CA2595369C - Check valve for medical y-site - Google Patents

Check valve for medical y-site Download PDF

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Publication number
CA2595369C
CA2595369C CA2595369A CA2595369A CA2595369C CA 2595369 C CA2595369 C CA 2595369C CA 2595369 A CA2595369 A CA 2595369A CA 2595369 A CA2595369 A CA 2595369A CA 2595369 C CA2595369 C CA 2595369C
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Canada
Prior art keywords
lumen
flap member
site
check valve
common
Prior art date
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Application number
CA2595369A
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French (fr)
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CA2595369A1 (en
Inventor
Thomas F. Fangrow, Jr.
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ICU Medical Inc
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ICU Medical Inc
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Publication of CA2595369A1 publication Critical patent/CA2595369A1/en
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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/22Valves or arrangement of valves
    • A61M39/26Valves closing automatically on disconnecting the line and opening on reconnection thereof
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/22Valves or arrangement of valves
    • A61M39/24Check- or non-return valves
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/22Valves or arrangement of valves
    • A61M39/24Check- or non-return valves
    • A61M2039/2433Valve comprising a resilient or deformable element, e.g. flap valve, deformable disc
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/22Valves or arrangement of valves
    • A61M39/24Check- or non-return valves
    • A61M2039/2433Valve comprising a resilient or deformable element, e.g. flap valve, deformable disc
    • A61M2039/244Hinged closure member, e.g. flap valve
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T137/00Fluid handling
    • Y10T137/7722Line condition change responsive valves
    • Y10T137/7837Direct response valves [i.e., check valve type]
    • Y10T137/7879Resilient material valve
    • Y10T137/7888With valve member flexing about securement
    • Y10T137/7891Flap or reed

Abstract

A check valve (20) for use in a Y-site (10) in an infusion system comprises a fixation portion configured to retain the check valve in a common lumen of the Y-site, and a flap member (24) extending axially from the fixation portion.
The flap member has an outer surface (46), at least a portion of which is configured to engage an internal wall of the common lumen (12) overlying an inlet from a main lumen (14). In one embodiment, the flap member comprises a pocket (70) surrounding the hole (36) and any burr extending from the wall adjacent the hole. In some embodiments, the flap member is resiliently biased towards a sealed position, and can flex to allow fluid flow from the main lumen to the common lumen.

Description

CHECK VALVE FOR MEDICAL Y-SITE
BACKGROUND
Field of the Invention [0001] This invention relates in general to the field of medical fluid connectors, and in particular to a check valve for use in a medical Y-site connector.
Description of the Related Art
[0002] Intravenous delivery of fluids has become an important aspect of modern medicine. Infusion systems are used to deliver hydrating and nourishing fluids, antibiotics, anesthetics, and other medications to patients. Infusion systems typically include a bag of fluid joined to a fluid line which is connected to an IV needle or catheter inserted into a patient's blood vein, thereby allowing the fluid to be dripped from the bag and into the patient.
[0003] In many infusion systems, Y-sites are placed in the fluid line, between the fluid bag and the needle or catheter, to provide a second path through which other fluids or drugs can be injected into the infusion system. Standard Y-sites are so named because a fork is created between a main lumen having an input port for introducing infusion liquid and a secondary lumen with an injection port for injecting medication therethrough.
The main lumen typically is configured to handle a constant or near-constant flow, and the secondary lumen is configured to handle an intermittent or periodic flow. The common lumen and the secondary lumen are typically coaxial, and thus the boundary between the common and secondary lumens is the region of confluence between the fluids flowing through the main and secondary lumens. An outlet in the Y-site is located at a distal end of the common lumen.
[0004] In some cases, the distally directed fluid flow in the common lumen is slower than a periodic burst of fluid introduced into the secondary lumen.
This may create fluid pressure in the region where all three lumens are joined that is greater than the fluid pressure in the main lumen upstream of this juncture, causing a volume of fluid (e.g.
medication) that has been injected through the secondary lumen to flow upwardly through the main lumen towards (and possibly into) an IV bag or another medical implement.

This retrograde flow can dilute and delay delivery of the full dose of medication to the patient. While all of the medication may eventually reach the patient, it may not do so as quickly as might be desired.
Summary
[0005] Therefore, it is desirable to provide a Y-site with a check-valve to prevent fluid from flowing from the secondary or common lumens into the main lumen of the Y-site, thereby insuring that fluids injected through the secondary lumen will be delivered to the patient as soon as possible.
[0006] Several embodiments of the present invention provide a check valve that reliably minimizes or prevents undesired backflow to a main lumen of a Y-site.
In one embodiment, an infusion system comprises a combination of a check valve and a Y-site with a main lumen, a secondary lumen, and a common lumen. The check valve comprises a fixation portion engaging an internal wall of the secondary lumen. A flap member extends from the fixation portion along a portion of the internal wall. The flap member overlies a hole joining the lumens. The flap is resiliently biased toward a sealing position to cover the hole and prevent fluid flow in a direction from the common or secondary lumens into the main lumen, but is flexible to deflect and allow forward fluid flow from the main lumen into the common lumen. In some embodiments, the flap further comprises a pocket configured to surround the hole and any burr or flash that may be adjacent to the hole on the interior wall of the housing. In one such embodiment, a pocket is defined by a flange surrounding the flap member and sealing against the walls of the common and/or secondary lumens while holding a portion of the flap member away from the burr.
[0007] In another embodiment, a check valve comprises a fixation portion having a first end and a second end. The fixation portion has an outer dimension sized to retain the check valve in a lumen of a medical connector. A flap member extends axially from the second end of the fixation portion and has an attachment end joining the flap member to the fixation portion and a free end opposite the attachment end. The flap member can also comprise a curved outer surface, and a portion of the flap member is configured to engage an internal wall of a lumen of a medical connector. In one preferred embodiment, the check valve is configured to function within a medical connector with a circular inner lumen.
In some embodiments, the flap member comprises a pocket surrounding the hole.
In other embodiments, the pocket is defined by a flange extending outwards and surrounding the flap member.
[0008] A method of using a Y-site and check valve comprises preventing reverse flow directed from a common lumen to a main lumen of a medical Y-connector.
The method comprises inserting a check valve having a fixation section and a resilient ' flap into a common or secondary lumen of a medical Y-site. The method further comprises securing the fixation section in the common and/or secondary lumens of the Y-site in a position that places the flap over an opening at the confluence of the main, secondary and common lumens.
BRIEF DESCRIPTION OF DRAWINGS
[0009] Having thus summarized the general nature of the invention, certain preferred embodiments and alternatives thereof will be described in detail with reference to the figures that follow, of which:
[0010] FIG. 1A is a perspective view of a medical Y-site with certain interior structures shown in phantom lining;
[0011] FIG. 1B is a perspective view of a Y-site with certain interior portions, including a check valve, shown in phantom lining;
[0012] FIG. 1C is an exploded view of the Y-site with check valve of FIG. 1B.
[0013] FIG. 2A is a schematic cross-sectional view of the Y-site of FIG. 1B
with the check valve in a closed position, and the connector on the secondary lumen removed;
[0014] FIG. 2B is a schematic cross-sectional view of the Y-site of FIG. 1B
with the check valve in an open position;
[0015] FIG. 3 is a perspective view of an embodiment of the check valve of FIGS. 1B-2B;
[0016] FIG. 4 is a cross-sectional view of the check valve of FIG. 3, taken at line 4-4;
[0017] FIG. 5 is a perspective view of a check valve having a flange on a flap portion;
[0018] FIG. 6 is a plan view of the check valve of FIG. 5;
[0019] FIG. 7 is a distal end view of the check valve of FIG. 6, taken at line 7-7;

100201 FIG. 8 is a proximal end view of the check valve of FIG. 6, taken at line 8-8;
[00211 FIG. 9 is a cross-sectional view of the check valve of FIG. 8, taken at line 9-9;
[00221 FIG. 10 is a perspective view of an alternative embodiment of a check valve;
100231 FIG. I 1 is a perspective view of another alternative embodiment of a check valve;
100241 FIG. 12 is a plan view of the check valve of FIG. 11;
10025] FIG. 13 is a side plan view of the check valve of FIG. 12, taken at line 13-13; and 100261 FIG. 14 is a cross-sectional view of a Y-site that is especially, though not exclusively, appropriate for use with the check valves disclosed herein.

Detailed Description 100271 With reference to the attached figures, various embodiments of a Y-site check valve will now be described. Figure IA illustrates an example of a Y-site 2 with a needle-less connector 8 as illustrated and described in U.S. Patent No.
6,599,273. The illustrated needle-less connector 8 is a version of the CLAVE needle-less connector sold by ICU Medical, Inc, San Clemente, California.
100281 Figure IB illustrates an embodiment of a Y-site 10 with a check valve
20 configured to prevent backflow from the common lumen 12 or secondary lumen into the main drip lumen 14. In the illustrated embodiment, the Y-site 10 is attached to another version of the CLAVE needle-less connector at its proximal end. The illustrated needleless connector includes an outer housing 11, an inner seal element 13, and at tapered inlet port 16. Another medical implement, such as a syringe with a luer, can be inserted into the proximal opening of the connector to compress the seal element 13 in the distal direction. As the seal element 13 compresses, the tip of the inlet port 16 passes through the seal element 13. Fluid from the inserted medical implement is then forced into the proximal end of the connector. One or more holes 17 at or near the tip of the inlet port 16 allow the fluid to pass from the luer through the inlet port 16 and into the common lumen 12 of the Y-site.

Figure 1 C shows the Y-site of Figure IB with the housing 11 and the seal element 13 of the connector detached from each other.
100291 The illustrated needle-less connector is but one example of a connector that can be used to facilitate the attachment of the Y-site to another medical implement.
Many other types of connectors, valves, and/or injection sites can be used, including connectors without an extended, tapered inlet port 16, and connectors that produce positive- flow, such as those illustrated and described in U.S. Patent Nos.
6,245,048, 6,428,520, and 6,695,817. In all of the embodiments described and illustrated herein, the connector at the proximal end can be formed as a unitary structure with the Y-site, or it can be formed separately and later attached to the Y-site by removable or non-removable means such as screw threads, snap rings, adhesives, or solvents. The Y-site can also be used without a connector in some applications.
100301 Figure 2A illustrates the Y-site 10 of Figure IB with the housing 11 and the seal element 13 removed, thus exposing the tapered inlet port 16. The embodiments of the check valve 20 shown in Figure IB through Figure 10 generally includes a fixation section 22 and a flap member 24 extending from the fixation section 22 to cover the opening at the intersection of the main lumen 14 with the common lumen 12.
Embodiments of a check valve as described herein can have any length deemed appropriate for a particular Y- site. In some embodiments, the check valve 20 has an overall length L, of about 0.4" to about 0.8". One embodiment of a check valve has an overall length L, of about 0.6". The fixation section 22 is configured to secure the check valve 20 in a desired location within the common 12 or secondary 15 lumens of the Y-site. In some embodiments, the fixation section 22 can have an internal lumen 30 extending axially therethrough, and can also comprise an outer wall 32 configured to engage an inner wall 34 of the common 12 or secondary 15 lumens of the Y-site 10. In some alternative embodiments, such as those shown in Figures 11-13, the fixation section comprises a protrusion, such as a prismatic body 90, configured to retain the check valve 20 in the Y-site common lumen 12 while allowing fluid flow around the protrusion.
100311 Figure 2A schematically illustrates a fluid 40 flowing through the common 12 and secondary 15 lumens of the Y-site, as well as through the lumen 30 of the check valve 20. The flap member 24 of the check valve 20 is shown preventing fluid 42 from flowing
21 PCT/US2005/046441 from the common lumen 12 into the main lumen 14. The flap member 24 is configured to seal or substantially seal against portions of the inner walls of the common 12 and secondary 15 lumens that surround the hole 36 joining the lumens 12, 14, 15.
The cross-sections of the inner wall of the common 12 and secondary 15 lumens are generally circular.
In such embodiments, the outer surface 46 of the flap member 24 can have a radius that is substantially the same as, or even slightly larger than, the radius of the inner wall 34 of the common lumen 12. In alternative embodiments, the inner wall 34 of the common lumen 12 can comprise other cross-sectional shapes that may call for various corresponding shapes of the flap member 24 and/or the fixation section 22: For example, the common lumen 12 could be provided with a rectangular cross-section which may call for a rectangular fixation section 22 and/or flap member outer surface 46.
[0032] The flap member 24 is sized and configured to resist being pushed into the main lumen 14 by back pressure in the common 12 or secondary 15 lumens. As used herein, the term "back pressure" refers to a fluid pressure in the common 12 or secondary 15 lumens that exceeds a fluid pressure in the main lumen 14. The check valve is preferably configured to resist back pressures at least as large as those expected in normal use, e.g., typically only a few inches of water. In some embodiments, a check valve can be configured to resist a back pressure of at least about 5 PSI (about 138.5" of H20). In other embodiments, a valve can be constructed to resist a back pressure as high as 35 PSI (i.e., a fluid pressure in the common 12 or secondary 15 lumens of about 35>PSI higher than a fluid pressure in the main lumen 14), or more.
[0033] The fixation section 22 can be secured within the common 12 or secondary 15 lumens of the Y-site 10 in any suitable manner. For example, in one embodiment, the fixation section 22 is press-fit into the common lumen 12 and is held in place simply by friction. In this embodiment, the fixation section can be provided with an outer diameter D. of between about 0.100" and about 0.140". Another preferred range is between about 0.110" and about 0.130", and in one preferred embodiment the outer diameter D,, is about 0.120". The outer diameter D,, is generally sized to correspond with an inner diameter of a lumen into which the fixation section 22 is intended to be fixed.
[0034] A fluorosilicone oil or other medically acceptable lubricant can be used to facilitate insertion of the check valve 20 into the common 12 or secondary 15 lumens of the Y-site. In alternative embodiments, the fixation section 22 can be glued, molded, welded or otherwise secured to the inner wall 34 (or other portion) of the Y-site common lumen 12.
[0035] The back-flow resistance function performed by the check valve 20 in the illustrated embodiments may be accomplished by a wide variety of other fluid-flow resistance structures such as gates, baffles, tortuous fluid pathways, expandable slits, and/or cuspid-type valves. The general positioning of the check valve 20, including the fixation section 22, can vary depending upon the chosen dimensions of the fixations section 22 and flap member 24 for a particular application, so long as the flap member 24 is configured to provide resistance to retrograde fluid flow into the hole 36. In some embodiments, the flap member 24 does not entirely seal of the hole 36, but merely provides sufficient resistance to diminish such flow.
[0036] The lumen 30 of the fixation section 22 can be substantially circular in cross-section (see, e.g., FIG. 8). The check valve lumen 30 can have any suitable internal diameter `D;' that is sufficiently large to allow fluid to flow through the common 12 or secondary 15 lumens while preferably minimizing impedance to the flow through the respective lumens. For example, in some embodiments, the fixation section 22 has an inner diameter D; of between about 0.060" and about 0.100". In other embodiments, the inner diameter D; is between about 0.070" and about 0.090", and in one preferred embodiment the inner diameter D; is about 0.080". Additionally, in some embodiments, the fixation section
22 has a wall thickness ti of between about 0.01.0 and about 0.020, and one embodiment has a wall thickness tl of about 0.17". Some embodiments of a flap-type check valve 20 can have a fixation section 22 with a length L4 of up to about half an inch. In other embodiments, the fixation section 22 has a length of between about 0.1" and about 0.3".
One preferred embodiment of a fixation section has a length L4 of about 0.250".
[0037] In the illustrated embodiment, the flap member 24 is resiliently biased towards the position shown in Figure 1. In some embodiments, the check valve 20 is made of a material that is sufficiently resilient to produce bias in the flap member 24 toward a "closed" position, such as silicone rubber. In other embodiments, the flap member 24 can comprise a particular geometry or auxiliary mechanical biasing device (such as a spring or other elastic device) to provide the desired resilience to the flap member 24.

[0038] Referring to Figure 2B, in the illustrated condition, the fluid pressure in the main lumen 14 is greater than the pressure of the fluid 80 in the common lumen 12.
This pressure differential causes the flap member 24 of the check valve 20 to be displaced inwardly toward the longitudinal axis of the common lumen 12 and away from the common lumen inner wall 34 and the hole 36. In some embodiments, the flap member 24 resists opening against smaller pressure differentials until the magnitude of the pressure differential exceeds a certain threshold value.
[0039] The value of this threshold pressure can be selectively determined by varying design parameters of the check valve 20 and/or the Y-site 10. For example, a material or shape of the flap member 24 can be adjusted so as to increase or decrease the resilience, and thereby increase or decrease the closing force of the flap member 24 and the threshold pressure needed to open the valve in the forward flow direction.
Additionally, in certain embodiments, the surfaces of the flap member 24 that are in contact with the surface of the common lumen inner wall 34 will tend to temporarily stick due to frictional, electrostatic or other forces, thereby causing a larger contact area to correlate with an increased threshold pressure differential needed to open the check valve.
Thus, the threshold pressure differential can also be adjusted by increasing or decreasing a contact area between the flap member 24 and the common lumen inner wall 34. In some embodiments, it is desirable for the threshold pressure to be so small as to be substantially negligible. For example, the threshold pressure can be between about zero and about 9 inches of water (i.e., about 0.3 PSI). In other embodiments, the threshold pressure can be between about 4 and about 7 inches of water (i.e., about 0.14 PSI to about 0.25PSI). In one preferred embodiment, the threshold pressure is no greater than about 6 inches of water (about 0.22 PSI).
[0040] The flap member 24 can be integrally molded with the fixation section in order to provide a unitary check valve. Alternatively, the flap member 24 and the fixation section can be fabricated separately and subsequently joined together by adhesives, welds, or other joining means. The check valve 20 can be molded, extruded, or cast from a variety of appropriate materials, such as silicone rubber, elastomeric polymers or other medically-acceptable materials. If extruded, the check valve can be cut or modified in some other way to create a flap member and a fixation section. The Y-site can also be made as a unitary structure with an appropriately configured check valve structure, potentially simplifying the manufacturing and assembly processes.
[0041] In one embodiment, the check valve 20, including the fixation section and the flap member 24, is molded from a silicone rubber material. The check valve can be made from any suitable medically acceptable material. In some embodiments, the flap member 24 has a length L3 of between about 0.1" and about 0.5". In other embodiments, the flap member 24 has a length L3 of between about 0.2" and about 0.4", and in one particular embodiment, the flap member 24 has a length L3 of about 0.35".
[0042] The resilience of the flap member 24 can be at least partially determined by the thickness of the flexing portions of the flap member 24. In some embodiments, the proximal section 52 of the flap member 24 has a thickness tl of between about 0.010" and about 0.040", and in one preferred embodiment a thickness tl about 0.017". In some embodiments, the distal section 54 of the flap member 24 has a thickness t2 of between about 0.0 10" and about 0.050", and in one preferred embodiment the flap has a thickness t2 of about 0.037". Of course, dimensions within and outside of these ranges can also be used as appropriate for any particular application.
[0043] In some embodiments, as illustrated for example in Figures 3 and 4, a portion of the flap member 24 can include a cutout 43. In one embodiment, the cutout 43 continues the profile of the check valve lumen 30 for a portion of the length of the flap member 24. If the cutout 42 is omitted, the proximal 52 and distal 54 sections of the flap member 24 can have approximately the same thickness. In the embodiments shown in Figures 3 and 4, the cutout 43 comprises a shoulder 44 at a distal end thereof. In some embodiments, the length Ll of the lumen 30 including the cutout 43 is between about 0.2"
and about 0.6", and in other embodiments is between about 0.3 and about 0.5".
In one embodiment, the length Ll is about 0.4". In further alternative embodiments, other dimensions can be used as appropriate. In alternative embodiments, the cutout 43 can comprise a tapered distal end 44, or the cutout 43 can continue for the entire length of the flap member 24. The check valve lumen 30 need not have a circular cross-section;
for example, the cross-section can also be rectangular, elliptical, polygonal, or D-shaped.
[0044] Y-sites are typically injection molded from medical grade plastics. As an artifact of the manufacturing process, injection molding often leaves flash (not shown) in the form of raised burrs or other excess material. The flash is often parallel to the main lumen wall 28 and extends into the common 12 and/or secondary 15 lumens surrounding the hole 36. In some instances, the flash can interfere with the functioning of a check valve having a flap member as described above by potentially preventing the outer surface 46 of the flap member 24 from sealing against the inner wall 34 of the common lumen 12.
One way to circumvent this is to remove the flash, such as by grinding, filing or some other post-production method. However, such processes can be labor intensive, inefficient and costly. Thus, a preferred alternative involves providing a flap member 24 of the check valve 20 configured to accommodate the flash and to function as described above despite the presence of flash on the common lumen wall surrounding the intersection hole 36.
[00451 Figures 5-13 illustrate some embodiments of a check valve 20 configured to seal an injection lumen 14 from back-flow while avoiding flash surrounding the intersection hole 36 and requiring a minimal threshold injection pressure. In the illustrated embodiments, these advantages are generally be achieved by providing an enclosed pocket 70 in the outer surface 46 of the flap member 24. Such a pocket 70 can allow a flash or burr material to extend into a space created by the pocket while the walls surrounding the pocket seal against the lumen wall. In some embodiments, such a pocket 70 can be formed by a flange 72 surrounding the perimeter of the outer surface 46 of the flap member 24.
[00461 Figure 5 illustrates an embodiment of a check valve 20 having a cylindrical fixation section 22 with a hollow lumen 30 and a flap member 24 extending in a distal direction from the fixation section 22. The flap member 24 comprises a flange 72 extending outward from portions of the flap member 24. In the illustrated embodiment, the flange 72 generally comprises an end portion 74 and first and second flange legs 76 extending along the long edges of the flap member 24. In the illustrated embodiment, the flange 72 is relatively narrow and surrounds a periphery of the flap member outer surface 46.
In one embodiment, as illustrated in Figure 6, the flange 72 has a width `w' of about 0.005".
In some embodiments, the flange 72 is about 0.010" wide. In other embodiments, the flange 72 can extend over smaller or larger portions of the flap member 24 as desired.
[00471 In some embodiments, a pocket 70 is formed by a flange 72 surrounding a central portion of the outer surface 46 of the flap member 24. This pocket 70 is generally sized to enclose any flash extending into the common lumen of the Y-connector around the hole 36 so that the flange 72 can seal against the common lumen inner wall 34.
The flange 72 also creates a small contact area between the flap member 24 and the inner wall 34 of the common lumen 12. As discussed above, such a reduction in sealing area can result in an advantageous reduction in threshold pressure needed for fluid to flow from the main lumen 14 into the common lumen 12.
[0048] In one embodiment, as shown in Figure 7, the flange 72 comprises an arcuate end section 74 extending outwards from the distal end 78 of the flap member 24. The arcuate end section 74 of the flange 72 can have substantially the same radius as the outer surface 46 of the flap member 24, and a center that is preferably shifted radially from the center of the circular fixation section 22 and the flap member outer surface 40. The radius of the arcuate section 74 of the flange 72 can be selected to correspond to a diameter of the inner wall of a Y-site common lumen.
[0049] In the embodiments illustrated in Figures 7 and 8, the flap member 24 comprises a substantially D-shaped cross section. The flat edge 50 of the flap member 24 forms a geometric chord which subtends an are 0 of less than 180 measured from the center of the circular fixation section 22. In this example, the chord 50 subtends an arc 0 of between about 90 and about 180 , and in one preferred embodiment, the chord 50 preferably subtends an arc 0 of about 135 . Alternatively, the chord 50 could be configured to subtend an arc of less than 90 as appropriate for any particular application.
[0050] In one embodiment, as illustrated in Figures 7 and 8, the flange 72 can be configured to taper from a high point 84 at a center of the arcuate end section 74 to a pair of low points 84 at the intersection of the flap member 24 with the fixation section 22. At the high point 84, the flange 72 can extend about 0.005" to about 0.030" above the flap member 24 outer surface 46. In one embodiment, the high point is about 0.010" above the flap member 24 outer surface 46, and the angle a at which the flange 72 tapers can be between about 1 and about 2 (see Figure 9). In one preferred embodiment, the taper angle is about 1.6 . In alternative embodiments, a flange can be provided with a greater or lesser length or angle of taper as desired. For example, the low points 84 of the flange legs 76 could alternatively be located at other points along the flap member. The flange could also extend the entire length of the check valve to the proximal end 80 of the fixation section.

[0051] In one embodiment, the low points 84 of the flange 72 are substantially continuous with the outer surface 32 of the fixation section 22.
Alternatively, the valve 20 can comprise a discontinuity such as a ledge or a groove at or near the intersection of the flange 72 with the fixation section 22 in order to allow for variation in the seal between the valve 20 and the internal common lumen wall 34.
[0052] The pocket 70 can be formed in a flap member 24 by any suitable means.
For example, in some embodiments such as those discussed above, a flange 72 can be molded as a unitary structure with the flap member 24 and/or the fixation section 22.
[0053] In one embodiment, a check valve according to some of the embodiments described above allows fluid to flow from the main lumen to the common lumen at a rate of about 330 cc/min at a pressure of 36 inches of water (about 1.3 PSI). In still further embodiments, rates within or outside of the ranges disclosed herein can also be achieved.
[0054] In alternative embodiments, illustrated for example in Figure 10, a pocket 70 can be formed by cutting out a section of the flap member 24, or by molding a depression into the outer surface 46 of the flap member 24. Additionally, a depression or flange can be formed so as to create a pocket 70 with linear, arcuate, rounded, serpentine, or otherwise shaped side walls 86 surrounding the pocket 70.
[0055] Figures 11-13 illustrate another embodiment of a check valve 20 for use in preventing unwanted fluid flow in a Y-site. According to this embodiment, the fixation section 22 can comprise a protrusion, such as a prismatic body 90, configured to retain the check valve 20 in a Y-site common lumen while allowing fluid flow around the protrusion.
In the illustrated embodiment, the protrusion is a prismatic body 90 that is substantially trapezoidal in cross-section (both axial and transverse). The illustrated prismatic body 90 also comprises rounded portions 92 at leading and trailing ends in order to improve fluid flow around the body 90. In alternative embodiments, the protrusion of the fixation section 22 can comprise a solid or hollow section having any suitable cross-sectional shape configured to allow fluid flow around or through any portion thereof.
[0056] The embodiment of Figures 11-13 can include a substantially flat outer surface 46 with a flange 72 extending substantially around the entire periphery of the valve 20. Thus, the pocket 70 can extend substantially along the entire length of the flap member 24 and the fixation section 22. If desired the edge regions 94 of the valve 20 can have a radius configured to improve a seal between the valve 20 and the inner wall of a Y-site.
[0057] In some embodiments, as shown for example in Figure 14, a Y-site 10 can be molded with a planar section 96 adjacent the main lumen 14 and configured to receive a check valve 20 with a planar outer surface 46 such as that illustrated and described herein.
The Y-site of Figure 14 is also shown with a step 98 at a point of increasing diameter just below the hole 36 joining the main lumen 14 to the common lumen 12. This configuration further decreases the likelihood that fluid at a level below the hole 36 will be forced upwardly by retrograde fluid pressures through the hole 36 and into the main lumen 14 because such upwardly directed fluid would first encounter the step 98 instead of the flap member 24 of the check valve 20.
[0058] Although certain embodiments and examples have been described herein, it will be understood by those skilled in the art that many aspects of the methods and devices shown and described in the present disclosure may be differently combined and/or modified to form still further embodiments in view of the principles disclosed herein.
For example, other flap member arrangements can also be provided, such as a slit or a port in a section of tubing. Also, as discussed above, the flap member and the fixation section can have any suitable cross-sectional shape as desired. Although the above check valve embodiments have been described in the context of a Y-site connector, they can also be used in other fluid conduits with intersecting fluid lumens.

Claims (22)

THE FOLLOWING IS CLAIMED
1. A Y-site connector comprising:

a common lumen and a secondary lumen, the lumens extending along a main axis of the connector and the secondary lumen including a first end;

a main lumen intersecting the common lumen or the secondary lumen and a substantially open passageway extending between the common lumen and the secondary lumen;
and a check valve comprising:

a fixation portion engaging at least a portion of an internal wall of the secondary or common lumens of the Y-site connector between the first end of the secondary lumen and the intersection of the secondary or common lumen with the main lumen, the fixation portion including a prismatic protrusion, the fixation portion and the protrusion being configured to retain the check valve within the secondary or common lumens, the protrusion configured to allow fluid flow around a portion thereof;

a flap member extending axially from the fixation portion along a portion of the internal wall of the common lumen, the flap member having an outer surface configured to at least partially overlay a hole joining the main lumen to the common lumen, the flap member including a pocket, the pocket being defined by a flange and configured to surround the hole;

wherein the flap member is resiliently biased toward a sealing position to minimize or prevent fluid flow in a direction from the common lumen to the main lumen and the flap member being configured to permit fluid flow from the secondary lumen to the common lumen when the flap member is in a fully opened position away from the sealing position.
2. The Y-site of Claim 1, wherein the fixation portion comprises a lumen extending axially therethrough.
3. The Y-site of Claim 1, wherein the flange extends around a periphery of the outer surface of the flap member.
4. The Y-site of Claim 3, wherein the flange tapers inwardly from a maximum height at a free end of the flap member to a minimum height at a point of attachment of the flap member and the fixation portion.
5. The Y-site of Claim 4, wherein the maximum height is measured at a point along a radial line extending from an axial center of the fixation section.
6. The Y-site of Claim 3, wherein the flange is in continuous contact with the inner wall of the common lumen when fluid is not flowing from the main lumen into the common lumen.
7. The Y-site of Claim 3, wherein the flange surrounds the hole.
8. The Y-site of Claim 3, wherein the flange has a maximum height of about 0.010 inch above an the outer surface of the flap member.
9. The Y-site of Claim 1, wherein the check valve is configured to open to a positive fluid pressure in the main lumen of less than about 6 inches of water greater than a fluid pressure in the common lumen.
10. The Y-site of Claim 1, wherein the check valve is configured to seal against a fluid pressure in the common lumen of at least about 5 PSI greater than a fluid pressure in the main lumen.
11. The Y-site of Claim 1, wherein the fixation portion is frictionally retained within the secondary lumen.
12. The Y-site of Claim 1, wherein the check valve is a single unitary structure molded from a flexible material.
13. The Y-site of Claim 12, wherein the check valve is molded from silicone rubber.
14. A connector for use in an infusion system, the connector comprising:
a lumen extending in a first direction, the lumen having a hole in a wall of the lumen;
a check valve comprising:
a first end defining a fixation portion, the fixation portion having a prismatic protrusion extending from the fixation portion in a second direction, the prismatic protrusion and the fixation portion being configured to retain the check valve in the lumen, the protrusion configured to allow fluid flow around a portion thereof;
a second end including a flap member extending axially from the fixation portion and having an attachment end joining the flap member to the fixation portion and a free end opposite the attachment end, a portion of the flap member configured to at least partially overlay the hole in the lumen, the flap member being configured to at least partially impede a flow of fluid through the hole, the flap member being further configured to flex in a direction away from the hole;
a pocket in a portion of the flap member, the pocket being defined by a flange, the pocket being configured to surround the hole in the lumen.
15. The connector of Claim 14, wherein the flap member comprises a curved outer surface configured to seal against a curved internal wall of the lumen.
16. The connector of Claim 14, wherein the fixation portion further comprises a lumen extending therethrough.
17. The connector of Claim 14, wherein the flap member is configured to sealingly engage a lumen wall.
18. The connector of Claim 14, further comprising a wherein the pocket is on the an outer surface of the flap member.
19. The connector of Claim 14, further comprising a wherein the flange extending extends around the periphery of the an outer surface of the flap member.
20. The connector of Claim 14, wherein the flap member is configured to permit fluid flow through the lumen when the flap member is in a fully opened position away from the hole.
21. The connector of Claim 14, wherein the flap member comprises a substantially flat outer surface.
22. The connector of Claim 17, wherein the flap member is resiliently biased toward a sealing position against the lumen wall, the flap member extending around less than the entire perimeter of the wall of the lumen.
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Applications Claiming Priority (3)

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US11/048,399 2005-02-01
US11/048,399 US7670322B2 (en) 2005-02-01 2005-02-01 Check valve for medical Y-site
PCT/US2005/046441 WO2006083421A1 (en) 2005-02-01 2005-12-21 Check valve for medical y-site

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JP (1) JP2008528230A (en)
CN (1) CN100569313C (en)
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AU (1) AU2005326689A1 (en)
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Families Citing this family (35)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7670322B2 (en) 2005-02-01 2010-03-02 Icu Medical, Inc. Check valve for medical Y-site
US7998134B2 (en) 2007-05-16 2011-08-16 Icu Medical, Inc. Medical connector
US20080086093A1 (en) * 2006-09-18 2008-04-10 Steppe Dennis L Automatic stop cock valve
US8221363B2 (en) 2006-10-18 2012-07-17 Baxter Healthcare S.A. Luer activated device with valve element under tension
US7981090B2 (en) 2006-10-18 2011-07-19 Baxter International Inc. Luer activated device
US7753338B2 (en) 2006-10-23 2010-07-13 Baxter International Inc. Luer activated device with minimal fluid displacement
ITMO20070340A1 (en) * 2007-11-13 2009-05-14 Lucomed Spa CONNECTING DEVICE FOR BIOMEDICAL LINES, PARTICULARLY FOR THE ADMINISTRATION OF PHARMACOLOGICAL SUBSTANCES
US8357105B2 (en) 2008-08-07 2013-01-22 Covidien Lp Anti-reflux mechanism for urine collection systems
US9028466B2 (en) * 2009-06-08 2015-05-12 St. Jude Medical Coordination Center Bvba Adapter for use in connecting to a first percutaneous introducer
SG184479A1 (en) 2010-04-05 2012-11-29 Py Daniel C Aseptic connector with deflectable ring of concern and method
US9951899B2 (en) 2012-04-17 2018-04-24 Dr. Py Institute, Llc Self closing connector
WO2013166143A1 (en) 2012-05-01 2013-11-07 Py Daniel C Device for connecting or filling and method
US10351271B2 (en) 2012-05-01 2019-07-16 Dr. Py Institute Llc Device for connecting or filling and method
US10143818B2 (en) 2013-01-22 2018-12-04 Fisher & Paykel Healthcare Limited Dual-connector wye piece
CN108096702A (en) 2013-03-16 2018-06-01 宝利麦迪柯尔有限公司 The valve of conveying device
US9381320B2 (en) * 2013-03-18 2016-07-05 Becton, Dickinson And Company Multiple-use intravenous catheter assembly septum and septum actuator
ITMO20130264A1 (en) * 2013-09-25 2015-03-26 Giuseppe Maffei CONNECTOR WITHOUT NEEDLE
WO2016043604A1 (en) * 2014-09-17 2016-03-24 Fisher & Paykel Healthcare Limited Connectors for respiratory assistance systems
DE102014219814A1 (en) 2014-09-30 2016-03-31 B. Braun Melsungen Ag Connecting device for a fluid system for medical purposes
ES2754805T3 (en) * 2015-02-26 2020-04-20 Braun Melsungen Ag IV catheter sets with injection ports
US9682189B2 (en) * 2015-02-27 2017-06-20 Carefusion 2200, Inc. Smart check valve
US11071849B2 (en) 2015-08-18 2021-07-27 B. Braun Melsungen Ag Catheter devices with valves and related methods
EP3359243B1 (en) 2015-10-07 2021-10-06 Illinois Tool Works Inc. Check valve assembly
EP3405231A4 (en) 2016-01-19 2019-10-16 Daniel Py Single use connectors
IT201600127162A1 (en) * 2016-12-15 2018-06-15 Borla Ind Y CONNECTION FOR MEDICAL LINES
US9925365B1 (en) 2017-06-21 2018-03-27 Rymed Technologies, Llc Needleless IV injection port
CN111032116B (en) * 2017-06-24 2022-09-09 纳科斯达格医药股份有限公司 Fluid management and measurement systems, devices, and methods
KR102247794B1 (en) * 2018-10-24 2021-05-04 김연주 Stopcock
KR102358995B1 (en) * 2019-10-24 2022-02-07 위더스 주식회사 Stopcock
US11850377B2 (en) 2018-12-17 2023-12-26 B. Braun Melsungen Ag Catheter assemblies and related methods
EP3677305A1 (en) 2019-01-04 2020-07-08 Asset Medikal Tasarim Sanayi ve Ticaret A.S. One way intravenous needle free valve including a flexible member
US20200222681A1 (en) * 2019-01-14 2020-07-16 Becton, Dickinson And Company Needleless access connector facilitating instrument delivery to a catheter assembly
DE102021105373A1 (en) * 2021-03-05 2022-09-08 Mann+Hummel Gmbh Filter element, filter element arrangement and filter system with a filter element arrangement
CN113577453A (en) * 2021-07-21 2021-11-02 江西洪达医疗器械集团有限公司 Needleless medicine adding liquid medicine filter
US20230240946A1 (en) * 2022-01-31 2023-08-03 Lauren Nicole Hunter Feeding Nipple with Penetrable Side Entry Tube for Administration of Liquid Medicine

Family Cites Families (144)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1578617A (en) * 1922-04-18 1926-03-30 Dutchess Tool Co Doughproofing cabinet
US1578517A (en) * 1924-12-23 1926-03-30 George N Hein Valve piston and barrel construction for hypodermic syringes
US2999499A (en) * 1958-07-11 1961-09-12 Cutter Lab Flexible check valve
US3416567A (en) * 1964-02-20 1968-12-17 Viggo Ab Syringe valve
US3502097A (en) * 1966-06-08 1970-03-24 Us Catheter & Instr Corp Catheter-infuser connector
US3572375A (en) * 1967-06-02 1971-03-23 David Rosenberg Twin valve t-connector
US3830241A (en) * 1972-08-07 1974-08-20 Kendall & Co Vented adapter
US3807444A (en) * 1972-10-10 1974-04-30 Ca Valve Ltd Check valve
US3852385A (en) 1972-12-06 1974-12-03 Med Pak Corp Gas humidification apparatus
US3797486A (en) * 1973-01-02 1974-03-19 R Shaps Intravenous infusion assembly
FR2220729B1 (en) * 1973-03-06 1975-10-31 Technological Supply
FR2269970A1 (en) 1974-05-07 1975-12-05 Crinospital Spa
SE388358B (en) 1975-01-24 1976-10-04 Stille Werner Ab CANYLE UNIT
US4005710A (en) * 1975-02-12 1977-02-01 Abbott Laboratories Parenteral apparatus with one-way valve
US3965910A (en) * 1975-04-28 1976-06-29 Walpak Company Urinary irrigation valve
LU77252A1 (en) * 1976-05-06 1977-08-22
US4079738A (en) * 1976-09-20 1978-03-21 Sorenson Research Co., Inc. Needle restraining apparatus
US4121585A (en) 1977-01-24 1978-10-24 Becker Jr Karl E Anti backflow injection device
GB2001146B (en) 1977-07-14 1982-05-19 Smiths Industries Ltd Valve assemblies
US4191183A (en) * 1977-10-31 1980-03-04 Barry Mendelson Mixing chamber for use in plural medical liquid intravenous administration set
US4219912A (en) * 1978-10-10 1980-09-02 Baxter Travenol Laboratories, Inc. Injection site having thermoplastically sealed injection port
US4257416A (en) * 1979-05-03 1981-03-24 David Prager Multi-channel venipuncture infusion set
US4257415A (en) * 1979-05-07 1981-03-24 Howard Rubin Portable nebulizer treatment apparatus
US4294249A (en) 1979-10-18 1981-10-13 Cutter Laboratories, Inc. Swage-molded injection site
US4338933A (en) * 1980-12-22 1982-07-13 Abbott Laboratories Combination quick disconnect coupling and liquid cutoff valve
US4447230A (en) * 1981-08-05 1984-05-08 Quest Medical, Inc. Intravenous administration set assembly
US4392851A (en) * 1981-11-23 1983-07-12 Abbott Laboratories In-line transfer unit
US4411662A (en) 1982-04-06 1983-10-25 Baxter Travenol Laboratories, Inc. Sterile coupling
US4573974A (en) * 1982-12-01 1986-03-04 Baxter Travenol Laboratories, Inc. Medical administration set enabling sequential delivery of two liquids at different flow rate
US5281206A (en) * 1983-01-24 1994-01-25 Icu Medical, Inc. Needle connector with rotatable collar
US5776116A (en) 1983-01-24 1998-07-07 Icu Medical, Inc. Medical connector
US5330450A (en) * 1983-01-24 1994-07-19 Icu Medical, Inc. Medical connector
US4929235A (en) * 1985-07-31 1990-05-29 Universal Medical Instrument Corp. Self-sealing percutaneous tube introducer
US4666429A (en) * 1986-02-26 1987-05-19 Intelligent Medicine, Inc. Infusion device having improved valving apparatus
DE3607606A1 (en) * 1986-03-07 1987-09-24 Dagma Gmbh & Co WATERJET INJECTION DEVICE ON DISPENSERS FOR PRODUCING AND DISPENSING MIXED BEVERAGES FROM FRUIT SYRUP OR CONCENTRATE AND WATER
EP0240590B1 (en) * 1986-04-11 1991-08-28 B. Braun-SSC AG Anti-backflow injection valve
US4735607A (en) * 1986-05-12 1988-04-05 H. P. Bruemmer Corp. Nasogastric tube antireflux valve
US4878897A (en) 1986-05-15 1989-11-07 Ideation Enterprises, Inc. Injection site device having a safety shield
US4790832A (en) 1986-06-06 1988-12-13 Icu Medical, Inc. System for administering medication nasally to a patient
CH671159A5 (en) 1986-06-20 1989-08-15 Contempo Products
CH672363A5 (en) 1986-09-29 1989-11-15 Contempo Products
US4834716A (en) * 1987-07-17 1989-05-30 Ims, Limited Protected cannula
US4874369A (en) 1987-07-27 1989-10-17 Baxter International Inc. Self-priming injection site with check valve
US4730635A (en) * 1987-08-19 1988-03-15 Hall Surgical Valve and method
US4850978A (en) * 1987-10-29 1989-07-25 Baxter International Inc. Drug delivery cartridge with protective cover
DE8714659U1 (en) * 1987-11-04 1987-12-10 Clinico Infusionstechnik Gmbh & Co Medizinische Kunststoffprodukte Kg, 6430 Bad Hersfeld, De
US4842591A (en) * 1988-01-21 1989-06-27 Luther Ronald B Connector with one-way septum valve, and assembly
US5135489A (en) * 1988-01-25 1992-08-04 Baxter International Inc. Pre-slit injection site and tapered cannula
US5211638A (en) * 1988-01-25 1993-05-18 Baxter International Inc. Pre-slit injection site
US5100394A (en) * 1988-01-25 1992-03-31 Baxter International Inc. Pre-slit injection site
CA1335167C (en) 1988-01-25 1995-04-11 Steven C. Jepson Pre-slit injection site and associated cannula
US4932944A (en) * 1988-03-09 1990-06-12 The University Of Virginia Alumni Patents Foundation Intravenous port injection and connector system
US4981469A (en) * 1988-04-18 1991-01-01 Dij Catheter Corp. Septum adapter assembly and external needle adapter fitting
US5195992A (en) * 1988-05-13 1993-03-23 Baxter International Inc. Protector shield for needles
NL8801496A (en) 1988-06-10 1990-01-02 Cordis Europ Syringe-connecting branch-piece - has non-return valves between inlet and syringe and syringe and outlet
US4946445A (en) * 1988-09-06 1990-08-07 Lynn Lawrence A Intravenous line coupling device
AT391814B (en) 1988-11-22 1990-12-10 Hirnich Paul CONNECTING PIECE FOR AN INFUSION DEVICE OD. DGL.
US4915687A (en) * 1989-02-17 1990-04-10 Sivert George A Needleless injection port arrangement
US4964855A (en) 1989-03-31 1990-10-23 Joseph J. Todd Connector with recessed needle for Y-tube, and assembly
US4998927A (en) * 1989-08-18 1991-03-12 Vaillancourt Vincent L Connector
NL8902307A (en) 1989-09-14 1991-04-02 Cordis Europ CATHETER.
IL91918A0 (en) * 1989-10-06 1990-06-10 Rosenberg Lior Fluid drain system for wounds
US5080652A (en) * 1989-10-31 1992-01-14 Block Medical, Inc. Infusion apparatus
US4998921A (en) * 1989-11-20 1991-03-12 Vickroy Harold C Intermittent I.V. therapy needle sheath
US5113911A (en) * 1989-12-11 1992-05-19 Advantec Corp. Pressure actuated elastomeric valve
US4998713A (en) 1990-01-10 1991-03-12 Vaillancourt Vincent L Needle connector
US5049128A (en) * 1990-02-06 1991-09-17 Duquette Irene A Valved infusion port
US5167642A (en) 1990-08-27 1992-12-01 Baxter International Inc. Sheath for a blunt cannula
US5203775A (en) * 1990-09-18 1993-04-20 Medex, Inc. Needleless connector sample site
US5201717A (en) * 1990-12-05 1993-04-13 Philip Wyatt Safety enclosure
US5122123A (en) * 1991-01-30 1992-06-16 Vaillancourt Vincent L Closed system connector assembly
US5098405A (en) * 1991-01-31 1992-03-24 Becton, Dickinson And Company Apparatus and method for a side port cathether adapter with a one piece integral combination valve
GB9103122D0 (en) * 1991-02-14 1991-04-03 Wallace Ltd H G Resealable sampling port
US5163922A (en) 1991-04-29 1992-11-17 Charles E. McElveen, Jr. Dual-valved connector for intravenous systems
US5147333A (en) * 1991-05-13 1992-09-15 Burron Medical Inc. Needleless injection port with automatic backcheck valve
US5112301A (en) * 1991-06-19 1992-05-12 Strato Medical Corporation Bidirectional check valve catheter
WO1993001848A1 (en) * 1991-07-23 1993-02-04 Preiss, Otto, T. A closure for a medicament well
US5221271A (en) * 1991-08-15 1993-06-22 Medex, Inc. Sample site with flow directors
US5242432A (en) * 1991-09-26 1993-09-07 Ivac Needleless adapter
US5290222A (en) * 1991-10-15 1994-03-01 Jiyu Feng Injection port connector with rotatable locking lug
US5255676A (en) 1991-11-08 1993-10-26 Russo Ronald D Safety sealed tracheal suction system
IT1250529B (en) * 1991-12-13 1995-04-08 Hospal Dasco Spa SAMPLE AND INFUSION FITTING FOR AN EXTRACORPOREAL BLOOD CIRCULATION LINE.
US5694686A (en) * 1991-12-18 1997-12-09 Icu Medical, Inc. Method for assembling a medical valve
US5273533A (en) 1992-03-11 1993-12-28 Care Medical Products, Inc. Medical valve
US5356396A (en) 1992-09-29 1994-10-18 Medical Associates Network Inc. Infusion apparatus
US5603706A (en) * 1992-09-29 1997-02-18 Wyatt; Philip Infusion apparatus
US5385547A (en) * 1992-11-19 1995-01-31 Baxter International Inc. Adaptor for drug delivery
US5405333A (en) * 1992-12-28 1995-04-11 Richmond; Frank M. Liquid medicament bag with needleless connector fitting using boat assembly
US5395348A (en) * 1993-05-04 1995-03-07 Symbiosis Corporation Medical intravenous administration line connectors
US5348542A (en) * 1993-05-05 1994-09-20 Joseph P. Padula Holder for percutaneously introduced tubes
US6485472B1 (en) 1998-03-12 2002-11-26 Frank M. Richmond Spikeless connection and drip chamber with valve
US5445630A (en) * 1993-07-28 1995-08-29 Richmond; Frank M. Spike with luer fitting
US5370624A (en) 1993-09-14 1994-12-06 Becton Dickinson And Company Catheter with deactivatable side port
US5342326A (en) * 1993-09-22 1994-08-30 B. Braun Medical, Inc. Capless medical valve
US5401245A (en) * 1993-11-26 1995-03-28 Haining; Michael L. Medical connector with valve
US5549577A (en) * 1993-12-29 1996-08-27 Ivac Corporation Needleless connector
US5439451A (en) * 1994-03-22 1995-08-08 B. Braun Medical, Inc. Capless medical backcheck valve
US7033339B1 (en) * 1998-05-29 2006-04-25 Becton Dickinson And Company (Part Interest) Self sealing luer receiving stopcock
US5470319A (en) 1994-06-20 1995-11-28 Critical Device Corporation Needleless injection site
KR100441231B1 (en) * 1994-06-24 2004-10-12 아이시유메디칼인코오포레이티드 Fluid transfer device and method of use
IL110508A (en) 1994-07-29 1998-08-16 United States Surgical Corp Stopcock
DE4442352C1 (en) * 1994-11-29 1995-12-21 Braun Melsungen Ag Valve arrangement provided in connector for use e.g. with cannula
US5660205A (en) * 1994-12-15 1997-08-26 Epstein; Alan B. One-way valve
US5839715A (en) 1995-05-16 1998-11-24 Alaris Medical Systems, Inc. Medical adapter having needleless valve and sharpened cannula
NZ286445A (en) 1995-05-16 1997-12-19 Ivac Corp Needleless luer connector: deformable piston occludes bore
US5810768A (en) * 1995-06-07 1998-09-22 Icu Medical, Inc. Medical connector
US5782816A (en) * 1995-09-07 1998-07-21 David R. Kipp Bi-directional valve and method of using same
US5738663A (en) * 1995-12-15 1998-04-14 Icu Medical, Inc. Medical valve with fluid escape space
US5700248A (en) 1995-12-15 1997-12-23 Icu Medical, Inc. Medical valve with tire seal
US5788215A (en) * 1995-12-29 1998-08-04 Rymed Technologies Medical intravenous administration line connectors having a luer or pressure activated valve
IT1285266B1 (en) * 1996-02-26 1998-06-03 Borla Ind CONNECTOR WITH PROTECTION VALVE FOR INFUSION / TRANSFUSION AND SIMILAR MEDICAL LINES.
US5810792A (en) 1996-04-03 1998-09-22 Icu Medical, Inc. Locking blunt cannula
WO1998026835A1 (en) * 1996-12-16 1998-06-25 Icu Medical, Inc. Positive flow valve
US6245048B1 (en) * 1996-12-16 2001-06-12 Icu Medical, Inc. Medical valve with positive flow characteristics
JP3159108B2 (en) * 1997-03-27 2001-04-23 ヤマハ株式会社 Semiconductor device and manufacturing method thereof
US6063062A (en) * 1997-04-18 2000-05-16 Paradis; Joseph R. Universal luer activatable and swabbable antireflux valve
ATE335518T1 (en) * 1997-05-20 2006-09-15 Baxter Int NEEDLELESS COUPLING PIECE
US5957898A (en) * 1997-05-20 1999-09-28 Baxter International Inc. Needleless connector
US6117114A (en) 1998-05-07 2000-09-12 Paradis; Joseph R. Swabbable needleless valve adaptations
DE69940669D1 (en) * 1998-05-29 2009-05-14 Lawrence A Lynn Luer adapter and method for fluid transfer
DE19831698C2 (en) * 1998-07-15 2000-08-31 Caremed Medical Produkte Ag Check valve, in particular for an implantable artificial bladder
WO2000010626A1 (en) * 1998-08-19 2000-03-02 Jms Co., Ltd. Fluid passage change-over apparatus for medical treatment
US6364861B1 (en) * 1998-09-17 2002-04-02 Porex Medical Products, Inc. Multi-valve injection/aspiration manifold
US6491668B1 (en) 1998-12-03 2002-12-10 Joseph R. Paradis Needleless fluid transfer
IL128016A0 (en) * 1999-01-12 1999-11-30 Elcam Plastic Kibbutz Bar Am Blood sampling device
JP2000251911A (en) * 1999-03-03 2000-09-14 Nissan Motor Co Ltd Fuel cell power generating system
US6695817B1 (en) * 2000-07-11 2004-02-24 Icu Medical, Inc. Medical valve with positive flow characteristics
JP3525431B2 (en) 2000-09-26 2004-05-10 株式会社ジェイ・エム・エス Medical injection port
US6511434B1 (en) * 2001-06-07 2003-01-28 Elcam Plastic Cooperative Agricultural Association Ltd. Blood-pressure transducer assembly
US6589497B2 (en) * 2001-06-13 2003-07-08 Fmc Wyoming Corporation Process for preparing soda ash from solution mined bicarbonate brines
DE10157234C1 (en) * 2001-11-22 2003-07-17 Knf Neuberger Gmbh Oscillating displacer
WO2004020037A1 (en) 2002-08-12 2004-03-11 Jms Co., Ltd. Needle-less port and method of producing the same
US6783522B2 (en) * 2002-09-09 2004-08-31 Angel Medical Systems, Inc. Implantable catheter having an improved check valve
US6962580B2 (en) * 2002-09-17 2005-11-08 Transoma Medical, Inc. Vascular access port with needle detector
US6871838B2 (en) * 2003-04-03 2005-03-29 B. Braun Medical Inc. Injection port valve
US20040210162A1 (en) 2003-04-21 2004-10-21 Wyatt Philip W. Unitary blood sampling apparatus and method of using same
DE10320143A1 (en) 2003-05-06 2004-12-16 Pari GmbH Spezialisten für effektive Inhalation Nebulizer connection device for respirators or the like
CA2529429C (en) * 2003-06-17 2009-10-20 Filtertek Inc. Fluid handling device and method of making same
US7211074B2 (en) * 2003-08-12 2007-05-01 Sherwood Services Ag Valved catheter
US7347853B2 (en) * 2004-05-12 2008-03-25 C. R. Bard, Inc. Catheter with removable extension
US20050267417A1 (en) * 2004-05-25 2005-12-01 Secrest Dean J Irrigating biopsy inlet valve
US7771383B2 (en) * 2004-10-22 2010-08-10 Medegen, Inc. Fluid control device with valve and methods of use
US20060155212A1 (en) * 2005-01-10 2006-07-13 Madonia James R Self flushing luer activated blood sampling devices
US7670322B2 (en) 2005-02-01 2010-03-02 Icu Medical, Inc. Check valve for medical Y-site

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AR055026A1 (en) 2007-08-01
US20060264853A1 (en) 2006-11-23
TW200630131A (en) 2006-09-01
EP1846088A1 (en) 2007-10-24
CN101111283A (en) 2008-01-23
US20060264854A1 (en) 2006-11-23
JP2008528230A (en) 2008-07-31
WO2006083421A1 (en) 2006-08-10
US20060173420A1 (en) 2006-08-03
BRPI0520454A2 (en) 2009-08-25
US20060200096A1 (en) 2006-09-07
CN100569313C (en) 2009-12-16
US7670322B2 (en) 2010-03-02
AU2005326689A1 (en) 2006-08-10
US20060212005A1 (en) 2006-09-21
US7931627B2 (en) 2011-04-26
MX2007009186A (en) 2008-02-20
US20060206065A1 (en) 2006-09-14
US20060264852A1 (en) 2006-11-23
CA2595369A1 (en) 2006-08-10

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