IP Library › Granted Patent US 10,722,110
Granted Patent B2
US 10,722,110 · App. 14/798,751 · Granted Jul 28, 2020

Medical devices and methods of placement

Inventor: Robert Molnar (Long Grove, IL)
Assignee: WM & DG, INC.
A61B1/267A61B1/0014A61B1/00016A61B1/00064A61B1/00135A61B1/00137A61B1/00142A61B1/00154A61B1/05A61B1/07A61B1/233A61B1/2673A61B1/303A61M16/0003A61M16/0409A61M16/0434A61M16/0456A61M16/0459A61M16/0461A61M16/0463A61M16/0465A61M16/0488A61M16/0666A61B1/00078A61B1/015A61B1/018A61M16/0497
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Quick Facts
Patent No.
US 10,722,110
App. No.
14/798,751
Granted
Jul 28, 2020
Kind
B2
Abstract

The present invention provides improved medical devices equipped with a visualization device for intubation, extubation, ventilation, drug delivery, feeding and continuous remote monitoring of a patient. The present invention also provides methods for rapid and accurate placement of a medical device in a patient and continuous real time monitoring, including a remote monitoring, of the patient after the placement.

Claims (25)

1. An oral airway device comprising:

1) a tubal body with a distal end and a proximal end and a central lumen located within the tubal body; and

2) a visualization device,

wherein the diameter of the central lumen within the tubal body is such that an endotracheal tube can be placed inside the central lumen;

wherein the visualization device comprises a camera tube with a proximal end and a distal end and the distal end of the camera tube being sealed at the distal end with a transparent material and a camera being placed inside the camera tube through the opening at the proximal end of the camera tube, and wherein the camera tube is a separate tube from the tubal body; and

wherein the camera tube is attached to the tubal body externally relative to the tubal body; and

wherein the oral airway device opens the oral airway under continuous visualization during insertion of the oral airway device in a patient, the oral airway device provides a conduit for intubating a patient with the endotracheal tube under continuous visualization with the camera, and the oral airway device provides continuous visualization after the oral airway device has been inserted and kept in the patient.

2. The oral airway device of claim 1 , wherein the device further comprises a holder connected to the proximal surface of the oral airway device and a removable handle which can be attached to the holder.

3. The oral airway device of claim 1 , wherein the device comprises a second tubal body attached externally to the tubal body with the central lumen.

4. The oral airway device of claim 1 , wherein the oral airway device is assembled together with a carrier, wherein the carrier comprises a tubal body with lumen into which the oral airway device can be placed, wherein a first balloon caps the distal end of the carrier, wherein the carrier has a lumen opening proximal to the first balloon, wherein the carrier has a second balloon circumventing the tubal body of the carrier proximally to the lumen, wherein the carrier may further optionally comprise a third balloon circumventing the body of the carrier proximally to the second balloon, and wherein the balloons can be inflated with an inflating means.

5. An oral airway device comprising:

a tubal body with a distal end and a proximal end and a central lumen located within the tubal body; and

a visualization device,

wherein the diameter of the central lumen within the tubal body is such that an endotracheal tube can be placed inside the central lumen;

wherein the visualization device comprises a camera tube with a proximal end and a distal end and the distal end of the camera tube being sealed at the distal end with a transparent material and a camera being placed inside the camera tube through the opening at the proximal end of the camera tube, and wherein the camera tube is a separate tube from the tubal body;

wherein the tubal body creates a rotating central passageway made of two half-cylinders, a first external half-cylinder and second internal half-cylinder, wherein the second half-cylinder fits inside the first half -cylinder and can glide inside the first half-cylinder along the proximal-distal axis of the first half-cylinder and wherein the second half-cylinder can also rotate inside the first half-cylinder and thereby create a completely enclosed central passageway or only partially enclosed central passageway with a lateral opening, and wherein the first half-cylinder and the second half-cylinder can be separated from each other; and

wherein the camera tube is attached to the first half-cylinder externally relative to the tubal body.

6. The oral airway device of claim 5 , wherein the camera tube is attached externally to the first half-cylinder.

7. The oral airway device of claim 5 , wherein the camera tube is attached internally to the second half-cylinder.

8. The oral airway device of claim 5 , wherein the second half-cylinder has at least one retractable extension on the second half-cylinder body which when extended outside the second half-cylinder body secures the positioning of the second half-cylinder inside the first half-cylinder and prevents further distal sliding of the second half-cylinder inside the first half-cylinder.

9. The oral airway device of claim 5 , wherein the camera tube is placed inside the second half-cylinder.

10. A method for intubating a patient, the method comprising loading an endotracheal tube or ventilating tube onto the second half-cylinder of the oral airway device of claim 5 , assembling the second half-cylinder with the first half-cylinder, and inserting the assembly into a patient while continuously monitoring the positioning and movement of the assembly inside the patient with the visualization device attached to the oral airway device.

11. A tubeless intubating device, comprising an ellipsoid body and a handle having a distal end and a proximal end, the ellipsoid body being attached to the distal end of the handle and a visualization device attached to the intubating device, wherein the visualization device comprises a separate camera tube which is attached to the handle of the tubeless intubating device, the camera tube having a proximal end and a distal end, the distal end of the camera tube being in the near proximity to the distal end of the handle, the distal end of the camera tube being sealed, and a camera which can be placed and removed from the camera tube, and wherein the ellipsoid body comprises a lumen with one opening on the upper surface of the ellipsoid body and the other opening on the bottom surface of the ellipsoid body and wherein the proximal end of the handle is equipped with a ring holder suitable for holding at least one of the following devices: an endotracheal tube, supraglottic airway and laryngeal mask airway.

12. A method of intubating and extubating a patient, the method comprising loading at least one of the following devices: an endotracheal tube, supraglottic airway and laryngeal mask airway on the tubeless intubating device of claim 11 , securing the device on the tubeless intubating device with the ring holder, wherein the endotracheal tube, supraglottic airway or laryngeal mask airway slides along the tubeless intubating device and protrudes from the lumen of the ellipsoid body through the opening on the upper surface of the ellipsoid body, and inserting the assembly into a patient under continuous visualization with the visualization device attached to the intubating device.

13. The tubeless intubating device of claim 11 , wherein the ellipsoid body is equipped with a cuff.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2015
From: MOLNAR, ROBERT
To: WM & DG, INC.
Reel/Frame 036079/0034 →
Continuity (2)
Continuation In Part 14455470 · Aug 8, 2014
Related Publication 20160038014A1 · Feb 11, 2016
Cited By (1)
US 12,569,314