Insulin cycle injection card

The design of the periumbilical insulin cycle injection card enables diabetic patients to rotate injection sites rationally, solving the problem of repeated or missed injection areas, and improving insulin absorption and quality of life.

CN224141301UActive Publication Date: 2026-04-21付佳文
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
付佳文
Filing Date
2025-03-22
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

When diabetic patients self-inject insulin at home, it is difficult to accurately identify and rotate injection sites, which can lead to repeated or missed injection areas, affecting insulin absorption and increasing the risk of complications. The lack of systematic guidance on rotation affects treatment effectiveness and quality of life.

Method used

Design a periumbilical insulin cycle injection card, including a positioning disc and a positioning rod. Through a first-time positioning area, a non-injection positioning area, and a second-time positioning area, the injection area can be rotated weekly or daily. Combined with the second-time positioning scale, the specific injection position is ensured. The foldable design and magnetic connection improve convenience and stability.

Benefits of technology

It effectively avoids repeated or missed injection sites, ensures proper rotation of injection sites, improves insulin absorption, reduces the risk of complications, and enhances treatment effectiveness and quality of life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a periumbilicus insulin cycle injection card, and belongs to the technical field of medical auxiliary instruments. Comprising a positioning disc and a positioning rod, and the positioning disc is provided with a first time positioning area, a non-injection positioning area and a second time positioning area; the positioning rod is rotationally connected to the center of the positioning disc, and second time positioning scales are arranged on the positioning rod. The first time positioning area and the second time positioning area are used for conducting weekly or daily alternate positioning on the injection area, and the specific injection position of insulin injection is achieved through the second time positioning scale. According to the insulin injection device, the situation that complications are generated due to the poor insulin absorption effect caused by the fact that an injection area is prone to repetition or omission is effectively avoided, meanwhile, the injection position is changed by rotating the positioning rod, it is guaranteed that nursing personnel and patients can guarantee reasonable alternation of injection positions, and the treatment effect and the life quality of the patients are further improved.
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Description

Technical Field

[0001] This utility model relates to the field of medical auxiliary device technology, and in particular to a periumbilical insulin cycle injection card. Background Technology

[0002] Insulin regulates glucose metabolism, promoting the synthesis of glycogen, fat, and protein. Insulin helps the liver absorb glucose to generate glycogen and reduces glycogen breakdown, allowing most of the sugar from food to be stored in the liver. Insulin secretion fluctuates according to blood glucose levels; when blood glucose is high, more insulin is secreted to lower blood glucose to a normal range. Insulin is primarily used to treat diabetes.

[0003] However, during actual use, the applicant discovered that:

[0004] While the abdomen is the recommended injection site for diabetic patients self-injecting insulin at home due to its high absorption efficiency, accurately locating the optimal injection point remains a challenge in practice. Patients often struggle to accurately identify and rotate injection sites, leading to repeated or missed injections. This not only affects insulin absorption but may also increase the risk of complications such as skin hardening and lipoatrophy. Furthermore, the lack of systematic rotation guidance makes it difficult for both caregivers and patients to ensure proper injection site rotation, thus impacting treatment effectiveness and the patient's quality of life. Therefore, this application provides a periumbilical insulin cycle injection card to address this need. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a periumbilical insulin cycle injection card.

[0006] To solve the above-mentioned technical problems, this utility model provides the following technical solution:

[0007] A periumbilical insulin cycle injection card, comprising:

[0008] The positioning plate is equipped with a first-time positioning area, a non-injection positioning area, and a second-time positioning area.

[0009] The first location area is used for monthly date location, that is, to identify a specific day in the month;

[0010] The non-injection positioning area is used to identify non-injection areas;

[0011] The second time location area is used to locate the day of the week, that is, to identify a specific day of the week;

[0012] A positioning rod is rotatably connected to the center of the positioning disk, and a second time positioning scale is provided on the positioning rod;

[0013] The second time positioning scale is used for positioning the time at each daily stage.

[0014] Optionally, a first time positioning scale is provided in both the first time positioning area and the second time positioning area.

[0015] The first time positioning scale is used for secondary positioning of the time in each daily period;

[0016] Align the positioning rod with the first time positioning scale within the first or second time positioning zone to change the specific injection position, ensuring that the daily injection site is not uneven and affects the effectiveness of insulin.

[0017] Optionally, the positioning rod includes an upper positioning rod and a lower positioning rod located at the bottom of the upper positioning rod;

[0018] A slot is provided at the center of the positioning disk, and a positioning ring is fixed inside the slot;

[0019] A positioning post is fixed to one side of the top of the second time positioning scale. The positioning post is placed inside the slot and in contact with one side of the positioning ring. A positioning buckle is provided on the positioning post. The positioning buckle passes through the slot and connects to the other side of the positioning ring.

[0020] The positioning rod is rotated and fixed on the positioning plate by a positioning buckle, which ensures the convenience of installation and disassembly.

[0021] Optionally, the bottom end of the upper positioning rod is provided with a first storage groove and a second storage groove, and a fixing block is symmetrically provided on one side of the first storage groove;

[0022] The top of the lower positioning rod is respectively provided with a first positioning block and a second positioning block;

[0023] The second positioning block is rotatably connected between the two fixed blocks;

[0024] The first positioning block engages with the first storage slot;

[0025] The foldable design ensures convenience during transportation and storage.

[0026] Optionally, a magnet is fixed to one side of the first positioning block, and an iron sheet is provided inside the second storage groove, with the magnet and the iron sheet being magnetically connected.

[0027] The magnetic attraction between the magnet and the iron sheet ensures the stability between the upper and lower positioning rods.

[0028] Compared with the prior art, this utility model has at least the following beneficial effects:

[0029] By rotating the injection site weekly or daily using the first and second time-positioning zones, and using the second time-positioning scale to pinpoint the specific injection location for insulin, the system effectively avoids complications caused by poor insulin absorption due to repeated or missed injection sites. Furthermore, rotating the positioning rod allows for changes in the injection location, ensuring proper rotation of injection sites for both caregivers and patients, further improving treatment efficacy and patients' quality of life. Attached Figure Description

[0030] The accompanying drawings, which are incorporated herein and form part of the specification, illustrate embodiments of the present invention and, together with the specification, further serve to explain the principles of the present invention and enable those skilled in the art to implement and use the present invention.

[0031] Figure 1 A schematic diagram of the three-dimensional structure of a periumbilical insulin cycle injection card;

[0032] Figure 2 This is a schematic diagram of the three-dimensional structure on the back.

[0033] Figure 3 This is a diagram illustrating the folding and storage of the positioning rod;

[0034] Figure 4 This is a schematic diagram of the upper positioning rod.

[0035] Figure 5 This is a schematic diagram of the lower positioning rod.

[0036] Figure 6 A schematic diagram of a positioning disc and positioning rod with text instructions;

[0037] Figure 7 A schematic diagram of a positioning disc with text instructions.

[0038] [Figure Labels]

[0039] 1. Positioning plate; 101. First time positioning area; 102. Non-injection positioning area; 103. Second time positioning area; 104. Groove; 105. Positioning ring; 106. First time positioning scale;

[0040] 2. Positioning rod; 21. Second time positioning scale; 22. Upper positioning rod; 221. Positioning post; 222. Positioning buckle; 223. First storage slot; 224. Second storage slot; 225. Fixing block; 23. Lower positioning rod; 231. First positioning block; 232. Second positioning block; 233. Magnet.

[0041] As shown in the figure, specific structures and devices are marked in the figure to clearly illustrate the structure of the embodiment of this utility model. However, this is only for illustrative purposes and is not intended to limit this utility model to this specific structure, device and environment. Those skilled in the art can adjust or modify these devices and environments according to specific needs. Detailed Implementation

[0042] The following is a detailed description of a periumbilical insulin cycle injection card provided by this utility model, with reference to the accompanying drawings and specific embodiments. It should be noted that, to make the embodiments more detailed, the following embodiments are the best and preferred embodiments; those skilled in the art can also use other alternative methods to implement some known technologies; and the accompanying drawings are only for more specific description of the embodiments and are not intended to specifically limit this utility model.

[0043] It should be noted that the use of terms such as "an embodiment," "an embodiment," "an exemplary embodiment," and "some embodiments" in the specification indicates that the described embodiment may include a specific feature, structure, or characteristic, but not every embodiment necessarily includes that specific feature, structure, or characteristic. Furthermore, when a specific feature, structure, or characteristic is described in connection with an embodiment, implementing such a feature, structure, or characteristic in conjunction with other embodiments (whether explicitly described or not) should be within the knowledge of those skilled in the art.

[0044] Generally, terms can be understood at least partly from their use in context. For example, depending at least partly on the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in a singular sense, or a combination of features, structures, or characteristics in a plural sense. Additionally, the term "based on" can be understood not necessarily to convey an exclusive set of factors, but rather, alternatively, depending at least partly on the context, to allow for the presence of other factors that are not necessarily explicitly described.

[0045] It is understood that the meanings of “on”, “above”, and “above” in this utility model should be interpreted in the broadest manner, such that “on” not only means “directly on” something, but also includes the meaning of being “on” something with an intervening feature or layer, and that “above” or “above” not only means “on” something, but also includes the meaning of being “on” something without an intervening feature or layer.

[0046] Furthermore, spatially related terms such as “below,” “under,” “lower,” “above,” and “upper” are used herein for convenience to describe the relationship of one element or feature to one or more other elements or features, as illustrated in the accompanying drawings. Spatially related terms are intended to cover different orientations in the use or operation of the device other than those depicted in the accompanying drawings. The device may be oriented in other ways, and the spatially related descriptive terms used herein can be interpreted similarly.

[0047] like Figure 1 , Figure 6 and Figure 7 As shown, an embodiment of this utility model provides a periumbilical insulin cycle injection card, including a positioning disk 1 and a positioning rod 2. Both the positioning disk 1 and the positioning rod 2 are made of acrylic. One side of the positioning disk 1 is respectively provided with a first time positioning area 101, a non-injection positioning area 102, and a second time positioning area 103. There are 31 first time positioning areas 101, which are arranged in a ring and can be distinguished by numbers, symbols, or colors. The 31 first time positioning areas 101 correspond to the dates in the month. Numbered 1-31, there are two non-injection positioning areas 102 symmetrically arranged between the 31 first time positioning areas 101 to mark and locate the non-injection area (rectus abdominis muscle). The second time positioning area 103 consists of 7 parts arranged in a circle, and all 7 second time positioning areas 103 are located inside the first time positioning area 101. The 7 second time positioning areas 103 correspond to the marking and positioning of the day of the week, and are marked as a certain day from Monday to Sunday of a week. Different dates can be distinguished by numbers, symbols or colors.

[0048] The first time positioning area 101, the non-injection positioning area 102, and the second time positioning area 103 are all located on the same plane and can be set by engraving on paper (adhesive) or directly engraving on one side of the positioning disk 1.

[0049] The positioning rod 2 is rotatably connected (by screws or a rotating positioning mechanism) at the center of the positioning plate 1. The injection area is changed by rotating the positioning rod 2. The positioning rod 2 is provided with a second time positioning scale 21. The second time positioning scale 21 has 4 or more, which correspond to the morning, noon, evening and night injection times or extra injection times and specific injection locations.

[0050] Align the center of the positioning disc 1 with the user's navel, align the non-injection positioning area 102 with the user's rectus abdominis muscle, rotate the positioning rod 2 to place it in an approximate position within the first time positioning area 101 or the non-injection positioning area 102 (users who have received four or more injections need to differentiate between the first time positioning area 101 and the non-injection positioning area 102). Align the insulin syringe with the second time positioning scale 21 and press to inject (users who have received four or more injections need to choose different markings on the second time positioning scale 21 for injection, which can be divided into morning, noon, night, and sleep times).

[0051] The injection area is rotated weekly or daily by forming a circular card-like positioning system with the first time positioning area 101 and the second time positioning area 103. The specific injection location of insulin is determined by the second time positioning scale 21. This effectively avoids complications caused by poor insulin absorption due to repeated or missed injection areas. At the same time, the injection position can be changed by rotating the positioning rod 2, ensuring that nursing staff and patients can ensure reasonable rotation of injection sites, further improving treatment effectiveness and patients' quality of life.

[0052] The above also presents the problem of difficulty in accurately determining whether there is repetition when the daily injection volume reaches 4 times or more, particularly when segmenting the first time positioning area 101 and the second time positioning area 103. Figure 1 , Figure 6 and Figure 7 As shown, both the first time positioning area 101 and the second time positioning area 103 are provided with first time positioning scales 106. The first time positioning scales 106 can be engraved in the first time positioning area 101 and the second time positioning area 103, and the number of first time positioning scales 106 is not less than 4. When the injection volume reaches 4 times or more, the specific injection position can be changed by rotating the positioning rod 2 to align the positioning rod 2 with the first time positioning scales 106 in the first time positioning area 101 or the second time positioning area 103, so as to ensure that the daily injection site does not become uneven and affect the effect of insulin.

[0053] When using a rotational positioning mechanism, it can be specifically achieved through methods such as... Figure 2As shown, the positioning rod 2 includes an upper positioning rod 22 and a lower positioning rod 23 located at the bottom of the upper positioning rod 22. The lower positioning rod 23 at the bottom of the positioning rod 22 is foldably connected. A circular slot 104 is opened at the center of the positioning disk 1. A positioning ring 105 is fixed in the middle of the slot 104. A positioning post 221 is fixed on one side of the top of the second time positioning scale 21. The positioning post 221 can be fixed by thread, insertion or direct fixation to the side of the second time positioning scale 21. The positioning post 221 is placed inside the slot 104 and contacts one side of the positioning ring 105. A positioning buckle 222 is provided on the positioning post 221. The positioning buckle 222 is made of elastic material (thin iron or plastic). The positioning buckle 222 passes through the slot 104 and connects to the other side of the positioning ring 105.

[0054] Specifically, the positioning pin 221 on the upper positioning rod 22 is aligned with one side of the positioning plate 1 and inserted into the slot 104. When the positioning pin 221 reaches the outer side of the positioning ring 105, it stops. At the same time, the positioning buckle 222 retracts inward under the pressure of the inner wall of the positioning ring 105. When the positioning buckle 222 passes through the positioning ring 105, the top of the elastic positioning buckle 222 is locked on the inner side of the positioning ring 105 to fix it and prevent the positioning plate 1 from falling off. The positioning pin 221 is not directly fixed to the slot 104 and the positioning ring 105, nor is the positioning buckle 222 directly fixed to the positioning ring 105. They are connected in a movable manner, which ensures that the positioning rod 2 can rotate on the positioning plate 1 while being fixed. The positioning rod 2 is rotated and fixed on the positioning plate 1 by the positioning buckle 222, which ensures the convenience of installation and disassembly.

[0055] The foldable connection between the bottom of positioning rod 22 and the lower positioning rod 23 is as follows: Figure 2-5 As shown, the bottom end of the upper positioning rod 22 is provided with a first storage groove 223 and a second storage groove 224. A fixing block 225 is symmetrically provided on one side of the first storage groove 223. The top end of the lower positioning rod 23 is provided with a first positioning block 231 and a second positioning block 232 respectively. The second positioning block 232 is rotatably connected between the two fixing blocks 225 through a rotating shaft. The first positioning block 231 is engaged with the first storage groove 223.

[0056] Specifically:

[0057] When the positioning rod 2 is folded and stored, the upper positioning rod 22 or the lower positioning rod 23 is rotated. At this time, the first positioning block 231 is disengaged from the second storage slot 224 due to the rotation. The second positioning block 232 at the top of the lower positioning rod 23 rotates between the two fixed blocks 225, thereby folding and storing the upper positioning rod 22 and the lower positioning rod 23. The opening of the first storage slot 223 ensures that the second positioning block 232 will not get stuck with the upper positioning rod 22 when it rotates, thus ensuring the movement path of the second positioning block 232.

[0058] When the positioning rod 2 is unfolded, rotate the upper positioning rod 22 or the lower positioning rod 23. When the upper positioning rod 22 or the lower positioning rod 23 is rotated to be parallel, the first positioning block 231 is engaged inside the second storage groove 224, thus forming a parallel state for easy use.

[0059] The foldable design ensures convenience during transportation and storage.

[0060] Furthermore, such as Figure 3-5 As shown, a magnet 233 is fixed on one side of the first positioning block 231, and an iron sheet is provided inside the second storage groove 224. The magnet 233 is magnetically connected to the iron sheet. The magnetic connection between the magnet 233 and the iron sheet ensures the stability between the upper positioning rod 22 and the lower positioning rod 23.

[0061] The working principle provided by this utility model is as follows: When in use, the center of the positioning disc 1 is aligned with the user's navel, the non-injection positioning area 102 is aligned with the user's rectus abdominis muscle, and the positioning rod 2 is rotated to place the positioning rod 2 in an approximate position within the first time positioning area 101 or the non-injection positioning area 102 (users who have injected four or more times need to distinguish between the first time positioning area 101 and the non-injection positioning area 102). The insulin syringe is aligned with the second time positioning scale 21 and pressed to inject (users who have injected four or more times need to choose different markings on the second time positioning scale 21 for injection, which can be divided into morning, noon, night, and sleep times).

[0062] This utility model encompasses any substitutions, modifications, equivalent methods, and solutions made within the spirit and scope of this utility model. To provide the public with a thorough understanding of this utility model, specific details are described in detail in the following preferred embodiments; however, those skilled in the art will fully understand this utility model even without these detailed descriptions. Furthermore, to avoid unnecessary confusion regarding the essence of this utility model, well-known methods, processes, procedures, components, and circuits are not described in detail.

[0063] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A peri-navel insulin cycle injection card, characterized in that, include: Positioning disk (1), the positioning disk (1) is provided with a first time positioning area (101), a non-injection positioning area (102) and a second time positioning area (103); The first time location area (101) is used for monthly date location, that is, to identify a certain day in the month; The non-injection positioning area (102) is used to identify the non-injection area; The second time positioning area (103) is used for positioning the day of the week, that is, to identify a certain day of the week; The positioning rod (2) is rotatably connected to the center of the positioning disk (1), and the positioning rod (2) is provided with a second time positioning scale (21); The second time positioning scale (21) is used for positioning the time of each daily period.

2. The periumbilical insulin cycle injection card according to claim 1, wherein, The first time positioning area (101) and the second time positioning area (103) are both provided with a first time positioning scale (106); The first time positioning scale (106) is used for secondary positioning of the daily time period.

3. The peri-navel insulin cycle injection card according to claim 1, wherein, The positioning rod (2) includes an upper positioning rod (22) and a lower positioning rod (23) located at the bottom of the upper positioning rod (22); A slot (104) is provided at the center of the positioning disk (1), and a positioning ring (105) is fixed inside the slot (104); A positioning post (221) is fixed on one side of the top of the second time positioning scale (21). The positioning post (221) is placed inside the slot (104) and is in contact with one side of the positioning ring (105). A positioning buckle (222) is provided on the positioning post (221). The positioning buckle (222) passes through the slot (104) and is connected to the other side of the positioning ring (105).