IP Library › Granted Patent US 11,607,107
Granted Patent B2
US 11,607,107 · App. 16/991,238 · Granted Mar 21, 2023

Systems and methods for medical instrument force sensing

Inventor: Samuel Kwok Wai Au (Mountain View, CA)
Assignee: INTUITIVE SURGICAL OPERATIONS, INC.
A61B1/00006A61B1/0016A61B1/0051A61B1/00133A61B5/062A61B5/065A61B34/30A61B34/37A61B34/71A61M25/0067A61B2034/2061A61B2034/301A61B2034/742A61B2562/0247A61B2562/0266A61M2025/0166
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,607,107
App. No.
16/991,238
Filed
Aug 12, 2020
Granted
Mar 21, 2023
Kind
B2
Art Unit
3793
USPC
600/424
Abstract

A medical system comprising a medical instrument including at least one elongated actuation member used to move at least a portion of the medical instrument, a motor coupled to the medical instrument and used to operate the at least one elongated actuation member, and a control system in communication with the medical instrument and with the motor. The control system is configured to receive at least one input from the medical instrument and determine a force on a tip of the medical instrument by applying the at least one input to a lumped model of the medical instrument. The lumped model comprises a mass of the motor and a spring parameter coupling the mass of the motor to a mass of the portion of the medical instrument.

Claims (61)

1. A computer-readable medium storing instructions that, when executed by a processing system, cause the processing system to:

receive at least one input from a medical instrument, the medical instrument including at least one elongated actuation member used to move at least a portion of the medical instrument; and

determine a force on a tip of the medical instrument by applying the at least one input to a lumped model of the medical instrument, wherein the lumped model comprises:

a mass of a motor used to operate the at least one elongated actuation member; and

a spring parameter coupling the mass of the motor to a mass of the portion of the medical instrument.

2. The computer-readable medium of claim 1 , wherein the force on the tip of the medical instrument is determined by the processing system in real time.

3. The computer-readable medium of claim 2 , wherein the instructions, when executed by the processing system, further cause the processing system to alert an operator of the medical instrument if the force on the tip of the medical instrument exceeds a threshold value.

4. The computer-readable medium of claim 1 , wherein the at least one input comprises one or more of:

a motor torque applied by the motor;

a rotational position of a driveshaft of the motor; or

a position of the tip of the medical instrument.

5. The computer-readable medium of claim 1 , wherein the instructions, when executed by the processing system, further cause the processing system to determine a position of the tip of the medical instrument with an optical fiber shape sensor, wherein the at least one input comprises at least the position of the tip of the medical instrument.

6. The computer-readable medium of claim 1 , wherein the lumped model further comprises a damping parameter coupling the mass of the motor to the mass of the portion of the medical instrument.

7. The computer-readable medium of claim 1 , wherein the lumped model further comprises:

a frictional parameter associated with the motor; and

a frictional parameter associated with the medical instrument.

8. The computer-readable medium of claim 1 , wherein the lumped model further comprises:

a damping parameter coupling the mass of the motor to ground; and

a damping parameter coupling the mass of the portion of the medical instrument to ground.

9. The computer-readable medium of claim 1 , wherein the lumped model further comprises an offset spring parameter coupling the mass of the portion of the medical instrument to ground.

10. A method comprising:

receiving, by a processing system, at least one input from a medical instrument, the medical instrument including at least one elongated actuation member used to move at least a portion of the medical instrument; and

determining, by the processing system, a force on a tip of the medical instrument by applying the at least one input to a lumped model of the medical instrument, wherein the lumped model comprises:

a mass of a motor used to operate the at least one elongated actuation member; and

a spring parameter coupling the mass of the motor to a mass of the portion of the medical instrument.

11. The method of claim 10 , wherein determining the force on the tip of the medical instrument comprises determining, in real time, the force on the tip of the medical instrument.

12. The method of claim 10 , wherein the at least one input comprises one or more of:

a motor torque applied by the motor;

a rotational position of a driveshaft of the motor; or

a position of the tip of the medical instrument.

13. The method of claim 10 , further comprising determining a position of the tip of the medical instrument with an optical fiber shape sensor, wherein the at least one input comprises at least the position of the tip of the medical instrument.

14. The method of claim 10 , wherein the lumped model further comprises a damping parameter coupling the mass of the motor to the mass of the portion of the medical instrument.

15. The method of claim 10 , wherein the lumped model further comprises:

a frictional parameter associated with the motor; and

a frictional parameter associated with the medical instrument.

16. The method of claim 10 , wherein the lumped model further comprises:

a damping parameter coupling the mass of the motor to ground; and

a damping parameter coupling the mass of the portion of the medical instrument to ground.

17. The method of claim 10 , wherein the lumped model further comprises an offset spring parameter coupling the mass of the portion of the medical instrument to ground.

18. A medical system comprising:

a medical instrument including at least one elongated actuation member used to move at least a portion of the medical instrument;

a motor coupled to the medical instrument and used to operate the at least one elongated actuation member; and

a control system in communication with the medical instrument and with the motor, the control system being configured to:

receive at least one input from the medical instrument; and

determine a force on a tip of the medical instrument by applying the at least one input to a lumped model of the medical instrument, wherein the lumped model comprises:

a mass of the motor; and

a spring parameter coupling the mass of the motor to a mass of the portion of the medical instrument.

19. The medical system of claim 18 , wherein the lumped model further comprises one or more of:

a damping parameter coupling the mass of the motor to the mass of the portion of the medical instrument;

a frictional parameter associated with the motor;

a frictional parameter associated with the medical instrument;

a damping parameter coupling the mass of the motor to ground;

a damping parameter coupling the mass of the portion of the medical instrument to ground; or

an offset spring parameter coupling the mass of the portion of the medical instrument to ground.

20. The medical system of claim 18 , further comprising one or more of:

a tracking system comprising at least one of a position sensor system or a shape sensor system, wherein the tracking system is configured to determine a position, an orientation, a speed, a pose, or a shape of a distal end of the medical instrument;

a navigation system;

a visualization system configured to capture images from the distal end of the medical instrument;

a display system configured to display an image or representation of a medical site and the medical instrument to a user;

an operator input system comprising at least one control device for controlling the medical system; or

a teleoperational assembly configured to support the medical instrument and the motor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2020
From: AU, SAMUEL KWOK WAI
To: INTUITIVE SURGICAL OPERATIONS, INC.
Reel/Frame 053469/0601 →
Continuity (3)
Continuation 15505856
Provisional Application 62041204 · Aug 25, 2014
Related Publication 20200367719A1 · Nov 26, 2020