IP Library Granted Patent US 12,337,101
Granted Patent B2
US 12,337,101 · App. 17/269,145 · Granted Jun 24, 2025

Directed gas flow surgical cannula for providing gases to a patient

Inventors: Pavlo Kokhanenko (Auckland, NZ); Benjamin Elliot Hardinge Pegman (Auckland, NZ); Charlotte Grace Laus (Auckland, NZ); Callum James Thomas Spence (Auckland, NZ); Abigail Sharmini Rajen Arulandu (Auckland, NZ); Zane Paul Gell (Auckland, NZ); Zach Jonathan Warner (Auckland, NZ); Vincent Verdoold (Auckland, NZ); Gabor Papotti (Auckland, NZ); German Klink (Auckland, NZ); Richard John Boyes (Auckland, NZ); Bernard Tsz Lun Ip (Auckland, NZ); Monika Baumann (Auckland, NZ); James Robert Jarmey Greenfield (Auckland, NZ); Katie-Ann Jane Buckels (Auckland, NZ); Donald Roy Kuriger (Auckland, NZ); Joshua Robert Lee (Auckland, NZ); Jesus Antonio Amador Noriega (Auckland, NZ); James Michael Gilbert (Auckland, NZ)
Assignee: Fisher & Paykel Healthcare Limited
A61M13/003A61B1/127A61B17/3423A61M2205/3334A61M2205/3368A61M2205/36A61M2206/20
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Quick Facts
Patent No.
US 12,337,101
App. No.
17/269,145
Granted
Jun 24, 2025
Kind
B2
Abstract

Disclosed herein is a surgical cannula configured as an instrument retaining or centering apparatus, configured for providing insufflation gases to a surgical cavity of a patient (such as the pneumoperitoneum) and allowing insertion of medical instruments into the surgical cavity through the cannula. The cannula can include features to direct gas flow in particular directions to prevent or reduce smoke, fog/condensation, or other unwanted media from contacting a portion of a medical instrument.

Claims (30)

1. A surgical cannula for providing insufflation gases to a surgical cavity and providing a passage for insertion of one or more medical instruments, the cannula comprising:

a cannula body including an inlet;

an elongate shaft extending from the cannula body, the shaft defining a lumen defined by a sidewall, the lumen configured to provide the insufflation gases to the surgical cavity between a gases inlet and an outlet proximate a distal end of the elongate shaft, the lumen in fluid communication with the inlet and the outlet, the lumen also configured to receive a medical instrument therethrough; and

a guide element disposed on, within, or around at least a portion of the lumen, the guide element configured to limit radial movement of the medical instrument within the lumen and prevent the medical instrument from contacting the sidewall of the lumen such that as the gases flow along the lumen from the inlet to the outlet of the lumen the gases flow around the medical instrument and create an envelope of insufflation gases that extends along and distally beyond a distal end of the instrument, wherein the medical instrument is configured to extend beyond the outlet of the elongate shaft; and

wherein the gases flow along the lumen of the elongate shaft between an outer surface of the medical instrument and an inner sidewall of the lumen.

2. The surgical cannula of claim 1 , wherein the guide element is further configured to maintain the medical instrument substantially co-axially and/or concentrically within the lumen.

3. The surgical cannula of claim 1 , wherein the guide element comprises a plurality of ribs extending inward from the inner sidewall of the lumen toward a center of the lumen.

4. The surgical cannula of claim 3 , wherein the plurality of ribs are configured to contact the medical instrument to grasp the instrument concentrically within the lumen.

5. A surgical cannula for providing gases to a surgical cavity and providing a passage for insertion of one or more medical instruments, the cannula comprising:

a cannula body including an inlet;

an elongate shaft extending from the cannula body, the shaft comprising an inner wall that defines a lumen, the lumen configured to provide the gases to the surgical cavity between a gases inlet and an outlet proximate a distal end of the elongate shaft, the lumen in fluid communication with the inlet and the outlet, the lumen also configured to receive a medical instrument therethrough; and

a guide element extending inward from the inner wall, the guide element configured to limit radial movement of the medical instrument within the lumen such that as the gases flow along the lumen from the inlet to the outlet of the lumen the gases flow around the medical instrument and create an envelope of gases that extends along and distally beyond a distal end of the instrument, wherein the medical instrument is configured to extend beyond the outlet of the elongate shaft; and

wherein the gases flow along the lumen of the elongate shaft between an outer surface of the medical instrument and the inner wall.

6. The surgical cannula of claim 5 , wherein the guide element is further configured to maintain the medical instrument substantially co-axially and/or concentrically within the lumen.

7. The surgical cannula of claim 5 , wherein the envelope extends distally beyond the outlet of the elongate shaft and the medical instrument.

8. The surgical cannula of claim 5 , wherein the guide element is configured such that the envelope concentrically surrounds the medical instrument within the lumen and beyond the outlet of the elongate shaft.

9. The surgical cannula of claim 5 , wherein the guide element is configured such that the envelope maintains a temperature controlled environment about the elongate shaft and outlet of the elongate shaft, wherein the envelope maintains the temperature above the dew point.

10. The surgical cannula of claim 5 , wherein the guide element comprises a plurality of ribs extending inward from the inner wall of the lumen toward a center of the lumen.

11. The surgical cannula of claim 10 , wherein the plurality of ribs are configured to contact the medical instrument to grasp the instrument concentrically within the lumen.

12. The surgical cannula of claim 10 , wherein the plurality of ribs are configured to limit radial movement of the medical instrument to prevent the medical instrument from contacting the inner wall of the lumen.

13. The surgical cannula of claim 10 , wherein the guide element comprises at least four radially or axially spaced-apart ribs.

14. The surgical cannula of claim 10 , wherein the plurality of ribs are positioned at the distal end of the elongate shaft.

15. The surgical cannula of claim 10 , wherein the plurality of ribs comprise a first set of ribs and a second set of ribs spaced axially apart by a gap between the first set of ribs and the second set of ribs.

16. The surgical cannula of claim 15 , wherein the gap between the first set of ribs and the second set of ribs is sized and configured to reduce flow velocity and/or reduce flow turbulence of the gases.

17. The surgical cannula of claim 15 , wherein the first set of ribs and the second set of ribs comprise the same number of ribs.

18. The surgical cannula of claim 15 , wherein the first set of ribs comprises more ribs than the second set of ribs.

19. The surgical cannula of claim 15 , wherein the first set of ribs comprises less ribs than the second set of ribs.

20. The surgical cannula of claim 5 , wherein the guide element comprises radially spaced-apart protrusions.

21. The surgical cannula of claim 5 , wherein the guide element comprises a plurality of fins extending inward and distally from the distal end of the elongate shaft.

22. The surgical cannula of claim 5 , wherein the guide element comprises a plurality of flexible fins extending radially inward into the cannula.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2021
From: KOKHANENKO, PAVLO; PEGMAN, BENJAMIN ELLIOT HARDINGE; LAUS, CHARLOTTE GRACE; SPENCE, CALLUM JAMES THOMAS; ARULANDU, ABIGAIL SHARMINI RAJEN; GELL, ZANE PAUL; WARNER, ZACH JONATHAN; VERDOOLD, VINCENT; PAPOTTI, GABOR; KLINK, GERMAN; BOYES, RICHARD JOHN; IP, BERNARD TSZ LUN; BAUMANN, MONIKA; GREENFIELD, JAMES ROBERT JARMEY; BUCKELS, KATIE-ANN JANE; KURIGER, DONALD ROY; LEE, JOSHUA ROBERT; AMADOR NORIEGA, JESUS ANTONIO; GILBERT, JAMES MICHAEL
To: FISHER & PAYKEL HEALTHCARE LIMITED
Reel/Frame 055336/0256 →
Continuity (2)
Provisional Application 62719550 · Aug 17, 2018
Related Publication 20210236749A1 · Aug 5, 2021
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