Storage device and portable infusion device
By designing a reasonable main compartment and fixed components in the storage device, the problem of inconvenience of existing storage devices is solved, convenient loading and use of infusion equipment is achieved, adapting to the needs of different environments, and providing a cooling function of the medicine liquid.
Patent Information
- Application Number
- CN202420915072.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-28
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-04-28
AI Technical Summary
Due to the unreasonable arrangement of the internal structure of the existing storage device, it is inconvenient for patients to load and use infusion equipment, reducing the convenience of operation.
A storage device is designed, including a main compartment, a first fixing assembly and a second fixing assembly. A chamber is provided in the main compartment for placing the infusion equipment. The second fixing assembly is used to fix the medicine bag and the infusion pipeline. The structure is reasonably distributed and simple, which increases the convenience of operation.
It improves the operational convenience of patients loading infusion equipment into the storage device and using infusion equipment to infusion of medicine liquids, meets the needs of use in different environments, and prevents the medicine liquid from rotting by fixing ice packs.
Smart Images

Figure CN223220781U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of medical devices, and in particular to a storage device and a portable infusion device. Background Art
[0002] With the development of medical technology, patients can carry a storage device containing an infusion device and use the infusion device to infuse medication to complete the treatment process. However, due to the unreasonable internal structure layout of existing storage devices, it is not convenient for patients to load the infusion device into the storage device or use the infusion device to infuse medication, which reduces the convenience of operation. Utility Model Content
[0003] The purpose of this application is to provide a storage device and a portable infusion device, which can reasonably arrange the internal structure of the storage device, thereby improving the convenience of patients loading infusion equipment into the storage device or using the infusion equipment to infuse medicine.
[0004] The present invention provides a storage device for storing an infusion device. The storage device includes: a storage body including a main compartment having an inner cavity; a first fixing assembly including a third strap and a plurality of first fixing straps, wherein one end of each of the plurality of first fixing straps and one end of the third strap are spaced apart and connected to a cavity wall of the inner cavity, and the other end of each of the first fixing straps is movably connected to the other end of the third strap; the third strap, the plurality of first fixing straps, and the cavity wall of the inner cavity enclose a cavity, wherein the cavity is configured to accommodate the device body of the infusion device; and a second fixing assembly including a hanging buckle connected to a top of the cavity wall of the inner cavity, wherein the hanging buckle is configured to secure a medicine bag and / or an infusion line of the infusion device, and / or the second fixing assembly further includes a fourth strap connected to the cavity wall of the inner cavity, wherein the fourth strap is configured to secure the medicine bag of the infusion device.
[0005] In the embodiment of the present application, a first fixing assembly and a second fixing assembly are provided at different locations within the main compartment of the storage device, resulting in a rational and concise internal structural layout of the storage device. When a patient places an infusion device into the storage device, the device, medication bag, and infusion tubing of the infusion device are all located within the inner cavity of the main compartment. The first and second fixing assemblies can respectively secure the device, medication bag, and infusion tubing of the infusion device, thereby improving the convenience of the patient when loading the infusion device into the storage device or using the infusion device to infuse medication.
[0006] In one embodiment, the main compartment includes a main compartment body and a first cover, the first cover is connected to one side of the main compartment body and forms the inner cavity with the main compartment body, and the first cover can be opened or closed relative to the main compartment body; the storage device also includes a third fixing component, the third fixing component is connected to the inner surface of the main compartment body, and the third fixing component is configured to enclose and fix the medicine bag.
[0007] In one embodiment, the third fixing component includes a first belt body and a second belt body, one end of the first belt body is fixedly connected to one side of the inner surface of the main compartment body in the width direction, and the first belt body can rotate relative to the main compartment body, one end of the second belt body is fixedly connected to the other side of the inner surface of the main compartment body in the width direction, and the second belt body can rotate relative to the main compartment body, and the other end of the second belt body is connected to the other end of the first belt body to enclose and fix the medicine bag.
[0008] In one embodiment, the first belt body has an interlayer, and the interlayer is communicated with the inner cavity.
[0009] In one embodiment, the main compartment includes a main compartment body and a first cover, the first cover is connected to one side of the main compartment body and forms the inner cavity with the main compartment body, and the first cover can be opened or closed relative to the main compartment body; the first fixing component is connected to the inner surface of the first cover and forms the chamber for accommodating the device host with the inner surface of the first cover.
[0010] In one embodiment, the first cover has a visible window, the visible window and the chamber are arranged correspondingly, and the third belt body and the plurality of first fixing belts are arranged at intervals around the edge of the visible window.
[0011] In one embodiment, the storage body further includes a second cover, which is connected to the side of the first cover facing away from the main compartment body, and the second cover can be opened or closed relative to the first cover. The second cover and the first cover together form a first front compartment, and the visible window is located in the first front compartment.
[0012] In one embodiment, the storage body further includes a back partition, which is connected to the side of the main partition facing away from the first bag cover; and / or, the storage body further includes a second front partition, which is spaced apart from the first front partition on the outer side of the first bag cover.
[0013] In one embodiment, the storage device further includes a side pocket, which is connected to the outer surface of the main compartment body; the main compartment body is provided with a threading hole, which passes through the main compartment body and connects the main compartment and the side pocket.
[0014] In one embodiment, the storage device further includes a pipeline hook, which is connected to the outer surface of the main compartment body and is staggered with the side pocket.
[0015] In one embodiment, the storage device further includes two shoulder straps and a plurality of second fixing straps, wherein the two shoulder straps are connected to the same side of the storage body and are spaced apart, and the plurality of second fixing straps are arranged on the side of the two shoulder straps facing away from the storage body.
[0016] An embodiment of the present application provides a portable infusion device, which includes an infusion device and the storage device. The infusion device includes a device host, a medicine bag and an infusion pipeline. The infusion pipeline is connected between the medicine bag and the device host. The device host is placed in the chamber, and the medicine bag is fixed to the second fixing component.
[0017] A storage device is also provided in an embodiment of the present application, which is used to store infusion equipment and ice packs. The storage device includes: a storage body, including a main compartment, the main compartment having an inner cavity; a second fixing component, arranged on the top of the cavity wall of the inner cavity, the second fixing component is configured to fix the medicine bag and / or infusion pipeline of the infusion equipment; and a third fixing component, the third fixing component is connected to the cavity wall of the inner cavity, the third fixing component is extended along the width direction of the main compartment, the third fixing component is configured to enclose and fix the medicine bag of the infusion equipment, and the third fixing component is also configured to fix the ice pack.
[0018] In the embodiment of the present application, the main compartment of the storage device is provided with a second fixing component and a third fixing component located at different positions, ensuring that the internal structure of the storage device is reasonably distributed and concise. When the patient places the infusion device into the storage device, the medicine bag and the device main unit, medicine bag, and infusion line of the infusion device are all located in the inner cavity of the main compartment. The second fixing component and the third fixing component can both fix the medicine bag, thereby improving the convenience of the patient in loading the infusion device into the storage device or using the infusion device to infuse the drug solution. The third fixing component is also provided with a structure that can fix an ice bag. By placing the ice bag into the storage device, the drug solution can be cooled to prevent it from spoiling, thereby facilitating the patient to infuse the drug solution even in a high temperature environment, satisfying the patient's need for infusion equipment in different regions and environments.
[0019] In one embodiment, the main compartment includes a main compartment body and a first cover, the first cover is connected to one side of the main compartment body and forms the inner cavity with the main compartment body, and the first cover can be opened or closed relative to the main compartment body; the first fixing component is connected to the inner surface of the first cover, the second fixing component is fixed to the top of the main compartment body, and the third fixing component includes a first belt body and a second belt body, one end of the first belt body is fixedly connected to one side of the inner surface of the main compartment body in the width direction, and the first belt body can rotate relative to the main compartment body, one end of the second belt body is fixedly connected to the other side of the inner surface of the main compartment body in the width direction, and the second belt body can rotate relative to the main compartment body, and the other end of the second belt body can be connected to the first belt body to enclose and fix the medicine bag, and the first belt body is configured to fix the ice pack.
[0020] An embodiment of the present application also provides a portable infusion device, which includes an infusion device, an ice bag and the storage device. The infusion device includes a device host, a medicine bag and an infusion pipeline. The infusion pipeline is connected between the medicine bag and the device host. The device host is placed in the inner cavity. The medicine bag is fixed to the second fixing component and the third fixing component, and the ice bag is accommodated in the third fixing component. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 A schematic structural diagram of a first embodiment of a portable infusion device provided in an embodiment of the present application;
[0022] Figure 2 for Figure 1 A schematic diagram of the internal structure of the portable infusion device shown;
[0023] Figure 3 for Figure 2 A schematic diagram of the internal structure of the main compartment of the storage device for the portable infusion device is shown;
[0024] Figure 4 for Figure 2 The schematic diagram of the internal structure of the first front compartment of the storage device of the portable infusion device is shown;
[0025] Figure 5 for Figure 2 A schematic diagram of the internal structure of the storage device of the portable infusion device shown;
[0026] Figure 6 for Figure 1 A schematic structural diagram of the portable infusion device from another angle shown;
[0027] Figure 7A schematic diagram of the internal structure of a second embodiment of the portable infusion device provided in an embodiment of the present application;
[0028] Figure 8 for Figure 7 A schematic diagram of the internal structure of the storage device of the portable infusion device shown;
[0029] Figure 9 A schematic diagram of the internal structure of a third embodiment of the portable infusion device provided in an embodiment of the present application;
[0030] Figure 10 for Figure 9 The diagram shows the internal structure of the storage device of the portable infusion device. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application.
[0032] In the embodiments of the present application, the terms "first", "second", "third", "fourth", etc. are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second", "third", "fourth", etc. may explicitly or implicitly include one or more of the features. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to the specific circumstances. And "multiple" in this application refers to two or more.
[0033] The embodiments of the present application provide a portable infusion device that is compatible with multiple-sized device hosts and medicine bags, improving operational convenience and patient experience. The following describes the specific structure of the portable infusion device in detail through three specific embodiments.
[0034] First embodiment:
[0035] See also Figure 1 and Figure 2 , Figure 1 This is a schematic structural diagram of a first embodiment of a portable infusion device provided in an embodiment of the present application. Figure 2 for Figure 1 The internal structure diagram of the portable infusion device is shown in FIG. Figure 2 Only the internal structure of the portable infusion device 1000 for placing the infusion equipment 800 is shown.
[0036] For ease of description, the width direction of the portable infusion device 1000 is defined as the X-axis direction, the height direction is defined as the Y-axis direction, and the thickness direction is defined as the Z-axis direction. The X-axis direction, the Y-axis direction, and the Z-axis direction are perpendicular to each other. In the description of this application, the terms "upper", "lower", "front", "back", "top", "bottom", "inside", "outside" and the like indicate directions or positional relationships based on the attached Figure 1 Or attach Figure 2 The orientation or position relationship of the portable infusion device 1000 is shown. The positive direction toward the Y axis is the top of the portable infusion device 1000, the negative direction toward the Y axis is the bottom of the portable infusion device 1000, the positive direction toward the Z axis is the back of the portable infusion device 1000, and the negative direction toward the Z axis is the front of the portable infusion device 1000.
[0037] The portable infusion device 1000 includes a storage device 100 and an infusion device 800. The infusion device 800 is stored in the storage device 100. The infusion device 800 is used to provide liquid medicine to the patient. The storage device 100 is used to provide storage space for the infusion device 800 and other items carried by the patient.
[0038] The infusion device 800 includes a device host 810, a medicine bag 820, and an infusion line 830. The device host 810, the medicine bag 820, and the infusion line 830 are all stored in the storage device 100. The infusion line 830 is connected between the device host 810 and the medicine bag 820 and between the device host 810 and the patient.
[0039] The medicine bag 820 includes a bag body 821 and a bag opening 822. The bag opening 822 is connected to the bag body 821. When the medicine bag 820 is stored in the storage device 100, the bag opening 822 faces the top of the storage device 100 along the Y-axis. The bag opening 822 is used for injecting liquid medicine, that is, the liquid medicine can be injected into the bag body 821 through the bag opening 822. The bag body 821 is used to hold and store the liquid medicine required by the patient. Exemplarily, the number of medicine bags 820 can be one or two. Patients can choose the number of medicine bags 820 according to their needs.
[0040] It should be noted that the medicinal liquid in the present application may be, but is not limited to, medicines, nutrient solutions, water, and other substances that have therapeutic or auxiliary therapeutic effects on patients.
[0041] In a possible embodiment, the medicine bag 820 further includes a hanging ring (not shown) and / or a connector (not shown). The hanging ring is used to hang and fix the medicine bag 820 on the top of the storage device 100. The connector is provided at the bag opening 822 of the medicine bag 820. The connector is used to fix the medicine bag 820 to the storage device 100. Exemplarily, the connector can be a Velcro patch. The Velcro patch is a connecting auxiliary material, one side of which is a soft fiber and the other side is an elastic fiber with hooks and barbs. One side of the soft fiber and the other side of the elastic fiber with hooks and barbs can be movably bonded. Therefore, a Velcro patch can be reused by bonding two different sides, or multiple Velcro patches can be reused by bonding different sides.
[0042] In this embodiment, one end of the infusion line 830 is connected to the side of the bag body 821 of the medicine bag 820 that faces away from the bag opening 822. This allows the liquid medicine in the bag 820 to flow into the infusion line 830 due to gravity when the bag 820 is suspended. The other end of the infusion line 830 passes through the device main unit 810 and is connected to the patient. Under the control of the device main unit 810, the infusion line 830 is used to deliver the liquid medicine in the bag 820 to the patient, thereby providing the patient with liquid medicine.
[0043] The device host 810 includes a display screen (not shown) that is used to display the operating status of the device host 810 and to operate the device host 810. The device host 810 is used to control the amount of liquid medicine infused into the patient from the medicine bag 820 via the infusion line 830 in a timed, constant, and quantitative manner, thereby accurately controlling the infusion volume and administration speed of the liquid medicine, effectively avoiding physical discomfort caused to the patient by excessively rapid infusion of the liquid medicine or inappropriate infusion volume. The device host 810 can be, but is not limited to, a device that controls the infusion of liquid medicine into the patient, such as a nutrition pump, an infusion pump, a peristaltic pump, or a syringe pump. This is not limited to this in the present application.
[0044] See also Figure 2The storage device 100 includes a storage body 10, a first fixing component 20 and a second fixing component 30. The storage body 10 includes a main compartment 11. The main compartment 11 has an inner cavity A. The first fixing component 20 is connected to the cavity wall of the inner cavity A. The first fixing component 20 and the cavity wall of the inner cavity A enclose a cavity B, and the cavity B is configured to place the device main body 810 of the infusion device 800. The second fixing component 30 is arranged at the top of the cavity wall of the inner cavity A. The second fixing component 30 is configured to fix the medicine bag 820 and / or the infusion line 830 of the infusion device 800. In this embodiment, the first fixing component 20 and the second fixing component 30 are respectively located at different positions in the main compartment 11, which ensures that the internal structural distribution of the storage device 100 is reasonable and concise. When the patient places the infusion device 800 in the storage device 100, the device body 810, medicine bag 820, and infusion line 830 of the infusion device 800 are all located within the inner cavity A of the main compartment 11. The first fixing assembly 20 and the second fixing assembly 30 respectively fix the device body 810, medicine bag 820, or infusion line 830, thereby improving the convenience of the patient in loading the infusion device 800 into the storage device 100 or using the infusion device 800 to infuse medication. It is understood that when the patient needs to infuse medication or remove the infusion device 800, the patient can directly operate the infusion device 800 through the main compartment 11. When the patient does not need to infuse medication temporarily, the infusion line 830 can be stored in the second fixing assembly 30 or other locations in the main compartment 11.
[0045] For example, the storage device 100 may be a backpack. The dimensions of the storage device 100 may be 380×230×150 mm. In some embodiments, by reducing or increasing the dimensions of the storage device 100 in terms of width, height, and thickness, the storage device 100 can accommodate infusion devices 800 of various sizes, thereby meeting the needs of patients in different regions and with different body shapes for a portable infusion device 1000.
[0046] See also Figure 3 and Figure 4 , Figure 3 for Figure 2 The schematic diagram of the internal structure of the main compartment of the storage device of the portable infusion device is shown. Figure 4 for Figure 2 The internal structure diagram of the first front compartment of the storage device of the portable infusion device is shown. Figure 3 and Figure 4 The inner structures of the back partition 12 and the second front partition 14 are not shown.
[0047] The main compartment 11 includes a main compartment body 111 and a first cover 112. Along the Z-axis, the first cover 112 is connected to one side of the main compartment body 111 and, together with the main compartment body 111, encloses the aforementioned inner cavity A. The inner cavity A can be used as a storage space for an infusion device 800 or other items of the patient. The first cover 112 can be opened or closed relative to the main compartment body 111. Specifically, along the Y-axis, the first cover 112 is connected to the bottom edge of the main compartment body 111 and is movably connected to the remaining edges of the main compartment body 111 via a zipper. By opening the zipper, the first cover 112 is opened relative to the main compartment body 111. By closing the zipper, the first cover 112 is closed relative to the main compartment body 111.
[0048] The main compartment body 111 includes an inner surface and an outer surface. The inner surface of the main compartment body 111 and the outer surface of the main compartment body 111 are arranged opposite to each other along the thickness direction of the main compartment body 111. The inner surface of the main compartment body 111 faces the inner cavity A of the main compartment 11, and the outer surface of the main compartment body 111 faces away from the inner cavity A of the main compartment 11, and constitutes part of the appearance surface of the main compartment 11. The main compartment body 111 is also provided with a threading hole 113. The threading hole 113 is provided on one side in the width direction of the main compartment body 111 and passes through the inner surface and the outer surface of the main compartment body 111. The threading hole 113 is used to allow the infusion line 830 of the infusion device 800 to pass through the main compartment 11 and connect to the patient, making it convenient for the patient to infuse liquid medicine through the infusion line 830.
[0049] Illustratively, the diameter of threading hole 113 is 50 mm. There are two threading holes 113 , located on opposite sides of the width of main compartment body 111 . Patients can use the infusion tubing 830 of infusion device 800 by passing it through either threading hole 113 based on their preference or habits.
[0050] The first cover 112 includes an inner surface and an outer surface. The inner and outer surfaces of the first cover 112 are disposed opposite each other along the thickness direction of the first cover 112. The inner surface of the first cover 112 faces the inner cavity A of the main compartment 11 and, together with the inner surface of the main compartment body 111, forms the wall of the inner cavity A. The outer surface of the first cover 112 faces away from the inner cavity A of the main compartment 11 and, together with the outer surface of the main compartment body 111, forms the exterior surface of the main compartment 11.
[0051] The first cover 112 also includes a visual window 114. The visual window 114 can be made of a transparent material such as ethylene vinyl acetate copolymer (EVA). The visual window 114 is used to be arranged corresponding to the chamber B formed by the first fixing component 20. When the device main unit 810 is loaded into the chamber B, the visual window 114 can be opposite to the display screen of the device main unit 810 located in the chamber B. The shape of the visual window 114 is adapted to the shape of the display screen of the device main unit 810. Exemplarily, the visual window 114 is a transparent rectangular window. The patient can observe the display screen of the device main unit 810 of the infusion device 800 through the visual window 114, thereby making it convenient for the patient to check the working status of the device main unit 810 in a timely manner.
[0052] In some embodiments, the storage body 10 may further include a back compartment 12. Along the Y-axis direction, the back compartment 12 is arranged on one side of the main compartment 11 in the thickness direction. The back compartment 12 is connected to the side of the main compartment body 111 facing away from the first cover 112. The back compartment 12 can be opened or closed relative to the main compartment body 111. Specifically, along the Y-axis direction, the top edge and a portion of the side edge of the back compartment 12 are fixedly connected to the main compartment body 111, and the bottom edge and another portion of the side edge of the back compartment 12 are movably connected to the main compartment body 111 through a zipper. The back compartment 12 can be used for patients to place items, such as documents or electronic products, to meet the patient's use of the portable infusion device 1000 in multiple scenarios.
[0053] In some embodiments, the storage body 10 further includes a second cover 131. The second cover 131 is connected to the outer surface of the first cover 112. The second cover 131 can be opened or closed relative to the first cover 112. Specifically, along the Y-axis, the bottom edge of the second cover 131 is fixedly connected to the bottom edge of the first cover 112, and the remaining edges of the second cover 131 are movably connected to the first cover 112 via a zipper. By opening the zipper, the second cover 131 is opened relative to the first cover 112. By closing the zipper, the second cover 131 can be closed relative to the first cover 112. It can be understood that the storage body 10 includes a first front compartment 13. The first front compartment 13 is located on the side of the first cover 112 facing away from the main compartment body 111. The second cover 131 and the first cover 112 together form the first front compartment 13. The visual window 114 is located within the first front compartment 13. When the second cover 131 is opened relative to the first cover 112, that is, the first front compartment 13 is open, the patient can observe the display screen of the device host 810 through the visual window 114 in the first front compartment 13, and can timely monitor the working status of the device host 810 or operate the device host 810. When the second cover 131 is closed relative to the first cover 112, the first front compartment 13 is closed and can be used for the patient to place other items.
[0054] In some embodiments, the storage body 10 may further include a second front compartment 14. The second front compartment 14 is disposed on the outer surface of the first cover 112. The second front compartment 14 includes an opening (not shown). The opening is disposed on the outer surface of the first cover 112. The opening allows the patient to place other items, such as keys, a cell phone, or medication, in the second front compartment 14. For example, the opening can be opened or closed by a zipper.
[0055] In some embodiments, the storage body 10 may further include a back partition 12 and a first front partition 13, with the back partition 12 and the first front partition 13 disposed opposite each other along the thickness direction of the main partition 11 along the Y-axis. Alternatively, the storage body 10 may further include a back partition 12 and a second front partition 14, with the back partition 12 and the second front partition 14 disposed opposite each other along the thickness direction of the main partition 11 along the Y-axis. Alternatively, the storage body 10 may further include a back partition 12, a first front partition 13, and a second front partition 14, with the first and second front partitions 13, 14 disposed together on one side of the thickness direction of the main partition 11 and spaced apart along the Y-axis. The back partition 12 is disposed on the other side of the thickness direction of the main partition 11. In this embodiment, the storage device 100 is provided with multiple partitions to provide space for the patient's other items, allowing the portable infusion device 1000 to simultaneously meet the patient's needs in a variety of situations.
[0056] Please refer to Figure 2 and Figure 5 , Figure 5 for Figure 2 The internal structure diagram of the storage device of the portable infusion device is shown in FIG. Figure 5 Only the internal structure of the storage device 100 for placing the infusion device 800 is shown.
[0057] In this embodiment, the first fixing assembly 20 is connected to the inner surface of the first cover 112 and, together with the inner surface of the first cover 112, forms a chamber B for storing the device. Furthermore, the first fixing assembly 20 can be located at the edge of the viewing window 114 of the first cover 112. The second fixing assembly 30 is connected to the inner surface of the main compartment body 111 and is located at the top of the main compartment body 111.
[0058] The first fixing assembly 20 includes a third belt body 21 and a plurality of first fixing belts 22. The third belt body 21 and the plurality of first fixing belts 22 are all connected to the inner surface of the first cover 112. Specifically, one end of the third belt body 21 and one end of the plurality of first fixing belts 22 are connected to the inner surface of the first cover 112. The other end of each first fixing belt 22 is movably connected to the other end of the third belt body 21. The third belt body 21, the plurality of first fixing belts 22, and the first cover 112 together form the aforementioned chamber B. Chamber B is used to accommodate the device main unit 810. Chamber B is connected to the inner cavity A of the main compartment 11, so that the infusion line 830 of the infusion device 800 can be connected to the device main unit 810 in chamber B.
[0059] Furthermore, the third strap 21 and the plurality of first securing straps 22 are spaced apart and connected to the edge of the visual window 114. Specifically, one end of the third strap 21 and one end of the plurality of first securing straps 22 are both positioned around the edge of the visual window 114. The other ends of the third strap 21 and the other ends of the plurality of first securing straps 22 are positioned away from the visual window 114. Chamber B is positioned to correspond to the visual window 114. When the device main unit 810 is installed in chamber B, the display screen of the device main unit 810 corresponds to the visual window 114, allowing the patient to directly observe the operating status of the device main unit 810 through the visual window 114.
[0060] Exemplarily, the third strap 21 and the first fixing strap 22 are both Velcro patches. There is one third strap 21, which can be a wide webbing. There are three first fixing straps 22, which can be thin webbing. The third strap 21 and the three first fixing straps 22 are arranged around the edge of the visual window 114 and spaced apart. The third strap 21 is used to wrap around the bottom surface and one side surface of the device host 810. The three first fixing straps 22 are used to wrap around the remaining three sides of the device host 810. By bonding the three first fixing straps 22 to the three side edges of the third strap 21, not only can the device host 810 be loaded and secured, but the first fixing assembly 20 can also be configured to secure device hosts 810 of various sizes.
[0061] Combine Figure 5 In one embodiment, the second fixing component 30 includes a plurality of hanging clips 31. The hanging clips 31 are connected to the top of the cavity wall of the inner cavity A of the main compartment 11. The hanging clips 31 are used to connect to the hanging ring of the medicine bag 820 or to accommodate the infusion line 830. The hanging clips 31 are configured to fix the medicine bag 820 and / or the infusion line 830 of the infusion device 800. Exemplarily, the number of the hanging clips 31 is two. The two hanging clips 31 can respectively fix two medicine bags 820. Alternatively, one hanging clip 31 fixes one medicine bag 820, and the other hanging clip 31 accommodates the infusion line 830.
[0062] In one embodiment, the second securing assembly 30 includes multiple fourth straps 32. The fourth straps 32 are connected to the wall of the inner cavity A of the main compartment 11, with opposite ends of the straps 32 being movably connected along their length. The fourth straps 32 are designed to wrap around the opening 822 of the medicine bag 820 and connect to the connector of the opening 822, securing the medicine bag 820. The fourth straps 32 shorten the distance between the opening 822 of the medicine bag 820 and the top of the storage device 100, preventing excessive contact between the medicine bag 820 and the bottom of the storage device 100, which could cause blockage in the infusion line 830 connected to the medicine bag 820. Exemplarily, there are two fourth straps 32. Each of the two fourth straps 32 can secure two medicine bags 820. Alternatively, one fourth strap 32 can secure one medicine bag 820, while the other fourth strap 32 can accommodate the infusion line. The fourth straps 32 may be Velcro. The length of the fourth belt 32 and the connector that can be bonded is configured to meet the circumference of the bag opening 822 of the medicine bag 820 of various sizes.
[0063] In one embodiment, the second securing assembly 30 may further include multiple hanging buckles 31 and multiple fourth straps 32. The medicine bag 820 can be suspended and secured to the hanging buckle 31 via a hanging loop, and the bag opening 822 can be secured to the corresponding fourth strap 32 via a connector. This allows the hanging buckle 31 and the corresponding fourth strap 32 to serve as dual securing mechanisms for the medicine bag 820. This prevents the medicine bag 820 from shaking within the storage device 100 if it is suspended solely on the hanging buckle 31, and also prevents the medicine bag 820 from falling if it is secured solely on the fourth strap 32. For example, there are two hanging buckles 31 and two fourth straps 32. When two medicine bags 820 are placed in the storage device 100, both the hanging buckles 31 and the corresponding fourth strap 32 are used to secure the medicine bags 820. When a medicine bag 820 is placed in the storage device 100, one hanging buckle 31 and the corresponding fourth strap 32 are used to secure the medicine bag 820, while the other hanging buckle 31 and the corresponding fourth strap 32 can be used to store the infusion tube 830 of the infusion device 800. It should be understood that the second fixing assembly 30 can meet the patient's need to carry one or two medicine bags 820.
[0064] Please combine Figure 1 、 Figure 2 and Figure 6 , Figure 6 for Figure 1 A schematic structural diagram of the portable infusion device from another angle is shown.
[0065] The storage device also includes a shoulder strap 200. Along the Z-axis direction, the shoulder strap 200 is connected to the side of the back compartment 12 facing away from the main compartment 11, and the opposite ends of the shoulder strap 200 in the length direction are connected to the back compartment 12. The shoulder strap 200 is suitable for scenarios where the patient can carry the portable infusion device 1000 on his shoulders. Exemplarily, there are two shoulder straps 200. Both shoulder straps 200 are connected to the same side of the storage body 10 and are arranged at intervals. The two shoulder straps 200 arranged at intervals help to evenly distribute the weight of the portable infusion device 1000 on both sides of the patient's shoulders, reduce the pressure on the patient to carry the portable infusion device 1000, and improve the comfort of the patient to carry the portable infusion device 1000.
[0066] The length of the strap 200 is adjustable. However, it should be noted that the patient can adjust the length of the strap 200 adaptively according to his or her body shape and preferences, and the embodiment of the present application does not impose strict restrictions on the length and size of the strap 200.
[0067] In one embodiment, the storage device 100 may further include a plurality of second securing straps 201. The second securing straps 201 are connected to the shoulder strap 200 and are located on the side of the shoulder strap 200 facing away from the storage body 10. Along the X-axis, opposite ends of the second securing straps 201 are connected to the shoulder strap 200. The second securing straps 201 are used to temporarily store or secure the infusion tubing 830 of the infusion device 800.
[0068] It is understood that when a patient needs to infuse liquid medicine, the patient can, according to preference or habit, pass the infusion line 830 through the second fixing strap 201 on any shoulder strap 200. This setting not only secures the infusion line 830 and ensures stability during the infusion process, but also serves to tidy up the infusion line 830 outside the storage device 100, avoiding the risk of the infusion line 830 connected between the device host 810 and the patient being pulled. When the patient does not need to infuse liquid medicine temporarily, the patient can, according to preference or habit, store the infusion line 830 on the second fixing strap 201 of any shoulder strap 200. Exemplarily, there are four second fixing straps 201, with two second fixing straps 201 provided on each shoulder strap 200.
[0069] In one embodiment, the storage device 100 may further include a chest strap buckle 202. The chest strap buckle 202 is detachably connected between the two shoulder straps 200. The length of the chest strap buckle 202 is adjustable to suit the body shapes of different patients. The chest strap buckle 202 is used to distribute part of the weight of the portable infusion device 1000 to the patient's torso, which helps to reduce the weight-bearing pressure on the patient's shoulders and improve the patient's stability of the load of the portable infusion device 1000. At the same time, the chest strap buckle 202 limits the distance between the two shoulder straps 200, preventing the shoulder strap 200 from slipping off the patient's shoulders and causing the portable infusion device 1000 to swing, thereby improving the patient's comfort when using the storage device 100.
[0070] In one embodiment, the storage device 100 may further include a handle 300. The handle 300 is connected to the top of the back compartment 12 along the Z-axis. The handle 300 is suitable for use in scenarios where a patient can hand-carry the portable infusion device 1000. It should be understood that the shoulder strap 200 and handle 300 enable a patient to carry, use, and store the portable infusion device 1000 in a variety of scenarios.
[0071] In one embodiment, the storage device 100 may further include a side pocket 400. Along the X-axis direction, the side pocket 400 is connected to the outer surface of the main compartment body 111. Exemplarily, the number of side pockets 400 is two. The two side pockets 400 are respectively connected to opposite sides of the main compartment body 111 in the width direction. Each side pocket 400 is arranged corresponding to a threading hole 113 of the main compartment body 111. That is, the projection of the threading hole 113 in the X-axis direction falls within the projection of the side pocket 400 in the X-axis direction. Since the threading hole 113 connects the side pocket 400 and the main compartment 11, the side pocket 400 can be used as a storage space for the infusion line 830 of the infusion device 800. The side pocket 400 can also be used as a storage space for other items, such as umbrellas, water cups, etc. It can be understood that when the patient does not need to infuse medicine temporarily, the patient can store the infusion line 830 passing through any threading hole 113 in the corresponding side bag 400 according to preference or habit, so that it can be taken out the next time the medicine is infused, and the other idle side bag 400 can be used to place other items.
[0072] In one embodiment, the storage device 100 may further include a tube hook 500. The tube hook 500 is connected to the outer surface of the main compartment body 111 along the X-axis. The tube hook 500 can be used to store the patient's infusion tube 830. For example, there is one tube hook 500. One tube hook 500 is connected to one side of the main compartment body 111 in the width direction. When the patient temporarily does not need to infuse liquid medicine, the patient can hang the infusion tube 830 passing through any threading hole 113 on the tube hook 500 according to preference or habit, so that it can be used for the next infusion of liquid medicine.
[0073] In some embodiments, the storage device 100 may further include a combination of at least two of the following: a second securing strap 201, a chest strap buckle 202, a handle 300, a side pocket 400, and a tube hook 500, and these combinations may be applied to the storage device 100. If the storage device 100 includes at least the side pockets 400 and the tube hook 500, the tube hook 500 should be positioned above any side pocket 400 along the Z-axis. It will be appreciated that when a patient requires medication infusion, the patient can thread the infusion tubing 830 through any threading hole 113 into the corresponding side pocket 400, exit through the side pocket 400, and connect to the patient. When the patient temporarily no longer requires medication infusion, the patient can store the infusion tubing 830 in the tube hook 500.
[0074] Second embodiment:
[0075] See also Figure 7 and Figure 8 , Figure 7 This is a schematic diagram of the internal structure of the second embodiment of the portable infusion device provided in the embodiments of the present application. Figure 8 for Figure 7The internal structure diagram of the storage device of the portable infusion device is shown in FIG. Figure 8 Only the internal structure of the storage device 100 for placing the infusion device 800 is shown.
[0076] In this embodiment, the contents identical to those in the first embodiment are not further described. Unlike the first embodiment, the storage device of the portable infusion device 1000 in this embodiment further includes a third fixing assembly 40. The third fixing assembly 40 is connected to the inner surface of the main compartment body 111 and extends along the width of the main compartment body 111. Along the Z-axis, the third fixing assembly 40 is spaced apart from the second fixing assembly 30. The third fixing assembly 40 is configured to secure the medicine bag 820 of the infusion device 800.
[0077] In some embodiments, the third fixing assembly 40 may include a first strap 41 and a second strap 42. The first strap 41 and the second strap 42 are both connected to the inner surface of the main compartment body 111. One end of the first strap 41 is fixedly connected to one side of the inner surface of the main compartment body 111 in the width direction, and the first strap 41 is rotatable relative to the main compartment body 111. One end of the second strap 42 is fixedly connected to the other side of the inner surface of the main compartment body 111 in the width direction, and the second strap 42 is rotatable relative to the main compartment body 111. The other end of the second strap 42 is connected to the other end of the first strap 41 to enclose and secure the bag body 821 of the medicine bag 820.
[0078] Illustratively, the first and second straps 41, 42 are both Velcro strips. The first and second straps 41, 42 sequentially cover the body 821 of the medicine bag 820. With the second strap 42 bonded to the first strap 41, the body 821 of the medicine bag 820 is restrained and secured by the first and second straps 41, preventing the medicine bag 820 from moving within the storage device 1000 while the patient is using the portable infusion device 1000, potentially affecting the infusion process. It should be noted that the length of the bond between the first and second straps 41, 42 is configured to accommodate medicine bags 820 of various sizes within the storage device 100, thereby meeting the infusion volume requirements of patients of varying body shapes.
[0079] In one embodiment, the first strap 41 can be configured to hold an ice pack (not shown). For example, the first strap 41 is provided with a sandwich layer 414. The sandwich layer 414 communicates with the inner cavity A of the main compartment 11. The sandwich layer 414 can be used to hold an ice pack. The first strap 41 includes a first sub-strip 412 and a second sub-strip 413. Along the X-axis, the opposite width edges of the first sub-strip 412 and the opposite width edges of the second sub-strip 413 are connected, and the first sub-strip 412 and the second sub-strip 413 enclose the sandwich layer 414. The second strap 42 is movably bonded to the first sub-strip 412.
[0080] Patients can place ice packs in the storage device 100 as needed. The ice packs are used to physically cool the liquid medicine stored in the storage device 100 to prevent it from spoiling, meeting the needs of patients in different regions and environments to carry the portable infusion device 1000 with them for activities.
[0081] When a patient needs an ice pack, they can first place the ice pack in the interlayer 414, then sequentially place the first and second straps 41, 42 over the bag body 821 of the medicine bag 820. With the second strap 42 bonded to the first sub-strap 412 of the first strap 41, the bag body 821 of the medicine bag 820 is restrained and fixed by the first and second straps 41, 42. This prevents the medicine bag 820 from shaking inside the portable infusion device 1000 while the patient is using it, potentially affecting the infusion process. It should be noted that the length of the bond between the first sub-strap 412 and the second strap 42 is configured to accommodate both the use of the storage device 100 with and without an ice pack.
[0082] Third embodiment:
[0083] See also Figure 9 and Figure 10 , Figure 9 This is a schematic diagram of the internal structure of the third embodiment of the portable infusion device provided in the embodiments of the present application. Figure 10 for Figure 9 The internal structure diagram of the storage device of the portable infusion device is shown in FIG. Figure 9 Only the internal structure of the portable infusion device 1000 for placing the infusion equipment 800 is shown. Figure 10 Only the internal structure of the storage device 100 for placing the infusion device 800 is shown. Figure 9 and Figure 10 The storage elements 415 are schematically illustrated by taking the interlayer as an example.
[0084] In this embodiment, the same contents as those in the first embodiment are not repeated here. Unlike the first embodiment, the portable infusion device 1000 in this embodiment further includes an ice pack (not shown), which is used to physically cool the medicine bag 820 so that the liquid medicine in the medicine bag 820 does not spoil, thereby achieving the purpose of carrying the medicine bag 820 for a long time. The portable infusion device 1000 in this embodiment does not include the first fixing component 20, and the device host 810 can be placed at any position in the main compartment 11. At the same time, the structure of the third fixing component 40 of the portable infusion device 1000 in this embodiment is different from the structure of the third fixing component 40 in the above embodiment. The third fixing component 40 can be configured not only to fix the medicine bag 820, but also to fix the ice pack. In this embodiment, the third fixing component 40 also includes a storage part 415.
[0085] Specifically, the third fixing assembly 40 includes a first belt body 41 and a second belt body 42. The first belt body 41 is configured to secure an ice pack. The first belt body 41 includes a first sub-belt body 412 and a second sub-belt body 413. The first sub-belt body 412 is connected to the second sub-belt body 413. Along the Z-axis, the first sub-belt body 412 faces the second belt body 42 and is connected to the second belt body 42. The second sub-belt body 413 faces away from the second belt body 42. A storage part 415 is provided on the first belt body 41. The storage part 415 can be connected to the first sub-belt body 412, the second sub-belt body 413, or between the first sub-belt body 412 and the second sub-belt body 413. The storage part 415 can be a hook, a sandwich layer, a storage bag, a storage frame, etc. The storage part 415 is configured to secure an ice pack. When the patient needs an ice pack, the ice pack can be placed in the storage part 415 first, and the first belt body 41 and the second belt body 42 are sequentially covered on the bag body 821 of the medicine bag 820, and the second belt body 42 is adhered to the first sub-belt body 412, thereby restricting and fixing the bag body 821 of the medicine bag 820, preventing the medicine bag 820 in the storage device 100 from shaking when the patient is using the portable infusion device 1000, thereby affecting the process of infusing the medicine to the patient.
[0086] The external structure of the storage device 100 of the portable infusion device 1000 may refer to the external structure of the storage device 100 of the portable infusion device 1000 in the related art, or may refer to the external structure of the storage device 100 of the first embodiment of the portable infusion device 1000 in this application. This application does not limit this.
[0087] In the embodiment of the present application, a first fixing assembly 20 and a second fixing assembly 30 are provided at different locations within the main compartment 11 of the storage device 100, resulting in a rational and concise internal structure of the storage device 100 for storing an infusion device 800. When the infusion device 800 is installed in the storage device 100, the device 810, medicine bag 820, and infusion line 830 of the infusion device 800 are all located within the inner cavity A of the main compartment 11. The first fixing assembly 20 secures the device 810 of the infusion device 800, while the second fixing assembly 30 secures the medicine bag 820 or infusion line 830 of the infusion device 800. This improves the convenience of loading the infusion device 800 or using the infusion device 800 for a patient to infuse medication. When the patient requires medication infusion, the infusion line 830 can be directly connected to the patient through the threading hole 113 of the main compartment 11. Alternatively, when the patient does not require medication infusion, the infusion line 830 can be stored in a variety of ways. In addition, a third fixing component 40 can be provided in the main compartment 11 in the storage device 100. The third fixing component 40 can limit the bag body 821 of the medicine bag 820, and can place an ice bag to cool the medicine liquid to prevent the medicine liquid from spoiling, thereby meeting the use of the portable infusion device 1000 in different regions and different environments.
[0088] The embodiments of the present application are described in detail above. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only intended to help understand the method and core concept of the present application. At the same time, those skilled in the art may vary in the specific implementation methods and application scope based on the concept of the present application. In summary, the contents of this specification should not be construed as limiting the present application.
Claims
1. A storage device for storing infusion equipment, characterized in that: include: A storage body, comprising a main compartment, wherein the main compartment has an inner cavity; a first fixing assembly, the first fixing assembly comprising a third belt body and a plurality of first fixing belts, one end of the plurality of first fixing belts and one end of the third belt body being connected to the cavity wall of the inner cavity at intervals, the other end of each of the first fixing belts being movably connected to the other end of the third belt body, the third belt body, the plurality of first fixing belts, and the cavity wall of the inner cavity forming a chamber, the chamber being configured to house a device main unit of the infusion device; and A second fixing component, the second fixing component includes a hanging buckle, the hanging buckle is connected to the top of the cavity wall of the inner cavity, the hanging buckle is configured to fix the medicine bag and / or infusion pipeline of the infusion device, and / or the second fixing component also includes a fourth belt body, the fourth belt body is connected to the cavity wall of the inner cavity, and the fourth belt body is configured to fix the medicine bag of the infusion device.
2. The storage device according to claim 1, wherein: The main compartment includes a main compartment body and a first cover, wherein the first cover is connected to one side of the main compartment body and forms the inner cavity with the main compartment body, and the first cover can be opened or closed relative to the main compartment body; The storage device further includes a third fixing component connected to the inner surface of the main compartment body, and the third fixing component is configured to enclose and fix the medicine bag.
3. The storage device according to claim 2, wherein: The third fixing assembly includes a first belt body and a second belt body, one end of the first belt body is fixedly connected to one side of the inner surface of the main compartment body in the width direction, and the first belt body can rotate relative to the main compartment body, one end of the second belt body is fixedly connected to the other side of the inner surface of the main compartment body in the width direction, and the second belt body can rotate relative to the main compartment body, and the other end of the second belt body is connected to the other end of the first belt body to enclose and fix the medicine bag.
4. The storage device according to claim 3, characterized in that: The first belt body has an interlayer, and the interlayer is communicated with the inner cavity.
5. The storage device according to claim 1, wherein: The main compartment includes a main compartment body and a first cover, wherein the first cover is connected to one side of the main compartment body and forms the inner cavity with the main compartment body, and the first cover can be opened or closed relative to the main compartment body; The first fixing component is connected to the inner surface of the first covering and encloses the chamber together with the inner surface of the first covering.
6. The storage device according to claim 5, characterized in that: The first cover has a visible window, the visible window and the chamber are correspondingly arranged, and the third belt body and the plurality of first fixing belts are spaced around the edge of the visible window.
7. The storage device according to claim 6, characterized in that: The storage body also includes a second cover, which is connected to the side of the first cover facing away from the main compartment body. The second cover can be opened or closed relative to the first cover. The second cover and the first cover together form a first front compartment, and the visual window is located in the first front compartment.
8. A portable infusion device, characterized in that: It comprises an infusion device and a storage device as described in any one of claims 1 to 7, the infusion device comprises a device host, a medicine bag and an infusion pipeline, the infusion pipeline is connected between the medicine bag and the device host, the device host is placed in the chamber, and the medicine bag is fixed to the second fixing component.
9. A storage device for storing infusion equipment and ice packs, characterized in that: include: A storage body, comprising a main compartment, wherein the main compartment has an inner cavity; a second fixing assembly, disposed on the top of the cavity wall of the inner cavity, the second fixing assembly being configured to fix the medicine bag and / or infusion pipeline of the infusion device; and A third fixing component is connected to the wall of the inner cavity, the third fixing component is extended along the width direction of the main compartment, the third fixing component is configured to enclose and fix the medicine bag of the infusion device, and the third fixing component is also configured to fix the ice pack.
10. The storage device according to claim 9, characterized in that: The main compartment includes a main compartment body and a first cover, wherein the first cover is connected to one side of the main compartment body and forms the inner cavity with the main compartment body, and the first cover can be opened or closed relative to the main compartment body; The second fixing assembly is fixed to the top of the main compartment body, and the third fixing assembly includes a first belt body and a second belt body, one end of the first belt body is fixedly connected to one side of the inner surface of the main compartment body in the width direction, and the first belt body can rotate relative to the main compartment body, and one end of the second belt body is fixedly connected to the other side of the inner surface of the main compartment body in the width direction, and the second belt body can rotate relative to the main compartment body, and the other end of the second belt body can be connected to the first belt body to enclose and fix the medicine bag; The first belt is configured to fix the ice pack.
11. A portable infusion device, characterized in that: The invention comprises an infusion device, an ice bag and a storage device as described in claim 9 or 10, wherein the infusion device comprises a device host, a medicine bag and an infusion pipeline, the infusion pipeline is connected between the medicine bag and the device host, the device host is placed in the inner cavity, the medicine bag is fixed to the second fixing component and the third fixing component, and the ice bag is accommodated in the third fixing component.