Breast fluid expression device
Abstract
Disclosed herein are biologically inspired, either manual or electronic, portable fluid expression system to be used for, but not limited to, breast milk expression from nursing women and other milk expression from any species of mammal. The fluid expression systems can be configured to mimic the anatomy of a suckling infant and the biomechanics and fluid dynamics associated with this behavior. The fluid expression system can be used by nursing mothers to express breast milk efficiently, painlessly, and discreetly. The systems can include a single, contiguous flexible structure designed to resemble the lips and oropharyngeal cavity of a newborn infant of the mammalian species of interest. Rigid external housings or stiffening structures can be used to mimic the bony anatomy of the infant or mammalian species of interest.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A mammalian fluid expression device comprising:
a soft, contiguous, collapsible structure having an internal channel therethrough that is configured to receive a nipple-areola complex and connect to a receptacle, wherein when actuated, the soft structure is configured to be repeatedly asymmetrically deformed to express fluid and wherein upon fluid expression, fluid is transported into the receptacle.
2 . The fluid expression device of claim 1 , wherein the device includes a manually engaged piston calibrated to set the baseline pressure, and a rotary shaft or lever arm to allow manual actuation of the inferior aspect of the structure resulting in negative pressure gradients within the internal volume for fluid expression.
3 . The fluid expression device of claim 1 , wherein at least one environmental sensor is included within the structure, within the housing, and/or within the receptacle to allow the capturing of environmental data.
4 . The fluid expression device of claim 3 , further comprising a controller configured to process and quantify the data and make the data available for user and researcher data collection and analysis, as well as used to automate pump settings specific to individual users, and optimize fluid expression and minimize discomfort.
5 . The fluid expression device of claim 1 , wherein the pumping cycle automatically transitions between a stimulative and non-stimulative cycle multiple times throughout a pumping session.
6 . A mammalian fluid expression device, comprising:
a single, contiguous, partially collapsible structure comprising a biocompatible, flexible material configured to receive a nipple-areola complex, the structure including: a proximal end with an elliptical profile configured to receive a nipple-areola complex; and an external rigid housing configured to mimic an infant's oropharyngeal cavity, wherein the housing includes stiffening elements configured to replicate the bony anatomy and the form of the inferior aspect of the oropharyngeal cavity during peak negative pressure while breastfeeding, wherein the housing is configured to receive the single, continuous structure within the housing, wherein a distal end of the structure has a smaller diameter than the proximal end and configured to connect to a receptacle or vacuum, wherein a continuous vacuum is used to generate constant baseline sub-atmospheric pressure, resulting in a primed system state, wherein asymmetric volume deformation via elevation and depression of the length of an inferior aspect of the structure away from a superior, stiffer, aspect of the structure creates an interior volume modulation of the single contiguous structure resulting in negative pressure gradients within the internal volume for fluid expression.
7 . The fluid expression device of claim 6 , wherein the oropharyngeal portion has variable thicknesses circumferentially such that the thickness of the material increases gradually from the inferior aspect up along the lateral aspect and towards the superior aspect of the structure; and the superior portion mimics the hard and soft palates of the infant, wherein the anterior portion is the thickest, most stiff portion of the structure, and the posterior portion is thinner than the anterior portion.
8 . The fluid expression device of claim 6 , wherein upon generation of constant baseline sub-atmospheric pressure, the variation in stiffness of the structure allows for asymmetrical collapse along the length of the inferior aspect of the structure against the superior, stiffer, portion of the structure while accommodating the received nipple-areola complex.
9 . The fluid expression device of claim 6 , wherein the device includes a manually engaged piston calibrated to set the baseline pressure, and a rotary shaft or lever arm to allow manual actuation of the inferior aspect of the structure resulting in negative pressure gradients within the internal volume for fluid expression.
10 . The fluid expression device of claim 6 , wherein at least one environmental sensor is included within the structure, within the housing, and/or within the receptacle to allow the capturing of environmental data.
11 . The fluid expression device of claim 10 , further comprising a controller configured to process and quantify the data and make the data available for user and researcher data collection and analysis, as well as used to automate pump settings specific to individual users, and optimize fluid expression and minimize discomfort.
12 . The fluid expression device of claim 6 , wherein the pumping cycle automatically transitions between a stimulative and non-stimulative cycle multiple times throughout a pumping session.
13 . The fluid expression device of claim 6 , wherein the device is configured to be controlled using a web/mobile user interface accessible from a user's smartphone, tablet or another remotely connectable device.
14 . A mammalian fluid expression device comprising:
a single, contiguous, partially collapsible structure having a proximal end and a distal end and comprising a biocompatible, flexible material configured to receive a nipple-areola complex, the structure including: a proximal end with an elliptical profile configured to receive a nipple-areola complex, the structure further including an inferior aspect and a superior aspect, wherein the superior aspect has a stiffness that is greater than that of the inferior aspect; and a rigid housing configured to house the soft, contiguous structure therein to mimic an infant's oropharyngeal cavity; wherein the distal end of the structure has a smaller diameter than the proximal end, and capable of connecting to a receptacle or vacuum, wherein asymmetric volume deformation via elevation and depression of the length of the inferior aspect of the structure away from the superior, stiffer, aspect of the structure creates an interior volume modulation of the single contiguous structure resulting in negative pressure gradients within the internal volume for fluid expression.
15 . The fluid expression device of claim 14 , wherein the oropharyngeal portion has variable thicknesses circumferentially such that the thickness of the material increases gradually from the inferior aspect up along the lateral aspect and towards the superior aspect of the structure; and the superior portion mimics the hard and soft palates of the infant, wherein the anterior portion is the thickest, most stiff portion of the structure, and the posterior portion is thinner than the anterior portion.
16 . The fluid expression device of claim 14 , wherein the device includes a manually engaged piston calibrated to set the baseline pressure, and a rotary shaft or lever arm to allow manual actuation of the inferior aspect of the structure resulting in negative pressure gradients within the internal volume for fluid expression.
17 . The fluid expression device of claim 14 , wherein at least one environmental sensor is included within the structure, within the housing, and/or within the receptacle to allow the capturing of environmental data.
18 . The fluid expression device of claim 17 , further comprising a controller configured to process and quantify the data and make the data available for user and researcher data collection and analysis, as well as used to automate pump settings specific to individual users, and optimize fluid expression and minimize discomfort.
19 . The fluid expression device of claim 14 , wherein the pumping cycle automatically transitions between a stimulative and non-stimulative cycle multiple times throughout a pumping session.
20 . The fluid expression device of claim 14 , wherein the device is configured to be controlled using a web/mobile user interface accessible from a user's smartphone, tablet or another remotely connectable device.Join the waitlist — get patent alerts
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