Catheter assembly
The catheter assembly with a septum and septum actuator addresses blood leakage issues by sealing the slit under blood pressure, enhancing safety and fluid management.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2019-07-23
- Publication Date
- 2026-03-13
AI Technical Summary
Existing catheter assemblies face challenges in preventing blood leakage during and after the removal of the introducer needle, particularly when the outer diameter of the needle is large, posing a risk to healthcare workers.
A catheter assembly with a septum that includes a barrier with a projection and a slit, which seals tightly in response to blood flow forces, and a septum actuator that moves between positions to control fluid communication.
The septum effectively reduces blood leakage by sealing the slit under blood pressure, ensuring secure fluid management during catheter use.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to septa for controlling blood and related systems. Catheters are commonly used in various infusion therapies. For example, a catheter can be used to infuse fluids such as saline, various drugs, and total parenteral nutrition into a patient. Also, a catheter can be used to collect blood from a patient.
Background Art
[0002] A common type of catheter is an over-the-needle peripheral intravenous catheter (PIVC). As its name indicates, an "over-the-needle" PIVC can be mounted on a introducer needle having a sharp distal tip. The PIVC and the introducer needle can be assembled such that the distal tip of the introducer needle extends beyond the distal tip of the PIVC while the distal tip of the introducer needle faces away from the bevel of the needle relative to the patient's skin. The PIVC and the introducer needle are generally inserted at a shallow angle through the skin into the patient's vasculature.
[0003] To verify proper placement of the introducer needle and / or PIVC within the blood vessel, the user generally checks for a "flashback" of blood within the flashback chamber of the PIVC assembly. Once the needle placement is confirmed, the user temporarily occludes the intravascular flow, removes the introducer needle, and leaves the PIVC at a predetermined position within the vein. The user can also attach a device to the PIVC assembly for fluid infusion and / or blood collection. This process is actually somewhat difficult because in many catheter placement sites the blood vessel cannot be easily occluded. Further, even if such occlusion is achieved, it may be incomplete, resulting in blood leakage from the PIVC assembly housing the PIVC and exposing healthcare workers to risk.
[0004] Accordingly, catheter assemblies providing various seals or "septa" to prevent fluid leakage during and after the removal of the introduction needle from a blood vessel have been provided in the art. However, in some cases, after the introduction needle has been removed, blood may leak from certain septa before the user can connect the device to the PIVC assembly to perform infusion or blood collection. Leakage from septa may occur more quickly, especially if the outer diameter of the introduction needle is large. Therefore, providing septa that control blood flow and reduce leakage during the steps surrounding the placement and use of the PIVC would be an advance in the art.
[0005] The subject matter claimed herein is not limited to embodiments that resolve any disadvantages or embodiments that operate only under the circumstances described above. Rather, this background art is provided solely to illustrate an example of a technical area in which a certain implementation described herein can be carried out. [Overview of the Initiative]
[0006] This disclosure generally relates to septums for blood control, as well as related devices, systems, and methods. In some embodiments, a catheter assembly may include a catheter adapter which may include a distal end, a proximal end, and a lumen extending through it. In some embodiments, the catheter assembly may also include a septum slidably positioned within the lumen. In some embodiments, the septum may include a distal end, a proximal end, and a barrier positioned between the distal and proximal ends of the septum. In some embodiments, the barrier may divide the interior of the septum into a distal cavity and a proximal cavity. In some embodiments, the distal surface of the barrier may include a projection. In some embodiments, the barrier may include a slit extending through the projection to selectively open fluid communication between the distal cavity and the proximal cavity.
[0007] In some embodiments, in response to the backflow of blood flowing against the projection, the opposing surfaces of the slit may press more tightly against each other to seal the slit. This may be due to the radial force of the backflow of blood against the projection, as well as the axial force of the backflow of blood against the projection. In some embodiments, when the axial force acts on the central portion of the projection and pushes the central portion of the projection axially in the proximal direction, the opposite surfaces of the slit move toward each other with greater interference.
[0008] In some embodiments, the projection may be located at the center of the distal surface. In some embodiments, the slit may extend through the center of the projection. In some embodiments, the proximal surface of the barrier may be flat. In some embodiments, the projection may be symmetrical.
[0009] In some embodiments, at least a portion of the outer surface of the projection may be positioned at an acute angle with respect to the transverse axis of the catheter assembly. For example, the projection may include a dome. In some embodiments, the diameter of the dome may be greater than the diameter of the slit. As another example, the projection may include a truncated dome. In some embodiments, the diameter of the truncated portion of the truncated dome may be greater than the diameter of the slit. As yet another example, the projection may include a frustocone. In some embodiments, the diameter of the truncated portion of the truncated cone (frustocone) may be greater than the diameter of the slit.
[0010] In some embodiments, the septum actuator may be fixed within the lumen of the catheter adapter. In some embodiments, the septum may be configured to move between a proximal and distal position in response to the insertion of a separate device into the proximal end of the catheter adapter. In some embodiments, the septum actuator may penetrate a slit in response to the movement of the septum from the proximal to the distal position. In some embodiments, the slit may extend through the center of a projection, and the septum actuator is positioned within the center of the projection when the septum is in the distal position.
[0011] In some embodiments, if the partition wall is in a proximal position before inserting a separate device, the projection may be positioned adjacent to and away from the partition wall actuator. In other embodiments, the partition wall actuator may contact the outer surface of the projection, but cannot penetrate the slit when the partition wall is in a proximal position before inserting a separate device.
[0012] Both the general description above and the detailed description below are illustrative and descriptive, and are understood not to limit the invention, as are the claims. It should be understood that the various embodiments are not limited to the arrangements and means illustrated in the drawings. Furthermore, it should be understood that embodiments can be combined or other embodiments can be utilized, and structural modifications can be made without departing from the scope of the various embodiments of the invention, unless otherwise claimed. Therefore, the detailed description below should not be interpreted as restrictive. [Brief explanation of the drawing]
[0013] Exemplary embodiments will be described and explained in detail with reference to the attached drawings. [Figure 1A] Figure 1A is a cross-sectional view of an exemplary catheter assembly of the prior art, showing a catheter assembly in an insertion position or a ready-to-use position according to several embodiments. [Figure 1B] Figure 1B is another cross-sectional view of the catheter assembly in Figure 1A, showing the catheter assembly in a safe position according to several embodiments. [Figure 1C] Figure 1C is another cross-sectional view of the catheter assembly of Figure 1A, with the exemplary safety coupling and exemplary introduction needle removed, according to several embodiments. [Figure 1D] Figure 1D is a cross-sectional view of the catheter assembly of Figure 1C along lines 1D-1D of Figure 1C, according to several embodiments. [Figure 2A]Figure 2A is a cross-sectional view of another exemplary catheter assembly showing an exemplary septum with exemplary projections according to several embodiments. [Figure 2B] Figure 2B is an enlarged cross-sectional view of a portion of the catheter system shown in Figure 2A, according to several embodiments. [Figure 2C] Figure 2C is a cross-sectional view of the catheter assembly of Figure 2A, showing exemplary opposing slits of a septum that press more strongly against each other in response to a force from refluxed blood flowing proximal through an exemplary septum actuator, according to several embodiments. [Figure 2D] Figure 2D is a cross-sectional view of the catheter assembly of Figure 2A along line 2D-2D, according to several embodiments. [Figure 2E] Figure 2E is a cross-sectional view of the catheter assembly of Figure 2A, showing the distal septum in several embodiments. [Figure 3] Figure 3 is a cross-sectional view of the catheter assembly of Figure 2A, showing another exemplary projection according to several embodiments. [Figure 4] Figure 4 is a cross-sectional view of the catheter assembly of Figure 2A, showing another exemplary projection according to several embodiments. [Figure 5] Figure 5 is a cross-sectional view of the catheter assembly of Figure 2A, showing another partition with a duckbill valve according to several embodiments. [Modes for carrying out the invention]
[0014] This disclosure generally relates to septa for blood control, as well as related devices, systems, and methods. Referring here to Figures 1A and 1B, a prior art catheter assembly 10 is shown. Figure 1A shows a first catheter assembly 10 in a ready-to-use position. The catheter assembly 10 may be compatible with a Smith Medical Via Valve® Safety IV catheter with blood control. The catheter assembly 10 generally includes a catheter 12 coupled to the distal end 14 of a catheter adapter 16. In the ready-to-use position, the catheter 12 is positioned on an introduction needle 17 such that the sharp tip of the introduction needle 17 extends from the distal end of the catheter 12.
[0015] The catheter assembly 10 generally includes a safety coupling 18 which includes an actuator 20, a nose 22, and an engaging arm 24. A collar 26 of the safety coupling 18 is positioned around the catheter adapter 16, the engaging arm 24, and the proximal portion of the actuator 20. In this respect, the collar 26 can prevent access to these components or any part thereof. The safety coupling 18 is constructed to engage the catheter adapter 16 with the engaging arm 24 when the catheter assembly 10 is in a usable position and the actuator 20 is shifted to a distal engaging position. In the readily usable position, the engaging arm 24 is held in contact with the catheter adapter 16 by the engaging portion 27 of the actuator 20.
[0016] Referring here to Figure 1B, the catheter assembly 10 is shown in a second safe position. When the catheter assembly 10 is in the safe position, the actuator 20 is shifted to a proximal, released position. In the safe position, the engaging arm 24 is released from engagement with the catheter adapter 16, thereby allowing the safety coupling 18 and the introduction needle 17 to be removed from the catheter 12 and the catheter adapter 16.
[0017] Referring now to FIG. 1C, the catheter assembly 10 is shown with the safety coupling 18 and the introducer needle 17 removed. The lumen 29 of the catheter adapter 16 is in fluid communication with the lumen 28 of the catheter 12. When inserted into a patient, the catheter 12 and the catheter adapter 16 provide a fluid conduit for facilitating the delivery of fluid to and / or the recovery of fluid from the patient.
[0018] The catheter assembly 10 includes a septum 30 slidably received with the lumen 29 of the catheter adapter 16. The catheter assembly 10 also includes a septum actuator 32, which is generally fixedly disposed within the distal fluid chamber 34. The septum 30 is tubular and has a barrier 36 disposed between the distal and proximal ends of the septum 30. The barrier 36 divides the interior of the septum 30 into a distal fluid chamber 34 and a proximal fluid chamber 38. The distal face 40 of the barrier 36 is flat. Referring now to FIG. 1D, a Y-shaped slit 42 is formed in the barrier 36 to selectively open the fluid communication between the distal fluid chamber 34 and the proximal fluid chamber 38. However, in some cases, when the slit 42 is closed, fluid may leak through the slit 42.
[0019] Referring now to FIG. 2A, a catheter assembly 50 according to some embodiments is shown. In some embodiments, the catheter assembly 50 may include or correspond to the catheter system 10. In some embodiments, the catheter assembly 50 may include one or more features or elements of the catheter system 10. In some embodiments, the catheter system 50 may include the safety coupling 18 and / or the introducer needle 17.
[0020] In some embodiments, the catheter assembly 50 may include a catheter adapter 52 that may include a distal end 54, a proximal end 56, and a lumen 58 extending therethrough. In some embodiments, the catheter 59 may extend distally from the catheter adapter 52. In some embodiments, the catheter 59 may include a peripheral intravenous catheter (“PIVC”).
[0021] In some embodiments, the catheter assembly 50 may also include a septum 60 slidably disposed within the lumen 58. In some embodiments, the septum 60 may be composed of an elastomer or elastic material. In some embodiments, the septum actuator 61 may be fixed within the lumen 58 of the catheter adapter 52. In some embodiments, the septum 60 may include a distal end 62, a proximal end 64, and a barrier 66 disposed between the distal end 62 and the proximal end 64 of the septum 60. In some embodiments, the barrier 66 may divide the interior of the septum 60 into a distal cavity 68 and a proximal cavity 70. In some embodiments, the septum 60 may control or restrict the passage of fluid between the distal cavity 68 and the proximal cavity 70.
[0022] In some embodiments, the septum 60 may include a flexible or semi-flexible polymer plug having an outer diameter configured to fit within the lumen 58. In some embodiments, the septum 60 may be held in a predetermined position within the lumen 58 through contact with one or more inner surfaces of the internal lumen, contact with an anti-pathogenic material, or another suitable means. In some embodiments, the barrier 66 may be disposed at or near the distal end 62 or proximal end 64 of the septum 60. In some embodiments, the septum 60 may have a substantially H-shaped cross-section.
[0023] In some embodiments, the distal surface 72 of the barrier 66 may include a projection 74. In some embodiments, the barrier 66 may include a slit 76 extending through the projection 74 to selectively open fluid communication between the distal cavity 68 and the proximal cavity 70. In some embodiments, the projection 74 may be located at the center of the distal surface 72. In some embodiments, the slit 76 may extend through the center of the projection 74. In some embodiments, the proximal surface 80 of the barrier 66 may be flat. In some embodiments, the projection 74 may be symmetrical.
[0024] Referring now to Figure 2B, in some embodiments, at least a portion of the outer surface of the projection 74 may be positioned at an acute angle a with respect to the transverse axis 82 of the catheter assembly 50. In some embodiments, the transverse axis may be perpendicular to the longitudinal axis of the catheter assembly 50. In some embodiments, the projection 74 may include a dome, as shown, for example, in Figure 2B. In some embodiments, the diameter 84 of the dome may be larger than the diameter 86 of the slit 76.
[0025] In some embodiments, refluxed blood can flow from the patient's vein through the catheter 59 into the distal cavity 68. The refluxed blood may include radial components 88 and axial components 90 that can apply radial and axial forces to the projection 74, respectively.
[0026] Referring here to Figure 2C, in some embodiments, in response to the backflow of blood flowing against the projection 74, the opposing surfaces of the slit 76 may be pressed more tightly against each other to seal the slit 76, as shown in Figure 2C, for example. This may be due to the radial force of the backflow of blood against the projection, as well as the axial force of the backflow of blood against the projection 74. When the axial force acts on the central portion of the projection 74, pushing the central portion of the projection 74 axially in the proximal direction, the opposing surfaces of the slit 76, particularly the distal ends of the opposing surfaces, move toward each other with greater interference.
[0027] Referring here to Figure 2D, the slit 76 can include any number of configurations. For example, as shown in Figure 2D, the slit 76 may be Y-shaped. In other embodiments, the slit 76 may be X-shaped. In some embodiments, the slit 76 may be linear.
[0028] Referring here to Figure 2E, in some embodiments, the partition actuator 61 may be fixed within the lumen 58 of the catheter adapter 52. In some embodiments, the partition 60 may be configured to move between a proximal and distal position in response to the insertion of a separate device into the proximal end 56 of the catheter adapter 52. The separate device may include, for example, a Luer adapter 96, as shown in Figure 2E.
[0029] In some embodiments, the septum actuator 61 can pass through the slit 76 when the septum 60 is in a distal position, for example, as shown in Figure 2E. In some embodiments, the slit 76 can extend through the center of the projection 74 such that the septum actuator 61 is positioned within the center of the projection 74 when the septum 60 is in a distal position. In some embodiments, the projection 74 can be adjacent to the septum actuator 61 when the septum 60 is in a proximal position before insertion of a separate device, for example, as shown in Figures 2A-2C. In some embodiments, the projection 74 can contact the septum actuator 61 when the septum 60 is in a proximal position before insertion of a separate device.
[0030] In some embodiments, the partition actuator 61 may be fixedly positioned within the distal cavity 68 and may include a portion positioned adjacent to the partition 60 before activation of the catheter assembly 50. In some cases, the partition actuator 61 may include a base 98 coupled to the catheter adapter 52. For example, as shown, the base 98 may be at least partially inserted into the proximal end of the catheter 59. In some embodiments, the base 98 can function as a wedge to form a press-fit between the catheter 59 and the catheter adapter 52, thereby holding the catheter 59 and the base 98 in place at least partially. In some embodiments, the base 98 may be directly coupled to the catheter adapter 52 via fasteners, adhesives, bonding techniques, or molding. As shown, the partition actuator 61 may have a tubular configuration having a hollow interior that forms a lumen 100 that fluidly communicates with the lumen 102 of the catheter 59.
[0031] In some embodiments, the proximal end 56 of the catheter adapter 52 includes a flange 104. The flange 104 provides a positive surface which may be configured to allow coupling of an intravenous tube or a Luer adapter 96 to the catheter assembly 50. In some embodiments, the flange 104 further includes threads for receiving the Luer adapter 96 via a threaded connection.
[0032] Referring now to Figure 3, in some embodiments the projection 74 may include a truncated dome. In some embodiments the diameter 92 of the truncated portion of the truncated dome may be larger than the diameter 86 of the slit 76.
[0033] Referring now to Figure 4, in some embodiments the projection 74 may include a frustum. In some embodiments, the diameter 94 of the truncated portion of the truncated cone (frustum) may be larger than the diameter 86 of the slit 76.
[0034] Referring here to Figure 5, in some embodiments, another partition 93 that may be used with the catheter assembly 50 may include a duckbill valve 96. A non-limiting example of a duckbill valve is described in U.S. Patent No. 9,126,012, filed October 3, 2012, entitled “Intravenous Catheter with Duckbill Valve,” which is incorporated herein by reference in its entirety. In some embodiments, the flaps of the duckbill valve 96 may extend inward and proximal. In some embodiments, the two inward-facing flaps may be pushed apart by a partition actuator 61 to open a gap between the flaps in response to the insertion of a Luer device, such as the Luer device 96 in Figure 2E, and the distal position of the partition 93. In some embodiments, the partition 93 may include or correspond to a partition 60 described with respect to Figures 2-5. More specifically, in some embodiments, the partition 93 may include one or more features of the partition 60.
[0035] Both the general description above and the detailed description below are illustrative and descriptive, and are understood not to limit the invention, as are the claims. It should be understood that the various embodiments are not limited to the arrangements and means illustrated in the drawings. Furthermore, it should be understood that embodiments can be combined or other embodiments can be utilized, and structural modifications can be made without departing from the scope of the various embodiments of the invention, unless otherwise claimed. Therefore, the detailed description below should not be interpreted as restrictive.
[0036] All illustrative and conditional terms listed herein are intended for educational purposes to help the reader understand the present invention and the concepts to which the inventors contribute by promoting this art, and should be construed as not being limited to such specifically listed examples and conditions. While embodiments of the present invention have been described in detail, it should be understood that various modifications, substitutions, and alternatives can be made without departing from the spirit and scope of the invention.
Claims
1. A catheter adapter including a distal end, a proximal end, and a lumen extending through them, A partition wall slidably disposed within the lumen, the partition wall including a distal end, a proximal end, and a barrier disposed between the distal end and the proximal end of the partition wall, The catheter adapter comprises a needle located proximal to the catheter adapter, The barrier divides the interior of the partition wall into a distal cavity and a proximal cavity, The distal surface of the barrier includes a projection. The proximal surface of the barrier is flat, The barrier includes a slit extending through the projection to selectively open fluid communication between the distal cavity and the proximal cavity, The needle is positioned outside the proximal cavity. The catheter adapter further includes a partition actuator fixed within the lumen of the catheter adapter, The partition wall is configured to move between a proximal position and a distal position. The partition actuator penetrates the slit in response to the partition moving to a distal position. Catheter assembly.
2. The projection is positioned at the center of the distal surface, The slit extends through the center of the projection, The catheter assembly according to claim 1.
3. The aforementioned projection includes a dome, The catheter assembly according to claim 1.
4. The diameter of the dome is larger than the diameter of the slit. The catheter assembly according to claim 3.
5. The aforementioned projection includes a dome that has been trimmed, The catheter assembly according to claim 1.
6. The diameter of the shortened portion of the shortened dome is larger than the diameter of the slit. The catheter assembly according to claim 5.
7. The outer surface of the projection is positioned at an acute angle with respect to the transverse axis of the catheter assembly. The catheter assembly according to claim 1.
8. In response to the backflow of blood flowing against the projection, the opposing surfaces of the slit press more strongly against each other to seal the slit. The catheter assembly according to claim 1.
9. The proximal surface of the barrier is flat. The catheter assembly according to claim 1.
10. The projection has a shape that is rotationally symmetric with respect to the longitudinal axis of the catheter assembly. The catheter assembly according to claim 1.
11. A catheter adapter including a distal end, a proximal end, and a lumen extending through them, A partition actuator fixed within the lumen of the catheter adapter, A partition wall slidably disposed within the lumen, the partition wall including a distal end, a proximal end, and a barrier disposed between the distal end and the proximal end of the partition wall, The catheter adapter comprises a needle located proximal to the catheter adapter, The barrier divides the inside of the partition into a distal cavity and a proximal cavity. The barrier further comprises a slit positioned within it for selectively opening the fluid flow path between the distal cavity and the proximal cavity, The needle is positioned outside the proximal cavity. The distal surface of the barrier includes a projection. The proximal surface of the barrier is flat, The partition wall is configured to move between a proximal and distal position in response to the insertion of a separate device into the proximal end of the catheter adapter. The slit extends through the center of the projection such that when the partition wall is positioned distally, the partition wall actuator is positioned at the center of the projection. Catheter assembly.
12. When the partition wall is in the proximal position before inserting the separate device, the projection contacts the partition wall actuator. The catheter assembly according to claim 11.
13. When the partition wall is in the proximal position before inserting the separate device, the projection is adjacent to the partition wall actuator. The catheter assembly according to claim 11.
14. The aforementioned projection includes a dome, The catheter assembly according to claim 11.
15. The diameter of the dome is larger than the diameter of the slit. The catheter assembly according to claim 14.
16. The aforementioned projection includes a dome that has been trimmed, The catheter assembly according to claim 11.
17. The diameter of the shortened portion of the shortened dome is larger than the diameter of the slit. The catheter assembly according to claim 16.
18. The outer surface of the projection is positioned at an acute angle with respect to the transverse axis of the catheter assembly. The catheter assembly according to claim 11.
19. In response to the backflow of blood flowing against the projection, the opposing surfaces of the slit press more strongly against each other to seal the slit. The catheter assembly according to claim 11.
Citation Information
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