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公开(公告)号:US11571225B2
公开(公告)日:2023-02-07
申请号:US17486704
申请日:2021-09-27
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Abstract: A system determining a location for a surgical procedure, the system including a jig having a frame, a first marker fixed to the frame, wherein the first marker includes a scanable label, and a second marker moveably connected to the frame, such that the second marker can move positions independent of the frame, and wherein the second marker includes a scanable label. The system also includes a mixed reality headset configured to scan the scanable label of the first marker and the scanable label of the second marker, to provide location data to the mixed reality headset.
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公开(公告)号:US20220331008A1
公开(公告)日:2022-10-20
申请号:US17686357
申请日:2022-03-03
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Abstract: A system for determining a location for a surgical procedure, having a 3D spatial mapping camera, the 3D spatial mapping camera configured to map a bone. The system also includes a marker attached to a distal end section of the bone, such that the 3D spatial mapping camera is configured to capture a plurality of images of the marker as the bone is rotated in a non-linear path. The images also include data identifying a location of the marker. The system also includes a computer system that receives the data from the images captured by the 3D spatial mapping camera and determines a location of a mechanical axis of the bone, and a mixed reality display, where the computer system is configured to send the location of the mechanical axis to the mixed reality display and the mixed reality display is configured to provide a virtual display of the mechanical axis of the bone.
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公开(公告)号:US20220183705A1
公开(公告)日:2022-06-16
申请号:US17685345
申请日:2022-03-02
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Abstract: A system determining a location for a surgical procedure, the system including a jig having a frame, a first marker fixed to the frame, wherein the first marker includes a scanable label, and a second marker moveably connected to the frame, such that the second marker can move positions independent of the frame, and wherein the second marker includes a scanable label. The system also includes a mixed reality headset configured to scan the scanable label of the first marker and the scanable label of the second marker, to provide location data to the mixed reality headset.
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公开(公告)号:US12236536B2
公开(公告)日:2025-02-25
申请号:US17486677
申请日:2021-09-27
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
IPC: G06T19/00 , A61B34/10 , A61B34/20 , A61B90/00 , A61B90/50 , A61B90/92 , G06F3/03 , G06T7/73 , G06T19/20
Abstract: A system and method for determining a location for a surgical jig in a surgical procedure includes providing a mixed reality headset, a 3D spatial mapping camera, and a computer system configured to transfer data to and from the mixed reality headset and the 3D spatial mapping camera. The system and method also include attaching a jig to a bone, mapping the bone and jig using the 3D spatial mapping camera, and then identifying a location for the surgical procedure using the computer system. Then the system and method use the mixed reality headset to provide a visualization of the location for the surgical procedure.
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公开(公告)号:US11806081B2
公开(公告)日:2023-11-07
申请号:US17898401
申请日:2022-08-29
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
CPC classification number: A61B34/10 , A61B34/20 , A61B90/361 , A61B90/50 , A61B90/96 , A61B90/94 , A61B2034/105 , A61B2034/107 , A61B2034/2055 , A61B2034/2065 , A61B2090/363 , A61B2090/365 , A61B2090/502
Abstract: A system for determining a location for a surgical procedure, having a 3D spatial mapping camera, the 3D spatial mapping camera configured to map a bone. The system also includes a marker attached to a distal end section of the bone, such that the 3D spatial mapping camera is configured to capture a plurality of images of the marker as the bone is rotated in a non-linear path. The images also include data identifying a location of the marker. The system also includes a computer system that receives the data from the images captured by the 3D spatial mapping camera and determines a location of a mechanical axis of the bone, and a mixed reality display, where the computer system is configured to send the location of the mechanical axis to the mixed reality display and the mixed reality display is configured to provide a virtual display of the mechanical axis of the bone.
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公开(公告)号:US11610378B1
公开(公告)日:2023-03-21
申请号:US17730069
申请日:2022-04-26
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Abstract: A system and method for determining a location for a surgical jig in a surgical procedure includes providing a mixed reality headset, a 3D spatial mapping camera, an infrared or stereotactic camera, and a computer system configured to transfer data to and from the mixed reality headset and the 3D spatial mapping camera. The system and method also include attaching a jig to a bone, mapping the bone and jig using the 3D spatial mapping camera, and then identifying a location for the surgical procedure using the computer system. Then the system and method use the mixed reality headset to provide a visualization of the location for the surgical procedure.
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公开(公告)号:US11600053B1
公开(公告)日:2023-03-07
申请号:US17722265
申请日:2022-04-15
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
IPC: G06T19/00 , H04N13/111 , A61B90/00
Abstract: A system and method for determining a location for a surgical jig in a surgical procedure includes providing a mixed reality headset, a 3D spatial mapping camera, an infrared or stereotactic camera, and a computer system configured to transfer data to and from the mixed reality headset and the 3D spatial mapping camera. The system and method also include attaching a jig to a bone, mapping the bone and jig using the 3D spatial mapping camera, and then identifying a location for the surgical procedure using the computer system. Then the system and method use the mixed reality headset to provide a visualization of the location for the surgical procedure.
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公开(公告)号:US11871997B2
公开(公告)日:2024-01-16
申请号:US17686735
申请日:2022-03-04
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
CPC classification number: A61B34/10 , A61B34/20 , A61B90/361 , A61B90/50 , A61B90/96 , A61B90/94 , A61B2034/105 , A61B2034/107 , A61B2034/2055 , A61B2034/2065 , A61B2090/363 , A61B2090/365 , A61B2090/502
Abstract: A system for determining a location for a surgical procedure, having a 3D spatial mapping camera, the 3D spatial mapping camera configured to map a bone. The system also includes a marker attached to a distal end section of the bone, such that the 3D spatial mapping camera is configured to capture a plurality of images of the marker as the bone is rotated in a non-linear path. The images also include data identifying a location of the marker. The system also includes a computer system that receives the data from the images captured by the 3D spatial mapping camera and determines a location of a mechanical axis of the bone, and a mixed reality display, where the computer system is configured to send the location of the mechanical axis to the mixed reality display and the mixed reality display is configured to provide a virtual display of the mechanical axis of the bone.
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公开(公告)号:US20220409284A1
公开(公告)日:2022-12-29
申请号:US17898401
申请日:2022-08-29
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Abstract: A system for determining a location for a surgical procedure, having a 3D spatial mapping camera, the 3D spatial mapping camera configured to map a bone. The system also includes a marker attached to a distal end section of the bone, such that the 3D spatial mapping camera is configured to capture a plurality of images of the marker as the bone is rotated in a non-linear path. The images also include data identifying a location of the marker. The system also includes a computer system that receives the data from the images captured by the 3D spatial mapping camera and determines a location of a mechanical axis of the bone, and a mixed reality display, where the computer system is configured to send the location of the mechanical axis to the mixed reality display and the mixed reality display is configured to provide a virtual display of the mechanical axis of the bone.
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公开(公告)号:US20220331009A1
公开(公告)日:2022-10-20
申请号:US17686735
申请日:2022-03-04
Applicant: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Inventor: Russell Todd Nevins , David Jon Backstein , Bradley H. Nathan
Abstract: A system for determining a location for a surgical procedure, having a 3D spatial mapping camera, the 3D spatial mapping camera configured to map a bone. The system also includes a marker attached to a distal end section of the bone, such that the 3D spatial mapping camera is configured to capture a plurality of images of the marker as the bone is rotated in a non-linear path. The images also include data identifying a location of the marker. The system also includes a computer system that receives the data from the images captured by the 3D spatial mapping camera and determines a location of a mechanical axis of the bone, and a mixed reality display, where the computer system is configured to send the location of the mechanical axis to the mixed reality display and the mixed reality display is configured to provide a virtual display of the mechanical axis of the bone.
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