Nova Patents
EP1146830A1

Surgical robotic tools

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 6 December 2019, 6.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

32 claims: 12 independent, 20 dependent

  1. 1
    Claims of equivalent WO 0033755 A1 WHAT IS CLAIMED IS:1. A robotic surgical tool for use in a robotic surgical system having a processor which directs movement of a tool holder, the tool comprising: a probe having a proximal end and a distal end;a surgical end effector disposed adjacent the distal end of the probe;an interface disposed adjacent the proximal end of the probe, the interface releasably coupleable with the tool holder;and circuitry mounted on the probe, the circuitry defining a signal for transmitting to the processor so as to indicate compatibility of the tool with the system.
  2. 10
    A robotic surgical component for use in a robotic surgical system having a processor and a component holder, the component comprising:a component body having an interface mountable to the component holder, the body supporting a surgical end effector;a drive system coupled to the body, the drive system moving the end effector in response to commands from the processor;and circuitry mounted on the body, the circuitry defining a signal for transmitting to the processor, the signal comprising at least one member selected from the group consisting of compatibility of the component with the system, a component-type of the component, coupling of the component to the system, and calibration of the component.
  3. 12
    A robotic surgical tool for use in a robotic surgical system having a processor which directs movement of a tool holder, the tool comprising:a probe having a proximal end and a distal end;a surgical end effector disposed adjacent the distal end of the probe;an interface disposed adjacent the proximal end of the probe, the interface releasably coupleable with the tool holder;and circuitry mounted on the probe, the circuitry transmitting a signal via the interface to the processor so as to indicate a tool-type of the tool.
  4. 15
    A robotic surgical tool for use in a robotic surgical system having a processor which directs movement of a tool holder, the tool comprising:a probe having a proximal end and a distal end;a surgical end effector disposed adjacent the distal end of the probe;an interface disposed adjacent the proximal end of the probe, the interface releasably coupleable with the tool holder;and circuitry mounted on the probe, the circuitry transmitting a signal via the interface to the processor so as to indicate tool calibration offsets of the tool.
  5. 16
    A method for installing a robotic surgical component in a robotic surgical system, the method comprising:mounting the component to a component holder;transmitting a signal from the component to a processor of the robotic surgical system;articulating the component in response to the signal per commands of the processor.
  6. 22
    A robotic surgical system comprising:a plurality of tools of different tool-types, each tool comprising an elongate shaft with a cross section suitable for introduction into an internal surgical site within a patient body via a minimally invasive opening, a distal surgical end effector coupled to the shaft by at least one joint, the joint drivingly coupled to a proximal interface by a tool drive system, and circuitry that transmits a tool-type signal via the interface;a robotic manipulator including a linkage supporting a tool holder which releasably receives the interface, at least one manipulator drive motor drivingly engaging the linkage so as to move the tool holder relative to the opening and position the shaft within the surgical site, and at least one tool drive motor coupled to the tool holder so as to drivingly engage the tool drive system and articulate the at least one joint;and a processor coupled to the tool holder, the processor having programming that effects a desired movement of the end effector by transmitting drive signals to the at least one tool drive motor of the manipulator, wherein the processor reconfigures the program for the different characteristics based on the tool-type signals.
  7. 24
    A fault tolerant robotic surgical system comprising:a surgical tool having a surgical end effector and an interface;a manipulator assembly having a base and a tool holder for releasably engaging the interface;a plurality of tool engagement sensors coupled to the tool holder, each sensor producing a tool signal when the interface engages the holder;and a processor coupled to the tool engagement sensors, the processor having a tool change mode and a tissue manipulation mode, the processor requiring tool signals from each of the sensors before changing from the tool change mode to the tissue manipulation mode, the processor remaining in the tissue manipulation mode when at least one, but not all, of the tool signals is lost.
  8. 25
    A robotic surgical system comprising:a manipulator assembly having a base and a tool holder which moves relative to the base, the tool holder having a plurality of drive elements;a sterile drape covering at least a portion of the manipulator;a sterile tool having a proximal interface and a distal end effector, the distal end effector having a plurality of degrees of motion relative to the proximal interface, the degrees of motion coupled to driven elements of the interface;and an adapter disposed adjacent the sterile drape between the holder and the interface, the adapter comprising a plurality of movable bodies, each movable body having a first surface driven by the drive elements and a second surface driving the driven elements.
  9. 27
    A robotic surgical tool for use with a robotic manipulator having a tool holder, the tool holder having magnetically actuatable circuitry, the tool comprising;a probe having a proximal end and a distal end;a surgical end effector adjacent the distal end of the probe;an interface adjacent the proximal end of the probe, the interface releasably coupleable with the holder, the interface comprising a magnet positioned so as to actuate the circuitry of the holder.
  10. 28
    A robotic surgical system comprising:a processor;a tool having a surgical end effector;and a robotic manipulator coupling the tool to the end effector;wherein the processor senses coupling of the tool to the manipulator by at least one member selected from the group consisting of: a signal from a memory circuit of the tool;a signal from a memory circuit of an adapter coupling the tool to the manipulator;and a signal from a magnetic switch that is magnetically actuated by a magnet of the tool.
  11. 29
    A robotic system comprising:a robotic manipulator having a tool holder, the manipulator moving the holder in response to signals from a processor;a tool having a surgical end effector;an adapter coupling the tool to the holder, the adapter maintaining sterile separation between the tool and holder;a first sensor disposed adjacent the holder, the first sensor transmitting a first signal to the processor in response to coupling of the adapter to the holder;and a second sensor disposed adjacent the holder, the second sensor transmitting a second signal to the processor in response to coupling of the tool to the adapter.
  12. 31
    A robotic surgical system comprising:a tool having circuitry containing verification information;a coupler for coupling the tool;and at least one system processor for receiving the verification information from the tool coupled to the coupler, said at least one processor further manipulating the information with an algorithm to produce output information, comparing the output information to predetermined data to verify compatibility of the tool with the robotic surgical system, and enabling the robotic surgical system to manipulate the tool if the output information matches the predetermined data.