Wearable tumor metabolism monitoring and nutrition intervention integrated device
By designing a wearable tumor metabolic monitoring and nutritional intervention integrated device, using wearable belts, positioning components and magnetic positioning structures, the problem of large size and inconvenience in wearing of traditional equipment is solved, and the equipment is stable and fast disassembled, improving the wear comfort and operational convenience of patients.
Patent Information
- Application Number
- CN202510567567.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2025-06-20
AI Technical Summary
Traditional tumor metabolism monitoring equipment is huge and inconvenient to wear, making it difficult to ensure stability in exercise state and comfort during patient activities.
A wearable tumor metabolism monitoring and nutritional intervention integrated device is designed, using wearable belts, positioning components, connecting plates and detector positioning parts. The stable fixation and rapid disassembly of the health detector is achieved through the magnetic positioning structure and chute design.
While ensuring the stability of the equipment and monitoring accuracy, the device greatly improves the wear comfort of patients and the convenience of operating for medical staff, and is suitable for long-term monitoring needs.
Smart Images

Figure CN120167908A_ABST
Abstract
Description
Technical Field
[0001] The present invention application relates to the technical field of tumor metabolism monitoring, and specifically relates to a wearable integrated device for tumor metabolism monitoring and nutritional intervention. Background Art
[0002] Tumor metabolism monitoring refers to a technical means of evaluating the biological characteristics of tumors by detecting the abnormal metabolic activities of tumor cells. Its core principle is that tumor cells, in order to meet the needs of rapid proliferation, will exhibit metabolic characteristics significantly different from normal cells.
[0003] Traditional tumor metabolism monitoring devices generally have problems such as large volume and inconvenient wearing, which seriously affect the compliance of patients for long-term monitoring. In the prior art, the fixing methods of medical devices mostly use single connection structures such as straps or sticky fasteners, which can neither ensure stability during movement nor achieve rapid disassembly and maintenance. Especially in the daily monitoring of tumor patients, it is necessary to ensure stable contact between the device and the body to obtain accurate data, and at the same time, take into account the comfort of patients during activities, which puts higher requirements on the connection structure of the device. Therefore, a wearable integrated device for tumor metabolism monitoring and nutritional intervention is provided to solve the above-mentioned problems. Summary of the Invention
[0004] In order to solve the problems of large volume and inconvenient wearing, the present invention provides a wearable integrated device for tumor metabolism monitoring and nutritional intervention to solve the above problems.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A wearable integrated device for tumor metabolism monitoring and nutritional intervention, including a wearable belt, two positioning components are hung on the wearable belt, the wearable belt is connected to a connecting plate through the two positioning components, a detector positioning member is arranged on a side of the connecting plate away from the wearable belt, a health detector body is clamped on the detector positioning member, and a connecting component for buffer adjustment is arranged between the detector positioning member and the connecting plate.
[0007] Further, limiting sliding grooves are opened on both the detector positioning member and the connecting plate, and both ends of the connecting component are connected to the adjacent limiting sliding grooves.
[0008] Further, the positioning component includes a hanging buckle, a rotating plate is hinged on the hanging buckle, a positioning nail and a positioning snap ring are arranged on the rotating plate, and the positioning snap ring sequentially penetrates through the connecting plate and the rotating plate and is clamped with the adjacent positioning nail.
[0009] Further, there are four groups of the positioning nails and the positioning snap rings, and multiple positioning nails and positioning snap rings are evenly positioned at the four corners of the connecting plate in two rows.
[0010] Further, the connection component includes a first slider, on which a positioning tube is hinged. A threaded rotating rod is slidably connected to the positioning tube. The other end of the threaded rotating rod is hinged to a second slider. T-shaped limit blocks are installed on the opposite sides of the first slider and the second slider. The first slider is slidably connected to the connecting plate through the adjacent T-shaped limit blocks, and the second slider is slidably connected to the detector positioning member through the adjacent T-shaped limit blocks.
[0011] Further, a threaded ring is rotatably connected to the positioning tube, and the threaded ring is threadedly connected to the threaded rotating rod.
[0012] Further, positioning knobs are threadedly connected to both of the two first sliders and the two T-shaped limit blocks.
[0013] Further, the detector positioning member includes a support plate, which is connected to the adjacent connection component. The side of the support plate away from the connection component is engaged with a positioning plate, and the positioning plate is engaged with the health detector body.
[0014] Further, magnet blocks are installed on the adjacent sides of the support plate and the positioning plate, and the support plate and the positioning plate are attracted to each other through a plurality of magnet blocks.
[0015] Further, the wearing belt is made of cowhide material.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0017] 1. The device realizes the rapid assembly with the connecting plate through the buckle, the rotating plate and the positioning nail of the positioning component of the wearing belt, and forms a firm connection in cooperation with the positioning snap ring; the detector positioning member enables the health detector body to be firmly fixed and can be disassembled with one hand through the magnetic attraction type positioning structure (magnet block and positioning plate) and the chute design. This dual connection mechanism not only ensures the stability of the device during movement, but also solves the pain point that traditional medical devices are bulky and difficult to wear, and is especially suitable for the daily use of tumor patients who need long-term monitoring.
[0018] 2. The device realizes precise positioning in three-dimensional space through the linkage design of the T-shaped limit block and the first slider, and cooperates with the positioning knob to enable the detector body to adjust the observation angle; the telescopic mechanism composed of the threaded rotating rod and the positioning tube further optimizes the flexibility of the device orientation adjustment. The unique anti-drop structure and the magnetic attraction quick-release design (the positioning plate can be removed separately) not only ensure the operation safety, but also enable the device to be quickly separated in case of emergency, effectively avoiding the damage caused by the device falling. These characteristics greatly improve the wearing comfort of patients and the operation convenience of medical staff while ensuring the medical monitoring accuracy. Description of the Drawings
[0019] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the accompanying drawings required for the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.
[0020] Figure 1 is a perspective view of the first perspective of the present invention;
[0021] Figure 2 is a perspective view of the second perspective of the present invention;
[0022] Figure 3 is a perspective view of the connection component in the present invention;
[0023] Figure 4 is a perspective view of the connection between the connection component and the detector positioning member in the present invention;
[0024] Figure 5 is an exploded perspective view of the connection between the connection plate and the positioning component in the present invention.
[0025] The meanings of the reference numerals in the drawings: 1, wearing belt; 2, connection plate; 3, positioning component; 31, hanging buckle; 32, rotating plate; 33, positioning nail; 34, positioning snap ring; 4, connection component; 41, first slider; 42, positioning knob; 43, positioning tube; 44, threaded ring; 45, threaded rotating rod; 46, second slider; 47, T-shaped limit block; 5, detector positioning member; 51, support plate; 52, positioning plate; 53, magnet block; 6, health detector body. Detailed implementation manners
[0026] To make the application purpose, features, and advantages of the present application more obvious and understandable, the following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the accompanying drawings in the embodiments of the present application. Obviously, the embodiments described below are only some embodiments of the present application, not all of 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 belong to the scope of protection of the present application.
[0027] Refer to Figures 1-5, A wearable integrated device for tumor metabolism monitoring and nutritional intervention, including a wearable belt 1. Two positioning components 3 are hung on the wearable belt 1. The wearable belt 1 is connected to a connecting plate 2 through the two positioning components 3. A detector positioning member 5 is arranged on the side of the connecting plate 2 away from the wearable belt 1. A health detector body 6 is clamped on the detector positioning member 5. A connecting component 4 for buffering and adjusting is arranged between the detector positioning member 5 and the connecting plate 2. Limiting chutes are opened on both the detector positioning member 5 and the connecting plate 2. Both ends of the connecting component 4 are connected to the adjacent limiting chutes. The wearable belt 1 is made of cowhide material.
[0028] Specifically, two limiting chutes are provided, which can facilitate the connecting component 4 to adjust the final position of the health detector body 6. The design of the limiting chute not only provides a stable sliding track for the connecting component 4, but also prevents the slider from falling off through the mechanical limiting function of the T-shaped limiting block 47, ensuring the stability of the device in the moving state. This design simplifies the operation process. The user only needs to slide the first slider 41 to complete the position adjustment without additional tools. The health detector body 6 can use any instrument on the market with the functions of tumor metabolism monitoring and nutritional intervention reminder. The material of the wearable belt 1 can be customized according to the patient's allergens to further improve the wearing comfort.
[0029] As an optimized solution, the positioning component 3 includes a hanging buckle 31. A rotating plate 32 is hinged on the hanging buckle 31. A positioning nail 33 and a positioning snap ring 34 are arranged on the rotating plate 32. The positioning snap ring 34 sequentially passes through the connecting plate 2 and the rotating plate 32 and is engaged with the adjacent positioning nail 33. There are four groups of positioning nails 33 and positioning snap rings 34, and multiple positioning nails 33 and positioning snap rings 34 evenly position the four corners of the connecting plate 2 in two rows.
[0030] Specifically, the positioning component 3 realizes the rapid assembly of the wearable belt 1 and the connecting plate 2 through the cooperation of the hanging buckle 31, the rotating plate 32, the positioning nail 33 and the positioning snap ring 34. During installation, the wearable belt 1 is slightly bent and then docked with the hanging buckle 31. The positioning nail 33 sequentially passes through the reserved holes of the hanging buckle 31 and the rotating plate 32, and finally the end of the positioning nail 33 is locked with the positioning snap ring 34. This design is not only simple and intuitive in operation, but also does not require tools, greatly reducing the use threshold for patients. The engaging structure of the positioning snap ring 34 further enhances the stability of the connection, ensuring that the device will not loosen or fall off during the movement state, thereby guaranteeing the continuity and reliability of the monitoring data.
[0031] As an optimization solution, the connecting component 4 includes a first slider 41. A positioning tube 43 is hinged on the first slider 41. A threaded rotating rod 45 is slidably connected to the positioning tube 43. The other end of the threaded rotating rod 45 is hinged to a second slider 46. T-shaped limit blocks 47 are installed on the opposite sides of the first slider 41 and the second slider 46. The first slider 41 is slidably connected to the connecting plate 2 through the adjacent T-shaped limit blocks 47. The second slider 46 is slidably connected to the detector positioning member 5 through the adjacent T-shaped limit blocks 47. A threaded ring 44 is rotatably connected to the positioning tube 43. The threaded ring 44 is threadedly connected to the threaded rotating rod 45. Positioning knobs 42 are threadedly connected to both of the two first sliders 41 and the two T-shaped limit blocks 47.
[0032] Specifically, when it is necessary to adjust the position of the detector positioning member 5, first slide the first slider 41 in the chute on the connecting plate 2. And the sliding of the first slider 41 is limited by the T-shaped limit block 47, which can prevent the first slider 41 from sliding off. Subsequently, after adjusting the position, rotate the positioning knobs 42 on the two first sliders 41 to make the two positioning knobs 42 closely adhere to the inner wall of the connecting plate 2, then the first slider 41 and the connecting plate 2 can be positioned. Similarly, rotate the positioning knob 42 on the T-shaped limit block 47 to make the T-shaped limit block 47 closely adhere to the position of the detector positioning member 5 on the support plate 51. Subsequently, rotate the two threaded rings 44 to drive the threaded rotating rod 45 to extend or retract from the positioning tube 43, so that the orientation of the detector positioning member 5 can be adjusted. The locking function of the positioning knob 42 further optimizes the operation experience. The user can lock or release the slider at any time according to the needs to ensure that the device is always in the best viewing angle. This multi-level adjustment design meets the usage requirements in different scenarios. Whether the patient is standing, lying in bed or in a moving state, the device position can be easily adjusted.
[0033] As an optimization solution, the detector positioning member 5 includes a support plate 51. The support plate 51 is connected to the adjacent connecting component 4. The side of the support plate 51 away from the connecting component 4 is engaged with a positioning plate 52. The positioning plate 52 is engaged with the health detector body 6. Magnet blocks 53 are installed on the adjacent sides of the support plate 51 and the positioning plate 52. The support plate 51 and the positioning plate 52 are attracted to each other through a plurality of magnet blocks 53.
[0034] Specifically, the positioning between the detector positioning member 5 and the health detector body 6 is divided into two steps. First, after the magnet blocks 53 on the support plate 51 and the positioning plate 52 are aligned, the positioning plate 52 is attached to the magnet blocks 53, allowing the magnet blocks 53 to position and adsorb the positioning plate 52. Subsequently, the health detector body 6 is slid into the chute on the side of the positioning plate 52 to complete the assembly. This not only ensures the stability of the device during movement but also retains the convenient disassembly function, facilitating the daily use and maintenance of patients. In case of an emergency, the user can quickly separate the device by applying a vertical force, and the magnetic connection will be separated first, avoiding the risk of damage caused by the device falling. In addition, the shock-absorbing pad in the chute can effectively buffer the impact force, further protecting the safety of the device.
[0035] Furthermore, a torsion spring is installed at the rotating part of the hanging buckle 31 and the rotating plate 32, which can make the rotating plate 32 continuously move closer to the position of the hanging buckle 31. And according to actual needs, the positioning assembly 3 can be reversed to adjust the inclination direction of the connecting plate 2.
[0036] Working principle: A connection is established between the wearing belt 1 and the health detector body 6 by using the connecting plate 2, the positioning assembly 3, the connecting component 4, and the detector positioning member 5. This enables the health detector body 6, which is not easily portable for monitoring tumor metabolism and nutritional intervention on tumor patients, to become a structure that is convenient to carry and use. The wearing belt 1 is made of cowhide material, which is not only soft and comfortable but also can effectively reduce the discomfort caused by long-term wearing. The breathability and durability of cowhide make it an ideal wearing material, especially suitable for tumor patients who need long-term monitoring. In addition, the surface of the cowhide material is smooth, facilitating cleaning and maintenance, and reducing the risk of infection. According to the actual needs and allergens of the patient, the material of the wearing belt 1 can also be adjusted personalized, such as replacing it with other hypoallergenic materials, thereby further enhancing the comfort and safety of wearing;
[0037] And when the device is installed, the connection between the wearing belt 1 and the connecting plate 2 is first coordinated by the positioning assembly 3. After slightly bending the wearing belt 1, the hanging buckle 31 can be hung on the wearing belt 1. Subsequently, the positioning pins 33 are first inserted through the rotating plate 32 between the hanging buckle 31 and the rotating plate 32, and then the connecting plate 2 is inserted onto multiple positioning pins 33. Then, the positioning snap ring 34 is engaged with the positioning pins 33 to complete the fixation between the connecting plate 2 and the positioning assembly 3. A torsion spring is installed at the rotating part of the hanging buckle 31 and the rotating plate 32, which can make the rotating plate 32 continuously move closer to the position of the hanging buckle 31. This design not only enhances the stability of the connection but also allows the user to reverse the direction of the positioning assembly 3 according to actual needs, thereby adjusting the inclination direction of the connecting plate 2. This flexibility enables the device to adapt to the body shapes and wearing needs of different patients, further enhancing the convenience and comfort of use;
[0038] The positioning between the detector positioning member 5 and the health detector body 6 is divided into two steps. First, after the magnet blocks 53 on the support plate 51 and the positioning plate 52 are aligned, the positioning plate 52 is attached to the magnet block 53, and the magnet block 53 positions and adsorbs the positioning plate 52. Then, the health detector body 6 is slid into from the chute on the side of the positioning plate 52 to complete the assembly;
[0039] When it is necessary to adjust the position of the detector positioning member 5, first slide the first slider 41 in the chute on the connecting plate 2, and the sliding of the first slider 41 is limited by the T-shaped limiting block 47, which can prevent the first slider 41 from sliding off. Then, after adjusting the position, rotate the positioning knobs 42 on the two first sliders 41 to make the two positioning knobs 42 closely adhere to the inner wall of the connecting plate 2, so as to position the first slider 41 and the connecting plate 2. Similarly, rotate the positioning knob 42 on the T-shaped limiting block 47 to make the T-shaped limiting block 47 closely adhere to the support plate 51 to position the detector positioning member 5. Then, rotate the two threaded rings 44 to drive the threaded rotating rod 45 to extend or retract from the positioning tube 43, so as to adjust the orientation of the detector positioning member 5, that is, adjust the orientation of the health detector body 6, which is convenient for the staff or the patient himself to observe the situation on the health detector body 6;
[0040] And when it is necessary to temporarily remove the health detector body 6, just remove the positioning plate 52. The magnetic attraction structure and the shock-absorbing pads in the chute can also effectively protect the device from falling damage. This design not only improves the accuracy of the monitoring data, but also greatly enhances the patient's use experience and the safety of the device.
[0041] The actual use steps of the device:
[0042] S1. The device realizes the reliable connection between the wearable belt 1 and the connecting plate 2 through the positioning component 3. During specific operation, the wearable belt 1 is moderately bent and docked with the buckle 31, and then the positioning pins 33 are successively passed through the reserved holes of the buckle 31 and the rotating plate 32. Then, the slot at the bottom of the connecting plate 2 is aligned with the multiple positioning pins 33 and pressed vertically downward, and finally the end of the positioning pins 33 is locked with the positioning snap ring 34 to complete the fixation. The whole process is simple and intuitive in design and can be quickly assembled without tools.
[0043] S2. During installation, first accurately align the magnet blocks 53 on the support plate 51 with the magnetic conductive sheets on the back of the positioning plate 52, and use magnetic force to realize pre-fixation. When it is confirmed that the adsorption is in place, the health detector body 6 is smoothly pushed into along the chute on the side of the positioning plate 52 until the locking mechanism at the bottom of the device automatically locks. This design not only ensures that the device remains stable during activities, but also retains the convenient disassembly function, which is convenient for patients' daily use and maintenance.
[0044] S3. The horizontal adjustment of the device is achieved by the sliding of the first slider 41 within the T-shaped chute, and the sliding range is mechanically limited by the T-shaped limit block 47. After the position is determined, rotation of the positioning knob 42 realizes locking. The height adjustment is completed by rotating the knob on the T-shaped limit block 47. The angle adjustment is the most precise. Rotating the threaded ring 44 can drive the telescopic movement of the threaded rotating rod 45 to achieve the pitching adjustment of the detector positioning member 5. This multi-level adjustment design meets the requirements of different usage scenarios, and the operation is simple and intuitive.
[0045] S4. When it is necessary to temporarily remove the health detector body 6, simply press the positioning plate 52, release the button, and pull it obliquely in the reverse direction along the chute to remove the device. In case of an emergency, force can be directly applied vertically to separate it. At this time, the magnetic connection will be preferentially separated to avoid damage. In terms of safety protection, when the device accidentally falls, the magnetic structure and the shock-absorbing pad in the chute can effectively buffer the impact force and protect the device from damage. All detachable parts adopt anti-loss design to ensure safe and reliable use.
[0046] For those skilled in the art, it is obvious that this application is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of this application, this application can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of this application is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the same elements of the claims are intended to be included in this application. Any reference signs in the claims should not be regarded as limiting the claimed rights.
[0047] As described above, the above embodiments are only used to illustrate the technical solutions of this application, rather than to limit it; although this application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of this application.
Claims
1. A wearable tumor metabolism monitoring and nutritional intervention integrated device, comprising a wearable belt (1), characterized in that: Two positioning components (3) are hung on the wearing belt (1), and the wearing belt (1) is connected to a connecting plate (2) via the two positioning components (3). A detector positioning piece (5) is provided on the side of the connecting plate (2) away from the wearing belt (1), and a health detector body (6) is engaged with the detector positioning piece (5). A buffer-adjustable connecting component (4) is provided between the detector positioning piece (5) and the connecting plate (2).
2. A wearable integrated tumor metabolism monitoring and nutritional intervention device according to claim 1, characterized in that: The detector positioning member (5) and the connecting plate (2) are both provided with limit sliding grooves, and both ends of the connecting assembly (4) are connected to adjacent limit sliding grooves.
3. The wearable integrated tumor metabolism monitoring and nutritional intervention device according to claim 1, characterized in that: The positioning assembly (3) comprises a hook (31), a rotating plate (32) is hinged on the hook (31), and a positioning pin (33) and a positioning snap ring (34) are provided on the rotating plate (32). The positioning snap ring (34) passes through the connecting plate (2) and the rotating plate (32) in sequence and is engaged with the adjacent positioning pin (33).
4. A wearable integrated tumor metabolism monitoring and nutritional intervention device according to claim 3, characterized in that: There are four groups of positioning pins (33) and positioning snap rings (34), and the plurality of positioning pins (33) and positioning snap rings (34) are arranged in two rows to evenly position the four corners of the connecting plate (2).
5. The wearable integrated tumor metabolism monitoring and nutrition intervention device according to claim 1, characterized in that: The connecting assembly (4) comprises a first slider (41), a positioning tube (43) is hingedly connected to the first slider (41), a threaded rotating rod (45) is slidably connected to the positioning tube (43), a second slider (46) is hingedly connected to the other end of the threaded rotating rod (45), and T-shaped limit blocks (47) are installed on the opposite sides of the first slider (41) and the second slider (46), the first slider (41) is slidably connected to the connecting plate (2) through the adjacent T-shaped limit blocks (47), and the second slider (46) is slidably connected to the detector positioning member (5) through the adjacent T-shaped limit blocks (47).
6. A wearable integrated tumor metabolism monitoring and nutritional intervention device according to claim 5, characterized in that: A threaded ring (44) is rotatably connected to the positioning tube (43), and the threaded ring (44) is threadably connected to a threaded rotating rod (45).
7. The wearable integrated tumor metabolism monitoring and nutrition intervention device according to claim 5, characterized in that: The two first sliding blocks (41) and the two T-shaped limit blocks (47) are both threadedly connected with positioning knobs (42).
8. The wearable integrated tumor metabolism monitoring and nutrition intervention device according to claim 7, characterized in that: The detector positioning member (5) comprises a support plate (51), the support plate (51) is connected to the adjacent connecting assembly (4), the side of the support plate (51) away from the connecting assembly (4) is engaged with a positioning plate (52), and the positioning plate (52) is engaged with the health detector body (6).
9. A wearable integrated tumor metabolism monitoring and nutritional intervention device according to claim 8, characterized in that: A magnet block (53) is installed on one side adjacent to the support plate (51) and the positioning plate (52), and the support plate (51) and the positioning plate (52) attract each other via the plurality of magnet blocks (53).
10. The wearable integrated tumor metabolism monitoring and nutrition intervention device according to claim 1, characterized in that: The wearing belt (1) is made of cowhide material.