The disclosed technology pertains to an insert for medicine bottles.
Accidental overdose is a common and sometimes dangerous occurrence, whether for prescription medicines, over the counter medicines, or even vitamin supplements. Some of the most common accidental overdoses involve children, who may mistakenly believe that a medication or vitamin is candy. Conventional safety mechanisms, such as threaded child safety caps, are child resistant, but not child proof, and in some cases may be overcome in just a few minutes of effort by a child. Once removed, the child can immediately empty the entire contents of the bottle, which sometimes may include 500 or more tablets, and consume many of them before determining they are not candy. Even the most common pain killers, vitamins, and cold remedies can be dangerous, or even deadly, when taken in unconstrained amounts, especially for children.
While the example above refers to children, this may also occur with adults with impaired cognitive abilities or other handicaps, and who may require an assistant to help them safely access and take their medicines without accidentally overdosing.
What is needed, therefore, is an improved safety mechanism for medicine bottles.
The drawings and detailed description that follow are intended to be merely illustrative and are not intended to limit the scope of the invention as contemplated by the inventors.
The inventors have conceived of novel technology that, for the purpose of illustration, is disclosed herein as applied in the context of medicine bottle safety mechanisms. While the disclosed applications of the inventors' technology satisfy a long-felt but unmet need in the art of medicine bottle safety mechanisms, it should be understood that the inventors' technology is not limited to being implemented in the precise manners set forth herein, but could be implemented in other manners without undue experimentation by those of ordinary skill in the art in light of this disclosure. Accordingly, the examples set forth herein should be understood as being illustrative only, and should not be treated as limiting.
The bottle insert (10) may be inserted, with the cone (100) leading, into a pill bottle during installation. The widest portion of the cone (100) is directed downwards, into the bottle, and the circumference of that portion will substantially match the circumference of the interior of the bottle, such that when the pill bottle is tipped to dispense a pill the pills are received by the cone (100) and directed towards the hole (106). The hole (106) will have a circumference smaller than that of the interior of the bottle, and will in some implementations be sized depending upon the type of pill contained in the bottle. As an example, for an oblong pill that is about 2 cm long, having a diameter of about 1 cm, the hole (106) may have a diameter of between 1 cm and 2 cm, such that the oblong pill can only dispense one at a time, and may also require some manipulation of the bottle to rearrange pills within so that the oblong pill can enter the hole (106) longitudinally.
While such features of the bottle insert (10) may not completely mitigate the risk of a person defeating other safety features of a medicine bottle and gaining access to the medication therein, it will substantially increase the amount of effort required to dispense each individual pill, and so will serve as a friction deterrent that may prevent, or greatly reduce the number of pills dispensed by a child or other individual before they lose interest. As an example, rather than being able to immediately dump 500 ibuprofen tablets from an opened bottle, a bottle with the pill insert (10) may increase the time and effort required to dispense each individual pill such that only a few may be easily dispensed each minute, and thus may both increase the amount of time and noise created during dispensing, allowing an adult or other guardian to detect what is occurring, and may reduce the number of pills dispensed in the first few minutes after the bottle is accessed from 500 to less than 10.
The structure of the diverters (108, 110) may entirely project from the interior wall (112) of the cone (100), or may pass through an exterior wall (114) and join with the cap portion (102) to form several supports (116), in some implementations. Versions of the bottle insert (20) that include one or more supports (116), which couple the cone (100) to the cap portion (102), and provide additional stability beyond the connection between the circumference of the cone's narrowest point, may be more robust and re-usable than those where the cone (100) is only supported at its narrowest circumference.
It should also be understood that, while
As can be seen in
As an example,
In this manner, each of the (205) and the threaded bottle insert (40) may provide an additional layer of safety by each including safety features that require specific actions such as squeezing, pushing, or pulling while unscrewing the cap (205) from the threaded bottle insert (40), or unscrewing the threaded bottle insert (40) from the bottle (200). The threaded bottle insert (40) may also include a lock feature (208) within the interior threading (206). The lock feature may be, for example, a catch that couples with a groove of the bottle to prevent unscrewing, or may be an adhesive such as a tape, glue, or other material that is activated as a result of the threaded bottle insert (40) being screwed onto the bottle, and permanently couples the insert to the bottle. As one example, the lock feature (208) could be an airtight polymer bubble of chemical adhesive that is crushed, ripped, or otherwise punctured as a result of threading the threaded bottle insert (40) onto the bottle, resulting in the chemical adhesive (e.g., super glue) being released and bonding the internal threading (206) to the engaged bottle threading.
Other features and variations that may be implemented with one or more of the disclosed bottle inserts (10, 20, 30, 40) exist and will be apparent to one of ordinary skill in the art in light of this disclosure. For example, some implementations may include an audible alarm that chirps or beeps, and is activated by motions of the insert related to shaking, manipulating, rotating, and other adjusting the bottle to dispense each pill. Such alarms may activate immediately upon motion above a certain threshold, or may have a configured time threshold to allow 30-60 seconds of shaking to dispense a pill before activating an alarm for continued motion beyond that threshold, which may indicate unsupervised attempts to access the bottle.
It should also be understood that the structure of any of the disclosed bottle inserts (10, 20, 30, 40) may be permanently integrated with a bottle, rather than being inserted and semi-permanently coupled with the bottle. As an example, in some cases a manufacturer of bottles may form the insert and bottle as a single, inseparable component. As another example, a pharmacist or other person at the point of sale for medicines may glue, or may use another device (e.g., a heat gun, an incubator well, or a proprietary device that may receive an insert and pill bottle and transfer sufficient thermal heat) to heat and fuse materials, or activate an adhesive, to permanently seal the insert to the bottle.
It should also be understood that, while the dimensions of the disclosed inserts may be varied and statically produced to provide inserts suitable for common bottle sizes, cap sizes, and pill sizes, the inserts could also include features allowing them to be produced in a single form that may be modified to suit the intended application. As an example, the cap portion (102), the cone (100), the hole (106), or other elements may be manufactured to include cutting guides, breakaway portions, or other modifiable dimensions that may be customized based on the bottle and pill type in a particular situation. More specifically, the flow control portion, shown in
As further examples, the disclosed inserts may advantageously be formed of plastics having different densities and strengths, in order to achieve a desired level of function, robustness, and reusability. Other versions may be made of various metals, or combinations of metal and plastic, to provide increase strength and resistance to tampering. In some cases, the insert may be formed as a single component (e.g., the diverter (108) may be formed into the cone (100) during manufacture, rather than assembled later from multiple components). In some cases, the insert may be produced using an additive manufacturing method, such as a 3D printer (e.g., fused deposition, resin molding) or other additive manufacturing technology. In some implementations, an additive manufacturing device may be used in coordination with a computer aided design software to build a custom insert having a desired overall size for a particular bottle, a desired hole size for a particular pill, and a desired configuration of diverters within the cone (100) to provide a desired level of difficulty in dispensing individual pills. In some cases a pharmacy or other point of sale may have an additive manufacturing device, and may use a software application to ask questions of a customer (e.g., do you have kids, do you take care of a disabled adult, what are their ages, how curious are they, have they ever defeated a safety mechanism on a pill bottle) and submit their responses, and the software may be configured with static rules to automatically generate a design for an appropriate insert, and additively manufacture the insert so that it may be inserted in the bottle at the time of sale.
With reference to
While the pill (320) is shown as an oblong tablet, the profile (e.g., the size, area, or perimeter and shape) of the dispensing area (e.g., the portion of the opening (306) that is not obstructed by the diverters (308, 310) and through which an object may pass) may also be adapted for circular pills. For example, a circular pill typically has 2 circular planes with a flat or slightly beveled edge between. Thus, a dispensing area may be sized (e.g., by varying the size of the opening (306), the shape and curvature of the diverters (308, 310), or both) to only allow a circular pill to pass through the opening (306) with the flat edge leading.
The particular dimensions of any of the pill bottles disclosed herein may be determined automatically by a software application configured to be executed by a processor. The software application may provide a graphical user interface or other user interface that allows a user to identify characteristics of a pill, a bottle, or both. Such an identification selection may be made by, for example, selecting a bottle or pill from a pre-populated list of standard types, or by manually inputting measurements (e.g., bottle opening diameter, pill length, width, and depth) or other characteristics (e.g., pill beveling, bottle cap type). The software application may use such measurements and characteristics to produce the specifications of a corresponding bottle insert whose cap portion, cone portion, bottle catch, and other features are sized to snugly fit within the bottle, and whose diverters and opening are sized to only allow the pill to dispense from the bottle in some but not all possible orientations (e.g., where a pill may have many possible orientations relative to the opening or dispensing area, it may only pass through in a small subset of those orientations, with the orientations at which a pill may not pass being “unaligned orientation” and the orientation at which the pill may pass being “aligned orientations”). Such a software application may be useful for additively manufacturing bottle inserts at a pharmacy or other retail location or at home by a consumer, or may be useful for a large scale manufacturer of pill bottle inserts to produce specifications to match new types of bottles and new types of pills.
It should be understood that any one or more of the teachings, expressions, embodiments, examples, etc. described herein may be combined with any one or more of the other teachings, expressions, embodiments, examples, etc. that are described herein. The following-described teachings, expressions, embodiments, examples, etc. should therefore not be viewed in isolation relative to each other. Various suitable ways in which the teachings herein may be combined will be readily apparent to those of ordinary skill in the art in view of the teachings herein. Such modifications and variations are intended to be included within the scope of the claims.
Having shown and described various embodiments of the present invention, further adaptations of the methods and systems described herein may be accomplished by appropriate modifications by one of ordinary skill in the art without departing from the scope of the present invention. Several of such potential modifications have been mentioned, and others will be apparent to those skilled in the art. For instance, the examples, embodiments, geometrics, materials, dimensions, ratios, steps, and the like discussed above are illustrative and are not required. Accordingly, the scope of the present invention should be considered in terms of the following claims and is understood not to be limited to the details of structure and operation shown and described in the specification and drawings.
This application claims priority to U.S. Provisional Application Ser. No. 62/853,330, filed May 28, 2019, and titled “Medicine Bottle Insert,” the disclosure of which is hereby incorporated by reference in its entirety.
| Number | Date | Country | |
|---|---|---|---|
| 62853330 | May 2019 | US |