SYSTEM AND METHOD FOR ADJUSTABLE LENGTH NEEDLE
20200297942 ยท 2020-09-24
Inventors
- Mina M. Leung (Mountain View, CA, US)
- Jeff Tillack (Foster City, CA, US)
- Stephen H. Diaz (Palo Alto, CA, US)
Cpc classification
A61M5/3202
HUMAN NECESSITIES
A61M2005/312
HUMAN NECESSITIES
A61M5/344
HUMAN NECESSITIES
International classification
A61M5/34
HUMAN NECESSITIES
A61M5/32
HUMAN NECESSITIES
Abstract
An injection system includes a body member having a body connection member at a distal end thereof. The system also includes a needle hub assembly coupled to the distal end of the injection system body. The needle hub assembly includes a needle hub coupled to the body connection member, a needle coupled to the needle hub, and a spacer removably coupled to the needle hub. The spacer reduces an exposed length of the needle.
Claims
1. An injection system, comprising: a body member having a body connection member at a distal end thereof; and a needle hub assembly coupled to the distal end of the injection system body, the needle hub assembly comprising a needle hub coupled to the body connection member, a needle coupled to the needle hub, and a spacer removably coupled to the needle hub, wherein the spacer reduces an exposed length of the needle.
2. The system of claim 1, wherein removing the spacer from the needle hub increases the exposed length of the needle.
3. The system of claim 1, wherein the body connection member comprises an annular recess, and wherein the needle hub comprises a ring configured to retain the needle hub on the body connection member.
4. The system of claim 3, wherein, the body connection member comprises an annular ledge adjacent the annular recess; and wherein the ring is configured to move past the annular ledge in a proximal direction.
5. The system of claim 3, wherein the needle hub comprises a space configured to house the ring to prevent movement of the ring along a longitudinal axis relative to the needle hub.
6. The system of claim 1, wherein the needle hub comprises a detent; and wherein the spacer comprises a slot configured to interact with the detent to temporarily prevent movement of the spacer along a longitudinal axis relative to the needle hub, thereby removably coupling the spacer to the needle hub.
7. The system of claim 6, wherein the detent and the slot are configured such rotating the spacer relative to the needle hub uncouples the space from the needle hub.
8. The system of claim 1, further comprising a rigid needle shield removably coupled to the spacer.
9. The system of claim 8, wherein the needle hub, the spacer, and the rigid needle shield are configured such that pulling the rigid needle shield relative to the body member releases the rigid needle shield from the spacer and rotating the spacer relative to the body member releases the spacer from the needle hub.
10. The system of claim 8, wherein the spacer comprises an annular recess, and wherein the rigid needle shield comprises an annular protrusion configured to interfere with the annular recess to temporarily prevent removal of the rigid needle shield along a longitudinal axis relative from the spacer.
11. The system of claim 1, wherein an inner surface of the spacer forms a seal against an outer surface of the needle hub.
12. The system of claim 1, further comprising a gasket disposed between the distal end of the body member and an inner surface of the needle hub.
13. The system of claim 12, wherein the gasket is configured to prevent contamination of an interior of the body member.
14. An injection system, comprising: a body member having a body connection member at a distal end thereof; and a needle hub assembly coupled to the distal end of the injection system body, the needle hub assembly comprising a needle hub coupled to the body connection member, a needle coupled to the needle hub, and a spacer movably coupled to the needle hub, wherein moving the spacer along a longitudinal axis modifies an exposed length of the needle.
15. The system of claim 14, further comprising an actuator configured to move the spacer along the longitudinal axis.
16. The system of claim 15, wherein the actuator comprises: a plurality of ratchet teeth on the needle hub defining a plurality of spaces; and a pawl coupled to the spacer, wherein the pawl is configured to movably lodge in each of the plurality of spaces, and wherein moving the pawl along the longitudinal axis moves the spacer along the longitudinal axis.
17. The system of claim 14, further comprising a gasket disposed between the distal end of the body member and an inner surface of the needle hub.
18. The system of claim 17, wherein the gasket is configured to prevent contamination of an interior of the body member.
19. The system of claim 14, further comprising an O-ring disposed between a distal end of the needle hub and an inner surface of the spacer.
20. The system of claim 19, wherein the O-ring is configured to prevent contamination of an interior of the spacer.
21. An injection system, comprising: a body member having a body connection member at a distal end thereof; and a needle hub assembly coupled to the distal end of the injection system body, the needle hub assembly comprising a needle hub coupled to the body connection member, a needle coupled to the needle hub, and a spacer movably coupled to the needle hub, wherein rotating the spacer about a longitudinal axis modifies an exposed length of the needle.
22-30. (canceled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The drawings described below are for illustration purposes only. The drawings are not intended to limit the scope of the present disclosure.
[0025] The foregoing and other aspects of embodiments are described in further detail with reference to the accompanying drawings, in which the same elements in different figures are referred to by common reference numerals, wherein:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032] In order to better appreciate how to obtain the above-recited and other advantages and objects of various embodiments, a more detailed description of embodiments is provided with reference to the accompanying drawings. It should be noted that the drawings are not drawn to scale and that elements of similar structures or functions are represented by like reference numerals throughout. It will be understood that these drawings depict only certain illustrated embodiments and are not therefore to be considered limiting of scope of embodiments.
DETAILED DESCRIPTION OF ILLUSTRATED EMBODIMENTS
Removable Needle Length Spacer
[0033]
[0034] The proximal end of the preassembled injection system 600, which may include components such as stopper members and a plunger rod, is not depicted or described in this specification because the components of the adjustable/selectable exposed needle length injection systems described herein are located at the distal end of the injection systems. The components of the adjustable/selectable exposed needle length injection systems described herein are usable/compatible with off the shelf injection system components such as injection system bodies, stopper members, and plunger rods. The components of the adjustable/selectable exposed needle length injection systems described herein are also usable/compatible with components configured to be compatible with off the shelf injection system components, such as those described in U.S. Utility patent application Ser. No. 14/696,342, which has been previously incorporated by reference herein.
[0035] Still referring to
[0036]
[0037]
[0038]
[0039] Accordingly, to convert the injection system 600 from a short needle/subcutaneous configuration (
[0040]
[0041]
[0042]
[0043] The needle 610, the needle hub 614, and the needle length spacer 616 formed a needle hub assembly. The rigid needle shield 618 is removably coupled to the needle length spacer 616 via an interference fit between an annular recess 632 on the needle length spacer 616 and an annular protrusion 634 on an inner surface of the rigid needle shield 618. The rigid needle shield 618 can be removed from the needle length spacer 616 by pulling the rigid needle shield 618 and the needle length spacer 616 apart from each other along the longitudinal axis of the injection system 610 with sufficient force to overcome the interference fit between the annular recess 632 and the annular protrusion 634. As described above, the detent 622 on the needle hub 614 prevents the needle length spacer 616 from pulling apart from the needle hub 614 until the needle length spacer 660 is rotated relative to the needle hub 614 two aligned the detent 622 with the slot 624 on the needle length spacer 616. Accordingly, the rigid needle shield 618 can be removed from the rest of the injection system 600 by pulling the rigid needle shield 618 in a distal direction. Further, the needle length spacer 616 can be removed from the rest of the injection system 600 (with or without the rigid needle shield 618) by rotating the needle length spacer 616 to align the detent 622 with the slot 624 and pulling the needle length spacer 616 in a distal direction. While
[0044] The injection system 600 also includes a gasket 636 disposed between the distal end of the system body 612 and an inner surface of the needle hub 614. The gasket is configured to prevent contamination of the interior of the system body 612 and the injectable contained therein.
[0045] By allowing a user to select between short and long needle configurations, the preassembled injection system 600 described above facilitates use of a single preassembled injection system for both subcutaneous (short needle configuration) and intramuscular (long needle configuration) injections. The preassembled injection system 600 allows removal of either the rigid needle shield 618 (short needle configuration) or the needle length adapter 616 along with the rigid needle shield 618 (long needle configuration) from the shipping configuration with the rigid needle shield 618 attached. Selection of a short or long needle configuration from the shipping configuration minimizes the risk of inadvertent needle sticks compared to systems that involve manipulation of components near the tip of the needle 610. Further, the preassembled injection system 600 allows a user to transition between short and long needle configurations after removal of the rigid needle shield 618 in case the wrong configuration is selected when removing the rigid needle shield 618.
[0046] While the preassembled injection system 600 described above may be selectable between a 0.5 inches short configuration and a 1 inch long configuration, other embodiments include components of different sizes that can result in two configurations with different lengths. While the preassembled injection system 600 described above includes a luer taper connector, other types of connectors may be used to couple the needle hub to the injection system body. While the preassembled injection system 600 described above includes the needle latches 631 of a safe injection system, other embodiments may include a standard needle hub assemblies without needle retraction features.
Movable Needle Length Spacer
[0047]
[0048] Other components of the injection system 1100, such as stopper members and a plunger rod, are not depicted or described in this specification because the components of the adjustable/selectable exposed needle length injection systems described herein are located at the distal end of the injection systems. The components of the adjustable/selectable exposed needle length injection systems described herein are usable/compatible with off the shelf injection system components such as injection system bodies, stopper members, and plunger rods. The components of the adjustable/selectable exposed needle length injection systems described herein are also usable/compatible with components configured to be compatible with off the shelf injection system components, such as those described in U.S. Utility patent application Ser. No. 14/696,342, which has been previously incorporated by reference herein.
[0049] Still referring to
[0050]
[0051]
[0052]
[0053] The injection system 1100 also includes a gasket 636 disposed between the distal end of the system body 1112 and an inner surface of the needle hub 1114. The gasket is configured to prevent contamination of the interior of the system body 1112 and the injectable contained therein. The injection system 1100 further includes an O-ring 1138 disposed between a distal end of the needle hub 1114 and an inner surface of the needle length spacer 1116. The O-ring 1138, in conjunction with the rigid needle shield 1118, are configured to prevent contamination of respective interiors of the needle length spacer 1116 and the needle hub 1114.
[0054]
[0055]
[0056] The injection system 1100 also includes a gasket 636 disposed between the distal end of the system body 1112 and an inner surface of the needle hub 1114. The gasket is configured to prevent contamination of the interior of the system body 1112 and the injectable contained therein. The injection system 1100 further includes an O-ring 1138 disposed between a distal end of the needle hub 1114 and an inner surface of the needle length spacer 1116. The O-ring 1138, in conjunction with the rigid needle shield 1118 (which seals the distal end of the movable needle length spacer 1116 and the needle 1110 tip), are configured to prevent contamination of respective interiors of the needle length spacer 1116 and the needle hub 1114.
[0057] By allowing a user to select between short and long needle configurations either before or after removal of the rigid needle shield 1118, the preassembled injection system 1100 described above facilitates use of a single preassembled injection system for both subcutaneous (short needle configuration) and intramuscular (long needle configuration) injections. The preassembled injection system 1100 allows modification of the amount of overlap between the needle length spacer 1116 and the needle 1110 by manual manipulation of an actuator 1122. Selection of a short or long needle configuration from the shipping configuration minimizes the risk of inadvertent needle sticks. Further, the preassembled injection system 1100 allows a user to transition between short and long needle configurations after removal of the rigid needle shield 1118 without exposing fingers to the sharp distal end of the needle 1110 in case the wrong configuration is selected when removing the rigid needle shield 1118. Moreover, the preassembled injection system 1100 minimizes the risk of inadvertent bending the needle 1110 during needle length adjustment, as with the systems that involve manipulation of components near the tip of the needle 1110.
[0058] While the preassembled injection system 1100 described above may be selectable between a 0.5 inches short configuration and a 1 inch long configuration, other embodiments include components of different sizes that can result in two configurations with different lengths. While the preassembled injection system 1100 described above includes a luer taper connector, other types of connectors may be used to couple the needle hub to the injection system body. While the preassembled injection system 1100 described above includes the needle latches 631 of a safe injection system, other embodiments may include a standard needle hub assemblies without needle retraction features. While the injection system 1100 is shown in two configurations in
Rotatable Needle Length Spacer
[0059]
[0060] Other components of the injection system 1600, such as stopper members and a plunger rod, are not depicted or described in this specification because the components of the adjustable/selectable exposed needle length injection systems described herein are located at the distal end of the injection systems. The components of the adjustable/selectable exposed needle length injection systems described herein are usable/compatible with off the shelf injection system components such as injection system bodies, stopper members, and plunger rods. The components of the adjustable/selectable exposed needle length injection systems described herein are also usable/compatible with components configured to be compatible with off the shelf injection system components, such as those described in U.S. Utility patent application Ser. No. 14/696,342, which has been previously incorporated by reference herein.
[0061] Still referring to
[0062]
[0063]
[0064]
[0065] As shown in
[0066] The helical groove 1624 includes flattened proximal and distal ends 1628, 1630, which are circumferential instead of helical due to a change in the slopes of the flattened proximal and distal ends 1628, 1630 relative to the remaining middle portion of the helical groove 1624. As such, the flattened proximal and distal ends 1628, 1630 are skewed relative to/out of alignment with the radially inwardly extending member/wing 1626. The misalignment between the flattened proximal and distal ends 1628, 1630 and the radially inwardly extending member/wing 1626 increases frictional forces therebetween to wedge/retain the radially inwardly extending member/wing 1626 in the flattened proximal and distal ends 1628, 1630. For instance,
[0067] The flattened proximal and distal ends 1628, 1630 of the helical groove 1624 also each include a radially outwardly extending detent 1632. The radially outwardly extending detent 1632 is configured to interfere with a radially inwardly extending bump 1634 (
[0068]
[0069]
[0070] From the transport configuration depicted in
[0071] By allowing a user to select between short and long needle configurations, the preassembled injection system 1600 described above facilitates use of a single preassembled injection system for both subcutaneous (short needle configuration) and intramuscular (long needle configuration) injections. The preassembled injection system 1600 allows a user to transition between short and long needle configurations after removal of the rigid needle shield 1618 without exposing fingers to the sharp distal end of the needle 1610 in case the wrong configuration is selected when removing the rigid needle shield 1618. Moreover, the preassembled injection system 1600 minimizes the risk of inadvertent bending the needle 1610 during needle length adjustment, as with the systems that involve manipulation of components near the tip of the needle 1610. Coaxial placement of the needle length spacer 1616 around the needle 1610 also minimizes the risk of inadvertent bending the needle 1610.
[0072]
[0073]
[0074] While the injection systems 1600 depicted in
[0075] While the preassembled injection system 1600 described above may be selectable between a 0.625 inches short configuration and a 1 inch long configuration, other embodiments include components of different sizes that can result in two configurations with different lengths. While the preassembled injection system 1600 described above includes a luer taper connector, other types of connectors may be used to couple the needle hub to the injection system body. While the preassembled injection system 1600 described above includes a standard needle hub assembly without needle retraction features, other embodiments may include needle latches of safe injection systems.
[0076] While the various systems and methods described herein depict injection systems having manually actuated plunger members, the needle length adjustment systems and methods described herein work equally well with automated or semi-automated injection systems such as injection pens.
[0077] Various exemplary embodiments of the invention are described herein. Reference is made to these examples in a non-limiting sense. They are provided to illustrate more broadly applicable aspects of the invention. Various changes may be made to the invention described and equivalents may be substituted without departing from the true spirit and scope of the invention. In addition, many modifications may be made to adapt a particular situation, material, composition of matter, process, process act(s) or step(s) to the objective(s), spirit or scope of the present invention. Further, as will be appreciated by those with skill in the art that each of the individual variations described and illustrated herein has discrete components and features which may be readily separated from or combined with the features of any of the other several embodiments without departing from the scope or spirit of the present inventions. All such modifications are intended to be within the scope of claims associated with this disclosure.
[0078] Any of the devices described for carrying out the subject injection information collection procedures may be provided in packaged combination for use in executing such interventions. These supply kits may further include instructions for use and/or may be packaged in sterile trays or containers as commonly employed for such purposes.
[0079] The invention includes methods that may be performed using the subject devices. The methods may comprise the act of providing such a suitable device. Such provision may be performed by the end user. In other words, the providing act merely requires the end user obtain, access, approach, position, set-up, activate, power-up or otherwise act to provide the requisite device in the subject method. Methods recited herein may be carried out in any order of the recited events which is logically possible, as well as in the recited order of events.
[0080] Exemplary aspects of the invention, together with details regarding material selection and manufacture have been set forth above. As for other details of the present invention, these may be appreciated in connection with the above-referenced patents and publications as well as generally known or appreciated by those with skill in the art. For example, one with skill in the art will appreciate that one or more lubricious coatings (e.g., hydrophilic polymers such as polyvinylpyrrolidone-based compositions, fluoropolymers such as tetrafluoroethylene, hydrophilic gel or silicones) may be used in connection with various portions of the devices, such as relatively large interfacial surfaces of movably coupled parts, if desired, for example, to facilitate low friction manipulation or advancement of such objects relative to other portions of the instrumentation or nearby tissue structures. The same may hold true with respect to method-based aspects of the invention in terms of additional acts as commonly or logically employed.
[0081] In addition, though the invention has been described in reference to several examples optionally incorporating various features, the invention is not to be limited to that which is described or indicated as contemplated with respect to each variation of the invention. Various changes may be made to the invention described and equivalents (whether recited herein or not included for the sake of some brevity) may be substituted without departing from the true spirit and scope of the invention. In addition, where a range of values is provided, it is understood that every intervening value, between the upper and lower limit of that range and any other stated or intervening value in that stated range, is encompassed within the invention.
[0082] Also, it is contemplated that any optional feature of the inventive variations described may be set forth and claimed independently, or in combination with any one or more of the features described herein. Reference to a singular item, includes the possibility that there are plural of the same items present. More specifically, as used herein and in claims associated hereto, the singular forms a, an, said, and the include plural referents unless the specifically stated otherwise. In other words, use of the articles allow for at least one of the subject item in the description above as well as claims associated with this disclosure. It is further noted that such claims may be drafted to exclude any optional element. As such, this statement is intended to serve as antecedent basis for use of such exclusive terminology as solely, only and the like in connection with the recitation of claim elements, or use of a negative limitation.
[0083] Without the use of such exclusive terminology, the term comprising in claims associated with this disclosure shall allow for the inclusion of any additional elementirrespective of whether a given number of elements are enumerated in such claims, or the addition of a feature could be regarded as transforming the nature of an element set forth in such claims. Except as specifically defined herein, all technical and scientific terms used herein are to be given as broad a commonly understood meaning as possible while maintaining claim validity.
[0084] The breadth of the present invention is not to be limited to the examples provided and/or the subject specification, but rather only by the scope of claim language associated with this disclosure.