EYE DROP DISPENSEMENT AID
20180221203 ยท 2018-08-09
Inventors
Cpc classification
A61F9/0026
HUMAN NECESSITIES
International classification
Abstract
An aid for dispensing eye drops to improve adherence. The aid, which may be integrated into an eye drop bottle (10) or be separately attached, aligns the eye drop container to better dispense eye drops, while resting the engagement surface (55) of an alignment structure (50) upon the bridge of a user's nose (80), supporting the eye drop container and not intruding upon the temporal half of the field of view of the user's eye.
Claims
1. An eye drop container comprising: an opening structure containing an opening for dispensing eye drops; an alignment structure to aid positioning, when positioned to apply eye drops to a user's eye, of an opening of the eye drop container relative to the user's eye; the alignment structure comprising an engagement surface; wherein, when positioned to apply eye drops to a user's eye, the only contact between the eye drop container and the user's face is between the engagement surface and the bridge of the user's nose; and wherein the body of the eye drop container does not extend into the temporal half of the field-of-view of the user's eye, when positioned to apply eye drops to the user's eye.
2. The eye drop container of claim 1, wherein the primary axis of the eye drop container, when positioned to apply eye drops to the user's eye, is rotated medially from the line of sight of the user's directly forward-looking eye.
3. The eye drop container of claim 2 wherein the weight of the eye drop container, its contents and the holder are, when positioned to apply eye drops to a user's eye, are predominately supported upon the bridge of the user's nose.
4. The eye drop container of claim 1 further comprising, a use detector to detect use of the eye drops by the user.
5. The eye drop container of claim 4, wherein the use detector comprises a sensor to detect at least one of the removal or attachment of an eye drop container cap.
6. The eye drop container of claim 4, wherein the use detector comprises a sensor to detect the squeezing of the eye drop container.
7. The eye drop container of claim 4, further comprising electronics to wirelessly communicate information from the use detector.
8. The eye drop container of claim 4, wherein the use detector comprises a sensor to detect the flow of eye drop compound from the opening structure of the eye drop container.
9. An alignment aid for an eye drop container comprising: an alignment structure to aid positioning, when positioned to apply eye drops to a user's eye, of an opening of the eye drop container relative to the user's eye; wherein the alignment structure comprises an engagement surface; wherein the alignment aid grips the exterior of the eye drop container; wherein the alignment aid is held, when positioned to apply eye drops to a user's eye, in a fixed position relative to the eye drop container by friction; wherein, when applying eye drops to the user's eye, no contact is made between the eye drops and the alignment aid; wherein, when in use, the only contact between the engagement surface and the user's face is between the alignment structure and the bridge of the user's nose; and wherein the body of the eye drop container does not extend into the temporal half of the field-of-view of the user's eye, when positioned to apply eye drops to the user's eye.
10. The alignment aid of claim 9, wherein the alignment aid at least partially encircles the eye drop container.
11. The alignment aid of claim 10, wherein the alignment aid further comprises a sheath engaging the exterior of the eye drop container;
12. The alignment aid of claim 10, wherein the alignment aid further comprises a gripping mechanism that grips the exterior of the eye drop container.
13. The alignment aid of claim 12, wherein the gripping mechanism is a spring clamp.
14. The alignment aid of claim 12, wherein the gripping mechanism is a circumferential retention tension element.
15. The alignment aid of claim 12, wherein the gripping mechanism comprises a compression element that provides compression pressure against the eye drop container.
16. The alignment aid of claim 10 further comprising, a use detector to detect use of the eye drops by the user.
17. The alignment aid of claim 16, wherein the use detector comprises a sensor to detect at least one of the removal or attachment of an eye drop container cap.
18. The alignment aid of claim 16, wherein the use detector comprises a sensor to detect the squeezing of the eye drop container.
19. The alignment aid of claim 16, further comprising electronics to wirelessly communicate information from the use detector.
20. The alignment aid of claim 16 wherein the use detector comprises a sensor to detect the flow of eye drop compound from an opening in the eye drop container.
21. A method for dispensing eye drops from an eye drop container comprising the steps of: placing an engagement surface of an alignment aid against the bridge of a user's nose; rotating the eye drop container about the engagement surface to align the opening of the eye drop container in a desired position relative to the user's eye; engaging the eye drop container to cause some amount of an eye drop compound to exit from the eye drop container via the opening in the eye drop container and enter into the user's eye without making further contact with the alignment aid; wherein the only contact between the alignment aid and the user's face is between the engagement surface and the bridge of the user's nose; and wherein the body of the eye drop container does not extend into the temporal half of the field-of-view of the user's eye, when positioned to apply eye drops to the user's eye.
22. The method of claim 21, further comprising the step of: detecting, via a use detector, use of the eye drop container to dispense the eye drop compound.
23. The method of claim 22, wherein the use detector detects at least one of the removal or replacement of a cap of the eye drop container.
24. The method of claim 22, wherein the use detector, senses a deformation of the eye drop container to cause some amount of an eye drop compound to exit from the eye drop container.
25. The method of claim 22, wherein the use detector comprises a sensor to detect the flow of eye drop compound from an opening in the eye drop container.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] The features, aspects and advantages of the present invention will become better understood with regard to the following description, appended claims and accompanying figures wherein:
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
DETAILED DESCRIPTION
[0014] In the following description of the preferred embodiments, reference is made to the accompanying drawings which show by way of illustration specific embodiments in which the invention may be practiced. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like parts. It is to be understood that other embodiments may be utilized and structural and functional changes may be made without departing from the scope of the present invention. It is to be understood that as used herein, the directional term medial means toward the line of symmetry of the human body and the directional term lateral means away from the line of symmetry of the human body. Similarly when referring to the field of view of an eye, the nasal field of view extends medially from a vertical plane aligned with the directly forward looking line of sight of the eye and the temporal field of view extends laterally from the same vertical plane.
[0015] A number of conditions, including glaucoma, allergies, and dryness may be treated by the use of eye drops. Eye drops may contain steroids, antihistamines, antibiotics. prostaglandin analogs, beta blockers, alpha agonists, carbonic anhydrase inhibitors, or other drugs. Additionally, eye drops may be used to lubricate the eye or replace tears. In order for the treatment with eye drops to be effective, good adherence to treatment, i.e., remembering to use the eye drops and getting sufficient amount of the eye drop into they eye, is needed.
[0016] Approximately 45% of glaucoma patients demonstrate poor ability to remember to use their eye drops (defined as using less than 75% of expected eye drop doses) and about 30% of glaucoma patients miss the eye while administering the eye drops. Poor adherence increases the risk of blindness in patients with glaucoma. In addition to glaucoma treatment, medication adherence affects all eye diseases treated with topical drops, whether antibiotics for a conical ulcer or steroids for uveitis.
[0017] Successfully administering eye drops presents many challenges including dexterity difficulties, complex spatial orientation, and patient fear. Successfully administering an eye drop requires that the bottle tip remain in precise position over the globe without contacting the ocular surface while applying force to the bottle. This complex task is a challenge for all patients, especially the elderly and those with a tremor or arthritis. Patients are often fearful of contact with the eyes, which can make drop instillation more difficult.
[0018] Because of these issues, researchers and eye care providers have had difficulty developing a suitable device to improve the success rate of instilling eye drops. Prior devices have included large, clunky, awkward, and/or unstable aspects that fit over the entire globe or touch the eyelids or orbital rim or eyebrow or are prone to movement around the eye. Devices that touch periocular tissues and are visible over the eye can intimidate patients and limit adoption.
[0019] The invention provides for a secure, stable, easily manipulated, eye drop delivery device which does not block or impede upon the temporal field-of-view of the user's eye, when the user is applying eye drops.
[0020] The use of the bottle 10 is illustrated in
[0021] Fear or anxiety regarding the application of eye drops can result in lack of cooperation in the application of eye drops and directly affect the efficacy of treatment, especially in children. See Sujuan, Jane Lim, et al., The psychological impact of eye drops administration in children, Journal of the AAPOS, Vol. 19, No. 4, August 2015, pp. 338-343. Decreasing or ameliorating this anxiety by avoiding intrusions into the temporal half of the field of view or along the forward line of sight of the user's eye provides significant benefit.
[0022] In the United States, the Food and Drug Administration regulates packaging for medical eye drops. See, e.g., Container Closure Systems for Packaging Human Drugs and Biologics, Chemistry Manufacturing, and Controls Documentation, U.S. Dept. of Health and Human Services, Food and Drug Administration, May 1999. The present invention, when embodied in an eye drop bottle would be able to meet any suitability requirements, including those relating to protection, safety, compatibility, and performance, as well as quality control and stability requirements. Additionally, any bottle would need to be approved by the FDA for the specific medication it will contain because of concerns regarding sterility, drop quantity, and drop volume. It would be clear to a person of ordinary skill in the art that specific changes to the materials used in the manufacture, adoption of specific dimensions and features for the tip and any cap affixed to the tip for sealing the bottle can be made in the implementation of a bottle in accord with the invention.
[0023]
[0024] The use of the holder 110 is illustrated in
[0025] An embodiment of a holder 110 in the form of a ring is illustrated in
[0026] An embodiment of a holder 110 that uses a clasping structure 150 to affix securely to a standard pre-existing single or multi-use ophthalmic drop container (not shown) is illustrated in
[0027] A further feature of the present invention is the ability to incorporate an adherence auditing mechanism which can detect when the ophthalmic eye drop are being administered, and optionally, in what amount. This mechanism can take the form of electronics which is contained within the invention, optionally, within the alignment structure 50, which can detect when an eye drop is being administered, track and share adherence data, and alert when an eye drop medication is due.
[0028] Although there are several oral pill bottle devices with excellent adherence monitoring mechanisms, such as the AdhereTech, Vitality GlowCap, and SMRxT devices, similar devices for eye drop bottles are not currently available. Eye drop bottles present additional challenges because each unique eye drop bottle requires an FDA-approved closure. Further, current eye drop bottles do not include the physical space or intrinsic capacity for an adherence monitoring mechanism. The only eye drop monitor currently available on the market is the Travatan Dosing Aid, a large, bulky device which fits only one brand of eye drop and requires pressing on a physical lever to measure adherence. The alignment structure 50 permits room for electronics in both the holder 110 and bottle 20, and the adjacent positioning of the eye drop bottle 10 cap to the electronics 50 can permit a mechanical or non-mechanical counting mechanism while still permitting a watertight FDA approved closure.
[0029] It is would be obvious to one of ordinary skill in the art that there are numerous ways to identify and detect administration. These include monitoring, via optical, mechanical, electronic or magnetic sensors, when the cap is removed from and/or attached to the bottle 10 or the pre-existing multi-use eye drop container 140, or when an eye drop exits the bottle tip 30 or passes by a sensor. This may also include sensors to detect when the bottle 10 or pre-existing multi-use eye drop container is squeezed to dispense eye drops. Accuracy of such detection may be improved by position sensors which can confirm the orientation of the bottle or pre-exiting ophthalmic eye drop container. The adherence auditing mechanism may also include recording the date, time, and duration, of use and may include communications capabilities such as through Wi-Fi, Bluetooth, or other wireless communications protocols to communicate the monitoring data to other devices. These devices and methods for identifying and detecting administration would generally be applicable whether the invention is implemented as an eye drop bottle 10 with an alignment structure 50 or as a holder 110 for use with a pre-existing ophthalmic drop container.
[0030] There is disclosed in the above description and the drawings, an eye drop bottle and holder system with an alignment structure that fully and effectively overcomes the disadvantages associated with the prior art. However, it will be apparent that variations and modifications of the disclosed embodiments may be made without departing from the principles of the invention. The presentation of the preferred embodiments herein is offered by way of example only and not limitation, with a true scope and spirit of the invention being indicated by the following claims.
[0031] Any element in a claim that does not explicitly state means for performing a specified function or step for performing a specified function, should not be interpreted as a means or step clause as specified in 35 U.S.C. 112.