This invention relates to an apparatus for drawing milk from a human breast.
Many mothers rely on pumps to extract and store their breast milk. The more such pumps are automated and simulate the natural sucking rhythms of an infant, the easier it can be for a mother to relax and allow her milk to “let down” and flow. Devices have been proposed that stimulate the breast by generating negative pressure between opposing walls of a resilient insert adapted for receiving a human breast and a rigid funnel concentrically disposed about the insert.
In an aspect, the invention features an apparatus for use in extracting milk from a human breast. The apparatus includes a pliant receiving member having an inner receiving portion sized to receive a human breast and an adjacent inner connecting portion defining an opening extending therethrough. The receiving member has an inner surface defining a recess located in the inner receiving portion and a passageway extending from the recess to the opening to provide fluid communication between the recess and the opening during use. The passageway provides fluid communication between the recess and the opening such that negative pressure can be generated between the recess and the breast.
In another aspect, the invention features an apparatus for use in extracting milk from a human breast. The apparatus features a pliant receiving member having an inner receiving portion sized to receive a human breast and an adjacent inner connecting portion defining an opening extending therethrough. The receiving member has an inner surface defining a recess located in the inner receiving portion and a raised rib extending outwardly from the inner surface within the recess.
In some embodiments, in response to the negative pressure generated between the recess and breast, the recess of the receiving member is configured to deform in a direction toward the breast and to recover upon removal of negative pressure. In some cases, the passageway is an open channel defined by the inner surface, the channel being configured to provide the passageway between the breast and the channel in use.
In many embodiments, the receiving portion of the receiving member is conical in shape and/or the connecting portion is tubular in shape. In certain cases, the connecting portion includes a throat of reduced inner diameter. In these cases, the passageway can extend from an end of the throat to the recess.
In some embodiments, the inner surface defines multiple, spaced-apart recesses located in the inner receiving portion and an associated passageway extending from each recess to the opening to provide fluid communication between the associated recess and the opening during use. In use, each passageway can provide fluid communication between the associated recess and the opening such that negative pressure can be generated between the associated recess and breast. In certain embodiments, in response to the negative pressure generated between the associated recess and breast, the associated recess of the receiving member is configured to deform in a direction toward the breast. In some embodiments, each passageway comprises an open channel defined by the inner surface, the channels being configured to provide the passageway between the breast and the channel in use. In certain embodiments, an outer surface of the receiving member defines an outer recess positioned between adjacent recesses defined by the inner surface. The outer surface of the receiving member can define multiple outer recesses, each outer recess positioned between adjacent recesses defined by the inner surface.
In some embodiments, a rigid outer member is connected to the receiving member where the outer member defines an outer opening through which the inner connecting portion of the receiving member extends. In many cases, the rigid outer member has an outer receiving portion sized and configured to receive the inner receiving portion of the receiving member. In some cases, the receiving member includes a peripheral passageway to inhibiting negative pressure from being generated between the outer and receiving members. The rigid outer member can include a tubular portion defining the outer opening through which the inner connecting portion of the receiving member extends. In some embodiments, the receiving member includes a ledge extending outwardly from an outer surface of the receiving member at the connecting portion. In some cases, an end surface of the receiving member at the connecting portion contacts the ledge to inhibit movement of the outer member relative to the receiving member during use.
In some embodiments, a raised rib extends outwardly from the inner surface of the receiving member within the recess. The rib can be configured to apply pressure to the breast during use. In some embodiments, the receiving member includes multiple raised ribs extending from the inner surface. Each of the raised ribs can be located within an associated recess.
In some embodiments, a conduit is permanently connected to the receiving member, or alternatively, the conduit can be releasably connected to the receiving member. A pump can be fluidly connected to the pliant receiving member.
In another aspect, the invention features a method of extracting milk from a breast. The method includes generating negative pressure between an inner surface of a pliant receiving member and a breast. The inner surface is sized to receive the breast and defines a recess located in an inner receiving portion. The recess formed by the inner surface is in fluid communication with a conduit connected to a pump. In response to negative pressure introduced between the inner surface and the breast, the pliant receiving member is deformed in a direction toward the breast.
In some embodiments, the step of deforming the pliant receiving member includes applying pressure to the breast. In some cases, pressure is applied by a raised rib located within the recess and extending from the inner surface. In certain embodiments, the receiving member is configured to recover to its original form upon removal of the negative pressure.
The details of one or more embodiments of the invention are set forth in the accompanying drawings and the description below. Other features, objects, and advantages of the invention will be apparent from the description and drawings, and from the claims.
Like reference symbols in the various drawings indicate like elements.
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Suitable materials for forming the outer member 12 can include polymers, such as polypropylene (PP), polystyrene (PS), acrylonitrile-butadiene-styrene (ABS), polycarbonate (PC) and KRYLON®. Suitable materials for forming the receiving member 14 can include rubber, such as latex, polymers, such as silicone, thermoplastic elastomers, polyvinyl chloride (PVC) and ethylene-vinyl acetate (EVA). Additionally, any suitable method can be employed for forming the outer and receiving members including machining, molding, such as injection molding, compression molding and vacuum forming.
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While the messaging ribs 32 are shown in
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A number of embodiments of the invention have been described. Nevertheless, it will be understood that various modifications may be made without departing from the spirit and scope of the invention. For example, referring to
This application is a continuation of U.S. patent application Ser. No. 10/835,678 filed on Apr. 30, 2004, now U.S. Pat. No. 7,396,339. The contents of application Ser. No. 10/835,678 are incorporated herein by reference.
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Number | Date | Country | |
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Parent | 10835678 | Apr 2004 | US |
Child | 12137855 | US |