Personalized customization device for foot pain physiotherapy insole and physiotherapy insole
By combining static and dynamic detection devices with pressure gasket groups, personalized customization of insoles can be achieved, solving the problem of inaccurate matching of traditional insoles, improving physical therapy effects and comfort, and reducing sports injuries and pain.
Patent Information
- Application Number
- CN202422532957.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-10-18
AI Technical Summary
In the existing technology, traditional finished products and customized insoles are difficult to accurately match individual foot abnormalities, resulting in poor therapeutic effects. In addition, the process of customized insoles is long and expensive.
A personalized customization device including static and dynamic detection devices is used to detect the foot condition through a foot mirror detector and a treadmill. Combined with a pressure pad group, personalized customization of the insole is achieved to adjust the mechanical balance of the foot, improve gait and reduce pain.
The physiotherapy effect and wearing comfort of the insole are improved. Through personalized customized devices and pressure pads, the mechanical balance of the foot is adjusted to reduce sports injuries and pain.
Smart Images

Figure CN223392042U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of insoles, in particular to a personalized customization device for a physical therapy insole for foot pain and the physical therapy insole. Background Art
[0002] Prolonged standing and walking, wearing inappropriate shoes, or improper walking posture can lead to abnormal foot alignment, resulting in flat feet, high arches, and hallux valgus. Flat feet and high arches can lead to a series of abnormal posture symptoms, including hallux valgus, heel valgus, heel varus, bow legs, pigeon-toed feet, anterior pelvic tilt, uneven shoulders, and scoliosis. These foot abnormalities can also cause a range of compression pain symptoms, including toe pain, plantar fasciitis, accessory navicular syndrome, Achilles tendonitis, knee pain, piriformis syndrome, and other pain.
[0003] Currently, there are health-care insoles on the market that have certain therapeutic effects for various symptoms. However, traditional health-care insoles are basically ready-made insoles, and these pre-made insoles are difficult to accurately match individual symptoms, resulting in poor therapeutic effects. In addition, some insoles are also customized. However, these customized insoles cannot be improved and customized on the original insoles, but the entire insole is customized from scratch, which has the disadvantages of a long process and very high price. Utility Model Content
[0004] Based on this, it is necessary to provide a personalized customization device and a therapeutic insole for foot pain in response to the deficiencies in the existing technology.
[0005] A foot pain therapy insole, comprising an insole body and a pressure pad group, wherein the pressure pad group comprises a plurality of pressure pads, a plurality of pre-bonding areas are provided on the bottom surface of the insole body, and the plurality of pressure pads are bonded to the corresponding pre-bonding areas; the pressure pad group comprises a transverse arch pressure pad, a forefoot pressure pad, an arch pressure pad and a heel pressure pad; the transverse arch pressure pad is roughly triangular in shape, and a plurality of first cutting lines which are gradually reduced from the outside to the inside are provided on the transverse arch pressure pad; the transverse arch pressure pad is bonded to the middle part of the forefoot area of the insole body; the forefoot pressure pad is The insole is rectangular in shape, and its outer edge is provided with several parallel second cutting lines. The forefoot pressure gasket is fitted to the forefoot area of the insole main body and is located on the rear side of the transverse arch pressure gasket; the outer side surface of the forefoot pressure gasket is flush with the inner edge of the insole main body; the arch pressure gasket is irregularly crescent-shaped, and the arc side of the arch pressure gasket is provided with several third cutting lines that gradually become smaller from outside to inside; the arch pressure gasket is fitted to the arch position of the bottom of the insole main body; the heel pressure gasket includes an inner gasket and an outer gasket, and the arc sides of the inner gasket and the outer gasket are provided with fourth cutting lines.
[0006] Furthermore, more than two pressure gaskets of the same type are provided, and the two or more pressure gaskets of the same type are stacked and bonded on the same pre-bonding area.
[0007] A personalized customization device for foot pain therapy insoles includes a static detection device and a dynamic detection device. The static detection device includes a foot mirror detector or a foot 3D scanner, and the dynamic detection device includes a treadmill.
[0008] Furthermore, the foot mirror detector includes a transparent upper frame, a lens arranged at the bottom of the upper frame and an LED light arranged in the upper frame. The upper frame includes a transparent top plate and two oppositely arranged side plates arranged at the bottom thereof, and the lens and the top plate are arranged opposite to each other with an upper and lower interval, and the reflective surface of the lens is arranged corresponding to the top plate.
[0009] Furthermore, the LED light is arranged vertically on the inner side surface of the side panel and extends along the edge direction of the lens.
[0010] Furthermore, two corresponding side panels are provided, and the additional two sides of the upper frame are hollowed out.
[0011] Furthermore, the top plate and side plates are both transparent acrylic plates.
[0012] Furthermore, the light output color of the LED lamp is fluorescent green.
[0013] Furthermore, it also includes an intelligent terminal, which is equipped with a CCD and an information database; the CCD captures images and videos of the static detection device and the dynamic detection device, and uploads them to the information database for analysis and comparison.
[0014] Furthermore, it also includes a cutting device and adhesive glue, the cutting device cuts the pressure gasket along the cutting line, and the adhesive glue sticks the pressure gasket to the pre-bonding area of the insole body.
[0015] In summary, the personalized customization device for foot pain physiotherapy insoles of the present invention uses simple static and dynamic detection and evaluation, and through physiotherapy insoles and pressure gaskets, it can achieve targeted personalized customization of insoles for the mechanical balance of the foot, which can improve wearing comfort and have better physiotherapy effects. This customization method detects the pressure and gait of the patient's soles, allowing the patient to stand and walk, with the insole support and pressure gaskets assisting in changing the ground reaction force acting on the foot, thereby achieving the mechanical balance of the human foot and reducing sports injuries and pain. The pressure gasket can also suppress the impact force related to gait to adjust the gait and improve comfort. The utility model is highly practical and has strong promotional significance. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1This is a side view of the foot pain therapy insole of the present invention;
[0017] Figure 2 for Figure 1 Schematic diagram of the structure of the main body of the midsole, wherein the bottom of the right foot insole is affixed with a pressure pad; the left foot insole is not affixed with a pressure pad;
[0018] Figure 3 It is a structural diagram of the pressure gasket group;
[0019] Figure 4 It is a structural diagram of a foot mirror detector. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0021] like Figures 1 to 3 As shown, a foot pain therapy insole provided by the present invention includes an insole body 10 and a pressure gasket assembly 20. The pressure gasket assembly 20 includes a plurality of pressure gaskets. The bottom surface of the insole body 10 is provided with a plurality of pre-bonding areas 11, and one or more of the plurality of pressure gaskets is bonded to a corresponding pre-bonding area 11. In addition, if the thickness is insufficient, two or more layers of pressure gaskets can be bonded to the same pre-bonding area 11 as required.
[0022] In this embodiment, the pressure pad group 20 includes a transverse arch pressure pad 21, a forefoot pressure pad 22, an arch pressure pad 23, and a heel pressure pad 24. The transverse arch pressure pad 21 is generally triangular in shape and has a plurality of first cutting lines 211 arranged in an annular pattern that gradually decrease in size from the outside to the inside. The transverse arch pressure pad 21 is attached to the center of the forefoot region of the insole body 10. The forefoot pressure pad 22 is rectangular in shape and has a plurality of parallel second cutting lines 221 arranged along its outer edge. The forefoot pressure pad 22 is attached to the forefoot region of the insole body 10 and is located behind the transverse arch pressure pad 21. The outer side of the forefoot pressure pad 22 is flush with the inner edge of the insole body 10.
[0023] The arch pressure gasket 23 is arranged in an irregular crescent shape, and the arc side of the arch pressure gasket 23 is provided with a plurality of third cutting lines 231 that gradually become smaller from the outside to the inside; the arch pressure gasket 23 is fitted to the foot position at the bottom of the insole body 10. The heel pressure gasket 24 includes an inner gasket 241 and an outer gasket 242, and the arc sides of the inner gasket 241 and the outer gasket 242 are provided with a fourth cutting line 243. When in actual use, each pressure gasket can be cut along the cutting line according to the size actually required to fit the pressure gasket of the appropriate size; it has high flexibility. In addition, the pressure gasket in this embodiment is a gasket of basic thickness. When the thickness is not enough, multiple pressure gaskets can be stacked and fitted.
[0024] The utility model also provides a personalized customization device for a foot pain therapy insole, which includes an information collection module, a static detection device, and a dynamic detection device.
[0025] The information collection module is used to collect basic information of the customization requester, such as age, height, weight, shoe wearing habits, exercise habits, treatment history, and pain duration; as well as the customization requester's demands.
[0026] The static detection device is used to detect the collapse of the arch of the foot to determine whether it is flat foot or high arch foot; if it is flat foot eversion, the pressure on the inner side is large; if it is high arch foot eversion, the force on the outer side is large.
[0027] In this embodiment, the static detection device employs a first embodiment, employing a foot mirror 30 to detect the sole of the foot. The foot mirror 30 comprises a transparent upper frame 31, a lens 32 disposed at the bottom of the upper frame 31, and an LED light 33 disposed within the upper frame. The upper frame 31 comprises a transparent top panel 311 and two opposing side panels 312 disposed at its bottom. The lens 32 is spaced apart from the top panel 311, with the reflective surface of the lens 32 corresponding to the top panel 311. The LED light 312 is disposed perpendicular to the side panels 312. In this embodiment, both the top panel 311 and the side panels 312 are made of transparent acrylic. The LED light 33 emits a multicolored light, preferably a fluorescent green. During use, the person standing on the top panel reflects the shape of the sole of the foot on the top surface of the lens. Due to the distance difference between the sole of the foot and the lens 32, the sole shape can be visually observed, facilitating the capture of footprints. Moreover, this real-time and intuitive footprint map is more intuitive and accurate than the traditional footprint map formed by thermal sensing, and will not have any errors due to sensing sensitivity.
[0028] And detect hallux valgus and the force line shape of the lower limbs when standing; hallux valgus is an important cause of abnormal force during walking; patients with hallux valgus generally have collapsed medial arches or transverse arches. The force line of the lower limbs is normally straight, but if the arch collapses, the force line of the lower limbs will shift, resulting in an imbalance in the force of the bones and muscles, which will cause posture and pain problems over time. For problems caused by unbalanced force lines, the compressive pain problem can be improved by changing the force line balance through personalized insoles. In this embodiment, point positions are used to observe whether the force lines of the heel and calf are straight; the points can be marked with a marking pen. This point marking method not only improves the intuitiveness of recognition, but also facilitates the measurement of inclination with the assistance of a ruler.
[0029] Furthermore, in another embodiment, the foot mirror detector also includes an analysis and comparison terminal, which can be a mobile phone, computer, etc. This analysis and comparison terminal is equipped with a discrimination analysis app, which is equipped with a database and upload module. Consumers can use the app to take and upload pictures of their footprints on the lens, and the mini-program will analyze and determine the degree of foot collapse. In addition, users can also upload pictures of the foot force line and hallux valgus for judgment and analysis.
[0030] This embodiment has the advantages of low cost and high implementation flexibility. It can be used in small insole sales stores or even by individuals. Consumers can make real-time adjustments based on their own conditions. If the symptoms are alleviated after trying on the shoes for a period of time, the insoles can be added or removed in real time based on the detection results. The operation is convenient and easy to implement.
[0031] Check leg shape visually or with a CCD to monitor knee and leg force lines to determine the degree of impact on foot shape, such as X-shaped legs and knee hyperextension. A collapsed arch prevents the proper release and distribution of force between the sole of the foot and the ground, leading to inversion and an "X"-shaped gait. A collapsed arch in one leg can cause scoliosis, uneven shoulders, and a higher risk of twisting the foot during exercise.
[0032] The dynamic detection device includes a treadmill. The person being tested walks or jogs on the treadmill. Through dynamic detection, the patient's gait and body compensation conditions, such as uneven shoulders, X-shaped and O-shaped legs, etc., can be understood.
[0033] Furthermore, the dynamic detection device also includes an analysis system, which includes a CCD detection device and an analysis module. The analysis module can analyze the gait by dynamically observing the gait and playing back the video in slow motion through the CCD detection device.
[0034] After the static detection device and the dynamic detection device have completed the detection, the information from the information acquisition module is combined with the dynamic gait conditions detected by the static detection device and the dynamic detection device, and the patch position is confirmed after comprehensive evaluation, and the insole is customized. If the pressure gasket is too large, a cutting tool is used to cut it along the cutting line to a suitable size. After applying glue, the pressure gasket is then attached to the insole body. In addition, when attaching, if the arch of the foot is collapsed and the heel is everted at a small angle, the arch pressure gasket 23 is attached to the corresponding area of the insole body 10. If the heel is everted more than 10 degrees, the medial gasket 241 is attached to the corresponding area. If the person walks with his feet turned outward or has severe flat feet, the forefoot pressure gasket 22 is attached to the forefoot area. If the inversion angle exceeds 8 degrees, the transverse arch pressure gasket 21 is attached to the corresponding position.
[0035] In summary, the personalized customization device for foot pain therapy insoles of the present invention uses a simple static detection device and a dynamic detection device, and through therapy insoles and pressure pads, achieves personalized customization of insoles targeted at the mechanical balance of the foot, which can improve wearing comfort and have better therapy effects. This customization device detects the pressure and gait of the patient's soles, allowing the patient to stand and walk, with the insole support and pressure pads assisting in changing the ground reaction force acting on the foot, thereby achieving the mechanical balance of the human foot and reducing sports injuries and pain. The pressure pad can also suppress the impact force associated with the gait to adjust the gait and improve comfort. The utility model is highly practical and has strong promotional significance.
[0036] The above-described embodiment merely represents one embodiment of the present invention. While the description is relatively specific and detailed, it should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A foot pain therapy insole, characterized in that: The insole comprises an insole body and a pressure gasket group, wherein the pressure gasket group comprises a plurality of pressure gaskets, a plurality of pre-bonding areas are provided on the bottom surface of the insole body, and the plurality of pressure gaskets are bonded to the corresponding pre-bonding areas; the pressure gasket group comprises a transverse arch pressure gasket, a forefoot pressure gasket, an arch pressure gasket and a heel pressure gasket; the transverse arch pressure gasket is roughly triangular in shape, and is provided with a plurality of first cutting lines which are gradually reduced from the outside to the inside and are arranged in an annular shape; the transverse arch pressure gasket is bonded to the middle part of the forefoot area of the insole body; the forefoot pressure gasket is rectangular in shape, Its outer edge is provided with several parallel second cutting lines, the forefoot pressure gasket is fitted to the forefoot area of the insole main body and is located on the rear side of the transverse arch pressure gasket; the outer side surface of the forefoot pressure gasket is flush with the inner edge of the insole main body; the arch pressure gasket is arranged in an irregular crescent shape, and the arc side of the arch pressure gasket is provided with several third cutting lines that gradually become smaller from outside to inside; the arch pressure gasket is fitted to the arch position of the bottom of the insole main body; the heel pressure gasket includes an inner gasket and an outer gasket, and the arc sides of the inner gasket and the outer gasket are provided with fourth cutting lines.
2. The foot pain therapy insole according to claim 1, characterized in that: More than two pressure gaskets of the same type are provided, and the two or more pressure gaskets of the same type are stacked and laminated on the same pre-lamination area.
3. A personalized customization device for a foot pain therapy insole, which is used to prepare a foot pain therapy insole according to any one of claims 1 to 2; characterized in that: It includes a static detection device and a dynamic detection device. The static detection device includes a foot mirror detector or a foot 3D scanner, and the dynamic detection device includes a treadmill.
4. The personalized customization device for foot pain therapy insoles according to claim 3, characterized in that: The foot mirror detector includes a transparent upper frame, a lens arranged at the bottom of the upper frame, and an LED light arranged in the upper frame. The upper frame includes a transparent top plate and two oppositely arranged side plates arranged at its bottom, and the lens and the top plate are arranged opposite to each other with an upper and lower interval, and the reflective surface of the lens is arranged corresponding to the top plate.
5. The personalized customization device for foot pain therapy insoles according to claim 4, characterized in that: The LED lights are arranged vertically on the inner side surfaces of the side panels and extend along the edge direction of the lens.
6. The personalized customization device for foot pain therapy insoles according to claim 4, characterized in that: The side panels are provided with two corresponding ones, and the additional two sides of the upper frame are hollowed out.
7. The personalized customization device for foot pain therapy insoles according to claim 4, characterized in that: The top plate and side plates are both transparent acrylic plates.
8. The personalized customization device for foot pain therapy insoles according to claim 4, characterized in that: The light output color of the LED lamp is fluorescent green.
9. The personalized customization device for foot pain therapy insoles according to claim 4, characterized in that: It also includes an intelligent terminal, which is provided with a CCD and an information database.
10. The personalized customization device for foot pain therapy insoles according to claim 4, characterized in that: It also includes a cutting device and adhesive glue. The cutting device cuts the pressure gasket along the cutting line, and the adhesive glue sticks the pressure gasket to the pre-sticking area of the insole body.