PUMPING DEVICE, AS FOR ENTERAL FEEDING ASSEMBLY
A pumping device is disclosed, as for use with an enteral feeding assembly. In one form the pumping device is a diaphragm pump including a first dome portion, a second dome portion, and a flexible membrane located between the first and second dome portions. A pressure differential is created between the two chambers thus created by membrane, so as to meter fluid (to be delivered) to a patient. The fluid to be delivered may be located in one of the chambers. A portable fluid pump is also provided including a syringe and spring pump drive mechanism mounted in a casing. The spring pump drive mechanism has two piston devices in fluid communication with each other. As one piston device moves in one direction within its associated driving barrel, it serves to drive the other piston device.
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The present application is a continuation of U.S. patent application Ser. No. 13/189,196, filed Jul. 22, 2011, which claims priority to U.S. Provisional Application Nos. 61/367,283 filed on Jul. 23, 2010 and 61/367,272 filed on Jul. 23, 2010. The entire disclosure contents of these applications are herewith incorporated by reference into the present application.
FIELD OF THE INVENTIONThe present invention relates generally to a portable pumping apparatus, and more particularly in one aspect to a pumping device for use with an enteral feeding assembly.
BACKGROUNDFluid delivery systems, such as feeding tubes, are used to deliver nutrients and medicine to patients. The state of being fed by a feeding tube is known in the art as enteral feeding or tube feeding.
As an example, in a neo-natal unit, infants are often fed enterally. A tube is inserted in the mouth or nasal opening of the infant and through the esophagus for delivery of the fluid to the stomach or intestinal region of the body. In this example, breast milk or formula are delivered by syringe (or some other container) into an enteral delivery system, such as an enteral tube, for delivery to the infant's stomach. However, enteral feeding systems can also be for pediatric or adult use. Sometimes a peristaltic pump is used to deliver fluids from a feeding bag.
Current pumping devices may be large and bulky, and often need to be plugged into an electrical outlet to function. They can require some nearby stand or pole for support, which adds to a cumbersome assembly. Further, the tubing may be of significant length to reach from the pumping device to the infant, which is not desirable.
SUMMARYThe present invention in one embodiment provides a portable non-electric pumping device for delivery of fluid. The pumping device in one form is a diaphragm pump connectable to an enteral feeding tube. The diaphragm pump has a first dome portion, a second dome portion, and a flexible membrane located in between and separating the first and second dome portions, thus forming first and second chambers on opposite sides of the flexible membrane. In one embodiment, a vacuum source is connected to the pumping device to create a vacuum between the first dome portion and the flexible membrane in the first chamber. Fluid to be delivered is sucked into the second chamber formed by the flexible membrane and the second dome portion, through use of the vacuum source, as it moves the membrane or diaphragm from one side to the other of the device. The vacuum source is then disconnected with the first chamber sealed. The pumping device then functions to deliver and regulate fluid to the patient, by virtue of the flexible membrane returning to its original (rest) state, via an air vent device allowing air to slowly enter the first chamber, with fluid outflow either through the same inflow part, or some other outflow port. As secondary mechanism, such as a spring pushing the diaphragm, may also be used.
In an alternative embodiment, one of the chambers could be pressurized with an over-pressure, but function to deliver fluid in a similar manner. The pressure source could further be air, another gas, or a fluid such as a liquid, e.g., water or even the material to be delivered to the patient.
The present invention in another embodiment also provides a portable pumping mechanism. The pump includes a syringe and a spring-loaded pump drive mechanism mounted in a casing. The pump drive mechanism preferably includes a drive control mechanism that has two piston devices, such as two syringe or syringe-like devices, in fluid communication with each other, such as using water as the fluid. As one piston device moves in one direction, it serves to drive the other piston device. The plunger of the syringe is slaved to the piston of one of the piston devices, to discharge feed as that piston moves. A spring drive serves as the motive source for driving the piston devices. A pneumatic application (instead of water) of the pumping mechanism is further contemplated.
The pumping device may further include a volume indicator for measuring the amount of feeding fluid in the pumping device or the amount of feeding fluid that has been fed from the pumping device.
In yet another embodiment, one or more flexible bags or balloon-like structures may be placed within or attached to the pumping device. The flexible bag may also act as the pressure source to the pumping device.
Thus, in a very broad sense, the present invention provides a pumping device for enteral feeding which is placeable in the NICU bed, and most preferably does not utilize any electrically-driven motive parts for delivery of feed.
These and other features and advantages of the present invention will be further understood and appreciated when considered in relation to the following detailed description of embodiments of the invention, taken in conjunction with the drawings, in which:
One embodiment of the invention is shown in a pumping device of
A flexible membrane or diaphragm 106 is placed between the first and second dome portions 102, 104, as shown in
The first dome portion 102 may include a first port 108 for receiving a vacuum source 200, such as a syringe as shown in
For example, a syringe actuated valve may be removably attachable to a tube section, such as enteral feeding tube 400 shown in
The second dome portion 104 includes a second port 110. The second port 110 may attach to a vial or container 300 (shown in
Alternatively, a special connector 112 may join the second port 110 to the container 300 to help prevent contamination of the port and/or connector. An example connector 112 of this type is described in detail in U.S. Application Ser. No. 61/367,228, (MBHB docket number 10-745), entitled “Enteral Feeding Connector and Assembly,” filed on Jul. 23, 2010, and which is incorporated by reference herein in its entirety.
The first dome portion 102 further includes an aperture 114, which communicates with the first chamber 103. A regulator, such as regulator 116 shown in
In another embodiment, as shown in
The bag 210 will be placed within the device 100 of
Referring to
Referring now to
In operation, after a vacuum is introduced into the first port 108 of the pumping device 100 by the vacuum source 200, the one-way valve 109 located within the first port 108 closes upon removal of the vacuum source. The flexible membrane 106 has moved from the initial position to the expanded position, expanding the second space 105. At the same time, fluid from the attached container 300 has been pulled into the expanded second space 105 through second port 110. The flexible membrane 106 is the driving force to deliver fluid, and fluid flow is limited by the regulator 116, 118, or 120.
The enteral feeding tube 400 is attached to the second port 110. The regulator device is then actuated (e.g., rotated) to open an air channel to control the rate that the fluid is pumped from the expanded second chamber 105 into the enteral feeding tube 400, and eventually into the patient.
As shown in
In another embodiment, the pumping device 100 is pressurized by a pressure source, such as syringe 200 (being used to push rather than pull air or other fluid). The pressure source may be a syringe 200 containing the fluid for enteral feeding, for example, such as breast milk.
The pressure source 200 is connected to the second port 110 and the fluid from the pressure source is introduced into the second chamber 105. Using the structure like that of
In another embodiment, shown in
Referring to
Another embodiment of the pumping device 100 is shown in
In yet another embodiment of the pumping device, shown in
The divider 132 includes a large one-way valve 136 and a small one-way valve 138. The large one-way valve 136 allows for the flow of the liquid from the chamber 133 to the chamber 135 once feed fluid is introduced into the first dome portion 102. The flow of the liquid into the chamber 135 causes the chamber to expand. The build-up of liquid and therefore pressure in the chamber 135 then can be used to cause the liquid to flow back into the chamber 133 more slowly through the small one-way valve 138. The liquid flows back into the chamber 133 with feed and flow from chamber 103 as diaphragm 106 returns to its rest position, while pushing the feed fluid in the first chamber 103 out of port 130 and into a feeding tube to a patient. In an alternate embodiment, a pull tab 260 like that described with respect to
It should be understood that any of the embodiments described above may be driven with either positive or negative pressure, or a combination of both, as would be known and understood by those skilled in the art. Similarly, ports may be either one-way or two-way ports.
Syringe 10 is mounted in a casing 18. Also mounted within casing 18 is the spring pump drive mechanism, which has a driving piston device 20 and a damping or driven piston device 22. While this embodiment uses hydraulics to control the spring return in its operation, some other fluid could be used, such as in a pneumatic adaptation.
The two piston devices are in fluid communication in a manner to be hereafter described. With reference to
A connector element 26, such as a clamp, serves to fix the plunger 11 to a driving piston cylinder 27 of the driving piston device 20. The plunger is thus slaved for movement with the piston cylinder 27.
Referring now to
The initial energy to move the piston cylinders is supplied by the user grasping the handle 32 of the driving piston cylinder and pulling it outwardly. This pulls it against a spring 35, which is fixed at one end to the casing 18 at point 36, and at the other end to the connector element 26, thereby extending the spring 35, and “cocking” the pump mechanism. The spring 35 may be a constant force spring, for example. When the handle 32 is then released, the spring 35 serves to pull the driving piston inwardly in its barrel, moving fluid into driven piston barrel 31, pushing driven piston 30 outwardly. A regulator device R is in-line with tube 33. The regulator R can be of any standard type through which liquid may be variably metered. The regulator is set to the desired rate of feeding, so that the spring 35 slowly (typically) pulls the driving piston cylinder 27 with its slaved syringe plunger 11 inwardly relative to their barrels, with feed thereby being administered from the syringe, as its plunger 11 moves inwardly in the barrel 12.
In order to facilitate resetting of the system, a one-way valve mechanism 38, such as a duckbill valve, is connected in another tube 40 forming a short-circuit for the quick return of fluid to the driving piston device 20 (thereby substantially or completely bypassing return through the regulator R).
Thus, while the invention has been described herein with relation to certain embodiments and applications, those with skill in this art will recognize changes, modifications, alterations and the like which still come within the spirit of the inventive concept, and such are intended to be included within the scope of the invention. For instance, while the vacuum source and pressure source have been described as syringes or bags, other vacuum sources or pressure sources may be used.
Claims
1. (canceled)
2. A pumping device for attachment to an enteral feeding device comprising:
- a first portion attached to a second portion to provide a liquid tight connection, the second portion comprising a flexible membrane located adjacent to the first portion and contacting the first portion when the flexible membrane is in the first position;
- the flexible membrane movable to a second position located spatially apart from the first portion thereby forming a chamber between the first portion and the flexible membrane;
- liquid feed provided inside the chamber;
- a chamber port;
- wherein the flexible membrane is stressed to return to the first position thereby forcing the liquid feed to pump out of the chamber port for delivery to the enteral feeding device in a single stroke.
3. The pumping device of claim 1 wherein the pumping device is non-electrically driven.
4. The pumping device of claim 1 further comprising a volume indicator positioned on the pumping device for measuring the amount of liquid feed or air in the pumping device.
5. A pumping device for an enteral feeding device comprising:
- a housing;
- a flexible member located within the housing and defining a chamber on one side of said flexible member, the flexible member having a rest position and a drive position defined by a bias toward the rest position;
- at least a first port in the housing communicating with the chamber; and
- a force applied to the flexible member to move the flexible member from the rest position to the drive position, thereby increasing the chamber volume;
- wherein liquid feed is entered into the chamber from a source of feed using the at least first port; and
- wherein the flexible member provides a driving force for forcing the liquid feed out of the chamber as the flexible member returns to a rest position.
6. The pumping device of claim 5 further comprising valving associated with the first port controlling flow through the first port.
7. The pumping device of claim 5 wherein the housing includes a first portion and a second portion, with the flexible member being located between the first portion and the second portion.
8. The pumping device of claim 5 further comprising a regulating mechanism connected to the pumping device, the regulating mechanism configured to control a rate at which the liquid feed is let out of the chamber.
9. A pumping device for attachment to an enteral feeding device comprising:
- an expansible device including a first chamber and a second chamber, and a movable member between the first and second chambers, the moveable member having a rest position and a driving position, with the moveable member being biased toward the rest position when in the driving position;
- wherein each chamber allows the movable member to move within the expansible device and expand a volume in one chamber while decreasing a volume in the other chamber;
- at least a first port communicating with the first chamber and a second port communicating with the second chamber;
- wherein when a force is applied to the movable member, the movable member is moved to decrease a volume in the first chamber and place the movable member in the driving position while feed fluid enters into the second chamber; and
- wherein the movable member returns toward the rest position through the bias while causing the feed fluid to flow out of the second chamber through the second port and into the enteral feeding device.
10. The pumping device of claim 9 wherein the moveable member is made of a flexible material, the bias being provided by moving the flexible material to the drive position.
11. The pumping device of claim 9 further comprising a regulating mechanism controlling outflow of the feed fluid.
12. The pumping device of claim 9 wherein the pumping device is non-electrically driven.
13. The pumping device of claim 9 wherein the force applied to the moveable member is supplied by a vacuum source.
14. The pumping device of claim 9 wherein the vacuum source is a syringe.
Type: Application
Filed: Mar 24, 2014
Publication Date: Jul 24, 2014
Applicant: MEDELA HOLDING AG (Baar)
Inventor: Brian H. Silver (Woodstock, IL)
Application Number: 14/222,935
International Classification: A61J 15/00 (20060101);