IP Library Patent Application 11454476
Patent Application
App. No. 11/454,476

Methods of fluid flow control with robotic surgical instruments for irrigation, aspiration, and blowing

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Quick Facts
Patent No.
US None
App. No.
11/454,476
Abstract

In one embodiment of the invention, a first control signal is generated to control a robotic surgical instrument. The first control signal is then coupled into the robotic surgical instrument. In response to the first control signal, a first valve in the robotic surgical instrument is opened to flow a first fluid over a surgical site.

Claims (74)

1 . A method comprising:

generating a first control signal to control a robotic surgical instrument;

coupling the first control signal into the robotic surgical instrument; and

opening a first valve in the robotic surgical instrument to flow a first fluid over a surgical site in response to the first control signal.

2 . The method of claim 1 , further comprising:

generating a second control signal to control the robotic surgical instrument;

coupling the second control signal into the robotic surgical instrument; and

opening a second valve in the robotic surgical instrument to flow a second fluid over the surgical site in response to the second control signal.

3 . The method of claim 1 , further comprising:

generating a third control signal to control the robotic surgical instrument;

coupling the third control signal into the robotic surgical instrument; and

closing the first valve in the robotic surgical instrument to reduce the flow of the first fluid over the surgical site in response to the third control signal.

4 . The method of claim 2 , further comprising:

generating a fourth control signal to control the robotic surgical instrument;

coupling the fourth control signal into the robotic surgical instrument; and

opening a third valve in the robotic surgical instrument to flow a third fluid over the surgical site in response to the fourth control signal.

5 . The method of claim 1 , wherein

the first control signal is generated in response to movement of a touch sensitive handle of a master control console.

6 . The method of claim 5 , wherein

the first control signal is generated in response to squeezing a grip of the touch sensitive handle.

7 . The method of claim 5 , wherein

the first control signal is generated in response to rotation of the touch sensitive handle.

8 . The method of claim 1 , wherein

the first control signal is generated in response to a spoken command to a master control console.

9 . The method of claim 1 , wherein

the first control signal is generated in response to movement of a foot pedal of a master control console.

10 . A method comprising:

mounting an irrigation-aspiration robotic surgical instrument to a robotic arm of a robotic surgical manipulator;

inserting a tip of a hollow tube of the irrigation-aspiration robotic surgical instrument into a patient near a surgical site; and

controlling a flow of a fluid between the surgical site and the irrigation-aspiration robotic surgical instrument.

11 . The method of claim 10 , further comprising:

removing the irrigation-aspiration robotic surgical instrument from the patient;

dismounting the irrigation-aspiration robotic surgical instrument from the robotic arm;

discarding a modular valve assembly and one or more hoses of the irrigation-aspiration robotic surgical instrument; and

sterilizing the irrigation-aspiration robotic surgical instrument for reuse.

12 . The method of claim 10 , wherein

the irrigation-aspiration robotic surgical instrument includes a flow control system with an inexpensive valve subassembly, and the method further comprises

removing the irrigation-aspiration robotic surgical instrument from the patient;

dismounting the irrigation-aspiration robotic surgical instrument from the robotic arm; and

discarding the irrigation-aspiration robotic surgical instrument.

13 . The method of claim 10 , further comprising:

coupling at least one hose from the irrigation-aspiration robotic surgical instrument to at least one pump;

14 . The method of claim 13 , wherein

the at least one hose to couple fluids into and out of the irrigation-aspiration robotic surgical instrument, and

the controlling of the flow of the fluid between the surgical site and the irrigation-aspiration robotic surgical instrument is provided by

controlling the at least one pump.

15 . The method of claim 14 , wherein

a motor of the at least one pump is controlled, or

a valve of the at least one pump is controlled.

16 . The method of claim 14 , wherein

the irrigation-aspiration robotic surgical instrument includes

a coupler to couple between the at least one hose and the hollow tube.

17 . A method comprising:

mounting an irrigation-aspiration robotic surgical instrument to a robotic arm of a robotic surgical manipulator;

inserting a tip of a hollow tube of the irrigation-aspiration robotic surgical instrument into a patient near a surgical site;

controlling a flow of a fluid between the surgical site and the irrigation-aspiration robotic surgical instrument; and

monitoring a level of the flow of the fluid between the surgical site and the irrigation-aspiration robotic surgical instrument.

18 . The method of claim 17 , wherein

the irrigation-aspiration robotic surgical instrument includes

a user-feedback means to monitor the level of the flow of the fluid between the surgical site and the irrigation-aspiration robotic surgical instrument.

19 . The method of claim 18 , wherein

the user-feedback means is one or more light emitting diodes coupled near the tip of hollow tube of the irrigation-aspiration robotic surgical instrument, the one or more light emitting diodes to generate a visible light in response to the control of a flow of a fluid through the irrigation-aspiration robotic surgical instrument.

20 . The method of claim 18 , wherein

the user-feedback means is a light pipe coupled along the length of the hollow tube of the irrigation-aspiration robotic surgical instrument with a light emitting diode, the light emitting diode to couple photons into the light pipe and generate a visible side light in response to the control of a flow of a fluid through the irrigation-aspiration robotic surgical instrument.

21 . The method of claim 18 , wherein

the user-feedback means is a sliding sleeve coaxial with the hollow tube and a scale coupled to the irrigation-aspiration robotic surgical instrument, the sliding sleeve to slide along the hollow tube and reveal the scale in response to the control of a flow of a fluid through the irrigation-aspiration robotic surgical instrument.

22 . The method of claim 18 , wherein

the user-feedback means is a rotatable sleeve coaxial with the hollow tube and a striped scale coupled to the hollow tube, the rotatable sleeve including windows to rotate around the hollow tube and reveal the striped scale in response to the control of a flow of a fluid through the irrigation-aspiration robotic surgical instrument.

23 . The method of claim 22 , wherein

the striped scale is one or more rectangular stripes and the rotatable sleeve has oval windows aligned with the one or more rectangular stripes.

24 . The method of claim 22 , wherein

the striped scale is one or more triangular stripes and the rotatable sleeve has rectangular windows aligned with the one or more triangular stripes.

25 . The method of claim 22 , wherein

the striped scale is one or more rectangular stripes and the rotatable sleeve has triangular windows aligned with the one or more rectangular stripes.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2017
From: INTUITIVE SURGICAL, INC.
To: INTUITIVE SURGICAL OPERATIONS, INC.
Reel/Frame 042831/0156 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2006
From: MILLMAN, PAUL; BAILEY, DAVID; HOORNAERT, DEAN; MINTZ, DAVID; LARKIN, DAVID; MAGNASCO, JOHN; GUTHART, GARY; BRAGNA, SALVATORE
To: INTUITIVE SURGICAL INC.
Reel/Frame 018393/0344 →