Patents by Inventor Arnold E. Oyola
Arnold E. Oyola 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: 10856935Abstract: Surgical devices, systems and methods for treating tissue are provided. Also provided are systems for treating tissue and methods of treating tissue. An exemplary surgical device comprises a handle (20a) having a proximal end and a distal end; a shaft extending distally beyond the distal end of the handle, the shaft having a proximal end and a distal end; an electrode tip (45), at least a portion of the electrode tip extending distally beyond the distal end of the shaft, the electrode tip extending distally beyond the distal end of the shaft comprising a spherical end surface portion (25) and a cylindrical side surface portion, the spherical end surface portion located distal to the cylindrical side surface portion and comprising at least a portion of the distal end surface of the surgical device; and a fluid passage directed to provide a fluid towards the cylindrical side portion of the electrode tip.Type: GrantFiled: November 10, 2014Date of Patent: December 8, 2020Assignee: Medtronic Advanced Energy LLCInventors: Michael E. McClurken, David Lipson, Arnold E. Oyola, Jonathan E. Wilson, Christopher W. Maurer, Robert Luzzi, Roger D. Greeley
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Patent number: 10492853Abstract: Surgical devices, systems and methods for treating tissue are provided. Also provided are systems for treating tissue and methods of treating tissue. An exemplary surgical device comprises a handle (20a) having a proximal end and a distal end; a shaft extending distally beyond the distal end of the handle, the shaft having a proximal end and a distal end; an electrode tip (45), at least a portion of the electrode tip extending distally beyond the distal end of the shaft, the electrode tip extending distally beyond the distal end of the shaft comprising a spherical end surface portion (25) and a cylindrical side surface portion, the spherical end surface portion located distal to the cylindrical side surface portion and comprising at least a portion of the distal end surface of the surgical device; and a fluid passage directed to provide a fluid towards the cylindrical side portion of the electrode tip.Type: GrantFiled: June 4, 2015Date of Patent: December 3, 2019Assignee: Medtronic Advanced Energy LLCInventors: Michael E. McClurken, David Lipson, Arnold E. Oyola, Jonathan E. Wilson, Christopher W. Maurer, Robert Luzzi, Roger D. Greeley
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Publication number: 20180161992Abstract: An apparatus for driving an articulating probe comprises an elongate probe constructed and arranged to articulate in at least one predetermined degree of motion and to transition from a flexible state to a rigid state, and a force transfer mechanism constructed and arranged to apply a force to the probe. The force is selected from the group consisting of a force that causes probe to articulate in the at least one predetermined degree of motion and a force that causes the probe to transition from the flexible state to the rigid state. The base structure is attached to portion of the force transfer mechanism and the elongate probe; the base structure comprising one or more stabilizing elements constructed and arranged to resist undesired movement of the probe caused by force from the force transfer mechanism.Type: ApplicationFiled: October 18, 2017Publication date: June 14, 2018Inventors: Robert Anderson, Gabriel Johnston, Ian J. Darisse, Joseph A. Stand, Luis Bettencourt, Todd Frangolis, Arnold E. Oyola, J. Christopher Flaherty
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Publication number: 20180021095Abstract: In an introduction assembly for an articulated probe, a feeding mechanism has actuators for controlling the articulated probe. The introduction device is fixed in a positional relationship to the feeding mechanism. The introduction device includes a support member configured to support an articulated probe. A proximal end of the support member has an entrance configured to guide the articulated probe into contact with the support member. A distal end of the support member has an exit configured to guide the articulated probe from the support member into a region of interest.Type: ApplicationFiled: May 5, 2017Publication date: January 25, 2018Inventors: Ian J. Darisse, Arnold E. Oyola, Joseph A. Stand, Robert A. DiDomenico, Samuel F. Straface, J. Christopher Flaherty
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Patent number: 9821477Abstract: An apparatus for driving an articulating probe comprises an elongate probe constructed and arranged to articulate in at least one predetermined degree of motion and to transition from a flexible state to a rigid state, and a force transfer mechanism constructed and arranged to apply a force to the probe. The force is selected from the group consisting of a force that causes probe to articulate in the at least one predetermined degree of motion and a force that causes the probe to transition from the flexible state to the rigid state. The base structure is attached to portion of the force transfer mechanism and the elongate probe; the base structure comprising one or more stabilizing elements constructed and arranged to resist undesired movement of the probe caused by force from the force transfer mechanism.Type: GrantFiled: June 13, 2016Date of Patent: November 21, 2017Assignee: Medrobotics CorporationInventors: Robert Anderson, Gabriel Johnston, Ian J. Darisse, Joseph A. Stand, Luis Bettencourt, Todd Frangolis, Arnold E. Oyola, J. Christopher Flaherty
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Patent number: 9649163Abstract: In an introduction assembly for an articulated probe, a feeding mechanism has actuators for controlling the articulated probe. The introduction device is fixed in a positional relationship to the feeding mechanism. The introduction device includes a support member configured to support an articulated probe. A proximal end of the support member has an entrance configured to guide the articulated probe into contact with the support member. A distal end of the support member has an exit configured to guide the articulated probe from the support member into a region of interest.Type: GrantFiled: November 10, 2011Date of Patent: May 16, 2017Assignee: Medrobotics CorporationInventors: Ian J. Darisse, Arnold E. Oyola, Joseph A. Stand, Robert A. DiDomenico, Samuel F. Straface, J. Christopher Flaherty
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Publication number: 20170015007Abstract: An apparatus for driving an articulating probe comprises an elongate probe constructed and arranged to articulate in at least one predetermined degree of motion and to transition from a flexible state to a rigid state, and a force transfer mechanism constructed and arranged to apply a force to the probe. The force is selected from the group consisting of a force that causes probe to articulate in the at least one predetermined degree of motion and a force that causes the probe to transition from the flexible state to the rigid state. The base structure is attached to portion of the force transfer mechanism and the elongate probe; the base structure comprising one or more stabilizing elements constructed and arranged to resist undesired movement of the probe caused by force from the force transfer mechanism.Type: ApplicationFiled: June 13, 2016Publication date: January 19, 2017Applicant: Medrobotics CorporationInventors: Robert Anderson, Gabriel Johnston, Ian J. Darisse, Joseph A. Stand, Luis Bettencourt, Todd Frangolis, Arnold E. Oyola, J. Christopher Flaherty
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Patent number: 9381061Abstract: An electrosurgical device includes a first electrode tip connected to a first shaft and spaced from a second electrode tip connected to a second shaft. The first electrode tip serves as a first pole, and the second electrode tip serves as a second pole, of a bipolar electrode configuration. A first fluid outlet opening is defined by a distal end of the first shaft and a portion of the first electrode tip. A second fluid outlet opening is defined by a distal end of the second shaft and a portion of the second electrode tip. At least one recess can be formed in an exterior surface of each of the first and the second electrode tips, providing a fluid flow channel for fluid to flow distally along the respective electrode tip.Type: GrantFiled: November 23, 2011Date of Patent: July 5, 2016Assignee: MEDTRONIC ADVANCED ENERGY LLCInventors: Michael E. McClurken, Arnold E. Oyola, Jonathan E. Wilson, Christopher W. Maurer, Robert Luzzi, Roger D. Greeley
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Patent number: 9364955Abstract: An apparatus for driving an articulating probe comprises an elongate probe constructed and arranged to articulate in at least one predetermined degree of motion and to transition from a flexible state to a rigid state, and a force transfer mechanism constructed and arranged to apply a force to the probe. The force is selected from the group consisting of a force that causes probe to articulate in the at least one predetermined degree of motion and a force that causes the probe to transition from the flexible state to the rigid state. The base structure is attached to portion of the force transfer mechanism and the elongate probe; the base structure comprising one or more stabilizing elements constructed and arranged to resist undesired movement of the probe caused by force from the force transfer mechanism.Type: GrantFiled: December 20, 2012Date of Patent: June 14, 2016Assignee: Medrobotics CorporationInventors: Arnold E. Oyola, Robert Anderson, Gabriel Johnston, Ian J. Darisse, Joseph A. Stand, Luis Bettencourt, Todd Frangolis, J. Christopher Flaherty
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Publication number: 20150297284Abstract: Surgical devices, systems and methods for treating tissue are provided. Also provided are systems for treating tissue and methods of treating tissue. An exemplary surgical device comprises a handle (20a) having a proximal end and a distal end; a shaft extending distally beyond the distal end of the handle, the shaft having a proximal end and a distal end; an electrode tip (45), at least a portion of the electrode tip extending distally beyond the distal end of the shaft, the electrode tip extending distally beyond the distal end of the shaft comprising a spherical end surface portion (25) and a cylindrical side surface portion, the spherical end surface portion located distal to the cylindrical side surface portion and comprising at least a portion of the distal end surface of the surgical device; and a fluid passage directed to provide a fluid towards the cylindrical side portion of the electrode tip.Type: ApplicationFiled: June 4, 2015Publication date: October 22, 2015Inventors: Michael E. MCCLURKEN, David LIPSON, Arnold E. OYOLA, Jonathan E. WILSON, Christopher W. MAURER, Robert LUZZI, Roger D. GREELEY
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Publication number: 20150245864Abstract: Surgical devices, systems and methods for treating tissue are provided. Also provided are systems for treating tissue and methods of treating tissue. An exemplary surgical device comprises a handle (20a) having a proximal end and a distal end; a shaft extending distally beyond the distal end of the handle, the shaft having a proximal end and a distal end; an electrode tip (45), at least a portion of the electrode tip extending distally beyond the distal end of the shaft, the electrode tip extending distally beyond the distal end of the shaft comprising a spherical end surface portion (25) and a cylindrical side surface portion, the spherical end surface portion located distal to the cylindrical side surface portion and comprising at least a portion of the distal end surface of the surgical device; and a fluid passage directed to provide a fluid towards the cylindrical side portion of the electrode tip.Type: ApplicationFiled: November 10, 2014Publication date: September 3, 2015Inventors: Michael E. MCCLURKEN, David LIPSON, Arnold E. OYOLA, Jonathan E. WILSON, Christopher W. MAURER, Robert LUZZI, Roger D. GREELEY
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Publication number: 20140318299Abstract: An apparatus for driving an articulating probe comprises an elongate probe constructed and arranged to articulate in at least one predetermined degree of motion and to transition from a flexible state to a rigid state, and a force transfer mechanism constructed and arranged to apply a force to the probe. The force is selected from the group consisting of a force that causes probe to articulate in the at least one predetermined degree of motion and a force that causes the probe to transition from the flexible state to the rigid state. The base structure is attached to portion of the force transfer mechanism and the elongate probe; the base structure comprising one or more stabilizing elements constructed and arranged to resist undesired movement of the probe caused by force from the force transfer mechanism.Type: ApplicationFiled: December 20, 2012Publication date: October 30, 2014Inventors: Arnold E. Oyola, Robert Anderson, Gabriel Johnston, Ian J. Darisse, Joseph A. Stand, Luis Bettencourt, Todd Franglois
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Patent number: 8679111Abstract: A method of treating a patient is provided. The method comprises delivering an electrically conductive material within a vascular network, wherein the electrically conductive material embolizes in a region of the vascular network to form a vascular electrode array that assumes a geometry of the embolized region of the vascular network. The method may optionally comprise delivering a containment agent within the vascular network proximal to the delivered electrically conductive material to stabilize the vascular electrode array. The method further comprises applying electrical energy (e.g., radio frequency (RF) energy) to the vascular electrode array to therapeutically conduct electrical energy into a region of the targeted tissue adjacent the embolized region of the vascular network.Type: GrantFiled: August 30, 2013Date of Patent: March 25, 2014Assignee: Boston Scientific Scimed, Inc.Inventors: Arnold E. Oyola, Erin McKenna
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Publication number: 20140012288Abstract: In an introduction assembly for an articulated probe, a feeding mechanism has actuators for controlling the articulated probe. The introduction device is fixed in a positional relationship to the feeding mechanism. The introduction device includes a support member configured to support an articulated probe. A proximal end of the support member has an entrance configured to guide the articulated probe into contact with the support member. A distal end of the support member has an exit configured to guide the articulated probe from the support member into a region of interest.Type: ApplicationFiled: November 10, 2011Publication date: January 9, 2014Applicant: MEDROBOTICS CORPORATIONInventors: Ian J. Darisse, Arnold E. Oyola, Joseph A. Stand, Robert A. DiDomenico, Samuel F. Straface, J. Christopher Flaherty
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Publication number: 20140005659Abstract: A method of treating a patient is provided. The method comprises delivering an electrically conductive material within a vascular network, wherein the electrically conductive material embolizes in a region of the vascular network to form a vascular electrode array that assumes a geometry of the embolized region of the vascular network. The method may optionally comprise delivering a containment agent within the vascular network proximal to the delivered electrically conductive material to stabilize the vascular electrode array. The method further comprises applying electrical energy (e.g., radio frequency (RF) energy) to the vascular electrode array to therapeutically conduct electrical energy into a region of the targeted tissue adjacent the embolized region of the vascular network.Type: ApplicationFiled: August 30, 2013Publication date: January 2, 2014Inventors: Arnold E. Oyola, Erin McKenna
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Patent number: 8562642Abstract: A resection device includes an elongated probe shaft and a tissue resection member disposed at a distal end of the elongated probe shaft. The tissue resection member has a cutting surface configured for being placed in contact with tissue. In one aspect of the invention, at least one ejection port is located adjacent to the cutting surface of the tissue resection member, wherein the at least one ejection port is coupled to a source of a polymerizable hemostasis-promoting material that is delivered to the resection site of interest. In certain embodiments, polymerization of the hemostasis-promoting material may be accelerated by application of heat, radiofrequency energy, or ultra violet light.Type: GrantFiled: March 23, 2011Date of Patent: October 22, 2013Assignee: Boston Scientific Scimed, Inc.Inventors: Arnold E. Oyola, Marcia Buiser, Paul DiCarlo
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Patent number: 8523857Abstract: A method of treating a patient is provided. The method comprises delivering an electrically conductive material within a vascular network, wherein the electrically conductive material embolizes in a region of the vascular network to form a vascular electrode array that assumes a geometry of the embolized region of the vascular network. The method may optionally comprise delivering a containment agent within the vascular network proximal to the delivered electrically conductive material to stabilize the vascular electrode array. The method further comprises applying electrical energy (e.g., radio frequency (RF) energy) to the vascular electrode array to therapeutically conduct electrical energy into a region of the targeted tissue adjacent the embolized region of the vascular network.Type: GrantFiled: February 13, 2013Date of Patent: September 3, 2013Assignee: Boston Scientific Scimed, Inc.Inventors: Arnold E. Oyola, Erin McKenna
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Patent number: 8377056Abstract: A method of treating a patient is provided. The method comprises delivering an electrically conductive material within a vascular network, wherein the electrically conductive material embolizes in a region of the vascular network to form a vascular electrode array that assumes a geometry of the embolized region of the vascular network. The method may optionally comprise delivering a containment agent within the vascular network proximal to the delivered electrically conductive material to stabilize the vascular electrode array. The method further comprises applying electrical energy (e.g., radio frequency (RF) energy) to the vascular electrode array to therapeutically conduct electrical energy into a region of the targeted tissue adjacent the embolized region of the vascular network.Type: GrantFiled: November 29, 2006Date of Patent: February 19, 2013Assignee: Boston Scientific Scimed, Inc.Inventors: Arnold E. Oyola, Erin McKenna
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Publication number: 20120101496Abstract: An electrosurgical device includes a first electrode tip connected to a first shaft and spaced from a second electrode tip connected to a second shaft. The first electrode tip serves as a first pole, and the second electrode tip serves as a second pole, of a bipolar electrode configuration. A first fluid outlet opening is defined by a distal end of the first shaft and a portion of the first electrode tip. A second fluid outlet opening is defined by a distal end of the second shaft and a portion of the second electrode tip. At least one recess can be formed in an exterior surface of each of the first and the second electrode tips, providing a fluid flow channel for fluid to flow distally along the respective electrode tip.Type: ApplicationFiled: November 23, 2011Publication date: April 26, 2012Applicant: SALIENT SURGICAL TECHNOLOGIES, INC.Inventors: Michael E. MCCLURKEN, Arnold E. OYOLA, Jonathan E. WILSON, Christopher W. MAURER, Robert LUZZI, Roger D. GREELEY
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Patent number: 8083736Abstract: An electrosurgical device is provided which comprises a distal portion having a bipolar electrode configuration and at least one fluid outlet opening. The device further includes a first electrode tip spaced from a second electrode tip with the first electrode tip to serve as a first pole of the bipolar electrode configuration and the second electrode tip to serve as a second pole of the bipolar electrode configuration. The first and second electrode tips are configured to slide over a tissue surface in the presence of a fluid provided from the fluid outlet opening and an electrical current provided from the electrode tips.Type: GrantFiled: September 5, 2002Date of Patent: December 27, 2011Assignee: Salient Surgical Technologies, Inc.Inventors: Michael E. McClurken, Arnold E. Oyola, Jonathan E. Wilson, Christopher W. Maurer, Robert Luzzi, Roger D. Greeley