Insulin pump for endocrine therapy

The installation package structure with a sliding strap and lightweight polyethylene material solves the problem of inconvenient position adjustment of insulin pumps in obese patients, achieving convenient adjustment and stability, and reducing the risk of damage.

CN223464302UActive Publication Date: 2025-10-24惠州市第六人民医院
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Patent Information

Application Number
CN202421779423.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-10-24
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

When used in obese patients, existing insulin pumps are inconvenient to adjust in position and can easily press on the patient, causing discomfort and increasing the probability of damage to the insulin pump.

Method used

The installation package features a strap-sliding design, with a combination of sliding straps and tracks, hooks and loops or straps for secure fastening, allowing for easy adjustment of the package. Lightweight polyethylene material is used to protect the insulin pump body.

Benefits of technology

It enables convenient position adjustment, reduces the risk of damage to the insulin pump, improves stability and practicality, and adapts to the needs of patients of different body types.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an insulin pump for endocrine therapy, which comprises a bridle, the bridle is provided with an installation bag in a sliding manner, an insulin pump body is arranged in the installation bag, the bridle is also provided with a sliding belt, two ends of the sliding belt are fixedly connected with the bridle, the sliding belt is arranged in the installation bag in a penetrating manner, and the installation bag is provided with an insulin pump body. The installation bag is matched with the sliding belt in a sliding mode in the length direction of the sliding belt, and the binding belt is further provided with a fixing assembly used for fixing the binding belt to the body of a patient. The insulin pump has the advantages of being convenient to adjust the position of the insulin pump body and high in practicability.
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Description

TECHNICAL FIELD

[0001] The utility model relates to medical supplies technical field especially, relate to a insulin pump for endocrine therapy. BACKGROUND

[0002] Endocrine therapy refers to the treatment of endocrine system diseases, through the specific hormone supplement body hormone level deficiency or use hormone to inhibit the corresponding target organ. Among them, diabetes is a disease caused by absolute or relative insulin secretion deficiency. In the treatment of diabetes, insulin pump is usually used, and the insulin is continuously injected into the patient's subcutaneous through the cannula on the insulin pump, so that the blood glucose is stable all day, so as to achieve the purpose of controlling diabetes.

[0003] Because the injection of insulin is more frequent, the patient using the insulin pump needs to carry the insulin pump for a long time, so the technical personnel develops a more portable insulin pump, for example, the utility model disclosed in authorization publication No. CN214911718U relates to a diabetes insulin pump, which comprises a fixed plate and an insulin pump arranged on the fixed plate, and the two sides of the fixed plate are hingedly connected with a first connecting belt and a second connecting belt, the first connecting belt is provided with a main magic tape, and the second connecting belt is provided with a secondary magic tape. When using, the insulin pump is placed on the fixed plate, the first connecting belt and the second connecting belt are wound around the waist of the patient, and the main magic tape and the secondary magic tape are adhered to each other to fix, so as to facilitate the patient to carry.

[0004] However, diabetes is high in obese people, especially the incidence of type 2 diabetes is closely related to obesity, and when the patient uses the related technology, the fixed plate and the insulin pump are easy to press the patient when the patient bends over or does other actions, causing the patient to be uncomfortable, especially the obese patients, the position usually needs to be readjusted, so that the adjustment is more inconvenient, and the probability of damage of the insulin body is also increased. UTILITY MODEL CONTENT

[0005] In order to improve the problem that the position of the existing insulin pump is inconvenient to adjust, the utility model provides an insulin pump for endocrine therapy, which is beneficial to reduce the probability of damage of the insulin, convenient to adjust the position of the insulin pump body and high in practicality.

[0006] The utility model provides an insulin pump for endocrine therapy, which adopts the following technical scheme:

[0007] An insulin pump for endocrine therapy, comprising a belt, wherein the belt is slidably provided with a mounting bag, the mounting bag is provided with an insulin pump body, the belt is further provided with a sliding belt, the two ends of the sliding belt are fixedly connected with the belt, the sliding belt is provided in the mounting bag, the mounting bag is slidably matched with the sliding belt along the length direction of the sliding belt, and the belt is further provided with a fixing assembly for fixing the belt on the patient.

[0008] By the above technical scheme, when wearing the belt, the belt is fixed on the patient by the fixing assembly. When in use, the patient is injected with insulin by the insulin pump body. When the patient needs to adjust the position of the installation bag, the installation bag is driven to slide along the length direction of the belt, so that the position of the installation bag can be conveniently adjusted without the need of re-wearing, which prevents the patient from being affected in movement and also prevents the patient from being pressed against the insulin pump body, thereby reducing the risk of damage of the insulin pump body.

[0009] Preferably, the installation bag is made of a material that is light and has a certain structural strength, and the installation bag comprises an installation bag made of a polyethylene material.

[0010] By the above technical scheme, polyethylene is a light plastic, which is conducive to reducing the overall weight and reducing the weight of the patient; polyethylene also has high durability and strength, which can provide sufficient protection for the insulin pump to prevent the insulin pump from being damaged due to being pressed or collided during use; polyethylene also has good chemical stability, which is conducive to isolating the drugs or disinfectants contacted during treatment; polyethylene has good waterproof performance, which is conducive to preventing water penetration; polyethylene production technology is mature and the cost is low, which is conducive to mass production.

[0011] Preferably, the insulin pump body comprises a drug delivery unit for storing and delivering drugs, a control panel for controlling the drug delivery unit to deliver, a battery for providing electric energy, and a medical needle tube with a needle, the drug delivery unit can be quickly plugged and replaced, and the medical needle tube is connected with the output end of the drug delivery unit when the drug delivery unit is inserted.

[0012] By the above technical scheme, when in use, the needle of the medical needle tube is inserted into the patient's subcutaneous tissue, electric energy is provided by the battery, the drug delivery unit is controlled by operating the control panel to deliver drugs to the medical needle tube, so that the drugs are delivered to the patient's body through the medical needle tube, and the insulin injection work is completed.

[0013] Preferably, the installation bag is provided with a containing cavity for containing the insulin pump body, the containing cavity comprises a main cavity unit and a secondary cavity unit, the drug delivery unit, the control panel and the battery are arranged in the main cavity unit, the medical needle tube is wound in the secondary cavity unit, one end of the medical needle tube away from the needle is inserted into the main cavity unit and connected with the drug delivery unit, the installation bag is provided with a needle tube outlet in communication with the secondary cavity unit, and one end of the medical needle tube close to the needle is extended out of the needle tube outlet.

[0014] Through the technical scheme, the medical needle tube can be conveniently used, the needle head is extended into the patient's subcutaneous tissue, the medical needle tube is separated from the medicine delivery unit, the control panel and the battery through the main cavity unit and the auxiliary cavity unit, and the wound medical needle tube prevents the normal use of the medicine delivery unit, the control panel or the battery.

[0015] Preferably, an anti-skid pad is further arranged around the inside of the needle tube outlet, the anti-skid pad is sleeved on the medical needle tube, the anti-skid pad is integrally formed with a convex point, and the anti-skid pad and the convex point are made of silica gel.

[0016] Through the technical scheme, the silica gel material has surface adhesion and can appropriately increase the friction, prevents the medical needle tube from being excessively unwound or wound, and simultaneously, the silica gel material has softness and elasticity and can prevent the medical needle tube from being damaged. The anti-skid pad and the convex point made of silica gel can effectively increase the friction, the installation bag is slid when the installation bag is adjusted, the medical needle tube is driven to be unwound or wound, the needle head is prevented from falling off, and the anti-skid pad and the convex point fix the medical needle tube at the unwound or wound position, so that the medical needle tube is prevented from being excessively unwound or difficult to be wound.

[0017] Preferably, the installation bag is provided with a delivery port communicated with the main cavity unit, a delivery cover is hingedly connected to the installation bag, the delivery cover covers the delivery port, the delivery cover is connected to the installation bag through buckling, the installation bag is further provided with a battery inlet and outlet communicated with the main cavity unit, a battery cover is hingedly connected to the installation bag, the battery cover covers the battery inlet and outlet, and the battery cover is also connected to the installation bag through buckling.

[0018] Through the technical scheme, when the medicine is supplemented, the medicine delivery unit is pulled out and the medicine is supplemented, the medicine delivery unit is inserted into the delivery port after the supplement is completed, and the delivery cover is buckled. When the battery is replaced, the battery is taken out, a new battery is inserted into the battery, and the battery cover is buckled. Therefore, the medicine is conveniently supplemented and the battery is conveniently replaced.

[0019] Preferably, a slide is formed in one side wall of the installation bag facing the belt, a plurality of friction angles are formed between the slide and the slide belt, the slide belt passes through the slide, and the slide belt is slidably fitted in the slide.

[0020] Through the technical scheme, the installation bag is driven to move along the length direction of the slide belt, the slide belt slides along the slide, the position of the installation bag is adjusted, and the existence of the friction angles indicates that the slide belt will be subjected to a certain friction when moving on the slide, so that the installation bag is prevented from sliding after being adjusted to the appropriate position.

[0021] Preferably, the fixing assembly includes a hook and a hook ring provided on the strap, the hook and the hook ring are engaged with each other, the hook is close to one end of the strap, the hook ring and the hook are on the same side of the strap, and the hook ring is away from the hook.

[0022] According to the above technical solution, when the patient wears the strap, the strap is wrapped around the patient, and the hook is inserted into the hook ring so that the hook and the hook ring are fastened to each other, so that the strap is stably fixed on the patient to prevent it from falling off.

[0023] Preferably, there are multiple hooks, and the multiple hooks are evenly spaced along the width direction of the strap. There are multiple groups of hooks, and a single group of hooks is provided with multiple hooks corresponding to the number of hooks. The multiple hooks are correspondingly engaged with the multiple hooks in the single group, and the multiple groups of hooks are evenly spaced along the length direction of the strap.

[0024] With the above technical solution, when the strap is worn, the multiple hooks are snapped into place with the multiple hook loops within a single set, making the strap more securely fixed to the patient and preventing it from falling off and damaging the insulin cartridge. Multiple sets of hook loops allow the strap to be fitted with hooks at the appropriate length according to the patient's needs, improving both wearing stability and overall practicality.

[0025] Preferably, the fixing assembly includes a strap, and the strap surface is provided with perforations, the perforations pass through the strap, and there are two groups of perforations, the two groups of perforations are respectively close to the two ends of the strap, and a single group of perforations is provided with multiple perforations, and the multiple perforations are evenly spaced along the width direction of the strap, and the strap passes through the two groups of perforations alternately in sequence.

[0026] Through the above technical solution, when wearing the strap, put the strap on the patient, tighten the strap, make the strap fit the patient's body, and tie the strap to facilitate better adjustment of the tightness and adapt to the patient's body shape, thereby improving the wearing stability and overall practicality, preventing it from falling off and damaging the insulin body.

[0027] Compared with the prior art, the present invention has the following beneficial effects:

[0028] 1. When wearing the strap, the hooks are fastened one-to-one with the hooks and loops in a single set, which helps to fix the strap more stably on the patient and prevent it from falling off. By using multiple sets of hooks and loops, the hooks can be fastened to a set of hooks at the appropriate length according to the patient's needs, which is conducive to adapting to patients of different weights and improves the stability of wearing and overall practicality.

[0029] 2, in use, by the needle of medical needle tube is inserted into the patient subcutaneously, by the battery provides the electric energy, by the operation control panel, the drug delivery unit is transported to the medical needle tube, thereby the drug is transported to the patient body through the medical needle tube;

[0030] 3, when the patient needs to adjust the installation bag position, by driving the installation bag to slide along the length direction of the slide belt, the slide belt slides along the slide, and the medical needle tube is driven to unroll or wind through the through hole, without re-wearing, the position of the installation bag can be conveniently adjusted, the patient's action is prevented from being affected, and the patient and the insulin pump body are prevented from being extruded. BRIEF DESCRIPTION OF DRAWINGS

[0031] In order to more clearly illustrate the technical scheme of the embodiment of the present application, the drawings needed in the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0032] Figure 1 It is the overall structure schematic view of the embodiment of the present application.

[0033] Figure 2 It is the sectional view of the installation bag in the embodiment of the present application.

[0034] Figure 3 It is the schematic view of the delivery port and the battery access port in the embodiment of the present application.

[0035] Figure 4 It is the sectional view of the belt and the installation bag in the embodiment of the present application.

[0036] Figure 5 It is Figure 4 The enlarged view of A in the figure.

[0037] Figure 6 It is the use state schematic view of the belt in the embodiment of the present application.

[0038] Among them, the part number explanation is:

[0039] 1, the belt; 2, the installation bag; 3, the insulin pump body; 31, the drug delivery unit; 32, the control panel; 33, the battery; 34, the medical needle tube; 4, the slide belt; 5, the containing cavity; 51, the main cavity unit; 52, the auxiliary cavity unit; 6, the needle tube outlet; 7, the delivery port; 8, the delivery cover; 9, the battery access port; 10, the battery cover; 11, the slide; 12, the hook; 13, the hook ring; 14, the belt; 15, the perforation; 16, the through hole. DETAILED DESCRIPTION

[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Figures 1 to 6 It is apparent that the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the protection scope of the present application.

[0041] Embodiment one:

[0042] An insulin pump for endocrine treatment, referring to Figure 1 With Figure 2 , including a long strap 1, a mounting bag 2 slidingly arranged on the strap 1, an insulin pump body 3 arranged on the mounting bag 2, and a fixing assembly for fixing the strap 1 on the patient. In use, the strap 1 is wound on the patient's body, and the strap 1 is fixed by the fixing assembly, so that the insulin pump body 3 can be used for injection, and the position can be conveniently adjusted to facilitate the patient to bend over or perform other actions.

[0043] The mounting bag 2 is in the shape of a rectangular parallelepiped, and the mounting bag 2 is distributed along the length direction of the strap 1. In order to prevent the insulin pump from being damaged, the mounting bag 2 is made of a material that is light in weight and has a certain structural strength, so as to ensure that the insulin pump body 3 is well protected. In the present embodiment, the mounting bag 2 is made of polyethylene (PE) material. Polyethylene is a light plastic, which is conducive to reducing the overall weight and reducing the weight of the patient. Polyethylene also has high durability and strength, which can provide sufficient protection for the insulin pump and prevent the insulin pump from being damaged due to extrusion or collision during use. Polyethylene also has good chemical stability, which is conducive to isolating the drugs or disinfectants contacted during treatment. Polyethylene has good waterproof performance, which is conducive to preventing water penetration. Polyethylene production technology is mature, and the cost is low, which is conducive to mass production.

[0044] Referring to Figure 2 The mounting bag 2 is provided with a containing cavity 5 for containing the insulin pump body 3. The shape of the containing cavity 5 is adapted to the insulin pump body 3, and the insulin pump body 3 is located in the containing cavity 5, so as to prevent the insulin pump body 3 from shaking in the containing cavity 5 when the mounting bag 2 shakes, and prevent the insulin pump body 3 from being damaged.

[0045] Referring to Figure 2, the insulin pump body 3 is a relatively mature technology in the prior art, and will not be described in detail. In this embodiment, the insulin pump body 3 includes a drug delivery unit 31 for storing and delivering drugs, a control panel 32 for controlling the drug delivery unit 31 to deliver drugs, a battery 33 for providing electrical energy, and a medical needle tube 34 with a needle. The drug delivery unit 31 can be quickly and replaceably installed. When the drug delivery unit 31 is inserted, the medical needle tube 34 is connected to the output end of the drug delivery unit 31. In use, the needle of the medical needle tube 34 is inserted into the subcutaneous tissue of the patient, electrical energy is provided by the battery 33, and the drug delivery unit 31 is operated by the control panel 32 to deliver drugs to the medical needle tube 34, thereby delivering drugs to the patient's body through the medical needle tube 34.

[0046] With reference to the drawings Figure 2 , the accommodation cavity 5 includes a main cavity unit 51 and a secondary cavity unit 52 which are sequentially arranged along the length direction of the installation bag 2. The drug delivery unit 31, the control panel 32, and the battery 33 are all arranged in the main cavity unit 51, and the medical needle tube 34 is wound in the secondary cavity unit 52.

[0047] With reference to the drawings Figure 2 and Figure 3 , the operation surface of the control panel 32 protrudes from the side of the installation bag 2 away from the belt 1, thereby facilitating the operation of the control panel 32 by the patient or medical staff.

[0048] With reference to the drawings Figure 2 and Figure 3 , a delivery port 7 is arranged on one long side of the installation bag 2. The delivery port 7 is in communication with the main cavity unit 51, and the shape and size of the delivery port 7 are suitable for the drug delivery unit 31 to pass through. A delivery cover 8 is hingedly connected to the installation bag 2 and is located near the delivery port 7. The delivery cover 8 covers the delivery port 7 and is connected to the installation bag 2 by a buckle. Therefore, when the drug is supplemented, the buckle at the delivery cover 8 is opened, the drug delivery unit 31 is pulled out, and the drug is supplemented. After the completion, the drug delivery unit 31 is inserted into the delivery port 7, and the delivery cover 8 is buckled.

[0049] With reference to the drawings Figure 2 and Figure 3 , the installation bag 2 also has a battery access port 9 which is located on the same side as the delivery port 7. The battery access port 9 is in communication with the main cavity unit 51, and the shape and size of the battery access port 9 are suitable for the battery 33 to pass through. A battery cover 10 is hingedly connected to the installation bag 2 and is located near the battery access port 9. The battery cover 10 covers the battery access port 9 and is also connected to the installation bag 2 by a buckle. Therefore, when the battery 33 is replaced, the buckle at the battery cover 10 is opened, the battery 33 is taken out, and a new battery 33 is inserted into the battery 33. The buckle is tightened, thereby facilitating the drug supplement and the replacement of the battery 33.

[0050] Referring to Figure 2 The cavity wall of the auxiliary cavity unit 52 is provided with a through hole 16, which is communicated with the main cavity unit 51. The end of the medical needle tube 34 away from the needle is inserted into the through hole 16 and connected with the drug delivery unit 31. The installation bag 2 is also provided with a needle tube outlet 6, which is communicated with the auxiliary cavity unit 52. The end of the medical needle tube 34 close to the needle is extended out of the needle tube outlet 6, so that the medical needle tube 34 can be conveniently used, and the needle can be inserted into the patient's subcutaneous tissue.

[0051] In use, the needle of the medical needle tube 34 is inserted into the patient's subcutaneous tissue. The battery 33 provides electric energy. The drug delivery unit 31 delivers the drug to the medical needle tube 34 by operating the control panel 32, so that the drug is delivered to the patient's body through the medical needle tube 34. When the patient needs to adjust the position of the installation bag 2, the installation bag 2 is slid to adjust the position of the installation bag 2, and the medical needle tube 34 is driven to be unwound or wound through the through hole 16. The medical needle tube 34 is separated from the drug delivery unit 31, the control panel 32 and the battery 33 through the main cavity unit 51 and the auxiliary cavity unit 52, so as to prevent the wound medical needle tube 34 from affecting the normal use of the drug delivery unit 31, the control panel 32 or the battery 33. The position of the installation bag 2 can be conveniently adjusted, the installation bag 2 is prevented from affecting the patient's action, the insulin pump body 3 is further prevented from being crushed, and the medical needle tube 34 is driven to be unwound or wound through the through hole 16, so as to prevent the needle on the medical needle tube 34 from loosening during movement.

[0052] In addition, in order to prevent the medical needle tube 34 from being excessively unwound or wound, the inner wall of the needle tube outlet 6 is also provided with an anti-skid pad (not shown in the figure), which is sleeved on the medical needle tube 34. The anti-skid pad is integrally formed with protrusions, and the protrusions are arranged on the side of the anti-skid pad abutting against the medical needle tube 34. The protrusions can increase the contact area and thus increase the friction. The anti-skid pad and the protrusions are made of silica gel material. The silica gel material has surface adhesion, which can appropriately increase the friction to prevent the medical needle tube 34 from being excessively unwound or wound. In addition, the silica gel material also has softness and elasticity, which can prevent the medical needle tube 34 from being damaged. The anti-skid pad and the protrusions made of silica gel can effectively increase the friction. When the installation bag 2 is adjusted, the installation bag 2 is slid and the medical needle tube 34 is driven to be unwound or wound, so as to prevent the needle from falling off and the like. The anti-skid pad and the protrusions fix the medical needle tube 34 at the unwound or wound position, so that the medical needle tube 34 will not be excessively unwound or difficult to be wound.

[0053] Referring to Figure 4 With Figure 5, the installation bag 2 is provided with a slide 11 on the side wall of the belt 1, the slide 11 is in the shape of inverted U, and the slide 11 penetrates the same side wall of the installation bag 2, that is, the entrance and exit of the slide 11 are on the same side of the installation bag 2. The slide belt 4 is arranged on the belt 1, the width of the slide belt 4 is smaller than the width of the belt 1, the slide belt 4 is distributed along the length direction of the belt 1, the slide belt 4 extends into the entrance of the slide 11 and extends out of the exit of the slide 11, the slide 11 is in sliding cooperation with the slide belt 4, and the two ends of the slide belt 4 are sewn on the belt 1 by sewing thread, so that the two ends of the slide belt 4 are fixedly connected to the belt 1, and in the flat state, the slide belt 4 abuts against the belt 1. Therefore, by driving the installation bag 2 to move along the length direction of the slide belt 4, the slide belt 4 slides along the slide 11, so that the position of the installation bag 2 can be adjusted, and the bending part of the inverted U-shaped slide 11 forms a friction angle with the slide belt 4. Based on the physical principle of the friction angle, the inverted U-shaped slide 11 is beneficial to increase the friction force and prevent the installation bag 2 from sliding after being adjusted to the appropriate position.

[0054] In use, the belt 1 is fixed on the patient's body by the fixing assembly, the medical needle tube 34 is inserted into the subcutaneous tissue of the patient, and the medical needle tube 34 delivers the medicine into the patient's body by operating the control panel 32. When the patient needs to adjust the position of the installation bag 2, the installation bag 2 is driven to slide along the length direction of the slide belt 4, the slide belt 4 slides along the slide 11, and the medical needle tube 34 is driven to be unwound or wound through the through hole 16, so that the position of the installation bag 2 can be adjusted.

[0055] Specifically, referring to Figure 4 , the fixing assembly comprises a hook 12 arranged on the belt 1 and a hook ring 13, the hook 12 and the hook ring 13 are buckled with each other, the hook 12 is close to one end of the belt 1, the hook ring 13 is on the same plane with the hook 12, and the hook ring 13 is away from the hook 12. When the patient wears it, the belt 1 is wound on the patient, the hook 12 is inserted into the hook ring 13, the hook 12 and the hook ring 13 are buckled tightly with each other, so that the belt 1 is stably fixed on the patient's body and prevents falling off.

[0056] Referring to Figure 4 , the hook 12 is provided with a plurality of hooks 12, and the plurality of hooks 12 are distributed at equal intervals along the width direction of the belt 1. The hook ring 13 is provided with a plurality of groups, and each group of the hook ring 13 is provided with a plurality of hook rings 13 corresponding to the number of the hook 12. The plurality of hooks 12 are buckled with the plurality of hook rings 13 in the single group one by one, and the plurality of groups of the hook ring 13 are distributed at equal intervals along the length direction of the belt 1. In the embodiment, the hook 12 is provided with four hooks 12, each group of the hook ring 13 is provided with four hook rings 13 corresponding to the number of the hook 12, and a total of two groups of the hook ring 13 are provided.

[0057] When wearing the belt 1, the four hooks 12 are respectively buckled on the four carabiners 13 in the single group, so that the belt 1 is more stably fixed on the patient's body to prevent falling off. Through the two groups of carabiners 13, the hooks 12 can be buckled on the carabiners 13 at the appropriate length position according to the needs of the patient, which is beneficial to the patients of different fatness, improves the stability of wearing and the overall practicability.

[0058] The implementation principle of the present application is that when wearing the belt 1, the four hooks 12 are respectively buckled on the four carabiners 13 in the single group, which is beneficial to the belt 1 being more stably fixed on the patient's body to prevent falling off. Through the two groups of carabiners 13, the hooks 12 can be buckled on the carabiners 13 at the appropriate length position according to the needs of the patient, which is beneficial to the patients of different fatness, improves the stability of wearing and the overall practicability.

[0059] In use, the needle of the medical needle tube 34 is inserted into the subcutaneous tissue of the patient, the battery 33 provides electric energy, the drug delivery unit 31 delivers the drug to the medical needle tube 34 by operating the control panel 32, so that the drug is delivered into the patient's body through the medical needle tube 34.

[0060] When the patient needs to adjust the position of the installation bag 2, the installation bag 2 is driven to slide along the length direction of the slide belt 4, the slide belt 4 slides along the slide 11, and the medical needle tube 34 is driven to be unwound or wound through the through hole 16, so that the position of the installation bag 2 can be conveniently adjusted without re-wearing, which prevents affecting the patient's action and is also beneficial to preventing the patient from being pressed with the insulin pump body 3, thereby reducing the risk of damage to the insulin body.

[0061] Embodiment two: The difference between this embodiment and embodiment one is that the fixing assembly is different.

[0062] Specifically, referring to Figure 6 , the fixing assembly includes a binding belt 14. The belt surface of the belt 1 is provided with a circular perforation 15, the perforation 15 penetrates through the belt 1, and the perforation 15 is provided with two groups, the two groups of perforations 15 are respectively close to the two ends of the belt 1, in this embodiment, a single group of perforations 15 is provided with five, the five perforations 15 are distributed along the width direction of the belt 1 at equal intervals, and the binding belt 14 is alternately passed through the two groups of perforations 15.

[0063] When wearing the belt 1, the belt 1 is sleeved on the patient's body, the binding belt 14 is pulled tight, the belt 1 is made to fit the patient's body shape, and the binding belt 14 is knotted, so as to better adjust the tightness and adapt to the patient's body shape, thereby improving the stability of wearing and the overall practicability.

[0064] The above merely describes a specific implementation of the present application, but the protection scope of the present application is not limited thereto, and any skilled person in the art can easily think of various equivalent modifications or replacements within the technical scope disclosed by the present application, and these modifications or replacements should be encompassed within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. An insulin pump for endocrine therapy, comprising a belt (1), characterised in that: The bandage (1) is slidably provided with a mounting bag (2), the mounting bag (2) is provided with an insulin pump body (3) inside, the bandage (1) is further provided with a sliding belt (4), the two ends of the sliding belt (4) are fixedly connected with the bandage (1), the sliding belt (4) is provided in the mounting bag (2), the mounting bag (2) is slidably matched with the sliding belt (4) along the length direction of the sliding belt (4), and the bandage (1) is further provided with a fixing assembly for fixing the bandage (1) on the patient's body.

2. The insulin pump for endocrine therapy according to claim 1, characterized in that: The mounting bag (2) is made of light material with certain structural strength, and the mounting bag (2) comprises a mounting bag made of polyethylene material.

3. The insulin pump for endocrine therapy according to claim 1, characterized in that: The insulin pump body (3) comprises a drug delivery unit (31) for storing and delivering drugs, a control panel (32) for controlling the drug delivery unit (31) to deliver, a battery (33) for providing electric energy, and a medical needle tube (34) with a needle, the drug delivery unit (31) can be quickly plugged and replaced, and when the drug delivery unit (31) is inserted, the medical needle tube (34) is connected with the output end of the drug delivery unit (31).

4. The insulin pump for endocrine therapy according to claim 3, characterized in that: The mounting bag (2) is provided with a containing cavity (5) for containing the insulin pump body (3), the containing cavity (5) comprises a main cavity unit (51) and a secondary cavity unit (52), the drug delivery unit (31), the control panel (32) and the battery (33) are all arranged in the main cavity unit (51), the medical needle tube (34) is wound in the secondary cavity unit (52), one end of the medical needle tube (34) away from the needle extends into the main cavity unit (51) and is connected with the drug delivery unit (31), the mounting bag (2) is provided with a needle tube outlet (6) in communication with the secondary cavity unit (52), and one end of the medical needle tube (34) close to the needle extends out of the needle tube outlet (6).

5. An insulin pump for endocrine therapy according to claim 4, characterized in that: The needle tube outlet (6) is further provided with an anti-skid pad around the inside, the anti-skid pad is sleeved on the medical needle tube (34), the anti-skid pad is integrally formed with a convex point, and the anti-skid pad and the convex point are both made of silica gel.

6. The insulin pump for endocrine therapy according to claim 4, characterized in that: The mounting bag (2) is provided with a delivery port (7) in communication with the main cavity unit (51), the mounting bag (2) is hingedly provided with a delivery cover (8), the delivery cover (8) covers the delivery port (7), the delivery cover (8) is connected to the mounting bag (2) through buckling, the mounting bag (2) is also provided with a battery access port (9) in communication with the main cavity unit (51), the mounting bag (2) is hingedly provided with a battery cover (10), the battery cover (10) covers the battery access port (9), and the battery cover (10) is also connected to the mounting bag (2) through buckling.

7. The insulin pump for endocrine therapy according to claim 1, characterized in that: The mounting bag (2) is provided with a slide (11) on one side wall facing the bandage (1), a plurality of friction angles are formed between the slide (11) and the sliding belt (4), the sliding belt (4) passes through the slide (11), and the sliding belt (4) is slidably matched with the slide (11).

8. The insulin pump for endocrine therapy according to claim 1, characterized in that: The fixing assembly comprises hooks (12) arranged on the belt (1) and hooks and eyes (13), the hooks (12) and the hooks and eyes (13) are buckled with each other, the hooks (12) are close to one end of the belt (1), the hooks and eyes (13) are on the same side of the belt (1) as the hooks (12), and the hooks and eyes (13) are away from the hooks (12).

9. An insulin pump for endocrine therapy according to claim 8, characterized in that: The hooks (12) are arranged in multiple, the hooks (12) are equidistantly distributed along the width direction of the belt (1), the hooks and eyes (13) are arranged in multiple groups, the hooks and eyes (13) in a single group are arranged in multiple corresponding to the number of the hooks (12), the hooks (12) are buckled with the hooks and eyes (13) in the single group one by one, and the hooks and eyes (13) in multiple groups are equidistantly distributed along the length direction of the belt (1).

10. The insulin pump for endocrine therapy according to claim 1, characterized in that: The fixing assembly comprises a binding belt (14), the belt surface of the belt (1) is provided with perforations (15), the perforations (15) penetrate through the belt (1), the perforations (15) are arranged in two groups, the two groups of perforations (15) are close to the two ends of the belt (1) respectively, the perforations (15) in a single group are arranged in multiple, the perforations (15) are equidistantly distributed along the width direction of the belt (1), and the binding belt (14) passes through the two groups of perforations (15) alternately.

Citation Information

Patent Citations

  • Diabetes insulin pump

    CN214911718U