DUAL FLUID INJECTION SYSTEM
20210030957 ยท 2021-02-04
Inventors
- Bruce Beckstein (Sarasota, FL, US)
- Segundo Rodriguez (Sarasota, FL, US)
- Erik S. Brown (Sarasota, FL, US)
Cpc classification
A61M5/2053
HUMAN NECESSITIES
A61M39/105
HUMAN NECESSITIES
A61M5/2066
HUMAN NECESSITIES
A61M5/34
HUMAN NECESSITIES
A61M5/19
HUMAN NECESSITIES
A61M2005/14513
HUMAN NECESSITIES
International classification
A61M5/19
HUMAN NECESSITIES
Abstract
A dual fluid injection device is provided that includes at least two syringes. A hub is provided, to which a first syringe and a second syringe are simultaneously connected. The hub includes a fluid delivery member at an end thereof for injection at a site. The first syringe and the second syringe are actuated independently at a directional control valve.
Claims
1. A dual fluid injection device, comprising: at least two syringes; a hub to which a first syringe and a second syringe are simultaneously connected, wherein the hub includes a fluid delivery member at an end thereof for injection at a site, and wherein the first syringe and the second syringe are actuated independently at a directional control valve.
2. The device of claim 1, wherein the first syringe is releasably connected directly to the hub.
3. The device of claim 2, wherein the second syringe is releasably connected to the hub via tubing.
4. The device of claim 1, wherein the first syringe and the second syringe are releasably coupled to a pneumatic drive system.
5. The device of claim 1, wherein each of the first syringe and the second syringe is driven pneumatically to actuate a stopper disposed within each syringe.
6. The device of claim 3, wherein the first syringe is connected to a first one-way check valve integrated in the hub that prevents back flow of fluid into the first syringe.
7. The device of claim 6, further comprising: a second one-way check valve disposed between the second syringe and the hub to prevent back flow of fluid into the second syringe.
8. The device of claim 6, further comprising: a second one-way check valve integrated in the hub and disposed in a flow path of the tubing to the second syringe.
9. The device of claim 1, wherein each of the first syringe and the second syringe is connected to a first releasable connector and a second releasable connector, respectively.
10. The device of claim 9, wherein the directional control valve is connected to the first releasable connector of the first syringe and the second releasable connector of the second syringe via tubing.
11. The device of claim 10, wherein the directional control valve is releasably connected to an external pneumatic pump via a connector.
12. The device of claim 11, wherein the directional control valve is connected to the connector via tubing.
13. The device of claim 1, wherein the directional control valve is user operated to select one of the first syringe and the second syringe for actuation.
14. The device of claim 1, wherein fluid contained in each of the first syringe and the second syringe is injected through the fluid delivery member via the hub.
15. The device of claim 14, wherein each of the first syringe and the second syringe includes a different fluid.
16. The device of claim 15, wherein the first syringe contains a therapeutic agent and the second syringe contains a balanced salt solution.
17. The device of claim 1, wherein the fluid delivery member is a cannula, a needle, or a catheter.
18. The device of claim 17, wherein the fluid delivery member is a vented injection cannula including a plurality of holes along an outer shaft thereof.
19. The device of claim 17, wherein the fluid delivery member includes a tip having an outer diameter range of about 0.13 mm to 0.10 mm or less.
20. The device of claim 18, wherein the tip is made of a flexible polyimide material.
21. The device of claim 1, wherein the directional control valve is manually operated to regulate fluid flow to each of the first syringe and the second syringe.
22. The device of claim 1, wherein the stopcock is electronically operated to regulate fluid flow to each of the first syringe and the second syringe.
23. A dual fluid injection device, comprising: at least two syringes; a hub to which a first syringe and a second syringe are simultaneously connected, wherein the hub includes a fluid delivery member at an end thereof for injection at a site, wherein the first syringe and the second syringe are actuated independently at a directional control valve, and wherein the first syringe is connected to a first one-way check valve integrated in the hub that prevents back flow of fluid into the first syringe; and a second one-way check valve disposed between the second syringe and the hub to prevent back flow of fluid into the second syringe, wherein the second one-way check valve is integrated in the hub.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The above and other features of the present disclosure will now be described in detail with reference to certain exemplary embodiments thereof illustrated in the accompanying drawings which are given herein by way of illustration only, and thus are not limitative of the present disclosure, and wherein:
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[0027] It should be understood that the appended drawings are not necessarily to scale, presenting a somewhat simplified representation of various preferred features illustrative of the basic principles of the disclosure. The specific design features of the present disclosure as described herein, including, for example, specific dimensions, orientations, locations, and shapes will be determined in part by the particular intended application and use environment.
[0028] In the figures, reference numerals refer to the same or equivalent parts of the present disclosure throughout the several figures of the drawing.
DETAILED DESCRIPTION
[0029] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the singular forms a, an and the are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms comprises and/or comprising, when used in this specification, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof. As used herein, the term and/or includes any and all combinations of one or more of the associated listed items.
[0030] Unless specifically stated or obvious from context, as used herein, the term about is understood as within a range of normal tolerance in the art, for example within 2 standard deviations of the mean. About can be understood as within 10%, 9%, 8%, 7%, 6%, 5%, 4%, 3%, 2%, 1%, 0.5%, 0.1%, 0.05%, or 0.01% of the stated value. Unless otherwise clear from the context, all numerical values provided herein are modified by the term about.
[0031] Advantageously, the present disclosure is capable of providing a controlled fluid injection system wherein multiple fluids are injected using a single device thus preventing the need for multiple distinct injections at a site. The present disclosure provides substantial improvements to medical procedures and specifically to microsurgical procedures, but is not limited thereto. That is, the present disclosure may be used in any application requiring multiple fluid deliveries to a site in a controlled manner. Notably, the discussion below describes the present disclosure as it relates to a subretinal surgical procedure (e.g., ophthalmic procedures) but this is merely exemplary.
[0032] Referring to
[0033] The directional control valve 5 may include at least three openings (5b, 5c, 5d) to provide communication between the pneumatic pump and the syringes via tubing 11. Notably, the number of openings is not limited to three and may be varied based on the number of syringes designed for the system. Each opening or entry point of the valve may include a threaded connector that provides a sealed connection or flow path between the tubing and the valve. The directional control valve 5 may further include a handle 5a. The handle 5a may be user operated to adjust the flow path of fluid within the tube. For example, the openings 5c, 5d may be opened or closed based on the rotation of the handle 5a to direct the fluid within the tubing to one of the syringes. Optionally, the handle 5a may be operated electronically.
[0034] The directional control valve 5 is then connected to each of the syringes via tubing 11 and a releasable connector 8. In particular, the opening 5d may be connected to a first releasable connector 8a of a first syringe 1 via tubing 11 and the opening 5c may be connected to a connector 8b of a second syringe 2 via tubing 11. The releasable connectors allow the syringes to be disconnected from the system. A detailed description of the connector will be described herein below with reference to
[0035] As mentioned, both of the syringes are connected simultaneously to a hub 6. Particularly, the first releasable connector 8a is connected to the first syringe 1 which is then connected directly to the hub 6. The second releasable connector is connected to the second syringe 2 which is connected to the hub 6 via a second one-way check valve 9 and tubing 11. The check valve 9 in line between the second syringe 2 and the hub 6 prevents back flow of fluid flowing through the tubing. For example, the check valve prevents fluids from flowing back into the syringe which would otherwise undesirably mix different fluids contained in the syringes. Further details of the one-way check valve 9 will be described herein below with reference to
[0036] Reference will now be made to
[0037] In particular, each of the first syringe 1 and the second syringe 2 includes a stopper 3a, 3b disposed within the cylindrical body 1a, 2a of the syringes, respectively. Each stopper slides axially within the cylindrical body of the syringe and has a circumference that adjoins the inner wall of the cylindrical body in a sealing manner. The pressure received through the tubing from the pneumatic pump causes the sliding movement of the stoppers to then push the fluid therein out through the outlet of the syringe and toward the fluid delivery member. The syringes may be filled with about 0.15 to 25 ml of fluid, and more preferably, about 1 ml of fluid for microsurgical procedures. However, this is merely exemplary and the present disclosure is not limited thereto.
[0038] In addition to the stoppers being actuated by the pneumatic system, the directional control valve 5 determines which of the first and second stoppers will be actuated by opening the flow passage toward a desired syringe. For example, a user may manually rotate the valve handle 5a toward a desired flow passage of one of the syringes. The two syringes may contain different fluids that are to be administered sequentially. Thus, by rotation of the handle 5a, one of the flow passages may be opened while the other is blocked.
[0039] In an ophthalmic gene therapy procedure, the first syringe 1 may contain a gene therapy agent (or other therapeutic agent) and the second syringe 2 may contain a balanced salt solution (BSS). In this scenario, the valve handle 5a may be first rotated toward the second syringe 2 to inject the BSS at the injection site. This creates a reservoir, also known as a bleb. This type of space in an ophthalmic procedure is created under the retina of an eye. Once the BSS is injected to create the bleb, the valve handle 5a may be rotated toward the first syringe 1 to administer the gene therapy into the space created by the BSS. Thus, a surgeon is capable of performing what is typically two separate injections in one simplified process by administering two separate fluids through one channel and one injection site. Notably, the present disclosure is not limited as to which syringe contains the therapeutic agent and either of the syringes may contain either of the BSS or the therapeutic agent.
[0040] To further describe the connections to the hub, reference will be made to
[0041] The second syringe 2 is then connected at a distal end thereof to a second one-way check valve 9. As shown in
[0042] The second one-way check valve 9 is then connected to the tubing 11 via a tubing connector 12. That is, the check valve 9 is disposed between the syringe 2 and the tubing connector 12 to provide a continuous flow path for the fluid contained within the second syringe 2. The tubing 11 then connects to the hub 6 as shown in
[0043] Further, as discussed above, the first syringe 1 is connected to a first releasable connector 8a and then the distal end of the first syringe 1 is connected directly with the hub 6. This direct coupling minimizes dead space or waste of the drug or therapeutic agent contained within the syringe. This also allows for more accuracy and control over the administration of the drug delivery. In particular, as shown in
[0044] According to an second exemplary embodiment of the present disclosure, as shown in
[0045] Each of the syringes is then finally connected to a fluid delivery member 10 within or through the hub 6, as shown in
[0046] Moreover,
[0047] As shown in
[0048] Advantageously, a desired dosage of a therapeutic agent or drug may thus be delivered in a more controlled and accurate manner. This system thus allows administration of multiple fluids through a same entry point (e.g., retina site) and reduces any potential stretching of an injection site and prevents potential contamination or other negative impacts to delicate areas during a surgical procedure.
[0049] The many features and advantages of the disclosure are apparent from the detailed specification, and thus, it is intended by the appended claims to cover all such features and advantages of the disclosure which fall within the true spirit and scope of the disclosure. Further, since numerous modifications and variations will readily occur to those skilled in the art, it is not desired to limit the disclosure to the exact construction and operation illustrated and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the disclosure.