An apparatus for establishment of an airway in transtracheal intubation via the cricothyroid membrane is disclosed in which the design integrates within a single unit a curvilinear needle with cutting blade, stylet, syringe and non-metal airway cannula in an over-the-needle position. The integrated design enhances quick and accurate placement of the airway in both emergency and non-emergency applications.

Patent
   RE34086
Priority
Aug 10 1990
Filed
Aug 10 1990
Issued
Oct 06 1992
Expiry
Aug 10 2010
Assg.orig
Entity
Small
29
12
all paid
1. An apparatus for performing transtracheal intubation via the cricothyroid membrane comprising, in combination:
a syringe means comprising at least one hollow barrel with a distal end adapted for attachment of integral apparatus means;
a plunger means slideably disposed within said hollow barrel of said syringe means;
a flexible stylet means slideably disposed within said barrel of said syringe means;
a hollow curvilinear needle means integrally attached to said distal end of said syringe means, said needle means having at its distal end a sharpened edge to serve as a cutting blade; and
a non-metal hollow tube airway means which is slideably disposed over said needle means.
2. An apparatus as set forth in claim 1 in which said syringe means is comprised of a double-barrel means in which said plunger means is slideably disposed within one barrel, and said stylet means is slideably disposed within the other barrel.
3. An apparatus as set forth in claim 1 in which said stylet means is integrally attached to said plunger means.
4. An apparatus as set forth in claim 1 which further comprises a hollow tube means for dilation of the trachea which is slideably disposed over said hollow tube airway means.
5. An apparatus as set forth in claim 1 in which said stylet means is hollow.
6. An apparatus as set forth in claim 1 in which said needle means further comprises a hollowed conduit along the entire length of said needle means.
7. An apparatus as set forth in claim 1 in which said needle means is straight.
8. An apparatus as set forth in claim 1 in which said hollow tube airway means may be manufactured of a material which retains a preformed shape original to its manufacture once placed within the body cavity.
9. An apparatus as set forth in claim 1 in which said hollow tube airway means is curvilinear and of a semi-rigid material.
10. A tube introduction apparatus for intratracheal, intravenous, intraplural, intraabdominal or urological use, comprising:
a hollow barrel having a proximal end and a distal end;
an elongated member partially disposed within said barrel and moveable with respect to said barrel between a proximally retracted position and a distally inserted position;
said elongated member having the proximal end thereof protruding proximally outwardly of said proximal end of said barrel;
a hollow needle attached to the distal end of said barrel, said needle having at its distal end a sharpened edge to serve as a cutting blade;
a flexible stylet telescopically and slideably disposed within said needle, said stylet having the proximal end thereof protruding into said barrel and being at least distally moveable by said member such that when said member is in the retracted position the distal end of said stylet is located proximally of said sharpened edge of said needle, and when said member is in the inserted position the distal end of said stylet is located distally of said sharpened edge;
a hollow conduit telescopically and slideably disposed on said needle wherein the distal end of said conduit is initially proximal of said sharpened edge of said needle, such that when said member is in the inserted position, said stylet forms a guide for said hollow conduit as said conduit is distally slideably removed from said needle. 11. The apparatus as set forth in claim 10 wherein said barrel is a syringe barrel and said elongated member is a syringe plunger. 12. The apparatus as set forth in claim 10 wherein said needle is straight. 13. The apparatus as set forth in claim 10 wherein said needle is curved. 14. The apparatus as set forth in claim 10 wherein said member is permanently affixed to said stylet and said stylet is moveable both proximally and distally with said member. 15. The apparatus as set forth in claim 10 and further comprising means for permitting fluid flow from said needle to said barrel. 16. The apparatus as set forth in claim 15 wherein said means for permitting fluid flow comprises said stylet being hollow to define a fluid passageway therethrough. 17. The apparatus as set forth in claim 10 wherein:
said barrel is a syringe barrel and said member is a syringe plunger;
said plunger being retractably moveable with respect to said stylet;
means for providing a fluid communication between the distal end of said needle and the distal end of said plunger,
whereby when said plunger is retracted in said syringe barrel, fluid will
be drawn into said barrel. 18. The apparatus as set forth in claim 17 wherein:
said means for permitting fluid flow comprises said stylet being hollow to define a fluid passageway therethrough. 19. An apparatus for introducing a conduit into a mammalian body, comprising:
a hollow syringe barrel with a proximal end and a distal end, said barrel being open at its ends only;
a plunger slideably disposed within said hollow syringe barrel, said plunger being manually movable back and forth in said syringe barrel and having the proximal end thereof protruding from the proximal end opening of said hollow barrel;
a hollow needle attached to the distal end of said syringe barrel, said needle having at its distal end a sharpened edge to serve as a cutting blade;
a flexible stylet slideably disposed within said needle, said stylet being moveable at least distally with the distal end of said plunger such that when said plunger is moved to its distal position said stylet extends distally beyond said sharpened edge of said needle;
a hollow conduit slideably disposed over said needle, said stylet extending through said hollow conduit and out the distal end thereof when the plunger is moved to its distal position in the syringe barrel, such that said stylet forms a guide for said hollow conduit as said conduit is slideably moved distally over the needle. 20. The apparatus as set forth in claim 19 in which said stylet is integrally attached to said plunger. 21. The apparatus as set forth in claim 19 in which said needle, said stylet and said hollow conduit are co-axial.

This invention relates to

The present invention is designed to facilitate transtracheal intubation via percutaneous puncture through the cricothyroid membrane. It comprises a curvilinear hollow metal needle with a sharp blade-like surface at the distal end for penetration of the cricothyroid membrane, a hollow-barreled syringe means, and a plunger, slideably disposed within the syringe, to the distal end of which is attached a flexible stylet. The curved needle is inserted through the membrane. The placement of the blade in this design allows the practitioner to hold the device in close proximity to the patient, enabling the user to exercise fine control of the needle. The curvature of the needle allows the syringe component to be free of possible disturbance by movement of the patient's chin. Once placed, the plunger of the syringe is retracted to aspirate a small amount of air. Assured that the needle placement is correct, the plunger is then advanced through the syringe simultaneously advancing the stylet out of the needle into the trachea. Thereafter, a final airway catheter which is in an over-the-needle position is threaded down the needle and subsequently over the stylet into the trachea. The needle and stylet are then removed leaving the airway in place. The airway has a threaded means at the proximal end to which airway modification devices or tubes may be attached, and is tapered at its distal end to facilitate unencumbered insertion. The final airway catheter may be composed of rigid, semi-rigid or flexible plastic or other synthetic material which has a sufficient quality of rigidity to prevent kinking. The airway may also be composed of a "memory" material which will cause it to assume a predetermined shape when not being manipulated in relation to the stylet or needle.

In a modification to the preferred embodiment, the stylet is not attached to the distal end of the plunger. In this embodiment, the stylet is comprised of a hollow tube through which air may be aspirated both before and after the stylet has been advanced into the trachea. All other aspects of airway placement and withdrawal of the integrated device are as described for the preferred embodiment.

In another embodiment of this device, the styringe is a "double-barrelled" design tapering at the distal end to form one common chamber to which the metal needle attaches. Slideably disposed within one barrel is the plunger, and the other barrel maintains the stylet. When retracted, the plunger causes air to be aspirated through the metal needle via the common chamber. A gasket at the proximal end of the stylet barrel prohibits air from being spirated from the outside. The stylet is actuated by a lever, attached to the proximal end of the stylet, which passes through and is slideable disposed along the length of the barrel of the syringe housing the stylet. When the lever is manually pulled toward the proximal end of the device, the stylet moves through the metal needle; when the lever is advanced down the stylet barrel of the syringe, the stylet simultaneously advances through the needle and protrudes out the distal end of the needle.

With any of these embodiments, a dilator may be placed over the needle followed by the non-metal airway over the dilator. The dilator apparatus allows the use of a smaller needle and stylet, and allows for the use of a larger final airway. The dilator has a tapered distal end which reduces resistance to advancement of the apparatus into the trachea. Further, with any of the embodiments described, a metal needle may be used which has a hollow conduit integrally manufactured into the inside wall of the needle. The conduit runs the length of the needle and allows for the use of a stylet which is of substantially the same diameter as the inner diameter of the needle. The conduit in the needle thus provides a means for aspirating air from the trachea when the plunger is retracted. Alternatively, a stylet may be used which is hollow and which allows aspirated air to pass through into the syringe.

This new apparatus may be used in either emergency situations or as an elective means of establishing an airway. Though the embodiment disclosed is optimally used in high flow (jet) oxygenation and/or anesthesia, the airway established by the apparatus has the ability to be used in low flow oxygenation and/or anesthesia either by continuous or discontinuous positive pressure changes. Indeed, many experts in the field have shown that transtracheal oxygenation at greater than four liters per minute flow, via an 18 gauge needle or catheter, can sustain acceptably normal oxygenation in anesthetized patients who have otherwise obstructed airways. Further, it has been shown that constant low pressure flow, constant "machine" pressure limit flow, or high flow "jet" ventilation through a percutaneous 14 gauge needle catheter can satisfactorily accomplish oxygenation of the patient.

The present invention meets the optimal requirements desired in a transtracheal intubation device because the integral design allows accurate and quick placement of the device without having to reach for other parts. The combination of the IV needle and the syringe-type design, familiar to all health care practitioners, makes the device easy to understand and use. These and other advantages of the present invention will become apparent in the following discussion.

FIG. 1 is a partially cross-sectioned view of the embodiment where the plunger and stylet are attached;

FIG. 2 is a partially cross-sectioned view of the embodiment where the plunger and stylet are separate from one another;

FIG. 3 is a partially cross-sectioned view of the double-barrelled syringe embodiment;

FIG. 4 is a display of the separate components of all the embodiments;

FIG. 5 is an enlarged cross-section of the modified metal needle illustrating the internal conduit;

FIG. 6 is a further embodiment of the device in which the needle, stylet, and airway are without attachment to a syringe;

FIG. 7 is a partially cross-sectioned view of the device illustrating placement through the cricothyroid membrane;

FIG. 8 is a partially cross-sectioned view of the device illustrating advanced placement of the device in the trachea;

FIG. 9 is a partially cross-sectioned view of the device illustrating advancement of the stylet through the needle;

FIG. 10 is a partially cross-sectioned view of the device illustrating placement of the airway; and

FIG. 11 is a partially cross-sectioned view of the device illustrating removal of the needle, stylet, and syringe, leaving the airway in place.

The single-barrel embodiment of the device is illustrated in FIG. 1 in which the stylet 10 is attached to the bottom surface 11 of the plunger 12, which is slideably disposed within the syringe 13. When the plunger is being pulled to the fully retracted position so as to cause aspiration of air from the trachea, the stylet is completely retracted within the needle and air is allowed to pass around the stylet and into the barrel of the syringe. When the plunger is at a position half way through the syringe, the device is said to be loaded. As illustrated by the "load position" in the center of FIG. 1, the final airway 14 is in the over-the-needle position (the curvilinear needle being disposed inside the airway), and the tip of the needle 15 with the blade 16 is extended beyond the end of the airway. As shown, the needle is preferably curved, but the needle may be of varying curvature, or it may be straight. As the plunger is advanced forward, the stylet is propelled through the needle 15, and the distal end of the stylet 17 extends out from the end of the needle, into the trachea.

In FIG. 2 an alternative embodiment is illustrated in which the stylet 20 is not attached to the plunger 21, and the stylet, therefore, does not move when the plunger is retracted for aspiration of air. It should be noted that the stylet is withdrawn into the needle. In this position air is allowed through the stylet and into the syringe by withdrawal of the plunger. As the plunger is advanced past the "loaded position", the stylet is propelled through the needle 22 and the distal end of the stylet 23 extends past the needle into the trachea.

FIG. 3 illustrates the double-barrel embodiment of the syringe, generally at 30. The plunger 31 is slideably disposed within one barrel of the syringe, and the stylet 32 is slideably disposed within the other barrel of the syringe. The distal end of the syringe narrows to become a single opening 33 to which is attached the needle (disposed within the airway) and airway 34. As the plunger is retracted aspirated air passes up through the metal needle and in through the opening of the syringe 33. A gasket 35 at the distal end of the stylet barrel slideably disposed about the stylet disallows any aspiration of air from the stylet barrel. The stylet is actuated by a lever 37 attached to the proximal end of the stylet and extends through the wall of the stylet barrel, moving up and down the length of the barrel through a slit therein. Again, as the stylet is advanced forward by movement of the lever 37 in a downward fashion, the stylet advances through the needle and out into the trachea.

FIG. 4 illustrates the component parts of the various embodiments. The plunger with attached stylet 40 is shown separated from the single barrel syringe 41. The separated plunger 42 and hollow stylet 43 are also illustrated. The double-barrel syringe with plunger 44 is illustrated beside the stylet 45 with actuating lever 46. The metal curvilinear needle 47 with blade at the distal end illustrated, as are the final airway 48 and dilator 49. The integrated configuration of each of these component parts is illustrated at 50 in which the airway 51 is slideably disposed upon the dilator 52 which is slideably disposed upon the needle 53 through which the stylet 54 extends. It should be noted that the ultimate size of the invention, in any embodiment, may vary to accommodate use in any size patient, from child to adult.

FIG. 5 is a cross-section view of the modified metal needle 60 into one wall of which has been manufactured a hollow conduit 61. When the stylet 62 is in the retracted position, aspirated air enters the end-of the needle and is carried through the conduit into the syringe (not shown). When the stylet 63 is propelled forward through the metal needle and into the trachea, the conduit is blocked.

A further embodiment of the device is illustrated in FIG. 6 in which the needle 70 and overlying airway 71 are not attached to a syringe. The stylet 72 is manually advanced through the needle and into the trachea. In this embodiment, aspiration of air is impossible, but the other principles relating to the placement of the device without a syringe are as stated above for other embodiments.

Placement of the device during a transtracheal intubation episode is illustrated in FIGS. 7 through 11 using the double-barrel embodiment of the invention. In FIG. 7 the needle has been inserted into the neck of the patient and the blade of the needle is poised over the cricothyroid membrane ready for insertion into the trachea. In FIG. 8 the needle is advanced into the trachea, and the plunger of the device is retracted for aspiration of air to assure correct placement. In FIG. 9, the stylet is advanced, as indicated by the arrow direction, and the stylet 80 is shown extended past the needle into the trachea. The airway 81 is advanced into the trachea guided by the stylet as illustrated in FIG. 10. Finally, the integral device, including stylet, needle and syringe means, is removed from the patient leaving the airway in place within the trachea.

It is understood that the particular process of the invention described herein is preferred. Obviously, numerous additional modifications and variations of the present process are possible in light of the above teachings such as intravenous use, intraplural or intraabdominal or urological use. It is therefore to be understood that within the scope of the appended claims, the process may be practiced otherwise than as specifically described herein.

George, Gordon P.

Patent Priority Assignee Title
11786684, Dec 20 2019 Cricothyrotomy device
5366441, Sep 28 1993 Becton, Dickinson and Company Catheter introducer assembly with guidewire
5507728, Sep 30 1993 Peristaltic interlumenar device advances
5536267, Nov 08 1993 AngioDynamics, Inc Multiple electrode ablation apparatus
5546939, Dec 05 1994 Emergency tracheostomy apparatus
5827216, Jun 07 1995 Cormedics Corp. Method and apparatus for accessing the pericardial space
5913855, Aug 15 1995 AngioDynamics, Inc Multiple antenna ablation apparatus and method
5925042, Aug 15 1995 AngioDynamics, Inc Multiple antenna ablation apparatus and method
5928229, Nov 08 1993 AngioDynamics, Inc Tumor ablation apparatus
5951547, Aug 15 1995 AngioDynamics, Inc Multiple antenna ablation apparatus and method
5980517, Aug 15 1995 AngioDynamics, Inc Cell necrosis apparatus
6059780, Aug 15 1995 AngioDynamics, Inc Multiple antenna ablation apparatus and method with cooling element
6071280, Nov 08 1993 AngioDynamics, Inc Multiple electrode ablation apparatus
6080150, Aug 15 1995 AngioDynamics, Inc Cell necrosis apparatus
6090105, Aug 15 1995 AngioDynamics, Inc Multiple electrode ablation apparatus and method
6132425, Aug 15 1995 AngioDynamics, Inc Cell necrosis apparatus
6298851, Sep 15 1999 Emergency tracheotomy apparatus
6637435, Dec 07 1999 Cook Medical Technologies LLC Percutaneous dilational device
6666844, Jun 07 1995 Method and apparatus for accessing the pericardial space
6755794, Apr 25 2000 HERAEUS MATERIALS S A Adjustable stylet
6958062, Nov 08 1993 AngioDynamics, Inc Multiple antenna ablation apparatus and method
7892186, Dec 09 2005 HERAEUS MATERIALS S A Handle and articulator system and method
8151791, Apr 29 2009 Lifeserve Innovations, LLC Methods and devices for performing an emergency or non-emergency tracheotomy
8307824, Jun 27 2008 CITIBANK, N A Method of performing a tracheostomy
8568436, Dec 07 1999 Cook Medical Technologies LLC Percutaneous dilational device
8734439, Aug 15 1995 AngioDynamics, Inc Ablation apparatus and method
D536792, Sep 19 2003 SNORING CENTER USA, LLC Implant delivery tool
D605759, Jun 27 2008 CITIBANK, N A Dilator handle
RE36611, Feb 17 1998 Emergency tracheostomy apparatus
Patent Priority Assignee Title
2541402,
3182663,
3384087,
3511243,
4244362, Nov 29 1978 Endotracheal tube control device
4278081, Feb 21 1978 Tracheal tube
4417886, Nov 05 1981 Arrow International Investment Corporation Catheter introduction set
4444185, Aug 19 1981 Fiberoptic tracheotomy method
4471778, Nov 14 1980 ENGINEERED MEDICAL SYSTEMS, INC EMI Apparatus and method for providing opening into body cavity or viscus
4520810, Oct 02 1981 BIVONA, INC Apparatus for performing an emergency cricothyrotomy
4643188, Feb 14 1985 BIVONA, INC Surgical device for performing emergency cricothyrotomies and tracheotomies
4677978, Sep 03 1982 University of Florida Emergency cricothyrotomy system and cricothyrotomy kit
Executed onAssignorAssigneeConveyanceFrameReelDoc
Date Maintenance Fee Events
Sep 21 1992ASPN: Payor Number Assigned.
Mar 12 1993M283: Payment of Maintenance Fee, 4th Yr, Small Entity.
Feb 14 1997M284: Payment of Maintenance Fee, 8th Yr, Small Entity.
Aug 03 2001M285: Payment of Maintenance Fee, 12th Yr, Small Entity.


Date Maintenance Schedule
Oct 06 19954 years fee payment window open
Apr 06 19966 months grace period start (w surcharge)
Oct 06 1996patent expiry (for year 4)
Oct 06 19982 years to revive unintentionally abandoned end. (for year 4)
Oct 06 19998 years fee payment window open
Apr 06 20006 months grace period start (w surcharge)
Oct 06 2000patent expiry (for year 8)
Oct 06 20022 years to revive unintentionally abandoned end. (for year 8)
Oct 06 200312 years fee payment window open
Apr 06 20046 months grace period start (w surcharge)
Oct 06 2004patent expiry (for year 12)
Oct 06 20062 years to revive unintentionally abandoned end. (for year 12)