A61B90/53

Technician's cord positioner
11259606 · 2022-03-01 ·

Positioning a cord of a corded instrument is accomplished by securing a wearable cord positioner around a wrist or arm of a technician, and then pressing a cord into the cord positioner. A body of the cord positioner holds the cord in a substantially fixed position relative to a band. The body may be fixed relative to the band, or the body may be adjustable such that the cord can enter and exit the body at different angles relative to the band. The body may be removeably fastened to the band for easy cleaning or to change the body with a body designed to hold and position a different sized of cord.

Technician's cord positioner
11259606 · 2022-03-01 ·

Positioning a cord of a corded instrument is accomplished by securing a wearable cord positioner around a wrist or arm of a technician, and then pressing a cord into the cord positioner. A body of the cord positioner holds the cord in a substantially fixed position relative to a band. The body may be fixed relative to the band, or the body may be adjustable such that the cord can enter and exit the body at different angles relative to the band. The body may be removeably fastened to the band for easy cleaning or to change the body with a body designed to hold and position a different sized of cord.

OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
20220353487 · 2022-11-03 ·

A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.

OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
20220353487 · 2022-11-03 ·

A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.

OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
20220038675 · 2022-02-03 ·

A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.

OPEN VIEW, MULTI-MODAL, CALIBRATED DIGITAL LOUPE WITH DEPTH SENSING
20220038675 · 2022-02-03 ·

A digital loupe system is provided which can include a number of features. In one embodiment, the digital loupe system can include a stereo camera pair and a distance sensor. The system can further include a processor configured to perform a transformation to image signals from the stereo camera pair based on a distance measurement from the distance sensor and from camera calibration information. In some examples, the system can use the depth information and the calibration information to correct for parallax between the cameras to provide a multi-channel image. Ergonomic head mounting systems are also provided. In some implementations, the head mounting systems can be configurable to support the weight of a digital loupe system, including placing one or two oculars in a line of sight with an eye of a user, while improving overall ergonomics, including peripheral vision, comfort, stability, and adjustability. Methods of use are also provided.

Device and Method to Control and Manipulate a Catheter
20170215798 · 2017-08-03 · ·

In various embodiments of the invention, a manipulator attaches to and allows a sheath to be positioned inside the cervix and a catheter to thereby be inserted through the sheath and be positioned in a desired location in the uterus. In various embodiments of the invention, the manipulator may be attached or permanently connected to the sheath. In various embodiments of the invention, the sheath is fenestrated to allow the catheter to be detached from the sheath. In various embodiments of the invention, the manipulator allows the sheath to be positioned through the cervix canal to allow for catheter transmitted intrauterine pressure monitoring or balloon catheter assisted ripening of the cervix.

Device and Method to Control and Manipulate a Catheter
20170215798 · 2017-08-03 · ·

In various embodiments of the invention, a manipulator attaches to and allows a sheath to be positioned inside the cervix and a catheter to thereby be inserted through the sheath and be positioned in a desired location in the uterus. In various embodiments of the invention, the manipulator may be attached or permanently connected to the sheath. In various embodiments of the invention, the sheath is fenestrated to allow the catheter to be detached from the sheath. In various embodiments of the invention, the manipulator allows the sheath to be positioned through the cervix canal to allow for catheter transmitted intrauterine pressure monitoring or balloon catheter assisted ripening of the cervix.

Microscope system and method for controlling a surgical microscope
20210369391 · 2021-12-02 ·

A microscope system comprises a surgical microscope, an operating device configured to be operated by a user, and a processor configured to receive a command signal from the operating device in response to the user operation and to control the surgical microscope based on the command signal, wherein the operating device comprises a sensor unit configured to detect the user operation and to generate the command signal based on the detected user operation, wherein the sensor unit is further configured to be worn by the user.

Tissue Splayer

A tissue splayer (76) is described which includes an index finger portion (4) and a middle finger portion (5). The tissue splayer also includes a first pivot joint (80) coupling the index finger portion (4) to the middle finger portion (5) to permit the middle finger portion (5) to rotate relative to the index finger portion (4) about a first pivot axis (81). The tissue splayer (76) also includes a first splay mechanism (88) configured to permit rotation of the middle finger portion (5) away from the index finger portion (4) about the first pivot axis, and to resist rotation of the middle finger portion (5) towards the index finger portion (4) about the first pivot axis (81).