patient's body and extending fasteners of the injection port to substantially secure the injection port at the first location. The fasteners are then retracted to substantially unsecure the injection port from the first location in the patient's body. The injection port is then moved to a second location in the patient's body. The fasteners are then re-extended to substantially secure the injection port at the second location in the patient's body. The injection port includes a port body. The fasteners are integral with the port body. The fasteners may be selectively extended and retracted relative to the port body. For instance, the fasteners may be pivoted relative to the port body to transition between extended and retracted positions. The extension and retraction of fasteners may be provided through a port applier.Type: ApplicationFiled: April 29, 2010Publication date: August 26, 2010Applicant: Ethicon Endo-Surgery, Inc.Inventors: Joshua Uth, Randal T. Byrum, Sean P. Conlon
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Publication number: 20100217200Abstract: An injection port system comprises an injection port and an applier. The port comprises a body and a plurality of fasteners. The fasteners are integral with the body and are movable from a non-deployed position to a deployed position. The applier comprises a port engagement portion and an actuator. The port engagement portion is configured to selectively engage the port body to selectively retain the port relative to the applier. The actuator is operable to move the fasteners to the deployed position. The applier is also configured to disengage the port engagement portion from the port body to release the port from the applier when the actuator moves the fasteners to the deployed position. The actuator may release the port from the applier by moving a resilient member away from the port body as the actuator also moves the fasteners from the non-deployed position to the deployed position.Type: ApplicationFiled: April 29, 2010Publication date: August 26, 2010Applicant: Ethicon Endo-Surgery, Inc.Inventors: Joshua Uth, Randal T. Byrum, Sean P. Conlon
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Publication number: 20100211085Abstract: An injection port comprises a body, a fluid reservoir, a septum, and a plurality of fasteners. The fluid reservoir is defined in part by the body and the septum. A needle may be inserted through the septum to reach the reservoir. The fasteners are integral with the body. The fasteners are simultaneously rotatable from a non-deployed position to a deployed position. The fasteners are retracted relative to the body when the fasteners are in the non-deployed position. The fasteners are extended relative to the body when the fasteners are in the deployed position. The fasteners are also simultaneously rotatable from the deployed position to the non-deployed position. The injection port may be coupled with a gastric band via a conduit. The conduit may provide fluid communication between an inflatable member of the gastric band and the reservoir of the injection port as part of a closed fluid circuit.Type: ApplicationFiled: April 29, 2010Publication date: August 19, 2010Applicant: Ethicon Endo-Surgery, Inc.Inventors: Joshua Uth, Randal T. Byrum, Sean P. Conlon
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Patent number: 7651483Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: GrantFiled: June 24, 2005Date of Patent: January 26, 2010Assignee: Ethicon Endo-Surgery, Inc.Inventors: Randal T. Byrum, Joshua Uth, Sean P. Conlon, How-Lun Chen
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Patent number: 7561916Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: GrantFiled: June 24, 2005Date of Patent: July 14, 2009Assignee: Ethicon Endo-Surgery, Inc.Inventors: John V. Hunt, Joshua Uth, Randal T. Byrum, Sean P. Conlon
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Patent number: 7553298Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: GrantFiled: June 24, 2005Date of Patent: June 30, 2009Assignee: Ethicon Endo-Surgery, Inc.Inventors: John V. Hunt, Randal T. Byrum, Joshua Uth, Sean P. Conlon
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Publication number: 20090093768Abstract: A method for implanting an injection port within a patient. The method involves providing a port having a housing with a closed distal end, a open proximal end, a fluid reservoir therebetween, a needle penetrable septum attached to the housing about the opening, and at least one attachment mechanism mounted to the housing at a pivot point along an outer periphery of the housing. The attachment mechanism is an arcuate hook pivotable with respect to the housing, the arcuate hook having a length extending substantially at least 180° about the pivot point. The method further involves placing the distal end of the port adjacent tissue, and rotating the arcuate hook at least 180 degrees so that a free end of the hook extends into tissue and back out again.Type: ApplicationFiled: December 12, 2008Publication date: April 9, 2009Inventors: Sean P. Conlon, Joshua Uth, How-Lun Chen
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Publication number: 20080078804Abstract: A surgical instrument for being endoscopically or laparoscopically inserted into a surgical site for simultaneous stapling and severing of tissue includes an elongate channel that is configured to operably support a staple cartridge therein. An anvil is coupled to the elongate channel and is configured to interact therewith such that at least a mounting portion of the anvil can seatingly engage corresponding portions of the elongate channel at any one of a discrete number of predetermined locations to adjust a tissue clamping space between the anvil and the elongate channel in response to a thickness of tissue received between the elongate channel and the anvil and application of a closing motion to the anvil.Type: ApplicationFiled: September 29, 2006Publication date: April 3, 2008Inventors: Frederick E. Shelton, Joshua Uth
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Publication number: 20080078800Abstract: A surgical staple including a crown and a deformable member extending from the crown, the deformable member having a notch configured to cause the deformable member to bend at the notch when the staple is deformed from a first shape into a second shape. The crown of the surgical staple, in various embodiments, further includes a forming surface, or anvil, which is configured to deform the deformable member and/or guide a distal end of the deformable member when the distal end contacts the crown.Type: ApplicationFiled: September 29, 2006Publication date: April 3, 2008Inventors: Christopher J. Hess, William B. Weisenburgh, Jerome R. Morgan, James W. Voegele, Frederick E. Shelton, Joshua Uth
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Publication number: 20070293829Abstract: A method for implanting an injection port within a patient. The method involves providing a port having a housing with a closed distal end, a open proximal end, a fluid reservoir therebetween, a needle penetrable septum attached to the housing about the opening, and at least one attachment mechanism mounted to the housing at a pivot point along an outer periphery of the housing. The attachment mechanism is an arcuate hook pivotable with respect to the housing, the arcuate hook having a length extending substantially at least 180° about the pivot point. The method further involves placing the distal end of the port adjacent tissue, and rotating the arcuate hook at least 180 degrees so that a free end of the hook extends into tissue and back out again.Type: ApplicationFiled: August 27, 2007Publication date: December 20, 2007Inventors: Sean Conlon, Joshua Uth, How-Lun Chen
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Publication number: 20070208313Abstract: A method for implanting an injection port within a patient. The method involves providing a port having a housing with a closed distal end, a open proximal end, a fluid reservoir therebetween, a needle penetrable septum attached to the housing about the opening, and at least one attachment mechanism mounted to the housing at a pivot point along an outer periphery of the housing. The attachment mechanism is an arcuate hook pivotable with respect to the housing, the arcuate hook having a length extending substantially at least 180° about the pivot point. The method further involves placing the distal end of the port adjacent tissue, and rotating the arcuate hook at least 180 degrees so that a free end of the hook extends into tissue and back out again.Type: ApplicationFiled: May 7, 2007Publication date: September 6, 2007Applicant: Ethicon Endo-Surgery, Inc.Inventors: SEAN CONLON, Joshua Uth, How-Lun Chen
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Publication number: 20070010790Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: ApplicationFiled: June 24, 2005Publication date: January 11, 2007Inventors: Randal Byrum, Joshua Uth, Sean Conlon, How-Lun Chen
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Publication number: 20060293628Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: ApplicationFiled: June 24, 2005Publication date: December 28, 2006Inventors: John Hunt, Joshua Uth, Randal Byrum, Sean Conlon
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Publication number: 20060293625Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: ApplicationFiled: June 24, 2005Publication date: December 28, 2006Inventors: John Hunt, Randal Byrum, Joshua Uth, Sean Conlon
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Publication number: 20060293627Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: ApplicationFiled: June 24, 2005Publication date: December 28, 2006Inventors: Randal Byrum, Sean Conlon, Joshua Uth, John Hunt, Shawn Snyder
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Publication number: 20060293626Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: ApplicationFiled: June 24, 2005Publication date: December 28, 2006Inventors: Randal Byrum, Sean Conlon, Joshua Uth
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Publication number: 20050283119Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: ApplicationFiled: June 24, 2005Publication date: December 22, 2005Inventors: Joshua Uth, Randal Byrum, Sean Conlon
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Publication number: 20050283118Abstract: An attachment mechanism for a surgically implantable medical device includes one or more fasteners which may be simultaneously moved from an undeployed position to a deployed position by operation of an integral actuator. The attachment mechanism may be configured to be deactuated, and the fasteners simultaneously moved from a deployed position to an undeployed position, allowing removal or repositioning of the medical device. An applier includes a locator for detachably holding the implantable medical device, locating it at the desired position, and actuating the attachment mechanism. The applier is configured to undeploy the attachment mechanism the implantable medical device can be detached from the body tissue.Type: ApplicationFiled: June 24, 2005Publication date: December 22, 2005Inventors: Joshua Uth, Randal Byrum, Sean Conlon
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Publication number: 20050277899Abstract: A method for implanting an injection port within a patient. The method involves providing a port having a housing with a closed distal end, a open proximal end, a fluid reservoir therebetween, a needle penetrable septum attached to the housing about the opening, and at least one attachment mechanism mounted to the housing at a pivot point along an outer periphery of the housing. The attachment mechanism is an arcuate hook pivotable with respect to the housing, the arcuate hook having a length extending substantially at least 180° about the pivot point. The method further involves placing the distal end of the port adjacent tissue, and rotating the arcuate hook at least 180 degrees so that a free end of the hook extends into tissue and back out again.Type: ApplicationFiled: June 1, 2004Publication date: December 15, 2005Inventors: Sean Conlon, Joshua Uth, How-Lun Chen