CA2158744C - Securing collar for cannula connector - Google Patents

Securing collar for cannula connector Download PDF

Info

Publication number
CA2158744C
CA2158744C CA002158744A CA2158744A CA2158744C CA 2158744 C CA2158744 C CA 2158744C CA 002158744 A CA002158744 A CA 002158744A CA 2158744 A CA2158744 A CA 2158744A CA 2158744 C CA2158744 C CA 2158744C
Authority
CA
Canada
Prior art keywords
collar
tubular
ring
connector
tubular portion
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CA002158744A
Other languages
French (fr)
Other versions
CA2158744A1 (en
Inventor
Mark E. Larkin
David E. Kramer
Warren P. Frederick
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.)
Hospira Inc
Original Assignee
Hospira Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hospira Inc filed Critical Hospira Inc
Priority claimed from PCT/US1994/003077 external-priority patent/WO1994023775A1/en
Publication of CA2158744A1 publication Critical patent/CA2158744A1/en
Application granted granted Critical
Publication of CA2158744C publication Critical patent/CA2158744C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Landscapes

  • Quick-Acting Or Multi-Walled Pipe Joints (AREA)
  • Infusion, Injection, And Reservoir Apparatuses (AREA)

Abstract

A securing collar (10) is used in combination with two tubular flow connectors (12, 14) to prevent the inadvertent disconnection of I.V. tubing sets. The securing collar (10) includes a housing (26) supported by one of the connectors, a radial flange (42) extending from the housing (26), a tubular collar (44) having an outwardly splayed end, at least two notches (52) that separate the splayed collar (44) into at least two elongated segments, a transition portion (54) on the exterior of the collar, and a sliding annular locking ring (60).
The locking ring (60) slides on the collar (44) from the proximal end over the transition portion to the distal segments so that the annular locking ring (60) forces the splayed and segmented distal portions radially inward to grip the second connector.

Description

SECURING COLLAR FOR CANNULA CONNECTOR
Background of the Invention The present invention relates to a securing apparatus which can be used to prevent the unintentional disengagement of two medical tubing connectors in fluid flow. More particularly, the invention relates to a securing collar having a splayed collar and a sliding locking ring used to secure a cannula connector to a reseal connector for fluid flow communication with IV tubing.
In general, intravenous fluid flow involves the gravity or pump-assisted flow of a medical solution from a sterile source container through a sterile tubing set to a patient's vein. Usually at least one sterile connection must be made and maintained to effectively and safely transfer the medical solution from the container to the patient. A sterile connection with an intravenous tubing set can be made in a variety of ways. The traditional and most commonly used fluid flow connection is made using a sharp needle associated with the first connector to pierce a resealable elastomeric septum of a second connector. Recently, due to the concerns about accidental needle sticks, a blunt cannula connector such as the LifeShield~ Blunt Cannula sold by Abbott Laboratories, rather than the traditional sharp needle connector is being used.
The blunt cannula connector is used with a prepierced or partially pierced elastomeric septum connector, such as the LifeShield~ Pre-pierced Reseal, also sold by Abbott Laboratories.
A primary concern with any medical tubing connector is the accidental or unintentional disengagement of the connector. A sharp or blunt cannula can accidentally be pulled out of a reseal. An accidental disconnection can contaminate the cannula of the connector and/or allow the medical solution to spill or drain. In addition to the interruption in the intravenous therapy, accidental disconnection may compromise the sterility and integrity of the IV
flow system. Contaminants may be introduced into the IV flow system if the connectors are reconnected without effective disinfecting.
The above concerns have led to medical guidelines and procedures that suggest and sometimes require that LV. tubing connections be secured together.
A variety of known devices are currently used for securing LV. tubing connections. However, many of the known securing apparatus are undesirable, for example, because of their bulk, complexity and/or expense. Furthermore, there are other concerns such as patient discomfort, the amount of time and manipulation required from the health care provider to attach and release the securing apparatus, or the lack of effectiveness in preventing disconnections.
Tape is often used in addition to or when no suitable securing apparatus is available. However, tape has an inherent drawback when the connectors need to be quickly disconnected. Also, tape is awkward to use when one of the connectors is in close proximity to the patient's body such as the connector at the vein access site. Excessive movement of the connector at the vein access site, for example, can cause patient discomfort or damage to the vein wall.
Thus, there is a need for a simple, inexpensive, yet reliable securing apparatus that can reduce accidental disengagement of LV. tubing connectors.
It is desirable that the securing apparatus be readily engageable and disengageable.
Further, it is desirable that the securing apparatus be easy to manipulate and compatible with different fluid flow connectors. Finally, it is desirable that the securing apparatus be usable with blunt cannula or sharp needle connectors.
Summary of the Invention Therefore, this invention seeks to provide a simple and reliable construction for a securing apparatus used in combination with intravenous fluid flow connectors.
This invention also seeks to provide a securing apparatus for use with intravenous tubing connectors such as either a sharp needle or a blunt cannula and their respective resealable and prepierced septums.
Still further this invention seeks to provide a securing apparatus that is easy to manipulate by the health care provider, yet reliable in securing the connectors of the intravenous tubing set.
In accordance with one aspect of the invention, there is provided a securing collar for a medical tubing connector, comprising:
a tubing connector having an axially extending hub and a cannula coaxially extending from the hub;
a generally radial deflectable flange circumferentially extending from the connector hub;
a splayed tubular collar having a first tubular portion circumferentially extending from the radial flange and a second tubular portion further extending from the first tubular portion; said first tubular portion having an outer surface with a first maximum diameter, and said second tubular portion having an outer surface with a second minimum diameter which is larger than the first maximum diameter;
two longitudinal notches in the splayed collar for dividing the collar into two longitudinal collar segments;
an annular locking ring slidable on the splayed collar from the first tubular portion to the second tubular portion; said ring having an inner diameter which is smaller than the second minimum diameter of the collar and which compresses the outer surface of the second tubular portion when the ring is slid to a position on said second tubular portion to pivot two longitudinal segments of the collar radially inward at the deflectable flange to provide sealable engagement at said collar; and means for limiting rotation of the locking ring relative to the tubing connector when the locking ring is positioned over the first tubular portion.

3a In accordance with another aspect of the invention, there is provided an apparatus for selectively securing a first medical tubing connector to a second medical tubing connector, comprising:
an apparatus housing constructed and arranged to engage the first medical tubing connector in an axial orientation;
a generally radial deflectable flange circumferentially extending from the apparatus housing and perpendicular to the axial orientation of the first medical tubing connector;
a splayed tubular collar having a first tubular portion circumferentially and axially extending from the radial flange and a second tubular portion axially extending from the first tubular portion; said first tubular portion having an outer surface with a first maximum diameter, and said second tubular portion having an outer surface with a second minimum diameter which is larger than the first maximum diameter;
two longitudinal notches in the collar for dividing the collar into two longitudinal collar segments;
an annular locking ring axially slidable on the splayed collar from the first tubular portion to the second tubular portion; said ring having an inner diameter which is smaller than the second minimum diameter of the collar and which compresses the outer surface of the second tubular portion when the ring is slid to a position on said second tubular portion to pivot two longitudinal segments of the collar radially inward at the deflectable flange so as to force the first and second segments of the collar radially inward as the locking ring is axially slid from the first tubular portion to the second portion; and means for limiting rotation of the locking ring relative to the first tubing connector when the locking ring is positioned over the first tubular portion.
In accordance with still another aspect of the invention, there is provided a securable collar assembly for use with a fluid connector having an axially forward extending cannula for securably connecting the fluid connector to a tubular conduit having a septum at a terminal end and a radial shoulder proximate the septum, the collar assembly comprising:
a tubular housing axially engaged with the fluid connector so that the cannula of the fluid connector extends axially forward from the housing;

3b a generally radially extending, resiliently deflectable flange extending from the housing;
a hollow generally cylindrical collar extending longitudinally from the flange and coaxially with the cannula to an open forward end;
the hollow collar having an inner surface def ning a bore for receiving the terminal end of the tubular conduit and a radially inward extending lip on the inner surface of the collar at the open forward end of the collar;
the collar having an outer surface including a first portion adjacent the flange having a first maximum diameter and a second portion between the first portion and the open end of the collar having a second minimum diameter which is larger than the first maximum diameter;
the collar having two diametrically opposed notches, each notch extending longitudinally rearward from the open forward end of the collar through the first and second portions of the collar to a notch closed end adjacent the flange so as to divide the collar into two longitudinal semi-cylindrical segments;
a ring longitudinally slidable along the outer surface of the collar from a first rear position on the first portion to a second forward position on the second portion, the ring having an inner diameter which is smaller than the second minimum diameter of the collar so as to compress the outer surface of the second portion when the ring is slid to the second forward position so as to pivot the two longitudinal segments of the collar radially inward at the deflectable flange so that the inward lip at the open forward end of the collar engages the radial shoulder of the tubular conduit; and means for limiting the relative rotation of the sliding ring on the collar in the first rear position.
In accordance with yet another aspect of the invention, there is provided a fluid connector assembly for securably connecting to a tubular conduit having a septum at a terminal end and a radial shoulder proximate the septum, the connector assembly comprising:
a connector body having an axially extending cannula for insertion into the septum;
a generally radially extending, resiliently deflectable flange extending from the connector body;

3c a hollow generally cylindrical collar extending longitudinally from the flange and coaxially with the cannula to an open end;
the hollow collar having an inner surface defining a bore for receiving the terminal end of the tubular conduit and a radially inward extending lip on the inner surface of the collar at the open end of the collar;
the collar having an outer surface including a first portion adjacent the flange having a first maximum diameter and a second portion between the first portion and the open end of the collar having a second minimum diameter which is larger than the first maximum diameter;
the collar having two diametrically opposed notches, each notch extending longitudinally from the open end of the collar through the first and second portions of the collar to a notch closed end adjacent the flange so as to divide the collar into two longitudinal semi-cylindrical segments;
a ring longitudinally slidable along the outer surface of the collar from a first position on the first portion to a second position on the second portion, the ring having an inner diameter which is smaller than the second minimum diameter of the collar and which compresses the outer surface of the second portion when the ring is slid to the second position to pivot the two longitudinal segments of the collar radially inward at the deflectable flange so that the inward lip at the open end of the collar engages the radial shoulder of the tubular conduit; and rotation limiting means for limiting the relative rotation of the sliding ring on the collar in the first position.
The present invention thus relates, in a particular embodiment, to a securing apparatus for a tubing connector which secures the cannula of one connector to the reseal septum of a second connector. The first tubing connector is of the type having an axially extending hub and a cannula coaxially extending from the hub.
The securing apparatus includes a radial flange circumferentially extending from the connector hub. A splayed tubular collar includes a first tubular portion circumferentially extending from the radial flange and a second tubular portion further extending from the first tubular portion. The splayed collar has preferably two longitudinal notches in the splayed collar for dividing the collar into longitudinal semi-cylindrical segments. An annular locking ring is slidable on the collar from the first tubular portion to the second tubular portion. The second tubular portion of the splayed collar is constructed and arranged such that the 3d annular locking ring forces at least the second tubular portion of the splayed collar radially inward as the locking ring moves from the first tubular portion to the second tubular portion.

'~1~8'~~~
In a preferred embodiment, the outside diameter of the second tubular portion is larger than the outside diameter of the first tubular portion which forces at least the second tubular portion radially inward as the annular locking ring is slid to the second tubular portion. A transition portion of the collar is constructed between the first and second tubular portions to retain the annular locking ring on the second tubular portion. The transition portion includes a retaining portion that has a larger outer dimension than the outer diameter of the second tubular portion. The restraining portion preferably is a set of discrete bumps circumferentially position adjacent the longitudinal notches.
The securing collar also includes structure for limiting rotation of the annular locking ring relative to the tubing connector when the annular locking ring is positioned on the first tubular portion, as for example, when the connector is initially attached to the IV tubing set. Preferably this rotation limiting structure is a raised longitudinal tab on an outer surface of the first tubular portion and a mating slot on an inner surface of the annular locking ring.
The second tubular portion of the tubular collar also has an undercut flange on a distal end of the inner surface of the collar for engaging a second connector when the second tubular portion is forced radially inward by the annular locking ring.
In a preferred embodiment, the securing apparatus of the present invention is integrally manufactured as a splayed collar supported by the hub of the cannula connector.
In another embodiment, the securing apparatus is manufactured separately and can be added later to an individual cannula connector, either in 2158744.
WO 94/23775 ~ PCTIUS94/03077 the assembly plant or in the hospital, for example.
Generally, either of the above construction allows the securing apparatus to secure the first flow connector to the second flow connector and restrain the cannula of the first connector from being inadvertently pulled from the reseal septum of the second connector.
Other features and advantages of the present invention will become readily apparent from the following detailed description, the accompanying drawings, and the appended claims.
Brief Description of the Drawings FIGURE I is a perspective view of two unengaged fluid flow connectors including a blunt cannula connector with a securing collar according to one embodiment of the present invention and a connectable prepierced reseal septum connector;
FIGURE 2 is a cross-section of the connectors of FIGURE 1 with the connectors now engaged in fluid flow communication and with the securing collar according to the present invention in the unsecured position;
FIGURE 3 is a cross-section of the engaged connectors similar to FIGURE 2 with the securing collar of the present invention in the secured position;
FIGURE 4 is a cross-section of an alternative embodiment of the securing collar of the present invention that is integrally formed with a cannula connector;
FIGURE 5 is an enlarged view of FIGURE 4 showing the deflection of the radially extending flange in the secured position;
FIGURE 6 is a cross-section similar to FIGURE 4 showing other alternate embodiments. of the present invention including a shroud portion extending 2158'44 concurrently with a sharp cannula;
FIGURE 7 is a cross section of the preferred embodiment of the present invention including a securing collar integrally manufactured or molded with a cannula connector;
FIGURE 8 is a cross section of the preferred embodiment of the integral securing collar and cannula connector of FIGURE 7 with the connector engaged in fluid flow communication but with the securing collar unsecured to the reseal connector;
FIGURE 9 is a cross section of the preferred embodiment of the integral securing collar and cannula connector of FIGURE 7 with the connector engaged in fluid flow communication and with the securing collar secured to the reseal connector;
FIGURE 10 is a schematic partial sectional view of the annular locking ring and the splayed collar of FIGURE 8 in the unsecured position;
FIGURE 11 is a schematic partial sectional view of the annular locking ring and the splayed coDar of FIGURE 9 in the secured position;
FIGURE 12 is a schematic depiction of the cannula connector and securing collar of the present invention during an initial connection of the connector to an IV tubing set; and FIGURE 13 is a schematic depiction of the cannula connector and securing collar of the present invention during disconnection of the connector from the IV tubing set.
Description of the Preferred Embodiment Referring now to FIGURE 1, a first fluid flow connector 12 for connection of intravenous tubing is shown with a second fluid flow connector 14. The first connector 12 is a male connector such as a LifeShield0 Blunt Cannula and the second connector 14 is a female connector such as a LifeShield Prepierced Reseal Y-Site, both of which are sold by Abbott Laboratories. A securing apparatus 10 according to the present invention is associated with the first connector I2.
Referring now to FIGURE 1 - 3, the first connector 12 includes a cannula 16 which is preferably made of stainless steel. The cannula is coaxially secured in a molded plastic cannula hub 18 by adhesive or other known securing techniques.
A luer fitment 20 at the upstream end of the cannula connector 12 permits the connector to be connected to a standard LV. tubing set. The delivery end 22 of the cannula 16 can be blunt, as shown in FIGURE 1, or alternatively can be sharp, as shown in FIGURE 6.
The second connector 14 includes a reseal septum 24 connectable in fluid flow communication with the cannula 16 of the first connector 12. The reseal connector includes a rigid plastic tubular housing 26 for holding the elastomeric reseal 24. As shown in FIGURES 2 and 3; the reseal 24 includes a plug portion that is inserted into the interior of the rigid tubular housing 26 and an exterior rolled-over portion 30 which is folded down on the outside of the rigid tubular housing 26. The rolled-over portion of the reseal forms a radially raised annular shoulder 32 on the outer surface of the tubular housing 26. Typically a shrink band 34 is provided over the juncture of the rolled-over portion 30 of the reseal and the tubular housing 26. Alternatively, the second connector 14 may have a radial shoulder integrally formed on the exterior surface of the tubular housing 26.
The reseal 24 is preferably made of an elastomeric material such as a _g_ medical grade latex rubber that can be sterilized. The reseal septum may include an unpierced diaphragm portion (not shown) that is first pierced by a sharp cannula or may include a prepierced diaphragm portion 36, such as the previously mentioned LifeShield Prepierced Reseal sold by Abbott Laboratories for use with a blunt cannula.
The securing apparatus 10 includes a tubular housing portion 40 supported by the hub 18 of the first connector 12. A generally radially extending rigid flange 42 extends circumferentially from the housing 40. A tubular collar 44 extends longitudinally forward from the radial flange 42. The tubular collar is coaxial with the cannula 16. The collar is also coaxial and oppositely extending from the tubular housing 40:
The collar 44 is splayed or normally outwardly spreading in the axially forward direction. The collar 44 may thus be frustoconical or frustum shaped as illustrated in Figs. 1 and 2. The splayed collar includes at least two longitudinally extending recesses or notches 52 which divide the splayed collar into at least two longitudinal collar segments 50. As shown in Figure l, for example, two diametrically opposite recesses or notches 52 divide the splayed tubular collar 44 into two splayed collar segments 50. For manufacturing purposes, fewer than two recesses and segments may be desirable.
For functional securing purposes, more than two recesses and segments may be preferred.
The tubular collar 44 includes a transition portion 54 (as seen in FIGURES 2 and 3) that divides the splayed tubular collar 44 into a first (or proximal) splayed tubular portion 56 and a second (or distal) splayed tubular portion 58. The first splayed tubular portion 56 circumferentially extends from the radial flange 42.
The second splayed tubular portion 58 further extends from the first splayed tubular portion 56. The transition portion 54 may be a small annular protrusion located approximately midway on the outer surface of the tubular collar 44, as shown in FIGURES 2 and 3 for example. Alternatively, as shown in FIGURE 6, the transition portion may be an integral shoulder 55 of a larger diameter outer surface of a modified second tubular portion 59 of the splayed collar 44.
Referring again to FIGURES 1 - 3, an annular locking ring 60 is slidable along the outer surface of the splayed collar 44 from the first tubular portion 56 to the second tubular portion 58. When the first connector 12 is engaged with the second connector 14 and the annular locking ring 60 is positioned on the first tubular portion 56 as shown in FIGURE 2, the splayed segments 50 of the second tubular portion 58 of the collar are angled outwardly and can not reliably grip the annular shoulder 32 on the second connector 14. However, when the annular locking ring 60 is advanced past the transition portion 54 to a position over the second portion 58 of the splayed collar, as seen in FIGURE 3, the change in position forces at least the second tubular portion 58 of the splayed segments radially inward to retain or grip the second connector 14, preferably at the shoulder 32.
The manual manipulation required by the healthcare worker to slide the annular locking ring 60 to the forward secured position is simply a continuation of the motion required to engage the connectors 12 and 14 together. Thus, the securing collar 10 of the present invention is easily and readily connected while providing enough axial resistance for the cannula connector 12 such that the cannula is not unintentionally withdrawn from the septum connector 14.
The splayed tubular collar 44 preferably has an undercut 64 on the distal inner surface, so that the undercut can engage the raised shoulder 32 on the 21~8"~44 to mating connector. The collar also preferably includes an external lip 66 on the second portion 58 to prevent the annular locking ring 60 from sliding completely off the splayed segments 50 when the annular locking ring 60 is being advanced toward the secured ( or locked ) position. A radially outwardly orientated flange, such as flange 42 at the other end of the collar prevents annular locking ring 60 from being pulled completely off the collar when the annular locking ring 60 is retracted to the unsecured ( or unlocked ) position.
The transition portion 54 on the tubular collar 44 retains the annular locking ring 60 in the unsecured position until sufficient force is applied to the annular locking ring 60 to cause the ring to move over the transition portion 54.
The tapered lead-in 62 assists in the initial assembly of the annular locking ring 60 to the securing collar 10.
FIGURE 4 shows an embodiment having an integrally molded cannula hub and securing collar housing 80. The cannula 16 is insert molded or bonded in the integral cannula hub and securing collar housing 80 during manufacture.
The device requires no further assembly other than to position the annular locking ring 60 on the splayed tubular collar 44.
FIGURE 5 is an enlarged view of FIGURE 4 and shows an advantage of the embodiment of the present invention having two diametrically opposite notches or recesses 52 forming two splayed collar segments 50. In this embodiment, the flexure line of the splayed collar segments is along lines at or near 72 and 73 and parallel to the line between the rounded terminal ends 76 of the elongated recesses 52 (shown in phantom ) in the tubular collar 44. Thus, in this embodiment, the two collar segments 50 of the tubular collar 44 are resiliently deflected along radially extending flange 42.

For other embodiments of the securing collar having other than two diametrically opposite recesses.52, such as those defining one and/or three or more segments 50, the flexure position is more likely to be on the tubular collar 44, resulting in a radially inward bending of the tubular segments 56 and 58 rather than a deflection of the radially extending flange 42.
As illustrated in FIGURE 6, a composite embodiment of the invention is shown having a sharp cannula 23 that is wholly contained within a protective shroud 74 extending from the tubular collar 44 so as to prevent accidental needle stick. Thus the tubular collar 44 and the protective shroud portion 74 function together as a securing apparatus and a needle protecting apparatus.
Another alternative embodiment of the invention also seen in FIGURE 6 includes an integral shoulder 55 at a larger diameter second ( or distal ) tubular portion 59 of the tubular collar 44. The larger diameter portion causes the annular locking ring to force or cam the second tubular portion 59 radially inward to ~ engage the second connector 14.
FIGURE 7 shows the preferred embodiment of the securing collar 110 of the present invention integrally molded with a cannula connector 12. In this preferred embodiment, the tubular housing 140 and a generally radial flange of the securing collar 110 are injection molded integral with the cannula 16 to form the cannula hub 18. The outside diameter of the second tubular portion is made larger than the outside diameter of the first tubular portion 156. A
protective cannula sheath 148 is removably positioned over the cannula I6.
Referring now to FIGURES 8 and 9, when the annular locking ring 160 is slid from the first tubular portion I56 in FIGURE 8 to the second tubular portion I58 in FIGURE 9, the annular locking ring 160 forces at least the second tubular portion 158 radially inward to contact the second connector 14 as seen in FIGURE 9. The first tubular portion 156 may also move radially inward, depending on the construction and tolerances.
A transition portion I54 of the securing collar 110 is constructed between the first and second tubular portions to assist and then retain the annular locking ring 160 on the second tubular portion 158 as the annular locking ring is manually manipulated to the sernnd tubular portion ( also the secured position ). The transition portion 154 includes an inclined ramp 155 on the proximal side of the transition portion to assist the annular locking ring 160 in moving over the transition portion 154 to the second splayed tubular portion 158. The transition portion 154 also includes a steep retaining shoulder 157 that has a larger outer dimension than the outer diameter of the second tubular portion 158. As best seen in FIGURES 10 and 11, the transition portion 154 preferably is a set of four discrete bumps 161 circumferentially position at or near the midpoint of the tubular collar 144 and immediately adjacent the longitudinal notches 152.
The securing collar 110 also includes structure for limiting rotation of the annular locking ring 160 relative to the tubular housing 140 of the connector when the annular locking ring 160 is positioned on the first tubular portion 156.
For example, in FIGURE 12, when the cannula connector 12 is initially attached to the IV tubing set 170, it is desirable that the annular locking ring 160 not be able to rotate relative to the tubular housing 140. Preferably the rotation limiting structure is a raised longitudinal tab 172 on an outer surface of the first tubular portion I56 and a mating slot 174 on an inner surface of the annular locking ring 160.
The second tubular portion 158 of the tubular securing collar also has an WO 94/23775 _ PCTIUS94/03077 21~8744-undercut flange 164 on a distal end of the inner surface for engaging a second connector 14 when the second tubular portion 158 is forced radially inward by the annular locking ring 160 as best seen in FIGURE 9.
In the preferred embodiment, the annular portion 171 associated with the raised tab 172 functions as an axial stop to retain the annular locking ring 160 on the first tubular portion 156. Likewise annular lip 175 on the outer distal surface of the second tubular portion 158 functions as another axial stop to particularly retain the annular locking ring 160 on the second tubular portion I58.
As discussed, the preferred embodiment of the securing apparatus of the present invention is an injection molded splayed collar and hub integrally manufactured with the cannula connector 12.
In other embodiments, the securing apparatus IO is injection molded separately and can be added later to an individual cannula connector 12, either in the assembly plant or in the hospital, for example.
The assembled cannula connector 12 and securing collar 10 is packaged and sterilized in a conventional manner, for example as shown in FIGURE 12.
In use, the cartnula connector 12 is inserted into the reseal connector 14 and the tubular collar 44/I44 of the securing collar 10/110 is axially moved forward so that the splayed tubular collar 44/144 covers the annular shoulder portion 32 on the second connector 14. The annular locking ring 60/1b0 is then slid forward on the tubular collar 44/144 over the transition portion 54/ 154 to force the distal splayed collar segments 58/158 radially inward. The securing collar 10/110 thus secures the first connector 12 to the second connector 14.
With the use of the securing collar 10/110 according to the present invention, the axial force necessary to disengage the cannula connector 12 from 215 87 4~

the reseal connector 14 is increased from a minimal force to a force which is sufficient to resist most accidental disconnection situations.
The preferred material for the securing apparatus and connector is polypropylene or polyethylene. These materials are readily injection molded.
An advantage of the splayed end of the tubular collar is that the splay compensates for various reseal septum dimensions and various dimensional tolerances in like-type reseal septums.
In operation, the securing apparatus of the present invention can be readily engaged and disengaged from tubular reseal connectors of the rolled-over reseal type.
While several embodiments of the invention have been described, modifications within the scope of the present invention will be readily apparent to one of ordinary skill in the art. For example, the securing collar of the present invention may be used with any of the known fluid flow connectors such as sharp needles and unpierced reseals or blunt cannula and prepierced reseals although the preferred connector shown in the disclosed embodiments are primarily disclosed with respect to blunt cannula and prepierced reseals. All such modifications are intended to be covered by scope of the accompanying claims.

Claims (42)

CLAIMS:
1. A securing collar for a medical tubing connector, comprising:
a tubing connector having an axially extending hub and a cannula coaxially extending from the hub;
a generally radial deflectable flange circumferentially extending from the connector hub;
a splayed tubular collar having a first tubular portion circumferentially extending from the radial flange and a second tubular portion further extending from the first tubular portion; said first tubular portion having an outer surface with a first maximum diameter, and said second tubular portion having an outer surface with a second minimum diameter which is larger than the first maximum diameter;
two longitudinal notches in the splayed collar for dividing the collar into two longitudinal collar segments;
an annular locking ring slidable on the splayed collar from the first tubular portion to the second tubular portion; said ring having an inner diameter which is smaller than the second minimum diameter of the collar and which compresses the outer surface of the second tubular portion when the ring is slid to a position on said second tubular portion to pivot two longitudinal segments of the collar radially inward at the deflectable flange to provide sealable engagement at said collar; and means for limiting rotation of the locking ring relative to the tubing connector when the locking ring is positioned over the first tubular portion.
2. The securing collar of claim 1, further including means for retaining the annular locking ring on the second tubular portion.
3. The securing collar of claim 2, wherein the retaining means includes a transition portion between the first and second tubular portions, the transition portion having a larger outer dimension than the outer diameter of the second tubular portion.
4. The securing collar of claim 3, wherein the retaining means are discrete bumps circumferentially position adjacent the longitudinal notches.
5. The securing collar of claim 1, wherein the rotation limiting means includes a raised tab on an outer surface of the first tubular portion and a mating slot on an inner surface of the locking ring.
6. The securing collar of claim 5, wherein the second tubular portion of the tubular collar has an undercut flange on a distal end of the inner surface for engaging a second connector when the second tubular portion is forced radially inward.
7. The securing collar of claim 6, wherein the splayed tubular collar has an external lip on the distal end of the second tubular portion so as to slidably retain the locking ring on the second tubular portion of the collar.
8. The securing collar of claim 7, further including a flange radially extending from the tubular collar so as to slidably retain the locking ring on the first tubular portion of the collar.
9. The securing collar of claim 8, wherein the two longitudinal notches in the splayed collar are two diametrically opposite and open notches that extend from the end of the radial flange so that the flange axially pivots about the two notches when the locking ring is slid to the second portion of the collar.
10. The securing collar of claim 9, wherein the cannula of the first connector is a blunt cannula and the second connector is a pre-pierced elastomeric septum.
11. The securing collar of claim 8, wherein the cannula of the first connector is a sharp cannula.
12. An apparatus for selectively securing a first medical tubing connector to a second medical tubing connector, comprising:

an apparatus housing constructed and arranged to engage the first medical tubing connector in an axial orientation;
a generally radial deflectable flange circumferentially extending from the apparatus housing and perpendicular to the axial orientation of the first medical tubing connector;
a splayed tubular collar having a first tubular portion circumferentially and axially extending from the radial flange and a second tubular portion axially extending from the first tubular portion; said first tubular portion having an outer surface with a first maximum diameter, and said second tubular portion having an outer surface with a second minimum diameter which is larger than the first maximum diameter;
two longitudinal notches in the collar for dividing the collar into two longitudinal collar segments;
an annular locking ring axially slidable on the splayed collar from the first tubular portion to the second tubular portion; said ring having an inner diameter which is smaller than the second minimum diameter of the collar and which compresses the outer surface of the second tubular portion when the ring is slid to a position on said second tubular portion to pivot two longitudinal segments of the collar radially inward at the deflectable flange so as to force the first and second segments of the collar radially inward as the locking ring is axially slid from the first tubular portion to the second portion; and means for limiting rotation of the locking ring relative to the first tubing connector when the locking ring is positioned over the first tubular portion.
13. The apparatus of claim 12, wherein the first connector is an axially blunt cannula and the second connector is an axially extending prepierced elastomeric septum.
14. The apparatus of claim 12, wherein the first connector is an axially extending sharp cannula and the second connector is an axially extending reseal septum.
15. A securable collar assembly for use with a fluid connector having an axially forward extending cannula for securably connecting the fluid connector to a tubular conduit having a septum at a terminal end and a radial shoulder proximate the septum, the collar assembly comprising:
a tubular housing axially engaged with the fluid connector so that the cannula of the fluid connector extends axially forward from the housing;
a generally radially extending, resiliently deflectable flange extending from the housing;
a hollow generally cylindrical collar extending longitudinally from the flange and coaxially with the cannula to an open forward end;
the hollow collar having an inner surface defining a bore for receiving the terminal end of the tubular conduit and a radially inward extending lip on the inner surface of the collar at the open forward end of the collar;
the collar having an outer surface including a first portion adjacent the flange having a first maximum diameter and a second portion between the first portion and the open end of the collar having a second minimum diameter which is larger than the first maximum diameter;
the collar having two diametrically opposed notches, each notch extending longitudinally rearward from the open forward end of the collar through the first and second portions of the collar to a notch closed end adjacent the flange so as to divide the collar into two longitudinal semi-cylindrical segments;
a ring longitudinally slidable along the outer surface of the collar from a first rear position on the first portion to a second forward position on the second portion, the ring having an inner diameter which is smaller than the second minimum diameter of the collar so as to compress the outer surface of the second portion when the ring is slid to the second forward position so as to pivot the two longitudinal segments of the collar radially inward at the deflectable flange so that the inward lip at the open forward end of the collar engages the radial shoulder of the tubular conduit; and means for limiting the relative rotation of the sliding ring on the collar in the first rear position.
16. The collar assembly of claim 15, wherein the longitudinal segments pivot along a portion of the radial flange, the flange portion being generally parallel to a longitudinal plane which bisects both longitudinal notches.
17. The collar assembly of claim 15 or 16, wherein at least the second portion of the outer surface of the collar is frustoconical-shaped.
18. The collar assembly of claim 17, further including means on the collar for restraining the slidable ring in the first and second positions.
19. The collar assembly of claim 18, wherein the restraining means includes at least one outward projection located between the first and second portions, and wherein at least one outward projection is inclined radially outward from both the first maximum diameter and second minimum diameter.
20. The collar assembly of claim 19, wherein the restraining means includes two outward projections, each projection on a separate one of the two longitudinal segments and each projection flanking a separate one of the two longitudinal notches.
21. The collar assembly of claim 15, wherein the rotation limiting means is a slot on the slidable ring constructed and arranged to be axially registered with a raised tab on the outer surface of said first portion of the collar.
22. The collar assembly of claim 18, wherein at least a first portion of the inner surface of the collar adjacent the open end of the collar is frustoconical-shaped.
23. The collar assembly of claim 22, further including a radially outward extending shoulder on the outer surface of the second portion at the open forward end of the collar to prevent axial removal of the ring from the collar when the ring is in the second forward position.
24. The collar assembly of claim 17, wherein the first portion of the outer surface of the collar is frustoconical-shaped.
25. The collar assembly of claim 24, further including means on the collar for restraining the slidable ring in the first and second positions wherein the restraining means includes at least one outward projection located between the first and second positions, the projection inclined radially outward from both the first maximum diameter and the second minimum diameter.
26. The collar assembly of claim 25, wherein the first and second portions of the outer surface of the collar is a continuous frustoconical-shape.
27. The collar assembly of claim 26, wherein the inner surface of the collar is frustoconical-shaped.
28. The collar assembly of claim 27, further including a radially outward extending lip on the outer surface of the second portion at the open end of the collar to prevent axial removal of the ring from the collar when the ring is in the second forward position.
29. A fluid connector assembly for securably connecting to a tubular conduit having a septum at a terminal end and a radial shoulder proximate the septum, the connector assembly comprising:
a connector body having an axially extending cannula for insertion into the septum;
a generally radially extending, resiliently deflectable flange extending from the connector body;
a hollow generally cylindrical collar extending longitudinally from the flange and coaxially with the cannula to an open end;
the hollow collar having an inner surface defining a bore for receiving the terminal end of the tubular conduit and a radially inward extending lip on the inner surface of the collar at the open end of the collar;
the collar having an outer surface including a first portion adjacent the flange having a first maximum diameter and a second portion between the first portion and the open end of the collar having a second minimum diameter which is larger than the first maximum diameter;
the collar having two diametrically opposed notches, each notch extending longitudinally from the open end of the collar through the first and second portions of the collar to a notch closed end adjacent the flange so as to divide the collar into two longitudinal semi-cylindrical segments;

a ring longitudinally slidable along the outer surface of the collar from a first position on the first portion to a second position on the second portion, the ring having an inner diameter which is smaller than the second minimum diameter of the collar and which compresses the outer surface of the second portion when the ring is slid to the second position to pivot the two longitudinal segments of the collar radially inward at the deflectable flange so that the inward lip at the open end of the collar engages the radial shoulder of the tubular conduit; and rotation limiting means for limiting the relative rotation of the sliding ring on the collar in the first position.
30. The fluid connector assembly of claim 29, wherein the longitudinal segments pivot along a portion of the radial flange, the flange portion being generally parallel to a longitudinal plane which bisects both longitudinal notches.
31. The fluid connector assembly of claim 29 or 30, wherein at least the second portion of the outer surface of the collar is frustum-shaped.
32. The fluid connector assembly of claim 29, 30 or 31, further including means on the collar for restraining the slidable ring in the first and second positions.
33. The fluid connector assembly of claim 32, wherein the restraining means includes at least one outward projection located between the first and second portions, and wherein at least one outward projection is inclined radially outward from both the first maximum diameter and second minimum diameter.
34. The fluid connector assembly of claim 33, wherein the restraining means includes two outward projections, each projection on a separate one of the two longitudinal segments and each projection flanking a separate one of the two longitudinal notches.
35. The fluid connector assembly of claim 29, further including a raised tab on the outer surface of said first portion of the collar and wherein the rotation limiting means is a slot on the slidable ring constructed and arranged to be axially registered with said raised tab.
36. The fluid connector assembly of claim 32, wherein at least a first portion of the inner surface of the collar adjacent the open end of the collar is frustum-shaped.
37. The fluid connector assembly of claim 36, further including a radially outward extending shoulder on the outer surface of the second portion at the open end of the collar to prevent axial removal of the ring from the collar when the ring is in the second position.
38. The fluid connector assembly of claim 31, wherein the first portion of the outer surface of the collar is frustum-shaped.
39. The fluid connector assembly of claim 38, further including means on the collar for restraining the slidable ring in the first and second positions wherein the restraining means includes at least one outward projection located between the first and second positions, the projection inclined radially outward from both the first maximum diameter and the second minimum diameter.
40. The fluid connector assembly of claim 39, wherein the first and second portions of the outer surface of the collar is a continuous frustum.
41. The fluid connector assembly of claim 40, wherein the inner surface of the collar is frustum-shaped.
42. The fluid connector assembly of claim 41, further including a radially outward extending lip on the outer surface of the second portion at the open end of the collar to prevent axial removal of the ring from the collar when the ring is in the second position.
CA002158744A 1993-03-23 1994-03-22 Securing collar for cannula connector Expired - Fee Related CA2158744C (en)

Applications Claiming Priority (5)

Application Number Priority Date Filing Date Title
US3600593A 1993-03-23 1993-03-23
US036,005 1993-03-23
US12923393A 1993-09-29 1993-09-29
US129,233 1993-09-29
PCT/US1994/003077 WO1994023775A1 (en) 1993-03-23 1994-03-22 Securing collar for cannula connector

Publications (2)

Publication Number Publication Date
CA2158744A1 CA2158744A1 (en) 1994-10-27
CA2158744C true CA2158744C (en) 2006-04-25

Family

ID=36251577

Family Applications (1)

Application Number Title Priority Date Filing Date
CA002158744A Expired - Fee Related CA2158744C (en) 1993-03-23 1994-03-22 Securing collar for cannula connector

Country Status (1)

Country Link
CA (1) CA2158744C (en)

Also Published As

Publication number Publication date
CA2158744A1 (en) 1994-10-27

Similar Documents

Publication Publication Date Title
US5437650A (en) Securing collar for cannula connector
US5248306A (en) Axial retainer for flow connectors
US5290222A (en) Injection port connector with rotatable locking lug
CA2114848C (en) Medical connector
US6146362A (en) Needleless IV medical delivery system
CA1303647C (en) Locking port shroud for peritoneal dialysis tubing connector
US5833674A (en) Needleless IV medical delivery system
AU2006246933B2 (en) Coupling device for medical lines
US7350764B2 (en) Self-sealing male connector
US5137524A (en) Universal intravenous connector with dual catches
US6261268B1 (en) Needleless injection site
JP3103938B2 (en) Universal connector
US5405340A (en) Threaded securing apparatus for flow connectors
AU2004255369B2 (en) Coupling device for medical lines
AU711288B2 (en) Needleless injection site
US20230166093A1 (en) Catheter valves
US20130079730A1 (en) Connector assembly
IE62767B1 (en) Pre-slit injection site and tapered cannula
WO1988004185A1 (en) Iv connector lock and stabilizer
US20140074045A1 (en) Male Connector and Transfusion Line Connection Apparatus Equipped With Male Connector
WO2000020070A1 (en) Swabbable needleless low reflux injection port system
MXPA04004048A (en) Medical device having releasable retainer.
CA2040652A1 (en) Universal intravenous connector with needle protection
WO1995005863A1 (en) Needleless iv medical delivery system
CA2158744C (en) Securing collar for cannula connector

Legal Events

Date Code Title Description
EEER Examination request
MKLA Lapsed