Catheter Adapter with Flexible Strain Relief
20230067368 · 2023-03-02
Inventors
- John M. Lackey (West Valley City, UT, US)
- Shaun Staley (Murray, UT, US)
- Ralph L. Sonderegger (Farmington, UT, US)
- Dorien Gemma Butter (Millcreek, UT, US)
- Alison Nicole Thompson (Salt Lake City, UT, US)
- Nathan Aaron Mitchell (Murray, UT, US)
Cpc classification
A61M2039/1077
HUMAN NECESSITIES
A61M2039/1033
HUMAN NECESSITIES
International classification
Abstract
A catheter adapter including a housing and an extension portion extending from the distal end of the housing and defining a passageway configured to receive a catheter. The first material of the housing is more flexible than the second material of the extension portion. The catheter adapter may further include a body contact portion comprising an upper surface corresponding to a surface of the housing and a lower surface defining an outer surface of the catheter adapter. The housing may include a body, an access port extending from the body, and a plurality of protrusions extending from the body and/or the access port. The body contact portion covers at least a portion of the housing, and the protrusions are embedded in and are completely surrounded by the body contact portion. The catheter adapter may further include a connection portion connecting the extension portion to the body contact portion.
Claims
1. A catheter adapter comprising: a housing having a proximal end and a distal end; and an extension portion extending from the distal end of the housing, the extension portion having a proximal end and a distal end and defining a passageway configured to receive a catheter, wherein the housing comprises a first material and the extension portion comprises a second material, and the second material is more flexible than the first material.
2. The catheter adapter of claim 1, wherein the first material is a polymer and the second material is an elastomer.
3. The catheter adapter of claim 1, wherein the second material has a hardness of 50-70 shore A.
4. The catheter adapter of claim 1, further comprising a first wing member extending from a first side of the housing and a second wing member extending from a second side of the housing, wherein the first and second wing members are each formed from the second material.
5. The catheter adapter of claim 1, wherein an outer diameter of the extension portion is the same as an outer diameter of the distal end of the housing.
6. The catheter adapter of claim 1, wherein an outer diameter of the extension portion is less than an outer diameter of the distal end of the housing.
7. The catheter adapter of claim 1, wherein the extension portion comprises a plurality of radial channels.
8. The catheter adapter of claim 1, wherein the extension portion comprises a plurality of axial channels.
9. The catheter adapter of claim 7, wherein the extension portion comprises a top portion and a bottom portion positioned opposite the top portion, the bottom portion configured to face a skin surface of a patient, and wherein the plurality of radial channels are only provided on the bottom portion of the extension portion.
10. The catheter adapter of claim 1, wherein the extension portion comprises a helical channel.
11. The catheter adapter of claim 1, further comprising a body contact portion comprising an upper surface corresponding to a surface of the housing and a lower surface defining an outer surface of the catheter adapter.
12. The catheter adapter of claim 1, wherein the housing comprises: a body having a proximal end and a distal end; an access port extending from the body; and a plurality of protrusions extending from the body and/or the access port; the body contact portion covers at least a portion of the housing, and the protrusions are embedded in and are completely surrounded by the body contact portion.
13. The catheter adapter of claim 12, wherein an extension tip extends from the distal end of the body of the housing, and the extension portion surrounds at least a portion of the extension tip.
14. The catheter adapter of claim 13, wherein the extension tip comprises a central portion defining a lumen and a flange that surrounds the central portion, the central portion extending distally beyond the flange.
15. The catheter adapter of claim 13, wherein a notch is provided in the extension tip.
16. The catheter adapter of claim 13, further comprising a connection portion connecting the extension portion to the body contact portion, wherein the connection portion extends through and substantially fills the notch in the extension tip of the housing.
17. The catheter adapter of claim 13, further comprising a recess in an outer surface of the body of the housing in an area covered by the body contact portion.
18. The catheter adapter of claim 17, wherein an extension tip extends from the distal end of the body of the housing, a notch is provided in the extension tip, and the recess is connected to the notch in the extension tip, such that a sidewall of the notch is continuous with a sidewall of the recess.
19. The catheter adapter of claim 18, wherein the recess extends around an outer circumference of the body of the housing for an angular distance equal to an angular distance defined by the notch in the extension tip, and a circumferential width of a distal end of the recess is less than a circumferential width of the proximal end of the recess.
20. The catheter adapter of claim 17, wherein the recess extends along a length of the body of the housing from the notch in the extension portion to a location proximal to the access port.
21. The catheter adapter of claim 17, wherein at least one protrusion extending from the outer surface of the body of the housing is provided in the recess.
22. The catheter adapter of claim 13, further comprising a flange extending laterally from an outer surface of the body of the housing, wherein the body contact portion abuts the flange.
23. The catheter adapter of claim 22, further comprising a recess in an outer surface of the body of the housing in an area covered by the body contact portion, wherein the protrusions extending from the body of the housing are positioned between the flange of the housing and the recess and are circumferentially spaced from the recess.
24. The catheter adapter of claim 12, wherein at least one of the plurality of protrusions extends from the body of the housing and at least one of the plurality of protrusions extends from the access port.
25. The catheter adapter of claim 12, wherein the protrusions have a flat, wing-shaped configuration.
26. The catheter adapter of claim 12, further comprising a flange extending laterally from an outer surface of the body of the housing, wherein the body contact portion abuts the flange, and a lateral distance that the protrusions extend from the housing is greater than a lateral distance that the flange extends from the housing.
27. The catheter adapter of claim 12, further comprising wings extending from opposite sides of the body contact portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0043] Corresponding reference characters indicate corresponding parts throughout the several views. The exemplifications set out herein illustrate exemplary embodiments of the disclosure, and such exemplifications are not to be construed as limiting the scope of the disclosure in any manner.
DESCRIPTION OF THE INVENTION
[0044] For purposes of the description hereinafter, the terms “upper”, “lower”, “right”, “left”, “vertical”, “horizontal”, “top”, “bottom”, “lateral”, “longitudinal”, “proximal”, “distal” and derivatives thereof shall relate to the invention as it is oriented in the drawing figures. However, it is to be understood that the invention may assume various alternative variations, except where expressly specified to the contrary. It is also to be understood that the specific devices illustrated in the attached drawings, and described in the following specification, are simply exemplary aspects of the invention.
[0045] Unless otherwise indicated, all ranges or ratios disclosed herein are to be understood to encompass the beginning and ending values and any and all subranges or subratios subsumed therein. For example, a stated range or ratio of “1 to 10” should be considered to include any and all subranges or subratios between (and inclusive of) the minimum value of 1 and the maximum value of 10; that is, all subranges or subratios beginning with a minimum value of 1 or more and ending with a maximum value of 10 or less.
[0046] “Including”, “such as”, “for example” and like terms means “including/such as/for example but not limited to”. The terms “first”, “second”, and the like are not intended to refer to any particular order or chronology, but refer to different conditions, properties, or elements.
[0047] The present invention is directed to a catheter adapter 10 (
[0048] The catheter adapter 10 aids insertion of a flexible catheter 12 into a blood vessel 14 of a patient and acts to secure the catheter 12 and to provide connection between the catheter 12 and an intravenous fluid source to allow introduction of the intravenous fluid into the blood vessel 14 of the patient or connection to a blood collection device to withdraw a blood sample from the blood vessel 14. The vascular access assembly 120 provides access to the patient's blood vessel 14 via an introducing needle 124 over which the catheter 12 of the catheter adapter 10 is threaded. Upon successful insertion of the needle 124/catheter 12 into the blood vessel 14, the needle 124 is removed and the catheter 12 remains in the blood vessel 14.
[0049] As referred to herein, “proximal” refers to the end of the catheter adaptor 10 and the direction indicated by the arrow “P” in the figures and “distal” refers to the end of the catheter adaptor 10 and the direction indicated by the arrow “D” in the figures.
[0050] As shown in
[0051] The housing 16 comprises a body 20, a lateral access port 22, and an optional extension tip 24.
[0052] The body 20 of the housing 16 has a proximal end 26 and a distal end 28. The proximal end 26 of the body 20 is adapted for attachment to the needle assembly 128, and a catheter 12 extends from an opening 30 in the distal end 28 of the body 20. The body 20 defines a passageway 32 in fluid communication with the catheter 12.
[0053] A lateral access port 22 extends from the body 20 of the housing 16. The access port 22 has a central longitudinal axis that is at an angle to the central longitudinal axis of the body 20 of the housing 16. The access port 22 has a first end 34 that is integral with the body 20 of the housing 16 and a second end 36 adapted for connection to an intravenous fluid source or a blood collection device. The access port 22 defines a passageway. The passageway is in fluid communication with the passageway 32 of the body 20 of the housing 16 at the first end 34 of the access port 22 and in fluid communication with the attached intravenous fluid source or blood collection device at the second end 36 of the access port 22. The second end 36 of the access port 22 may be configured for connection to an extension tube 126 for establishing fluid communication between an intravenous fluid source and the catheter adapter 10.
[0054] The body 20 of the housing 16 and the access port 22 may be substantially cylindrical. As shown in
[0055] The nose extension portion 96 extends distally beyond the distal end 28 of the housing 16 and defines a passageway 104 (
[0056] Referring to
[0057] The body contact portion 98 has an upper surface 114 that corresponds to the outer surface 56 of the housing 16, a lower surface 116 that defines the bottom surface of the catheter adapter 10, which is in contact with the body of the patient when the catheter adapter 10 is in use, and wings 102 extending from opposite sides. The wings 102 may be utilized by a healthcare professional during insertion of the catheter 12 and/or may be used to secure the catheter adaptor 10 to the skin of a patient after insertion of the catheter 12.
[0058] The housing 16 is made from a first material and the nose extension portion 96 is made from a second material. The second material is more flexible than the first material. Because the second material of the nose extension portion 96 is more flexible than the first material of the housing 16, the nose extension portion 96 flexes downward toward the skin surface of the patient when the catheter 12 is inserted into the blood vessel 14 of the patient thereby relieving strain on the catheter 12 and preventing sharp bending of the catheter 12. The body contact portion 98 may also be made from the second material.
[0059] The first material may be a polymer and the second material may be an elastomer. The second material may have a hardness of 50-70 shore A. The first material may be copolyester, acrylic, polycarbonate, or polypropylene. The second material may be silicone or a thermoplastic elastomer (TPE).
[0060] As shown in
[0061] As shown in
[0062] At least one protrusion 66 extending from the outer surface 56 of the body 20 of the housing 16 may be provided in the recess 54. As shown in
[0063] As shown in
[0064] As shown in
[0065] In one embodiment, a first protrusion 94a extends from the body 20 of the housing 16 in an area between the distal end 74 of the first flange segment 70a of the housing 16 and the distal end 62 of the recess 54 in the outer surface 56 of the body 20 of the housing 16. A second protrusion 94b extends from the body 20 of the housing 16 in an area between the distal end 80 of the second flange segment 70b of the housing 16 and the distal end 62 of the recess 54 on the outer surface 56 of the body 20 of the housing 16. The first protrusion 94a and the second protrusion 94b are on opposite sides of the body 20 of the housing 16 and are adjacent the nose extension portion 96. Optionally, third and fourth protrusions 94c, 94d may be provided. The third protrusion 94c extends from the body 20 of the housing 16 in an area adjacent the proximal end 76 of the first flange segment 70a. The fourth protrusion 94d extends laterally from the access port 22 of the housing 16 from a position below the third flange segment 70c of the housing 16.
[0066] While the catheter adapter 10 is described and shown as having two or three protrusions 94a-94c extending from the body 20 of the housing 16 and one protrusion 94d extending from the access port 22, any number of protrusions 94 may be provided on the body 20 of the housing 16 and/or the access port 22 of the housing 16. The protrusions 94 may be positioned in any area below the flange 70 of the housing 16. If a recess 54 is provided in the outer surface 56 of the body 20 of the housing 16, the protrusions 94 may be positioned in any area between the flange 70 of the housing 16 and the recess 54.
[0067] As shown in
[0068] As can be seen in
[0069] Optionally, as shown in
[0070] While the nose extension portion 96 and the body contact portion 98 are shown in
[0071] A notch 50 is provided in a bottom circumference of the distal end 28 of the body 20 of the housing 16 and/or in the optional extension tip 24. The notch 50 may be substantially wedge shaped and may extend through the optional flange 44 and the sidewall of the central portion 40 of the extension tip 24 creating an opening 52 in the sidewall of the central portion 40 of the extension tip 24 that extends into the lumen 42 of the central portion 40 of the extension tip 24. Alternatively, the notch 50 may only extend through the flange 44.
[0072] If a recess 54 in the outer surface 56 of the bottom side of the body 20 of the housing 16 is provided, the distal end 62 of the recess 54 may define the notch 50 or the recess 54 may be in communication with the notch 50 in the optional extension tip 24. The recess 54 may extend around the outer circumference of the body 20 of the housing 16 for an angular distance equal to the angular distance defined by the notch 50 in the extension tip 24, such that the sidewall 58 of the notch 50 is continuous with the sidewall 60 of the recess 54, and the circumferential width W.sub.rd of the distal end 62 of the recess 54 is less than the circumferential width W.sub.rp of the proximal end 64 of the recess 54 (
[0073] The connection portion 100 connects the nose extension portion 96 to the body contact portion 98. The connection portion 100 extends through and substantially fills the notch 50 in the housing 16. In this manner, the nose extension portion 96 and the body contact portion 98 can be formed as a single, unitary piece in a single forming step.
[0074] The body contact portion 98 has an upper surface 114 that corresponds to and fills the area defined beneath the flange 70 of the housing 16 and the outer surface 56 of the housing 16 including the optional recess 54 in the outer surface 56 of the body 20 of the housing 16. The body contact portion 98 further surrounds the protrusions 94 of the housing 16, such that the protrusions 94 of the housing 16 extend into the body contact portion 98 and are completely embedded in the material of the body contact portion 98. The lower surface 116 of the body contact portion 98 defines the bottom surface of the catheter adapter 10 which is in contact with the body of the patient when the catheter adapter 10 is in use.
[0075] As shown in
[0076] The nose extension portion 96 of the catheter adapter 10 may be substantially cylindrical. The outer diameter of the nose extension portion 96 may be the same as the outer diameter of the distal end 18 of the housing 16 (
[0077] The nose extension portion 96 and the distal end 18 of the housing 16 form a 90 degree angle, i.e., the outer surface 112 of the nose extension portion 96 is perpendicular to the distal end 18 of the housing 16. The diameter of the nose extension portion 96 may also taper from the proximal end 110 to the distal end 108, such that the diameter of the proximal end 110 of the nose extension portion 96 is greater than the diameter of the distal end 108 of the nose extension portion 96.
[0078] As shown in
[0079] Optionally, (
[0080] The inventive catheter adapter 10 is configured to provide an optimized angle to minimize kinking, particularly at the S-shaped profile shown in
[0081] The catheter adapter 10 may be injection molded in a two shot process in which the housing 16 is injection molded by injecting the first material into a first mold having a top mold section and a bottom mold section, the bottom mold section corresponding to the shape of the bottom of the housing 16. The first material is solidified in the mold. The mold is opened and the bottom mold section is replaced by a second bottom mold section corresponding to the shape of the nose extension portion 96, the body contact portion 98, and the optional connection portion 100. The second material is injected into the mold and solidified, thereby forming the nose extension portion 96, the body contact portion 98, and the optional connection portion 100 and connecting the nose extension portion 96 and the body contact portion 98 to the housing 16.
[0082] The protrusions 94 of the housing 16, the flange 70 of the housing 16, the optional recess 54 in the outer surface 56 of the housing 16, and the optional protrusion 66 in the recess 54, all act to increase the adhesion of the first material of the housing 16 to the second material of the nose extension portion 96 and the body contact portion 98 and to securely connect the housing 16 to the nose extension portion 96 and the body contact portion 98. The connection portion 100 in combination with the notch 50 in the extension tip 24 of the housing 16 allows the nose extension portion 96 and the body contact portion 98 to be formed as a single unitary piece using a one-piece bottom mold in a single forming operation.
[0083] Alternatively, the catheter adapter 10 may be injection molded in an over-molding process in which the housing 16 is injection molded by injecting the first material into a first mold. The first material is solidified, and the housing 16 is removed from the mold. The housing 16 is transferred to a second mold corresponding to the shape of t the nose extension portion 96, the body contact portion 98, and the optional connection portion 100. The second material is injected into the mold and solidified, thereby forming the nose extension portion 96 and the body contact portion 98 and connecting the nose extension portion 96 and the body contact portion 98 to the housing 16.
[0084] In a further alternative, the nose extension portion 96 and/or the body contact portion 98 may be molded separately from the housing 16 and then attached to the housing 16.
[0085] As shown in
[0086] The needle assembly 128 is connected to the proximal end 26 of the housing 16 of the catheter adapter 10 and includes a needle 124 connected to a needle hub 130. The needle 124 passes through the lumen of the catheter 12 and is transitionable from an insertion position in which the distal point 132 of the needle 124 extends beyond the distal end 134 of the catheter 12 to a removal position in which the needle 124 is removed from the catheter 12. A septum (not shown) or other sealing device may be provided in the proximal end 26 of the body 20 of the housing 16 to seal around the needle 124 when the needle 124 is inserted into the body 20 of the housing 16 and/or to seal the passageway 32 of the body 20 of the housing 16 when the needle 124 is completely removed from the housing 16. The needle assembly 128 may include finger grips positioned at the sides of the needle assembly 128 to facilitate various insertion techniques. The needle assembly 128 may further include a needle shield 136 configured to secure the distal point 132 of the needle 124 within the needle shield 136 when the needle assembly 128 is removed from the catheter adapter 10. The needle shield 136 may be activated passively. The needle assembly 128 may further include a push tab 138. The push tab 138 provides a surface for exerting a distal force on the needle assembly 128 to facilitate advancement of the needle 124/catheter 12 after the distal ends of the needle 124/catheter 12 have been inserted into the blood vessel 14 and allows for both one-handed and two-handed advancement. In use, the needle 124, in the insertion position, is used to pierce the skin of the patient and the needle 124 surrounded by the catheter 12 is inserted into the blood vessel 14. Further advancement of the needle 124/catheter 12 is achieved by exerting a distal force on the push tab 138 to urge the needle assembly 128 closer to the patient's skin and the needle 124/catheter 12 further into the blood vessel 14. The needle 124 is then removed from the catheter 12 by pulling the needle hub 130 away from the needle shield 136 in a proximal direction. When the distal point 132 of the needle 124 is received and contained in the needle shield 136, the needle assembly 128 is removed from the catheter adapter 10, the proximal end 26 of the catheter adapter 10 is sealed by the septum, and the catheter adapter 10 is ready for attachment to an intravenous fluid source or a blood collection device.
[0087] The vascular access assembly 120 may further include an extension tube 126 connected to the access port 22 and a fluid connector 140. The fluid connector 140 may include a first fluid path 142 having a first connector 144 and a second fluid path 146 having a second connector 148, where both fluid paths 142, 146 are connected to and in fluid communication with the extension tube 126. The first connector 144 may be a luer connector or another needle-free connector, and the first fluid path 142 may include a blood control split septum 150. The second connector 148 may be a luer connector or another needle-free connector, and the second fluid path 146 may include an air vent plug 152. The split septum 150 allows for a reduction in catheter-related bloodstream infection (CRBSI) while providing unrestricted flow and a straight fluid path for the intravenous fluid and functions as a blood control septum. The air vent plug 152 allows air to escape from the system during insertion of the catheter 12, providing continuous confirmation of vascular access while preventing leakage of blood from the system during insertion. After insertion of the catheter 12 into the blood vessel 14, the vent plug 152 is removed from the second fluid path 146 to allow the second fluid path 146 to be connected to an intravenous fluid source via the second connector 148. Alternatively, the fluid connector may have a single fluid path provided with a luer connector or another needle-free connector and an air vent plug that is removed after insertion of the catheter. A clamp 154 may be positioned on the extension tube 126 to prevent blood flow when necessary.
[0088] Whereas particular aspects of this invention have been described above for purposes of illustration, it will be evident to those skilled in the art that numerous variations of the details of the present invention may be made without departing from the invention.