CATHETER ASSEMBLY AND RELATED METHODS
20230233808 · 2023-07-27
Inventors
Cpc classification
A61M25/0012
HUMAN NECESSITIES
International classification
Abstract
A catheter assembly may include a catheter hub, which may include a distal end, a proximal end, and a catheter hub lumen extending through the distal end of the catheter hub and the proximal end of the catheter hub. The catheter assembly may include a catheter extending from the distal end of the catheter hub. The catheter may include a catheter tube, which may include a distal end, a proximal end, and a catheter tube lumen extending through the distal end of the catheter tube and the proximal end of the catheter tube. The catheter may also include a fluid-permeable section extending from the distal end of the catheter tube. The fluid-permeable section may include a coil or a lattice. The catheter assembly may include an introducer needle extending through the catheter tube and the fluid-permeable section.
Claims
1. A catheter assembly, comprising: a catheter hub, comprising a distal end, a proximal end, and a catheter hub lumen extending through the distal end of the catheter hub and the proximal end of the catheter hub; a catheter extending from the distal end of the catheter hub, wherein the catheter comprises: a catheter tube comprising a distal end, a proximal end, a catheter tube lumen extending through the distal end of the catheter tube and the proximal end of the catheter tube; and a fluid-permeable section extending from the distal end of the catheter tube, wherein the fluid-permeable section comprises a mesh or a coil; and an introducer needle extending through the catheter tube and the fluid-permeable section.
2. The catheter assembly of claim 1, wherein the catheter tube is over-molded with the mesh or the coil.
3. The catheter assembly of claim 2, wherein the fluid-permeable section is constructed of a polymer material.
4. The catheter assembly of claim 2, wherein the fluid-permeable section is constructed of metal.
5. The catheter assembly of claim 2, wherein the mesh or the coil extends along an entire length of the catheter tube.
6. The catheter assembly of claim 2, wherein the mesh or the coil extends along a partial length of the catheter tube such that a proximal end of the mesh or the coil is spaced apart from a proximal end of the catheter tube.
7. The catheter assembly of claim 1, wherein the fluid-permeable section is formed of a same material as the catheter tube.
8. The catheter assembly of claim 1, wherein the distal end of the catheter tube comprises a bevel.
9. The catheter assembly of claim 8, wherein a distal end of the introducer needle comprises another bevel, wherein the bevel of the catheter tube faces in an opposite direction as the other bevel of the introducer needle.
10. The catheter assembly of claim 1, wherein the fluid-permeable section is constructed of a different material than the catheter tube.
11. The catheter assembly of claim 1, wherein the fluid-permeable section comprises a plurality of clip features and an outer surface of the introducer needle comprises a plurality of corresponding clip features, wherein the plurality of clip features and the plurality of corresponding clip features contact each other and are configured to prevent a distal end of the fluid-permeable section from moving proximal to the plurality of corresponding clip features.
12. The catheter assembly of claim 11, wherein each of the plurality of clip features comprises a groove, wherein each of the plurality of clip features comprises a protrusion.
13. The catheter assembly of claim 11, wherein the distal end of the fluid-permeable section comprises an annular ring, wherein the annular ring comprises the plurality of clip features.
14. The catheter assembly of claim 1, wherein the distal end of the fluid-permeable section comprises an annular ring.
15. The catheter assembly of claim 1, wherein the fluid-permeable section comprises the coil.
16. The catheter assembly of claim 1, wherein the fluid-permeable section comprises the mesh.
17. A catheter assembly, comprising: a catheter hub, comprising a distal end, a proximal end, and a catheter hub lumen extending through the distal end of the catheter hub and the proximal end of the catheter hub; and a catheter tube extending from the distal end of the catheter hub, wherein the catheter tube comprises a distal end, a proximal end, a catheter tube lumen extending through the distal end of the catheter tube and the proximal end of the catheter tube, and a plurality of slits forming a plurality of semi-annular sections, wherein in response to bending of the catheter tube, at least some of the plurality of semi-annular sections are configured to separate to create a fluid pathway from an exterior of the catheter tube to the catheter tube lumen.
18. The catheter assembly of claim 17, wherein the plurality of semi-annular sections are configured to contact each other when the catheter tube is straight.
19. The catheter assembly of claim 17, further comprising an introducer needle extending through the catheter tube and comprising a bevel, wherein each of the plurality of slits extends partially through the catheter tube to maintain a continuous surface aligned with a bevel of the introducer needle.
20. The catheter assembly of claim 17, wherein the plurality of semi-annular sections are a same size.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0013] Example embodiments will be described and explained with additional specificity and detail through the use of the accompanying drawings in which:
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DESCRIPTION OF EMBODIMENTS
[0032] Referring now to
[0033] In some embodiments, the catheter 20 may also include a fluid-permeable section 30 extending from the distal end 24 of the catheter tube 22. A traditional catheter tube without the fluid-permeable section 30 causes blood to flow around the traditional catheter tube within a vein of a patient, restricting blood flow within the vein and increasing a likelihood of platelet and fibrin deposition and thrombosis at a tip of the traditional catheter. In some embodiments, in contrast to the traditional catheter tube, when the catheter assembly 10 is inserted into the vein of the patient for fluid delivery or blood withdrawal, the distal end 24 of the catheter tube 22 may be positioned just inside or just outside the vein, and the fluid-permeable section 30 within the vein may facilitate fluid flow within the vein. Thus, in some embodiments, the fluid-permeable section 30 may lower blood flow restriction compared to the traditional catheter, reducing platelet and fibrin deposition on the catheter 20. The fluid-permeable section 30 may thereby lengthen a dwell time of the catheter 20, increasing a period of time that the catheter 20 is functional.
[0034] In some embodiments, the fluid-permeable section 30 further allows a clinician to use a larger catheter tube without negatively impacting blood flow restriction through the vein. Moreover, the fluid-permeable section 30 may maintain structural integrity of the vein, providing a stent-like function and holding the vein open and prolonging an open flow path for blood flow. In some embodiments, the fluid-permeable section 30 may thus facilitate blood flow from the vein through the fluid-permeable section 30 and into the catheter tube 22 and the catheter assembly 10.
[0035] In some embodiments, the fluid-permeable section 30 may include a mesh. As used in the present disclosure, the term “mesh” is intended to include any element having an openwork fabric or structure, and may include, but is not limited to, an interconnected network of wire-like segments, a sheet of material having numerous apertures and/or portions removed, or the like. In some embodiments, the mesh may be constructed of metal, a polymer material, or another suitable material such that the mesh is configured to bend or flex when inserted into the vein. In some embodiments, the metal may include stainless steel or another suitable metal. In some embodiments, the polymer may include polyurethane or another suitable polymer. In some embodiments, the mesh may include a lattice, where a geometric space, such as a square or a diamond, is repeated in the circumferential and axial directions of the mesh. In some embodiments, the mesh may be cylindrical and configured to fit within the vein of the patient, with a multiplicity of openings to facilitate fluid flow therethrough. In some embodiments, the fluid-permeable section 30 may include a coil or another suitable shape configured to facilitate fluid flow therethrough at least when the fluid-permeable section 30 is in a bent position.
[0036] As illustrated in
[0037] In some embodiments, the distal end 24 of the catheter tube 22 may include a bevel 36. In some embodiments, the sharp distal tip of the introducer needle 32 may include another bevel 38. In some embodiments, the bevel 36 of the catheter tube 22 may face in an opposite direction as the other bevel 38 of the introducer needle 32. Thus, in some embodiments, the bevel 36 of the catheter tube 22 may be oriented generally parallel to the vein, which may facilitate blood flow through the catheter tube 22.
[0038] In some embodiments, the catheter tube 22 may be shorter than the traditional catheter tube and may thus cause less blood flow restriction in the vein. In further detail, in some embodiments, after the introducer needle 32 has been removed and the catheter 20 is placed in a fluid delivery or blood withdrawal configuration with the catheter hub 12 contacting or butting up against the skin of the patient, the catheter tube 22 may be disposed just outside of the vein or just inside the vein. In some embodiments, because the catheter tube 22 is disposed just outside or just inside the vein, blood flow may be less restricted within the vein compared to the traditional catheter and the catheter 20 may be used for a longer period of time without failure. In some embodiments, the catheter tube 22 may be long enough such that it forms a seal with an incision hole extending through the skin of the patient when the catheter 20 is in the fluid delivery or blood withdrawal configuration with the catheter hub 12 contacting or butting up against the skin of the patient. In these and other embodiments, the catheter tube 22 may extend through the skin at an insertion angle between 10° and 30° when in the fluid delivery or blood withdrawal configuration, ready for infusion or blood collection.
[0039] As illustrated in
[0040] Referring now to
[0041] In some embodiments, the catheter tube 22 may be over-molded with the mesh or the coil. In some embodiments, over-molding of the catheter tube 22 and the mesh or the coil may increase flexibility at an exit of the mesh from the catheter tube 22, provide resistance to impact, and provide strain relief. As illustrated in
[0042] Referring now to
[0043] Referring now to
[0044] Referring now to
[0045] Referring now to
[0046] Referring now to
[0047] In further detail, in some embodiments, each of the one or more clip features 40 may include a groove, as illustrated, for example, in
[0048] In some embodiments, the one or more clip features 40 and the one or more corresponding clip features 42 may be configured to allow easy proximal retraction of the introducer needle 32 within respect to the fluid-permeable section 30 and the catheter 20. In some embodiments, an outer diameter of the introducer needle 32 at the one or more corresponding clip features 42 may be less than an inner diameter of the fluid-permeable section 30 to facilitate easy proximal retraction of the introducer needle 32 after the catheter 20 is inserted within the vein.
[0049] In some embodiments, the distal end 44 of the fluid-permeable section 30 may include an annular ring 46, which may facilitate easy insertion of the fluid-permeable section 30 into the patient. In some embodiments, the annular ring 46 may include the one or more clip features 40.
[0050] Referring now to
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[0052] All examples and conditional language recited herein are intended for pedagogical objects to aid the reader in understanding the invention and the concepts contributed by the inventor to furthering the art and are to be construed as being without limitation to such specifically recited examples and conditions. Although embodiments of the present inventions have been described in detail, it should be understood that the various changes, substitutions, and alterations could be made hereto without departing from the spirit and scope of the invention.