Load-bearing monitoring intelligent insole
By using a weight-bearing monitoring smart insole with a built-in detection unit and energy storage unit in rehabilitation training, lower limb pressure can be monitored and fed back in real time, solving the problem of inaccurate pressure monitoring in rehabilitation training and improving the safety and effectiveness of rehabilitation training.
Patent Information
- Application Number
- CN202422762104.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-12
AI Technical Summary
In existing technologies, it is difficult to accurately monitor the pressure on the lower limbs during rehabilitation training, which may result in suspension that is too high or too low, affecting the rehabilitation effect or causing secondary injury.
Design a weight-bearing monitoring smart insole with a built-in detection unit and energy storage unit. It monitors lower limb pressure in real time through pressure sensors and transmits the data to a monitoring unit so that rehabilitation doctors can understand and adjust training parameters in real time.
It enables real-time monitoring and adjustment of lower limb pressure, avoiding excessive or insufficient pressure during rehabilitation and improving the safety and effectiveness of rehabilitation training.
Smart Images

Figure CN223515844U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical rehabilitation equipment technical field, especially intelligent shoe -pad of weight monitoring of a kind of. BACKGROUND
[0002] Lower limbs need to be rehabilitated after being treated by trauma. When lower limbs are rehabilitated, the adaptive pressure of lower limbs needs to be gradually increased to promote the recovery of lower limbs and enhance the muscle strength of lower limbs. Usually, when being rehabilitated, rehabilitation personnel will assist in rehabilitation by using auxiliary equipment such as lower limb rehabilitation training suspension apparatus.
[0003] The lower limb rehabilitation training suspension apparatus suspends the upper body of the rehabilitation personnel, and reduces the pressure on the lower limbs of the rehabilitation personnel during rehabilitation by suspending the rehabilitation personnel. If the suspension is too high, the pressure on the lower limbs is too small during rehabilitation, and the rehabilitation effect is not good. If the suspension is too low, the pressure on the lower limbs is too large during rehabilitation, and secondary injury is easily caused during rehabilitation. Therefore, how to know the pressure on the lower limbs of the rehabilitation personnel during rehabilitation becomes a problem to be solved. SUMMARY
[0004] The main purpose of the utility model is to provide an intelligent shoe -pad of weight monitoring, which aims to solve the problem that rehabilitation doctors do not know the pressure on the lower limbs of the rehabilitation personnel during rehabilitation.
[0005] To achieve the above-mentioned purpose, the utility model provides an intelligent shoe -pad of weight monitoring for a rehabilitation training system, the rehabilitation training system is used for rehabilitation training of lower limb injured patients, and the rehabilitation training system comprises a monitoring unit; the intelligent shoe -pad of weight monitoring comprises:
[0006] A shoe -pad body is provided with a detection unit, an energy storage part and an energy input part inside, the detection unit is electrically connected with the energy storage part, the detection unit is electrically connected with the monitoring unit, the detection unit is used for transmitting the pressure data of the shoe -pad body to the monitoring unit, the energy input part is electrically connected with the energy storage part, and the energy input part can input energy to the energy storage part.
[0007] In an embodiment, the intelligent shoe -pad of weight monitoring further comprises a shell, the detection unit, the energy storage part and the energy input part are all installed on the shell, and the shell is installed on the shoe -pad body.
[0008] In an embodiment, the shell and the shoe -pad body are detachably connected.
[0009] In an embodiment, a mounting groove is formed in the back of the shoe -pad body, and the shell and the mounting groove are detachably connected.
[0010] In an embodiment, a resilient protrusion is fixed at the slot opening of the mounting slot, and the resilient protrusion covers at least part of the shell to restrict the shell in the mounting slot.
[0011] In an embodiment, the weight monitoring intelligent insole further comprises a positioning assembly to position the shell at a preset position.
[0012] In an embodiment, the positioning assembly comprises a positioning pin and a positioning slot, one of which is arranged in the mounting slot and the other of which is arranged in the shell, and the shell is mounted in the mounting slot, and the positioning pin can be inserted into the positioning slot to position the detection unit at a preset position.
[0013] In an embodiment, the insole body completely covers the shell.
[0014] In an embodiment, the energy storage part is configured as a battery, and the energy input part is configured as a power input port.
[0015] And / or, the detection unit is configured as one or more pressure sensors.
[0016] In an embodiment, the energy storage part is configured as a battery, and the energy input part is configured as a wireless charging receiver.
[0017] And / or, the detection unit is configured as one or more pressure sensors.
[0018] The technical scheme of the utility model discloses a detection unit is used for transmitting the pressure data that the insole body bears to the monitoring unit, the energy input part is electrically connected with the energy storage part, the insole is worn by the rehabilitation personnel, and then the rehabilitation training is carried out according to the action (walks), at this time, the insole body is subjected to the pressure from the rehabilitation personnel, at this time, the detection unit can obtain the pressure data, and the pressure data is transmitted to the monitoring unit, and the rehabilitation doctor can understand the pressure data through the monitoring unit, so that the pressure that the lower limbs of the rehabilitation personnel bear is within the bearable range, the secondary injury of the lower limbs caused by too large pressure during the rehabilitation is avoided, or the rehabilitation training does not play the effect caused by too small pressure of the lower limbs, for example, at the initial stage of the rehabilitation, the lower limbs of the rehabilitation personnel can not bear the larger pressure, at this time, the rehabilitation doctor can reduce the pressure that the lower limbs bear through the lower limb rehabilitation training suspension appliance, and the specific operation is that the rehabilitation personnel is hung up through the lower limb rehabilitation training suspension appliance, so that the lower limbs are far away from the ground, and the contact pressure of the sole and the ground is reduced, at this time, the rehabilitation personnel are hung under the action of the suspension appliance, so that the pressure that the lower limbs bear is consistent with the pressure that can be borne at the initial stage of the rehabilitation, and simultaneously, the pressure value can be fed back through the detection unit (pressure sensor) in the insole body, and finally, the monitoring unit is presented, so that the rehabilitation doctor knows, and then the technical problems in the prior art are solved. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained according to the structure shown in these drawings without the creative labor for the ordinary skilled in the art.
[0020] Figure 1 The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment.
[0021] Figure 2 The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment. Figure 1 The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment.
[0022] Figure 3 The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment. Figure 1 The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment.
[0023] Figure 4 The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment. The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment.
[0024] The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment. Figure 5 The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment. The structure schematic diagram of the insole back surface in the weight monitoring intelligent insole provided by the utility model is shown in an embodiment.
[0025] Figure 6 A structure schematic view of the detection unit and the monitoring unit in the shoe pad in the weight monitoring intelligent shoe pad provided by the utility model;
[0026] Figure 7 A structure schematic view of still another embodiment of the detection unit and the monitoring unit in the shoe pad in the weight monitoring intelligent shoe pad provided by the utility model.
[0027] Explanation of the reference signs:
[0028] 100, shoe pad body; 110, mounting groove; 120, elastic convex part;
[0029] 200, shell;
[0030] 300, energy input part;
[0031] 400, detection unit;
[0032] 500, signal relay unit;
[0033] 600, monitoring unit.
[0034] The utility model discloses the realization, functional characteristics and advantages will be further explained with reference to the drawings in combination with the embodiment. Specific implementation
[0035] The technical scheme in the utility model embodiment will be described clearly and completely in combination with the drawings in the utility model embodiment, and obviously, the described embodiment is only a part of the embodiment of the utility model, not all the embodiment. Based on the embodiment in the utility model, all other embodiments obtained by the ordinary skill in the art without making creative labor belong to the scope of the utility model protection.
[0036] It should be noted that if the embodiment of the utility model involves directional indication (such as up, down, left, right, front, back, etc.), the directional indication is only used to explain the relative position relationship, movement condition, etc. between the components in a certain posture, if the certain posture changes, the directional indication also changes accordingly.
[0037] In addition, if the description of "first", "second" and the like is involved in the embodiments of the present application, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first" and "second" can be explicitly or implicitly included at least one of the features. In addition, if "and / or" or "and / or" appears throughout the text, it means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0038] After the lower limbs are treated by trauma, rehabilitation training needs to be carried out to recover the lower limbs. When the lower limbs are carried out rehabilitation training, the adaptive pressure of the lower limbs needs to be gradually increased to promote the recovery of the lower limbs and enhance the muscle strength of the lower limbs. Usually, when carrying out rehabilitation training, the rehabilitation personnel will assist in carrying out rehabilitation training by using auxiliary equipment such as a lower limb rehabilitation training suspension instrument.
[0039] The lower limb rehabilitation training suspension instrument suspends the upper body of the rehabilitation personnel, and reduces the pressure borne by the lower limbs of the rehabilitation personnel during rehabilitation by suspending the rehabilitation personnel. The lower limb rehabilitation training suspension instrument. If the suspension is too high, the pressure borne by the lower limbs during the rehabilitation process is too small, and the rehabilitation effect is not good. If the suspension is too low, the pressure borne by the lower limbs during the rehabilitation process is too large, and secondary injury is easily caused during rehabilitation. Therefore, how to know the pressure borne by the lower limbs of the rehabilitation personnel during the rehabilitation process becomes a problem to be solved.
[0040] The utility model provides a kind of weight monitoring intelligent insole, weight monitoring intelligent insole is used for rehabilitation training system, the rehabilitation training system is used for lower limb injured patient rehabilitation training, the rehabilitation training system includes monitoring unit, further, in some embodiments, monitoring unit can be mobile phone, tablet computer, computer and the like display terminal.
[0041] Please refer to Figure 1 In an embodiment of the present application, the weight monitoring intelligent insole includes:
[0042] The insole body 100 is provided with a detection unit 400, an energy storage part (not shown) and an energy input part 300 inside the insole body 100, the detection unit 400 is electrically connected with the energy storage part, the detection unit 400 is electrically connected with the monitoring unit 600, further, the electrical connection between the detection unit 400 and the monitoring unit 600 can be direct electrical connection or indirect electrical connection. In some embodiments (referenceFigure 6 ), when the detection unit 400 is directly electrically connected with the monitoring unit 600, wherein the direct electrical connection can be directly connected wirelessly through Bluetooth, wifi, etc. In some embodiments (refer to Figure 7 ), the detection unit 400 is indirectly electrically connected with the monitoring unit 600, wherein an indirect electrical connection can be provided between the detection unit 400 and the monitoring unit 600 with a signal relay unit 500, wherein the signal relay unit 500 is used to receive the signal of the detection unit 400 and transmit the model of the detection unit 400 to the monitoring unit 600, further, the detection unit 400 and the signal relay unit 500 can be connected through Bluetooth, etc. The signal relay unit 500 and the monitoring unit 600 can be connected through wifi, etc. Wherein the signal relay unit 500 includes a data receiving and transmitting module, a control unit, etc. Further, in some embodiments, the signal relay unit 500 can be a smart watch, wherein the smart watch can be connected with the detection unit 400 through Bluetooth, and connected with the monitoring unit 600 through the corresponding program app.
[0043] Further, in some embodiments (refer to Figure 5 ), the energy storage part is configured as a battery, and the energy input part 300 is configured as a power input port, wherein the power input port can be a Type-c port, etc. In some embodiments, when the energy storage part is configured as a battery, the energy input part 300 can also be configured as a wireless charging receiver. When the energy input part 300 is configured as a power input port, the battery can be charged by inserting the power cord into the power input port. When the energy input part 300 is configured as a wireless charging receiver, the insole body 100 is placed in the charging position when charging the battery, so that the wireless charging receiver corresponds to the wireless charging transmitter, and the power is input into the battery through the wireless charging receiver by electromagnetic induction, etc.
[0044] Further, in some embodiments, the detection unit 400 is configured as a pressure sensor or a weighing sensor with a Bluetooth module, wherein when the detection unit 400 selects the weighing sensor, the pressure value needs to be calculated through certain calculation, wherein the above calculation can calculate the pressure according to the force and the force area. Further, different from the above embodiment, in some embodiments, the detection unit 400 is configured as a plurality of pressure sensors or weighing sensors, and the plurality of pressure sensors can be respectively arranged at the forefoot, the arch, and the heel. Further, the plurality of pressure sensors can also be respectively arranged at other positions.
[0045] Specifically, in the embodiment, the detection unit 400 is configured to transmit the pressure data of the insole body 100 to the monitoring unit 600, the energy input part 300 is electrically connected with the energy storage part, and the energy input part 300 is configured to input energy to the energy storage part, further, the pressure of the insole body 100 is mainly from the rehabilitation personnel, specifically, after the rehabilitation personnel wear the insole, the rehabilitation personnel perform the rehabilitation training according to the action (walking), at this time, the insole body 100 receives the pressure from the rehabilitation personnel, at this time, the detection unit 400 can obtain the pressure data and transmit the pressure data to the monitoring unit 600, and the rehabilitation doctor can understand the pressure data through the monitoring unit 600, so that the pressure of the lower limbs of the rehabilitation personnel is within the bearable range, to avoid the lower limbs from being injured again due to too large pressure during the rehabilitation, or to avoid the rehabilitation training from being ineffective due to too small pressure. For example, in the early rehabilitation, the lower limbs of the rehabilitation personnel cannot bear large pressure, at this time, the rehabilitation doctor can adjust the pressure of the lower limbs by using the lower limb rehabilitation training suspension device, specifically, the rehabilitation personnel is suspended by the lower limb rehabilitation training suspension device, so that the lower limbs are away from the ground, and the pressure of the soles in contact with the ground is reduced, at this time, the rehabilitation personnel is suspended by the lower limb rehabilitation training suspension device, so that the pressure of the lower limbs meets the pressure that can be borne in the early rehabilitation, and the pressure value can be fed back by the detection unit 400 (pressure sensor) in the insole body 100 and finally displayed on the monitoring unit 600, so that the rehabilitation doctor knows, and the technical problems in the prior art are solved. At the same time, the rehabilitation personnel keeps walking during the rehabilitation training, at this time, the pressure change value can also be fed back to the monitoring unit 600 by the detection unit 400, if the pressure value is too large and exceeds the range set by the rehabilitation doctor in advance, the rehabilitation doctor can stop the rehabilitation personnel, and then adjust the suspension device, to avoid the lower limbs of the rehabilitation personnel from being injured again due to too large pressure during the rehabilitation.
[0046] Further, in the embodiment, the detection unit 400, the energy storage part and the energy input part 300 can be directly located inside the insole body 100.
[0047] In an embodiment, referring to Figure 1 , Figure 3 , the weight-bearing monitoring intelligent insole further comprises a shell 200, and the detection unit 400, the energy storage part and the energy input part 300 are all mounted on the shell 200, wherein the shell 200 is mounted on the insole body 100, and further, the shell 200 in the embodiment can play a protective role on the detection unit 400, the energy storage part and the energy input part 300.
[0048] In an embodiment, referring to Figure 1 , Figure 2, the shell 200 is detachably connected with the insole body 100, and further, in the embodiment, the energy input part 300 can be configured as a power input port or a wireless charging receiver. Further, in the embodiment, when the energy input part 300 is configured as a power input port, the power input port is arranged on the circumferential side surface of the shell 200. Meanwhile, in the embodiment, the shell 200 is detachably connected with the insole body 100, and in use, a plurality of shells 200 can be provided, wherein each shell 200 is provided with a detection unit 400, an energy storage part, and an energy input part 300, so that in use, when the energy storage part in one of the shells 200 is insufficient, it can be replaced.
[0049] Further, in the embodiment, referring to Figure 2 , the back surface of the insole body 100 is provided with a mounting groove 110, and the shell 200 is detachably connected with the mounting groove 110, so that the shell 200 is embedded in the insole body 100, at which time the thickness of the insole body 100 can be relatively reduced, compared with the shell 200 being connected to the outside of the insole body 100.
[0050] Further, in the embodiment, referring to Figure 1 、 Figure 2 , the mounting groove 110 is provided with an elastic protrusion 120 at the slot opening, and the elastic protrusion 120 covers at least part of the shell 200 to limit the shell 200 in the mounting groove 110, and further, in the embodiment, the elastic protrusion 120 is configured of rubber material, and it can be understood that when the shell 200 is mounted, the elastic protrusion 120 is elastically deformed, and after the shell 200 is completely mounted into the mounting groove 110, the user adjusts the elastic protrusion 120 to cover at least part of the shell 200, so as to limit the shell 200 in the mounting groove 110.
[0051] In an embodiment, the weight monitoring intelligent insole further comprises a positioning assembly (not shown) for positioning the shell 200 at a predetermined position, under the action of the positioning assembly, the shell 200 can be installed at the correct position when installed, avoiding the problem of improper installation of the shell 200 leading to uncomfortable use of the insole. Further, in an embodiment, the positioning assembly can adopt the following structure, wherein the positioning assembly comprises a positioning pin and a positioning groove, one of the positioning pin and the positioning groove is arranged in the mounting groove 110, and the other is arranged in the shell 200, the shell 200 is mounted in the mounting groove 110, and the positioning pin can be inserted into the positioning groove to position the detection unit 400 at a predetermined position.
[0052] In an embodiment, in addition to the above-mentioned detachable connection between the shell 200 and the insole body 100 (seeFigure 1 、 Figure 3 ) different, the shoe pad body 100 completely covers the shell 200, that is, in this embodiment, the shell 200 is completely embedded in the shoe pad body 100 (see Figure 4 ), further, in this embodiment, the energy input part 300 can be configured as a power input port or a wireless charging receiver.
[0053] The above is only an exemplary embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application.
Claims
1. A weight monitoring smart insole, comprising: The application discloses a weight monitoring intelligent insole for a rehabilitation training system for lower limb injured patient rehabilitation training. The weight monitoring intelligent insole comprises a insole body, a detection unit, an energy storage unit and an energy input unit, wherein the detection unit is electrically connected with the energy storage unit, the detection unit is electrically connected with the monitoring unit, the detection unit is used for transmitting pressure data of the insole body to the monitoring unit, the energy input unit is electrically connected with the energy storage unit, and the energy input unit is used for inputting energy to the energy storage unit.
2. The weight monitoring smart insole of claim 1, wherein, The weight monitoring intelligent insole further comprises a shell, the detection unit, the energy storage unit and the energy input unit are installed in the shell, and the shell is installed in the insole body.
3. The weight monitoring smart insole of claim 2, wherein, The shell and the insole body are detachably connected.
4. The weight monitoring smart insole of claim 3, wherein, A mounting groove is formed in the back of the insole body, and the shell and the mounting groove are detachably connected.
5. The weight monitoring smart insole of claim 4, wherein, An elastic convex part is fixed at the slot opening of the mounting groove, the elastic convex part covers at least part of the shell, and the shell is limited in the mounting groove.
6. The weight monitoring smart insole of claim 4, wherein, The weight monitoring intelligent insole further comprises a positioning assembly, and the positioning assembly is used for positioning the shell in a preset position.
7. The weight monitoring smart insole of claim 6, wherein, The positioning assembly comprises a positioning pin and a positioning groove, one of the positioning pin and the positioning groove is arranged in the mounting groove, and the other is arranged in the shell, the shell is installed in the mounting groove, the positioning pin can be inserted into the positioning groove, and the detection unit is positioned in a preset position.
8. The weight monitoring smart insole of claim 2, wherein, The insole body completely covers the shell.
9. The weight monitoring smart insole of any one of claims 1 to 7, wherein, The energy storage unit is configured as a battery, and the energy input unit is configured as a power input port. The detection unit is configured as one or more pressure sensors.
10. The weight monitoring smart insole of any one of claims 1 to 8, wherein, The energy storage unit is configured as a battery, and the energy input unit is configured as a wireless charging receiver. The detection unit is configured as one or more pressure sensors.