IP Library Granted Patent US 10,441,342
Granted Patent B2
US 10,441,342 · App. 15/050,453 · Granted Oct 15, 2019

Multi-mode surgical tool

Inventors: Kim Manwaring (Phoenix, AZ); David McNally (Salt Lake City, UT)
Assignee: Domain Surgical, Inc.
A61B18/085A61B17/00234A61B17/3211A61B18/08A61B18/082A61B18/10A61B18/1206A61B18/1492A61M25/0082A61B18/04A61B2017/00141A61B2017/00876A61B2017/00973A61B2017/32007A61B2017/320069A61B2017/320082A61B2018/0013A61B2018/00077A61B2018/00095A61B2018/00107A61B2018/00577A61B2018/00589A61B2018/00595A61B2018/00601A61B2018/00619A61B2018/00642A61B2018/00654A61B2018/00702A61B2018/00714A61B2018/00755A61B2018/00791A61B2018/00803A61B2018/00958A61B2018/128A61B2018/1407A61B2018/1412A61M25/00Y10T29/49124
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Quick Facts
Patent No.
US 10,441,342
App. No.
15/050,453
Granted
Oct 15, 2019
Kind
B2
Abstract

Thermal, electrosurgical and mechanical modalities may be combined in a surgical tool. Potentially damaging effects in a first modality may be minimized by using a secondary modality. In one example, thermal hemostasis may thus help electrosurgical applications avoid the adverse tissue effects associated with hemostatic monopolar electrosurgical waveforms while retaining the benefits of using monopolar incising waveforms.

Claims (25)

1. A multi-mode surgical tool comprising:

a handpiece;

a first modality for treating tissue, the first modality connected to the handpiece and including a first bipolar electrode and a second bipolar electrode;

a thermal element including a ferromagnetic layer covering at least a portion of an electrical conductor; and

a control on the handpiece and configured to selectively activate the first modality in a first operational mode, the thermal element in a second operational mode, and the first modality and the thermal element in third operational mode.

2. The multi-mode surgical tool of claim 1 , wherein the first modality comprises a first forceps jaw including the first bipolar electrode, and a second forceps jaw including the second bipolar electrode.

3. The multi-mode surgical tool of claim 2 , wherein the thermal element is attached to the first forceps jaw.

4. The multi-mode surgical tool of claim 3 , comprising a thermal sensor attached to the second forceps jaw.

5. The multi-mode surgical tool of claim 1 , wherein the thermal element is separate from the first modality.

6. The multi-mode surgical tool of claim 1 , wherein the thermal element is disposed adjacent to one of the first bipolar electrode or the second bipolar electrode of the first modality.

7. The multi-mode surgical tool of claim 1 , further comprising a power supply for providing signals to the first modality and the thermal element.

8. The multi-mode surgical tool of claim 7 , wherein the signals provided to the first modality and the thermal element include oscillating electrical energy, and wherein the first modality is configured to direct the oscillating electrical energy into tissue and the thermal element is configured to convert the oscillating electrical energy into thermal energy.

9. The multi-mode surgical tool of claim 7 , wherein the power supply for providing the signals is configured to provide a signal that is multiplexed to the first modality and the thermal element.

10. The multi-mode surgical tool of claim 7 , wherein the power supply is configured to provide the signals to the first modality and the thermal element substantially simultaneously in the third operational mode.

11. The multi-mode surgical tool of claim 1 , further comprising a nonstick coating disposed on the thermal element.

12. The multi-mode surgical tool of claim 1 , wherein the multi-mode surgical tool comprises forceps.

13. The multi-mode surgical tool of claim 1 , further comprising a catheter, wherein the first modality and the thermal element are disposed on the catheter.

14. The multi-mode surgical tool of claim 1 , wherein the control includes a first switch configured to selectively activate the first modality, and a second switch configured to selectively activate the thermal element.

15. The multi-mode surgical tool of claim 1 , further comprising:

a first forceps jaw connected to the handpiece, the first forceps jaw including the first bipolar electrode; and

a second forceps jaw connected to the handpiece and spaced apart from the first forceps jaw, the second forceps jaw including a second bipolar electrode,

wherein the control includes a first switch configured to selectively activate the first modality, and a second switch configured to selectively activate the thermal element.

16. The surgical tool of claim 15 , wherein one of the first forceps jaw or the second forceps jaw includes the thermal element, and the other of the first forceps jaw and the second forceps jaw includes a thermal sensor.

17. The surgical tool of claim 16 , comprising a power supply electrically coupled to the thermal element, the power supply, when in use, adjusts an electrical signal supplied to the thermal element based on a temperature sensed by the thermal sensor.

18. The surgical tool of claim 15 , wherein the ferromagnetic layer includes a layer of nickel-iron alloy on the electrical conductor.

Assignments (1)
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jul 31, 2018
From: DOMAIN SURGICAL, INC.
To: SOLAR CAPITAL LTD., AS AGENT
Reel/Frame 046662/0635 →
Continuity (10)
Continuation 13840917 · Mar 15, 2013
Continuation 12647374 · Dec 24, 2009
Continuation 12647376 · Dec 24, 2009
Continuation 12647380 · Dec 24, 2009
Continuation 13764636 · Feb 11, 2013
Continuation 12647329 · Dec 24, 2009
Provisional Application 61170203 · Apr 17, 2009
Provisional Application 61170220 · Apr 17, 2009
Provisional Application 61170207 · Apr 17, 2009
Related Publication 20160249971A1 · Sep 1, 2016