METHODS AND APPARATUS FOR ABATING NOISE DURING EXPRESSION OF HUMAN BREAST MILK
A system for abating noise during expression of human breast milk includes a noise abatement device and a breast milk expression pump. The noise abatement device may comprise a container configured to receive the breast milk expression pump, the container configured to abate noise generated by the breast milk expression pump disposed within the container. The noise abatement container may comprise one or more sound-absorbing materials or geometries. When the pump is positioned in the noise abatement container, noise from the pump is abated while the pump is operating.
This application claims the benefit of U.S. Provisional Application No. 62/021,604, filed Jul. 7, 2014 (Attorney Docket No. 44936-707.101), the full disclosure of which is incorporated herein by reference.
The present application is related to U.S. patent application Ser. No. 14/221,113, filed Mar. 20, 2014 [Attorney Docket No. 44936-703.201], U.S. patent application Ser. No. 14/616,557, filed on Feb. 6, 2015 [Attorney Docket No. 44936-704.201], U.S. Provisional Application No. 62/021,601, filed on Jul. 7, 2014 [Attorney Docket No. 44936-705.101], U.S. Provisional Application No. 62/021,597, filed on Jul. 7, 2014 [Attorney Docket No. 44936-706.101], and U.S. Provisional Application No. 62/028,219, filed on Jul. 23, 2014 [Attorney Docket No. 44936-708.101], the full disclosures of which are incorporated herein by reference.
BACKGROUND OF THE INVENTION1. Field of the Invention
The present invention generally relates to medical devices and methods, and more particularly relates to devices and methods for expression and collection of human breast milk, and even more particularly relates to abatement of noise during expression of human breast milk.
The exemplary embodiments disclosed herein are preferably directed to expression of human breast milk and noise abatement during the expression, but one of skill in the art will appreciate that this is not intended to be limiting and that the devices, systems and methods disclosed herein may be used in other applications.
Breast pumps are commonly used to collect breast milk in order to allow mothers to continue breastfeeding while apart from their children. Currently, there are two primary types of breast pumps: manually-actuated devices, which are small, but inefficient and tiring to use; and electrically-powered devices, which are efficient, but large and bulky. These can be noisy. Newer pumps have been proposed that use hydraulically activated mechanisms for creating a pressure differential, or other actuation mechanisms have been proposed, and are promising but they also may create unwanted noise. The noise can make breast pumping an uncomfortable experience for the user. Therefore, it would also be desirable to provide devices and methods that can be used with any milk expression device to help abate the noise. At least some of these objectives will be satisfied by the devices and methods disclosed below.
2. Description of the Background Art
The following US patents are related to expression and collection of human breast milk: U.S. Pat. Nos. 6,673,036; 6,749,582; 6,840,918; 6,887,210; 7,875,000; 8,118,772; and 8,216,179.
SUMMARY OF THE INVENTIONThe present invention generally relates to medical devices, systems and methods, and more particularly relates to devices, systems and methods for expression and collection of human breast milk, and even more particularly relates to abatement of noise during expression and collection of human milk.
In a first aspect of the present invention, a system for abating noise during expression of breast milk comprises a noise abatement device and a breast milk expression pump. The noise abatement device is configured to contain the pump, and to abate noise from the pump while the pump is operating and disposed in the noise abatement device.
The noise abatement device may comprise a container having an opening to receive the breast milk expression pump. The container may comprise a resilient material that expands to fit the pump. Alternatively or in combination, the container may be sized to fit the pump, wherein the container may comprise upper hinges, lower hinges, left side hinges, and right side hinges, each of the hinges configured to articulate and thereby open or close the opening of the container to accommodate the breast milk expression pump.
The container may comprise one or more walls configured to absorb sound generated by the breast milk expression pump disposed within the container. The one or more walls may be fabricated from one or more sound-absorbing materials, and/or may comprise one or more structures inside the container that are patterned to absorb reflection of sound. The one or more walls may comprise an inner layer and an outer layer. The inner layer may comprise a compliant absorbing material, and the outer layer may comprise a material that is denser than the inner layer of material, wherein the outer layer is configured to absorb sound waves that are dissipated into the inner layer. The inner layer and the outer layer may be formed from sound-absorbing foam constructed with one or more sound-absorbing geometries. The outer surface of the one or more walls comprises a decorative material.
In another aspect of the present invention, a method for abating noise during expression of human breast milk comprises disposing a breast milk expression pump in a noise abatement device, wherein the noise abatement device is configured to abate noise from the breast milk expression pump when the breast milk expression pump is disposed within the noise abatement device. The method further comprises operating the breast milk expression pump, and abating noise from the breast milk expression pump with the noise abatement device while the breast milk expression pump is operating.
The noise abatement device may comprise a container having an opening, and disposing a breast milk expression pump in a noise abatement device may comprise inserting the breast milk expression pump into the opening of the container. The method may further comprise adjusting a configuration of the container to accommodate the breast milk expression pump. Adjusting the configuration of the container may comprise articulating one or more hinges of the container so as to adjust a size or a shape of the container to fit the breast milk expression pump. Alternatively or in combination, the container may comprise a resilient material, and adjusting the configuration of the container may comprise expanding the container to adjust a size or a shape of the container to fit the breast milk expression pump.
These and other embodiments are described in further detail in the following description related to the appended drawing figures.
INCORPORATION BY REFERENCEAll publications, patents, and patent applications mentioned in this specification are herein incorporated by reference to the same extent as if each individual publication, patent, or patent application was specifically and individually indicated to be incorporated by reference.
The novel features of the invention are set forth with particularity in the appended claims. A better understanding of the features and advantages of the present invention will be obtained by reference to the following detailed description that sets forth illustrative embodiments, in which the principles of the invention are utilized, and the accompanying drawings of which:
Specific embodiments of the disclosed devices and methods will now be described with reference to the drawings. Nothing in this detailed description is intended to imply that any particular component, feature, or step is essential to the invention. One of skill in the art will appreciate that various features or steps may be substituted or combined with one another.
The present invention will be described in relation to the expression and collection of breast milk and abatement of noise during expression of breast milk. However, one of skill in the art will appreciate that this is not intended to be limiting, and the devices, systems, and methods disclosed herein may be used in any number of other applications which may or may not involve expression of breast milk. For example, the devices, systems and methods described herein may be used to create and deliver a pressure differential to a patient, such as in the treatment of sleep apnea. Thus abatement of noise during treatment of sleep apnea is also contemplated.
One of skill in the art will appreciate that components and features of this exemplary embodiment can be combined or substituted with components and features of any of the embodiments of the present invention as described below. Similarly, components and features of other embodiments disclosed herein may be substituted or combined with one another.
Hydraulic Pumping Device
Hydraulic or pneumatic systems can reduce pumping force requirements, and therefore also reduce the size of the pumping device, while maintaining high pumping efficiency. In a preferred embodiment, the pumping device can utilize a hydraulic or pneumatic pumping device to generate a pressure differential against the breast for the expression and collection of milk.
Exemplary hydraulic pumping devices are depicted in
Actuatable assembly 205 displaces fluid 230 contained within tube 225, which can be a flexible line. Fluid 230 occupies reservoir 250 within breast interface 235 and is coupled with flexible membrane 245. Flexible membrane 245 transmits vacuum pressure from fluid 230 to the deformable portion 270 of sealing element 255. When a breast is engaged into and fluidly sealed with breast interface 235 by sealing element 255, displacement of the actuatable element 215 produces substantial vacuum pressure against the breast through flexible membrane 245 and deformable portion 270, resulting in the expression of breast milk into expression area 260. The expressed milk drains through drain port 265 into collection vessel 275. Drain port 265 is configured with a flap valve 280 to provide passage of milk while maintaining vacuum pressure in expression area 260.
The fluid for the hydraulic pumping device can be any suitable fluid, such as an incompressible fluid. In many embodiments, the incompressible fluid can be water or oil. Alternatively, the fluid can be any suitable gas, such as air. Suitable incompressible fluids and gases for hydraulic systems are known to those of skill in the art.
One of skill in the art will appreciate that components and features of any of the exemplary embodiments of the hydraulic pumping device can be combined or substituted with components and features of any of the embodiments of the present invention as described herein.
Actuation Mechanism
Many actuation mechanisms known to those of skill in the art can be utilized for the actuatable assembly 205. Actuatable assembly 205 can be a piston assembly, a pump such as a diaphragm pump, or any other suitable actuation mechanism. The optimal configuration for actuatable assembly 205 can depend on a number of factors, such as: vacuum requirements; size, power, and other needs of the pumping device 200; and the properties of the fluid 230, such as viscosity, biocompatibility, and fluid life requirements.
In preferred embodiments, the actuatable assembly includes a driving element powered by a suitable driving mechanism, such as a driving mechanism residing in pendant unit 115. Many driving mechanisms are known to those of skill in the art. For instance, the driving element, such as driving element 215, may be actuated electromechanically by a motor, or manually by a suitable user-operated interface, such as a lever. Various drive modalities known to those of skill in the art can be used. In particular, implementation of the exemplary hydraulic pumping devices as described herein enables the use of suitable drive modalities such as direct drive and solenoids, owing to the reduced force requirements of hydraulic systems.
Referring now to the exemplary embodiment of
The driving mechanism can be powered by any suitable power source, such as a local battery or an AC adaptor. The driving mechanism can be controlled by hardware, such as onboard electronics located within pendant unit 115.
One of skill in the art will appreciate that components and features of any of the exemplary embodiments of the actuation mechanism can be combined or substituted with components and features of any of the embodiments of the present invention as described herein.
Flexible Membrane
In many embodiments such as the embodiment depicted in
Suitable materials for the flexible membrane are known to those of skill in the art. In many embodiments, the flexible membrane can be made of a material designed to expand and contract when subject to pressures from the coupling fluid such as silicone, polyether block amides such as PEBAX, and polychloroprenes such as neoprene. Alternatively, the flexible membrane can be fabricated from a substantially rigid material, such as stainless steel, nitinol, high durometer polymer, or high durometer elastomer. In these embodiments, the rigid material would be designed with stress and/or strain distribution elements to enable the substantial deformation of the flexible membrane without surpassing the yield point of the material.
One of skill in the art will appreciate that components and features of any of the exemplary embodiments of the flexible membrane can be combined or substituted with components and features of any of the embodiments of the present invention as described herein.
Milk Collection and Quantification System
With reference to
In many instances, it can be desirable to track various data related to milk expression and collection, such as the amount of milk production. Currently, the tracking of milk production is commonly accomplished by manual measurements and record-keeping. Exemplary embodiments of the device described herein may provide digital-based means to automatically measure and track milk production for improved convenience, efficiency, and accuracy.
In exemplary embodiments, the pendant unit 500 communicates with a mobile phone 510 to transmit milk expression data, such as expression volume, duration, and date. The mobile phone 510 includes a mobile application to collect and aggregate the expression data and display it in an interactive format. Preferably, the mobile application includes additional features that allow the user to overlay information such as lifestyle choices, diet, and strategies for increasing milk production, in order to facilitate the comparison of such information with milk production statistics. Additionally, the pendant unit 500 can send information about the times of pump usage to the mobile phone 510 so that the mobile application can identify when pumping has occurred and set reminders at desired pumping times. Such reminders can help avoid missed pumping sessions, and thus reduce the incidence of associated complications such as mastitis.
One of skill in the art will appreciate that components and features of any of the exemplary embodiments of the milk collection and quantification system can be combined or substituted with components and features of any of the embodiments of the present invention as described herein.
Mechanical Pumping Device
The tensile element 610 can be any suitable device, such as a wire, coil, or rope, and can be made from any suitable material, such as metals, polymers, or elastomers. Axial load absorbing member 615 can be made from any suitable axially stiff materials, such as metals or polymers, and can be configured into any suitable axially stiff geometry, such as a tube or coil.
One of skill in the art will appreciate that components and features of any of the exemplary embodiments of the mechanical pumping device can be combined or substituted with components and features of any of the embodiments of the present invention as described herein.
Experimental Data
Noise Abatement
As previously mentioned, the pumping devices often generate noise that can be loud and uncomfortable to the user during expression of breast milk. Additionally, a quiet device allows more discrete and convenient pumping. Therefore, it can be desirable to provide additional devices and methods that facilitate abatement of noise during expression of milk. The devices, systems and methods for noise abatement that are described below may be used with any of the pumps currently available or disclosed herein. Additionally, the devices, systems and methods described below may be combined with or substituted with any of the other features described herein.
The outer layer of material 1612 is preferably a dense material and may be described as a high momentum material. This material is typically denser than the compliant absorbing material that forms the inner layer 1614. When subjected to sound vibrations, the high momentum material absorbs the sound waves, which are dissipated through kinetic energy into the compliant inner layer of material 1614. In alternative embodiments, the container may be fabricated from flexible materials and thus the hinges may not be required.
One of skill in the art will appreciate the noise abatement container may be independent or integrated into another container such as a bag.
While preferred embodiments of the present invention have been shown and described herein, it will be obvious to those skilled in the art that such embodiments are provided by way of example only. Numerous variations, changes, and substitutions will now occur to those skilled in the art without departing from the invention. It should be understood that various alternatives to the embodiments of the invention described herein may be employed in practicing the invention. It is intended that the following claims define the scope of the invention and that methods and structures within the scope of these claims and their equivalents be covered thereby.
Claims
1. A system for abating noise during expression of breast milk, said system comprising:
- a breast milk expression pump; and
- a noise abatement device configured to contain the breast milk expression pump;
- wherein the noise abatement device is configured to abate noise from the breast milk expression pump while the breast milk expression pump is operating and disposed in the noise abatement device.
2. The system of claim 1, wherein the noise abatement device comprises a container having an opening to receive the breast milk expression pump.
3. The system of claim 2, wherein the container comprises a resilient material that expands to fit the breast milk expression pump.
4. The system of claim 2, wherein the container is sized to fit the breast milk expression pump.
5. The system of claim 4, wherein the container comprises upper hinges, lower hinges, left side hinges, and right side hinges, each of the hinges configured to articulate and thereby open or close the opening of the container to accommodate the breast milk expression pump.
6. The system of claim 1, wherein the container comprises one or more walls configured to absorb sound generated by the breast milk expression pump disposed within the container.
7. The system of claim 6, wherein the one or more walls are fabricated from one or more sound-absorbing materials.
8. The system of claim 6, wherein the one or more walls comprise one or more structures inside the container that are patterned to absorb reflection of sound.
9. The system of claim 6, wherein one or more walls comprise an inner layer and an outer layer.
10. The system of claim 9, wherein the inner layer comprises a compliant absorbing material and the outer layer comprises a material that is denser than the inner layer of material, and wherein the outer layer is configured to absorb sound waves that are dissipated into the inner layer.
11. The system of claim 10, wherein the inner layer and the outer layer are formed from sound-absorbing foam constructed with one or more sound-absorbing geometries.
12. The system of claim 6, wherein an outer surface of the one or more walls comprises a decorative material.
13. A method for abating noise during expression of breast milk, said method comprising:
- disposing a breast milk expression pump in a noise abatement device, wherein the noise abatement device is configured to abate noise from the breast milk expression pump when the breast milk expression pump is disposed within the noise abatement device;
- operating the breast milk expression pump; and
- abating noise from the breast milk expression pump with the noise abatement device while the breast milk expression pump is operating
14. The method of claim 13, wherein the noise abatement device comprises a container having an opening, and disposing a breast milk expression pump in a noise abatement device comprises inserting the breast milk expression pump into the opening of the container, the method further comprising adjusting a configuration of the container to accommodate the breast milk expression pump.
15. The method of claim 14, wherein adjusting the configuration of the container comprises articulating one or more hinges of the container so as to adjust a size or a shape of the container to fit the breast milk expression pump.
16. The method of claim 14, wherein the container comprises a resilient material, and adjusting the configuration of the container comprises expanding the container to adjust a size or a shape of the container to fit the breast milk expression pump.
Type: Application
Filed: Jul 7, 2015
Publication Date: Jan 7, 2016
Inventors: Jeffery B. Alvarez (Redwood City, CA), Janica B. Alvarez (Redwood City, CA)
Application Number: 14/793,617