Patents by Inventor Scott Illsley
Scott Illsley 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).
-
Patent number: 11426245Abstract: A surgical system includes a surgical tool, a tracking system configured to obtain tracking data indicative of positions of the surgical tool relative to an anatomical feature, an acoustic device, and a computer system programmed to control the acoustic device to provide acoustic feedback to a user based on the tracking data.Type: GrantFiled: November 9, 2020Date of Patent: August 30, 2022Assignee: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Publication number: 20210186632Abstract: A surgical system includes a surgical tool, a tracking system configured to obtain tracking data indicative of positions of the surgical tool relative to an anatomical feature, an indicator light configured to emit light, and a computer system programmed to control the indicator light to change a color of the light based on the tracking data.Type: ApplicationFiled: March 3, 2021Publication date: June 24, 2021Applicant: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Publication number: 20210128258Abstract: A method of generating resection data for use in planning an arthroplasty procedure on a patient bone covered at least partially in cartilage includes receiving a three-dimensional patient bone model comprising a bone model surface, and correlated with a position and orientation of the patient bone via a navigation system. The method further includes identifying a target region on the bone model surface of the model for intra-operative registration, and receiving location data for a first plurality of points based on the intra-operative registration of the cartilage on the patient bone in locations corresponding to points within the target region on the bone model surface. The method further includes determining resection depth based at least in part on the location data for the first plurality of points; and generating resection data using the resection depth, the resection data configured to be utilized by the navigation system during the arthroplasty procedure.Type: ApplicationFiled: January 14, 2021Publication date: May 6, 2021Applicant: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Publication number: 20210093400Abstract: A method includes generating an anatomical model corresponding to an anatomical feature of a patient, proposing a component for coupling to the anatomical feature of the patient, positioning a virtual model corresponding to the component in a proposed location relative to the anatomical model, generating a planned resection geometry based on a virtual relationship between the virtual model and the anatomical model, tracking movement of a surgical instrument relative to the anatomical feature, and simultaneously displaying the planned resection geometry, the anatomical model, and a graphic corresponding to the surgical instrument on a display based in part on the tracked movement of the surgical instrument relative to the anatomical feature.Type: ApplicationFiled: November 25, 2020Publication date: April 1, 2021Applicant: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Publication number: 20210077205Abstract: A surgical system includes a robotic device configured to facilitate performance of a procedure and a computer system communicable with the robotic device. The computer system is programmed to associate a virtual object with an anatomical feature, adjust the virtual object associated with the anatomical feature in response to movement of the anatomical feature during the procedure by monitoring detected movement of the anatomical feature and adjusting the virtual object in response to the detected movement, and control the robotic device based on a relationship between at least one point associated with the robotic device and the virtual object during the procedure.Type: ApplicationFiled: November 18, 2020Publication date: March 18, 2021Applicant: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Publication number: 20210068905Abstract: A surgical system includes a surgical tool, a tracking system configured to obtain tracking data indicative of positions of the surgical tool relative to an anatomical feature, an acoustic device, and a computer system programmed to control the acoustic device to provide acoustic feedback to a user based on the tracking data.Type: ApplicationFiled: November 9, 2020Publication date: March 11, 2021Applicant: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Publication number: 20190159848Abstract: A surgical system includes a surgical device, a surgical tool coupled to the surgical device, a user interface, and a control system. The control system is configured to identify a target point or target region of an anatomy of a patient, generate a virtual object based on the target point or target region, the virtual object comprising a funnel-shaped boundary having a central axis substantially aligned with the target point or target region, and control the surgical device to constrain the surgical tool from penetrating the funnel-shaped boundary.Type: ApplicationFiled: January 31, 2019Publication date: May 30, 2019Applicant: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Patent number: 10231790Abstract: A method for joint replacement is provided. A representation of a first bone is created, and a representation of a second bone is created. Bone preparation for implanting a first implant on the first bone is planned. The first bone to receive the first implant is prepared by manipulating a surgical tool to sculpt the first bone. Bone preparation for implanting a second implant on the second bone after preparing the first bone is planned. The second bone to receive the second implant is prepared by manipulating the surgical tool to sculpt the second bone.Type: GrantFiled: June 23, 2008Date of Patent: March 19, 2019Assignee: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Maurice Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis Arata, Dana Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randal Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Publication number: 20180021097Abstract: A method for controlling a surgical tool includes associating a joint of a patient with a representation of the joint, collecting data indicating at least one of a position and an orientation of a first bone and a second bone of the joint as the joint is moved through a range of motion, and creating a surgical plan based at least in part on the data collected. The method further includes establishing a virtual cutting boundary on the representation of the joint based on the surgical plan, superimposing a representation of the surgical tool on the representation of the joint, wherein the surgical tool is to be operated by a user to execute the surgical plan during a surgical procedure, and controlling the surgical tool to prevent the surgical tool from cutting a portion of the joint outside a boundary that corresponds to the virtual cutting boundary.Type: ApplicationFiled: October 2, 2017Publication date: January 25, 2018Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Patent number: 9775681Abstract: A surgical apparatus includes a surgical device, configured to be manipulated by a user to perform a procedure on a patient, and a computer system. The computer system is programmed to implement control parameters for controlling the surgical device to provide at least one of haptic guidance to the user and a limit on user manipulation of the surgical device, based on a relationship between an anatomy of the patient and at least one of a position, an orientation, a velocity, and an acceleration of a portion of the surgical device, and to adjust the control parameters in response to movement of the anatomy during the procedure.Type: GrantFiled: August 1, 2011Date of Patent: October 3, 2017Assignee: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Patent number: 9002426Abstract: A surgical apparatus includes a surgical device, configured to be manipulated by a user to perform a procedure on a patient, and a computer system. The computer system is programmed to create a representation of an anatomy of a patient; to associate the anatomy and a surgical device with the representation of the anatomy; to manipulate the surgical device to perform a procedure on a patient by moving a portion of the surgical device in a region of the anatomy; to control the surgical device to provide at least one of haptic guidance and a limit on manipulation of the surgical device, based on a relationship between the representation of the anatomy and at least one of a position, an orientation, a velocity, and an acceleration of a portion of the surgical device; and to adjust the representation of the anatomy in response to movement of the anatomy during the procedure.Type: GrantFiled: June 23, 2008Date of Patent: April 7, 2015Assignee: MAKO Surgical Corp.Inventors: Arthur E. Quaid, Hyosig Kang, Dennis Moses, Rony A. Abovitz, Maurice Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis K. Arata, Dana C. Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Patent number: 8911499Abstract: A surgical planning method is provided. A representation of a bone of a joint is created. The joint is moved to a first position. A first point corresponding to a first location in the joint is identified when the joint is in the first position. The joint is moved to a second position. A second point corresponding to a second location in the joint is identified, when the joint is in the second position. Bone preparation for implanting an implant on the bone is planned based at least in part on the first and second points.Type: GrantFiled: June 23, 2008Date of Patent: December 16, 2014Assignee: MAKO Surgical Corp.Inventors: Arthur E. Quaid, Hyosig Kang, Dennis Moses, Rony A. Abovitz, Maurice Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis K. Arata, Dana C. Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Publication number: 20120109150Abstract: A surgical apparatus includes a surgical device, configured to be manipulated by a user to perform a procedure on a patient, and a computer system. The computer system is programmed to implement control parameters for controlling the surgical device to provide at least one of haptic guidance to the user and a limit on user manipulation of the surgical device, based on a relationship between an anatomy of the patient and at least one of a position, an orientation, a velocity, and an acceleration of a portion of the surgical device, and to adjust the control parameters in response to movement of the anatomy during the procedure.Type: ApplicationFiled: August 1, 2011Publication date: May 3, 2012Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Maurice R. Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis Arata, Dana Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Patent number: 8010180Abstract: A surgical apparatus includes a surgical device, configured to be manipulated by a user to perform a procedure on a patient, and a computer system. The computer system is programmed to implement control parameters for controlling the surgical device to provide at least one of haptic guidance to the user and a limit on user manipulation of the surgical device, based on a relationship between an anatomy of the patient and at least one of a position, an orientation, a velocity, and an acceleration of a portion of the surgical device, and to adjust the control parameters in response to movement of the anatomy during the procedure.Type: GrantFiled: February 21, 2006Date of Patent: August 30, 2011Assignee: MAKO Surgical Corp.Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Scott Illsley
-
Publication number: 20090012532Abstract: A surgical planning method is provided. A height of a cartilage surface above a bone is detected. A representation of the bone and a representation of the height of the cartilage surface is created. Bone preparation for implanting an implant on the bone is planned based at least in part on the detected height of the cartilage surface.Type: ApplicationFiled: June 23, 2008Publication date: January 8, 2009Inventors: Arthur QUAID, Hyosig Kang, Dennis Moses, Rony Abovitz, Maurice R. Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis Arata, Dana Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Publication number: 20090012531Abstract: A surgical apparatus includes a surgical device, configured to be manipulated by a user to perform a procedure on a patient, and a computer system. The computer system is programmed to create a representation of an anatomy of a patient; to associate the anatomy and a surgical device with the representation of the anatomy; to manipulate the surgical device to perform a procedure on a patient by moving a portion of the surgical device in a region of the anatomy; to control the surgical device to provide at least one of haptic guidance and a limit on manipulation of the surgical device, based on a relationship between the representation of the anatomy and at least one of a position, an orientation, a velocity, and an acceleration of a portion of the surgical device; and to adjust the representation of the anatomy in response to movement of the anatomy during the procedure.Type: ApplicationFiled: June 23, 2008Publication date: January 8, 2009Inventors: Arthur QUAID, Hyosig Kang, Dennis Moses, Rony Abovitz, Maurice R. Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis Arata, Dana Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Publication number: 20090000626Abstract: A method for joint replacement is provided. A representation of a first bone is created, and a representation of a second bone is created. Bone preparation for implanting a first implant on the first bone is planned. The first bone to receive the first implant is prepared by manipulating a surgical tool to sculpt the first bone. Bone preparation for implanting a second implant on the second bone after preparing the first bone is planned. The second bone to receive the second implant is prepared by manipulating the surgical tool to sculpt the second bone.Type: ApplicationFiled: June 23, 2008Publication date: January 1, 2009Inventors: Arthur QUAID, Hyosig Kang, Dennis Moses, Rony Abovitz, Maurice R. Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis Arata, Dana Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Publication number: 20090000627Abstract: A surgical planning method is provided. A representation of a bone of a joint is created. The joint is moved to a first position. A first point corresponding to a first location in the joint is identified when the joint is in the first position. The joint is moved to a second position. A second point corresponding to a second location in the joint is identified, when the joint is in the second position. Bone preparation for implanting an implant on the bone is planned based at least in part on the first and second points.Type: ApplicationFiled: June 23, 2008Publication date: January 1, 2009Inventors: Arthur QUAID, Hyosig Kang, Dennis Moses, Rony Abovitz, Maurice R. Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis Arata, Dana Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia
-
Publication number: 20070038223Abstract: A computer-assisted knee replacement apparatus and method comprises a knee replacement application for assisting, guiding, and planning a unicondylar knee replacement procedure. The apparatus and method cooperates with a tracking system to determine implant sizing and location. The apparatus and method also cooperates with the tracking system to determine required tibial and femoral preparation corresponding to the implant size and location and provides real-time monitoring of the tibial and femoral surface preparation procedures.Type: ApplicationFiled: March 27, 2006Publication date: February 15, 2007Inventors: Joel Marquart, Marwan Sati, Scott Illsley, Louis Arata, Randall Hand, Arthur Quaid, Rony Abovitz, Haniel Croitoru, James McKale
-
Publication number: 20060142657Abstract: A surgical apparatus includes a surgical device, configured to be manipulated by a user to perform a procedure on a patient, and a computer system. The computer system is programmed to implement control parameters for controlling the surgical device to provide at least one of haptic guidance to the user and a limit on user manipulation of the surgical device, based on a relationship between an anatomy of the patient and at least one of a position, an orientation, a velocity, and an acceleration of a portion of the surgical device, and to adjust the control parameters in response to movement of the anatomy during the procedure.Type: ApplicationFiled: February 21, 2006Publication date: June 29, 2006Inventors: Arthur Quaid, Hyosig Kang, Dennis Moses, Rony Abovitz, Maurice Ferre, Binyamin Hajaj, Martin Roche, Scott Illsley, Louis Arata, Dana Mears, Timothy Blackwell, Alon Mozes, Sherif Aly, Amardeep Singh Dugal, Randall Hand, Sandi Glauser, Juan Salcedo, Peter Ebbitt, William Tapia