Patent classifications
A61B2090/508
Control system for capsule endoscope
A control system for a capsule endoscope is provided. The control system includes a balance arm device, a mechanical arm, a permanent magnet and a 2-DOF rotary platform. The bottom of the balance arm device is fixed, and the active end of the balance arm device connects with a boom. The bottom of the mechanical arm is fixed, and the active end of the mechanical arm connects with a spherical hinge. The 2-DOF rotary platform is fixed below the boom and the permanent magnet is located in the 2-DOF rotary platform. The spherical hinge connects to the boom, assisting the permanent magnet to move around a fan-shaped area around a subject.
FIXATION SUPPORT DEVICE FOR BRACHYTHERAPY WITH OR WITHOUT IMAGE GUIDANCE
A fixation support device may be used for breast brachytherapy treatment methods with or without image guidance. The fixation device may also be used for other treatments in which it is desirable to be able to fixate a treatment modality relative to a patient.
ENDOSCOPY SYSTEM
An endoscope system is provided, which comprises an endoscope having a hollow tube formed therein, a flexible elongate member having a first end for operational control and a second distal end for operation of robotic members, one or more actuators coupleable to the flexible elongate member at the first end thereof, and an anti-buckling tube arranged with respect to the hollow tube at the first end of the endoscope to prevent buckling of the flexible elongate member during translation of the one or more actuators. Different embodiments are also disclosed, including an endoscope comprising one or more flexible tendons having a wire coil sheath which includes wire having a substantially rectangular cross section, or an endoscope comprising a rotational-motion transmitting device, one or more flexible tendons and one or more electrical wires having anti-kink support thereon, a coupling means constraining the robotic member to an asymmetric range of motion, or torque joint means comprising a centrally aligned pulley for coupling the robotic member.
ROTATIONAL JOINT ASSEMBLY FOR ROBOTIC MEDICAL SYSTEM
An example rotational joint assembly for a robotic medical system, the rotational joint assembly comprising at least one arm segment and a rotational joint provided at one end of the arm segment. The rotational joint is to allow the arm segment to rotate about a rotational axis. The rotational joint comprising a brake to lock rotation of the arm segment at the rotational joint and an actuator to selectively engage or disengage the brake. The actuator comprising a cam having two stable regions separated by two transition regions, the two stable regions comprising a first stable region corresponding to engagement of the brake and a second stable region corresponding to disengagement of the brake.
Method of operating an articulating ultrasonic surgical instrument
- Barry C. Worrell ,
- Benjamin J. Danziger ,
- Benjamin D. Dickerson ,
- Brian D. Black ,
- Cara L. Shapiro ,
- Charles J. Scheib ,
- Craig N. Faller ,
- Daniel J. Mumaw ,
- David J. Cagle ,
- David T. Martin ,
- David A. Monroe ,
- Disha V. Labhasetwar ,
- Foster B. Stulen ,
- Frederick L. Estera ,
- Geoffrey S. Strobl ,
- Gregory W. Johnson ,
- Jacob S. Gee ,
- Jason R. Sullivan ,
- Jeffrey D. Messerly ,
- Jeffrey S. Swayze ,
- John A. Hibner ,
- John B. Schulte ,
- Joseph E. Hollo ,
- Kristen G. Denzinger ,
- Kristen L. D'Uva ,
- Matthew C. Miller ,
- Michael R. Lamping ,
- Richard W. Timm ,
- Rudolph H. Nobis ,
- Ryan M. Asher ,
- Stephen M. Leuck ,
- Tylor C. Muhlenkamp ,
- William B. Weisenburgh, II ,
- William A. Olson
An apparatus comprises a body assembly, a shaft, an acoustic waveguide, an articulation section, an end effector, and an articulation drive assembly. The shaft extends distally from the body assembly and defines a longitudinal axis. The acoustic waveguide comprises a flexible portion. The articulation section is coupled with the shaft. A portion of the articulation section encompasses the flexible portion of the waveguide. The articulation section comprises a plurality of body portions aligned along the longitudinal axis and a flexible locking member. The flexible locking member is operable to secure the body portions in relation to each other and in relation to the shaft. The end effector comprises an ultrasonic blade in acoustic communication with the waveguide. The articulation drive assembly is operable to drive articulation of the articulation section to thereby deflect the end effector from the longitudinal axis.
Universal surgical access system
A surgical system includes a surgical arm including at least a distal segment. The surgical system further includes a drape disposed over the surgical arm such that the surgical arm is at least partially covered by the drape. An instrument connector is coupled to the distal segment of the surgical arm through the drape and includes a stem and a shaft. The shaft is configured to receive a surgical instrument. When the instrument connector is coupled to the surgical arm, the instrument connector secures a portion of the drape against the distal segment of the surgical arm. Other example surgical systems and surgical arms are also disclosed.
SYSTEM, METHOD, AND DEVICE FOR PERFORMING ARTHROGRAPHY
In an embodiment, the present disclosure relates to a system for performing arthrography, comprising a physical grid positioned on skin of a patient proximate a region of interest of a joint on which the arthrography is to be performed, and processing circuitry configured to receive medical images of the patient, the received medical images being acquired by a same imaging modality and having visible a portion of the physical grid, determine a trajectory between an entry point identified on the physical grid and a target point identified within the region of interest of the joint, and generate a target entry angle based on the determined trajectory between the identified entry point and the identified target point, wherein a needle guide device, configured to releasably-hold a needle, is positionable according to the identified entry point and target entry angle.
SURGICAL ROBOTIC POSITIONING CART
A surgical positioning cart configured to support a surgical robotic device thereon a distal side configured to face a surgical entry site of a patient, comprises a base movable at least along a horizontal reference plane, a head pivotable relative to the horizontal plane to define therewith different inclination angles at least in a plane comprising vertical and longitudinal axes of the cart; a slider configured to fixedly receive at least a portion of the surgical robotic device thereon and mounted to the head so as to be pivotable therewith and be movable relative thereto at least along the longitudinal axis; and a neck connecting between the base and the head pivotally mounted thereto, having an adjustable height defined by a length of the neck in the vertical direction.
SURGERY ASSISTANCE DEVICE
A surgery assistance device includes a battery, loads, a manual switch, a power supply, and a backup power supply. The power supply is connected to a mains power supply and to the loads, and outputs a first power supply voltage to the loads. The manual switch is connected to a portion of the loads. The backup power supply is connected to the battery and to the manual switch, and outputs a second power supply voltage to the portion of the loads when the manual switch is closed.
ASSISTED DRIVE MODE WITH DAMPING FUNCTION FOR ROBOTIC IMAGING SYSTEM
A robotic imaging system includes a camera configured to one or more images of a target site. The camera may be a stereoscopic camera configured to record a left image and a right image for producing at least one stereoscopic image of the target site. A robotic arm is operatively connected to the camera, the robotic arm being adapted to selectively move the camera relative to the target site. A sensor is configured to detect forces and/or torque imparted by a user for moving the stereoscopic camera and transmit sensor data. A controller is configured to receive the sensor data, the controller having a processor and tangible, non-transitory memory on which instructions are recorded. The controller is adapted to selectively execute an assisted drive mode, which includes determining a movement sequence for the robotic arm based in part on the sensor data and a damping function.