IP Library Granted Patent US 9,854,962
Granted Patent B2
US 9,854,962 · App. 12/874,058 · Granted Jan 2, 2018

Visualization instrument

Inventors: Thomas W. McGrail (Cicero, IN); Michael S. Pargett (West Lafayette, IN); David J. Miller (Noblesville, IN); Yun Siung Tony Yeh (Libertyville, IL); Randal B. Chinnock (Eastford, CT); George Grubner (Needham, MA); Elizabeth Powell Goodrich (Roslidale, MA); Paul Crosby Gregory (Watertown, MA); Gary Vincent Palladino (Cambridge, MA); Brian Hack (Cambridge, MA); Kristin Jugenheimer Size (Waltham, MA); Richard L. Miller (Needham, MA)
Assignee: King Systems Corporation
A61B1/267A61B1/00016A61B1/00052A61B1/00103A61B1/00105A61B1/05G02B23/2423G02B23/2446A61B1/018
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Quick Facts
Patent No.
US 9,854,962
App. No.
12/874,058
Granted
Jan 2, 2018
Kind
B2
Abstract

A visualization instrument comprising a display support component removably coupled to a component insertable into a target space. The insertable component includes a camera providing images of the target space. The images are presented in a display device supported by the display support component. The insertable component may be discarded after a permitted number of uses.

Claims (76)

1. A visualization instrument comprising:

a display device;

a housing coupled to the display device, the housing configured to contain a battery;

a lens;

a camera including an imaging sensor, the camera outputting an image stream corresponding to a plurality of views obtained through the lens, the display device operable to display the plurality of views; and

a blade including a handle portion and an insertable portion, the insertable portion having a distal cavity housing the camera and the handle portion including a handle cavity adapted to detachably couple with the housing to support the display device, wherein the battery is positioned in the handle cavity when the housing is coupled to the blade,

wherein the insertable portion comprises an anterior wall having an anterior guide surface and a medial wall having a medial guide surface, the anterior guide surface and the medial guide surface forming a guide pathway adapted for guiding a tube into a patient, the guide pathway located on one side of the medial wall and the distal cavity located on the opposite side of the medial wall, the anterior wall having a tip portion extending distally beyond the medial wall and including a flexural support feature, and

wherein the flexural support feature includes a longitudinally aligned ridge protruding from the anterior guide surface along the tip portion of the anterior wall between longitudinal borders of the tip portion of the anterior wall.

2. The visualization instrument of claim 1 , wherein the flexural support feature further comprises a transverse curvature of the tip portion.

3. The visualization instrument of claim 1 , wherein the imaging sensor is permanently attached to the insertable portion.

4. The visualization instrument of claim 1 , further comprising a protrusion and a recess configured to receive the protrusion, the recess and the protrusion generating an audible sound when the recess receives the protrusion indicating proper coupling of the blade and the display device.

5. The visualization instrument of claim 4 , the protrusion and the recess generating the audible sound when the handle cavity receives the housing.

6. The visualization instrument of claim 1 , the insertable portion further comprising a posterior wall having a posterior guide surface opposite the anterior guide surface, the guide pathway including a proximal portion and a distal portion, only the distal portion including a lateral wall extending anteriorly from the posterior wall, the lateral wall and the anterior wall forming an elongate opening through which the tube can be removed.

7. The visualization instrument of claim 6 , wherein the proximal portion of the guide pathway is shorter than the distal portion of the guide pathway.

8. The visualization instrument of claim 7 , wherein the length of the proximal portion is at most 40% of the length of the insertable portion, measured along a center line of the insertable portion.

9. The visualization instrument of claim 7 , further including a transition surface extending along the proximal portion of the guide pathway from a lateral side of the insertable portion to the medial guide surface.

10. The visualization instrument of claim 6 ,

wherein the insertable portion includes a resilient portion including the lateral wall,

wherein the resilient portion is operable to deform when at least a portion of the tube is removed through the elongate opening, and

wherein the anterior wall of the blade is more rigid than the lateral wall.

11. The visualization instrument of claim 10 , wherein the resilient portion enables the insertable portion to snugly receive tubes of different diameters which are pressed against the anterior wall by the resilient portion.

12. The visualization instrument of claim 11 , wherein the anterior wall of the blade is more rigid than the resilient portion to facilitate displacement of a tissue of a patient.

13. The visualization instrument of claim 12 , wherein the resilient portion is formed from a resilient material and the anterior wall of the blade is formed from a more rigid material than the resilient material.

14. The visualization instrument of claim 13 , wherein the resilient portion is affixed to a rigid structure of the insertable portion formed by the anterior wall and the medial wall.

15. The visualization instrument of claim 1 , wherein the flexural support feature further includes concave surfaces on a surface opposing the anterior guide surface and along the longitudinal borders of the tip portion of the anterior wall.

16. A visualization instrument comprising:

a display device;

a lens;

a camera including an imaging sensor, the camera outputting an image stream corresponding to a plurality of views obtained through the lens, the display device operable to display the plurality of views;

a blade detachably coupled to the display device, the blade including a handle portion and an insertable portion, the insertable portion having a distal cavity housing the camera,

wherein the insertable portion comprises a guide pathway formed by

an anterior wall having an anterior guide surface;

a medial wall having a medial guide surface; and

at least one resilient wall,

the guide pathway operable to guide insertion of a tube into a patient and comprising an elongate opening,

the at least one resilient wall operable to deform when at least a portion of the tube is removed through the elongate opening,

wherein the anterior wall of the blade is more rigid than the at least one resilient wall.

17. The visualization instrument of claim 16 , the insertable portion further comprising a posterior wall having a posterior guide surface opposite the anterior guide surface, the guide pathway including a proximal portion and a distal portion, only the distal portion including a lateral wall extending anteriorly from the posterior wall, the lateral wall and the anterior wall forming the elongate opening.

18. The visualization instrument of claim 17 , wherein the at least one resilient wall comprises the lateral wall.

19. The visualization instrument of claim 17 , wherein the proximal portion of the guide pathway is shorter than the distal portion of the guide pathway.

20. The visualization instrument of claim 17 , wherein the length of the proximal portion is at most 40% of the length of the insertable portion, measured along a center line of the insertable portion.

21. The visualization instrument of claim 17 , further including a transition surface extending along the proximal portion of the guide pathway from a lateral side of the insertable portion to the medial guide surface.

22. The visualization instrument of claim 16 , further comprising a housing adapted to contain a battery, the housing permanently coupled to the display device, wherein the handle includes a proximal cavity configured to receive the housing to detachably couple the blade and the display device, and wherein the battery is positioned in the proximal cavity when the housing is coupled to the blade.

23. The visualization instrument of claim 16 , wherein the at least one resilient wall enables the insertable portion to snugly receive tubes of different diameters which are pressed against the anterior wall by the at least one resilient wall.

24. The visualization instrument of claim 23 , wherein the anterior wall of the blade is more rigid than the at least one resilient wall to facilitate displacement of a tissue of a patient.

25. The visualization instrument of claim 24 , wherein the at least one resilient wall is formed from a resilient material and the anterior wall of the blade is formed from a more rigid material than the resilient material.

26. The visualization instrument of claim 25 , wherein the at least one resilient wall is affixed to a rigid structure of the insertable portion including the anterior wall and the medial wall.

27. The visualization instrument of claim 16 ,

wherein the at least one resilient wall is formed from a resilient material and the anterior wall of the blade is formed from a more rigid material than the resilient material, and

wherein the at least one resilient wall is affixed to a rigid structure of the insertable portion formed by the anterior wall and the medial wall.

28. A visualization instrument comprising:

a display device;

a lens;

a camera including an imaging sensor, the camera outputting an image stream corresponding to a plurality of views obtained through the lens, the display device operable to display the plurality of views;

a blade detachably coupled to the display device, the blade including a handle portion and an insertable portion, the insertable portion having a distal cavity housing the camera,

wherein the insertable portion comprises a guide pathway operable to guide insertion of a tube into a patient, the guide pathway comprising a proximal portion and a distal portion,

the proximal portion and the distal portion including an anterior wall having an anterior guide surface;

the proximal portion and the distal portion including a medial wall having a medial guide surface;

only the distal portion including a posterior wall having a posterior guide surface opposite the anterior guide surface and a lateral wall extending anteriorly from the posterior wall, the lateral wall and the anterior wall forming an elongate opening through which the tube can be removed,

wherein the insertable portion includes a resilient portion including the lateral wall, the resilient portion being operable to deform when at least a portion of the tube is removed through the elongate opening, and

wherein the anterior wall of the blade is more rigid than the lateral wall.

29. The visualization instrument of claim 28 , wherein the proximal portion of the guide pathway is shorter than the distal portion of the guide pathway.

30. The visualization instrument of claim 29 , wherein the length of the proximal portion is at most 40% of the length of the insertable portion, measured along a center line of the insertable portion.

31. The visualization instrument of claim 28 , further including a transition surface extending along the proximal portion of the guide pathway from a lateral side of the insertable portion to the medial guide surface.

32. The visualization instrument of claim 28 , further comprising a housing adapted to contain a battery, the housing permanently coupled to the display device, wherein the handle includes a proximal cavity configured to receive the housing to detachably couple the blade and the display device, and wherein the battery is positioned in the proximal cavity when the housing is coupled to the blade.

33. The visualization instrument of claim 28 , wherein the resilient portion enables the insertable portion to snugly receive tubes of different diameters which are pressed against the anterior wall by the resilient portion.

34. The visualization instrument of claim 33 , wherein the anterior wall of the blade is more rigid than the resilient portion to facilitate displacement of a tissue of a patient.

35. The visualization instrument of claim 34 , wherein the resilient portion is formed from a resilient material and the anterior wall of the blade is formed from a more rigid material than the resilient material.

36. The visualization instrument of claim 35 , wherein the resilient portion is affixed to a rigid structure of the insertable portion including the anterior wall and the medial wall.

37. The visualization instrument of claim 28 ,

wherein the resilient portion is formed from a resilient material and the anterior wall of the blade is formed from a more rigid material than the resilient portion, and

wherein the resilient portion is affixed to a rigid structure of the insertable portion including the anterior wall and the medial wall.

38. The visualization instrument of claim 28 , wherein, within the proximal portion of the blade, the medial guide surface forms an open longitudinal edge that extends between the handle portion of the blade and the distal portion of the insertable portion of the blade, such that the posterior wall is separated from the handle portion by the medial wall within the proximal portion of the blade.

39. The visualization instrument of claim 10 ,

wherein the resilient portion is formed from a resilient material and the anterior wall of the blade is formed from a more rigid material than the resilient material, and

wherein the resilient portion is affixed to a rigid structure of the insertable portion formed by the anterior wall and the medial wall.

Assignments (9)
CORRECTIVE ASSIGNMENT TO CORRECT THE THE WRONG ASSIGNMENT WAS ATTACHED TO THE CORRECTION PREVIOUSLY RECORDED ON REEL 026439 FRAME 0114. ASSIGNOR(S) HEREBY CONFIRMS THE THE CORRECT ASSIGNMENT IS NOW ATTACHED. Recorded Jul 7, 2011
From: CHINNOCK, RANDAL; GRUBNER, GEORGE
To: OPTIMUM TECHNOLOGIES, INC.
Reel/Frame 026583/0295 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INVENTOR GEORGE GRUBNER'S NAME WHICH WAS MISSPELLED PREVIOUSLY RECORDED ON REEL 026297 FRAME 0489. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECT SPELLING OF GEORGE GRUBNER'S NAME IS "GRUBNER". Recorded Jun 14, 2011
From: CHINNOCK, RANDAL; GRUBNER, GEORGE
To: OPTIMUM TECHNOLOGIES, INC.
Reel/Frame 026439/0114 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INVENTOR KRISTIN SIZE JUGENHEIMER'S NAME WHICH WAS MISS SPELLED PREVIOUSLY RECORDED ON REEL 026297 FRAME 0489. ASSIGNOR(S) HEREBY CONFIRMS THE THE CORRECT SPELLING OF KRISTIN SIZE JUGENHEIMER'S FIRST NAME IS KRISTIN. Recorded Jun 14, 2011
From: GOODRICH POWELL, ELIZABETH; CROSBY GREGORY, PAUL; PALLADINO, GARY VINCENT; HACK, BRIAN; JUGENHEIMER SIZE, KRISTIN; MILLER, RICHARD L.
To: MANTA PRODUCT DEVELOPMENT, INC.
Reel/Frame 026440/0946 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2011
From: OPTIMUM TECHNOLOGIES, INC.
To: KING SYSTEMS CORPORATION
Reel/Frame 026307/0534 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2011
From: CHINNOCK, RANDAL; GRUBRER, GEORGE
To: OPTIMUM TECHNOLOGIES, INC.
Reel/Frame 026307/0457 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2011
From: MANTA PRODUCT DEVELOPMENT, INC.
To: KING SYSTEMS CORPORATION
Reel/Frame 026307/0547 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2011
From: OPTIMUM TECHNOLOGIES, INC.
To: KING SYSTEMS CORPORATION
Reel/Frame 026297/0440 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2011
From: POWELL GOODRICH, ELIZABETH; CROSBY GREGORY, PAUL; PALLADINO, GARY VINCENT; HACK, BRIAN; JUGENHEIMER SIZE, KRISTINE; MILLER, RICHARD L.
To: MANTA PRODUCT DEVELOPMENT, INC.
Reel/Frame 026297/0489 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2011
From: MCGRAIL, THOMAS W.; MILLER, DAVID J.; YEH, YUN SIUNG TONY; PARGETT, MICHAEL S.
To: KING SYSTEMS CORPORATION
Reel/Frame 026297/0473 →
Continuity (3)
Provisional Application 61314058 · Mar 15, 2010
Provisional Application 61265330 · Nov 30, 2009
Related Publication 20110130627A1 · Jun 2, 2011