COLLISION AVOIDANCE DURING CONTROLLED MOVEMENT OF IMAGE CAPTURING DEVICE AND MANIPULATABLE DEVICE MOVABLE ARMS
    2.
    发明申请
    COLLISION AVOIDANCE DURING CONTROLLED MOVEMENT OF IMAGE CAPTURING DEVICE AND MANIPULATABLE DEVICE MOVABLE ARMS 有权
    图像捕获装置和可手动装置可移动臂的控制运动期间的碰撞避免

    公开(公告)号:US20140163736A1

    公开(公告)日:2014-06-12

    申请号:US14101769

    申请日:2013-12-10

    Abstract: A system and method for movement control includes a controller coupled to a computer-assisted surgical device having a first movable arm coupled to a manipulatable device having a working end and a second movable arm coupled to an image capturing device. The controller is configured to receive first configurations for the first movable arm; receive second configurations for the second movable arm; receive a plurality of images of the working end from the image capturing device; determine a position and an orientation of the working end; determine a first movable arm position and trajectory for the first movable arm; determine a second movable arm position and trajectory for the second movable arm; determine whether motion of the movable arms will result in an undesirable relationship between the movable arms; and send a movement command to the first or second movable arm to avoid the undesirable relationship.

    Abstract translation: 用于移动控制的系统和方法包括耦合到计算机辅助外科手术装置的控制器,其具有联接到具有工作端的可操纵装置的第一可动臂和连接到图像捕获装置的第二可移动臂。 控制器被配置为接收第一可移动臂的第一配置; 接收第二可动臂的第二构造; 从图像捕获装置接收工作端的多个图像; 确定工作端的位置和方向; 确定第一可移动臂的第一可动臂位置和轨迹; 确定第二可动臂的第二可动臂位置和轨迹; 确定可动臂的运动是否会导致可移动臂之间的不期望的关系; 并向第一或第二可移动臂发送运动命令以避免不期望的关系。

    SYSTEM AND METHOD FOR SPECULAR REFLECTION DETECTION AND REDUCTION

    公开(公告)号:US20240298900A1

    公开(公告)日:2024-09-12

    申请号:US18435905

    申请日:2024-02-07

    Abstract: A system and method of specular reflection detection and reduction includes a processing unit including one or more processors and an imaging unit coupled to the processing unit. The imaging unit includes one or more first illuminators for providing illumination of a region of interest, one or more first detectors for detecting reflections of the illumination, one or more second illuminators for triggering fluorescing of one or more fluorescent materials in the region of interest, and one or more second detectors for detecting the fluorescing of the fluorescent materials. The processing unit is configured to receive a first image from the first detectors, determine one or more regions of high specular reflection in the first image, mask out the regions of high specular reflection in the first image, and generate a composite image based on the masked first image and the detected fluorescence. The first image includes the detected reflections.

    Method and apparatus to provide updated patient images during robotic surgery

    公开(公告)号:US10376335B2

    公开(公告)日:2019-08-13

    申请号:US15575603

    申请日:2015-09-10

    Abstract: In a method and an apparatus to provide updated images during a robotically-implemented surgical procedure, 3D data is obtained of a volume of a patient, which includes anatomy involved in the procedure. The anatomy is segmented from a reconstructed image of the volume. During the procedure, the surgeon applies forces on the anatomy, causing a geometric change of the anatomy. Force sensors in the surgical robot detect these forces, which are supplied to a processor that controls display of the segmented anatomy at a display screen. From the applied forces and the physical properties of the anatomy, the processor calculates the geometric change of the anatomy that has occurred and modifies the appearance and/or position of the displayed segmented anatomy on the display screen in real time during the procedure, so as to visualize the geometric change.

    COMPACT NEEDLE MANIPULATOR FOR TARGETED INTERVENTIONS
    7.
    发明申请
    COMPACT NEEDLE MANIPULATOR FOR TARGETED INTERVENTIONS 有权
    针对干预措施的紧急针头操纵器

    公开(公告)号:US20130209208A1

    公开(公告)日:2013-08-15

    申请号:US13767856

    申请日:2013-02-14

    Abstract: Embodiments of an instrument manipulator are disclosed. An instrument manipulator can include a track; a translational carriage coupled to ride along the track; a shoulder yaw joint coupled to the translational carriage; a shoulder pitch joint coupled to the shoulder yaw joint, the shoulder pith joint including an arm, a wrist mount coupled to the arm, struts coupled between the wrist mount and the shoulder yaw joint, and a shoulder pitch mechanism coupled to the arm; a yaw-pitch-roll wrist coupled to the wrist mount, the yaw-pitch-roll wrist including a yaw joint and a differentially driven pitch-roll joint; and an instrument mount coupled to the wrist. The various joints and carriages can be driven by motors.

    Abstract translation: 公开了一种仪器操纵器的实施例。 仪器操纵器可以包括轨道; 一个平行的马车,沿着轨道骑行; 耦合到平移滑架的肩偏转接头; 肩肩关节,其联接到所述肩偏转关节,所述肩部髓关节包括臂,联接到所述臂的腕架,连接在所述腕架和所述肩偏转接头之间的支柱,以及联接到所述臂的肩部俯仰机构; 偏转俯仰滚动手腕,其连接到所述腕架上,所述偏航俯仰辊手腕包括偏转接头和差速驱动的俯仰辊接头; 以及耦合到手腕的仪器座。 各种接头和托架可由电机驱动。

    System and method of registration between devices with movable arms

    公开(公告)号:US11007023B2

    公开(公告)日:2021-05-18

    申请号:US16053049

    申请日:2018-08-02

    Abstract: A system and method of registration between devices includes a tracking system and a controller. The system is configured to couple to a first device and a second arm separate from the first device. The first device has a first arm configured to couple to a manipulatable device. The second arm is configured to couple to an imaging device. The controller is configured to determine, based on tracking data from the tracking system, a first pose of the first arm and a second pose of the second arm; send a movement command to the second arm that directs the second arm to move into a third pose while maintaining a safety margin between the first and second arms. In the third pose the imaging device can capture an image of at least a portion of the manipulatable device. The movement command is based on the first and second poses.

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