T-shaped shoe

By designing T-shirt shoes with a body length smaller than the standard and setting openings on the toe, combining anti-rotating rods and stabilizing rods, the complications caused by T-shirt shoes restricting foot movement are solved, and the balance of comfort and therapeutic effect is achieved.

CN223232216UActive Publication Date: 2025-08-19SHENZHEN UNIV GENERAL HOSPITAL
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Patent Information

Application Number
CN202421740665.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-22
Publication Date
2025-08-19
Estimated Expiration
2034-07-22

AI Technical Summary

Technical Problem

When existing T-shaped shoes are worn for a long time, restricting foot movement may lead to complications such as venous thrombosis in the lower limbs.

Method used

A shoe body length is designed with an open T-shaped shoe with an open body, combined with an anti-rotating rod and a stabilizing rod, allowing the toes to naturally stretch, increasing stability and comfort.

Benefits of technology

On the basis of maintaining foot fixation and correction of deformities, reduce toe binding and compression, reduce the risk of complications such as venous thrombosis and joint stiffness of the lower limbs, and improve the rehabilitation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of medical instruments, and provides a T-shaped shoe. The T-shaped shoe comprises a shoe body and an anti-rotation rod, the length of the shoe body is smaller than that of a standard shoe with the same shoe size, and an opening is formed in a toe cap of the shoe body and used for allowing toes of a patient to extend outwards. The anti-rotation rod is arranged at the heel of the shoe body, and the extending direction of the anti-rotation rod is perpendicular to the length direction of the shoe body. According to the T-shaped shoe, under the condition that a patient wears the T-shaped shoe for a long time, the toes of the patient are allowed to naturally extend out of the shoe body from the opening of the toe cap, and the toes of the patient are allowed to freely exercise and move; according to the T-shaped shoe, on the basis that the shoe body and the anti-rotation rod have the excellent treatment effects of fixing the foot of a patient and preventing and correcting foot deformity, the risk that the patient suffers from complications such as lower limb venous thrombosis and ankylosis can be reduced, and therefore the treatment effect can be optimized, and the rehabilitation process can be promoted.
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Description

Technical Field

[0001] The present application belongs to the technical field of medical devices, and in particular relates to a T-shaped shoe. Background Art

[0002] T-strap shoes typically consist of a shoe body and a long, anti-rotation bar located at the heel. The "T"-shaped frame formed by the shoe body and the anti-rotation bar stabilizes the patient's foot, preventing and correcting foot deformities. However, prolonged use of T-strap shoes can restrict foot movement and potentially lead to complications such as lower extremity venous thrombosis. Utility Model Content

[0003] The embodiment of the present application provides a T-strap shoe, which aims to solve the problem that when a patient wears T-strap shoes for a long time, the T-strap shoes restrict the patient's foot movement and may cause the patient to suffer from complications such as lower limb venous thrombosis.

[0004] To achieve the above objectives, the technical solutions adopted in the embodiments of the present application are:

[0005] In a first aspect, a T-shaped shoe is provided, comprising:

[0006] a shoe body, wherein the length of the shoe body is shorter than the length of a standard shoe of the same shoe size, and the toe of the shoe body is provided with an opening, wherein the opening is used for allowing the patient's toes to extend outward;

[0007] The anti-rotation rod is arranged at the heel of the shoe body, and the extension direction of the anti-rotation rod is perpendicular to the length direction of the shoe body.

[0008] In some embodiments, under the same shoe size, the difference between the length of the shoe body and the length of a standard shoe is 3 cm (centimeter) to 5 cm.

[0009] In some embodiments, the T-shoe further includes a first stabilizing rod and a second stabilizing rod, wherein the first stabilizing rod is connected between one end of the anti-rotation rod and the middle of the shoe body, and the second stabilizing rod is connected between the other end of the anti-rotation rod and the middle of the shoe body.

[0010] In some embodiments, the anti-rotation bar is symmetrically arranged with respect to the shoe body, and the first stabilization bar and the second stabilization bar are symmetrically distributed with respect to the shoe body.

[0011] In some embodiments, the shoe body includes an upper and a sole arranged on the bottom side of the upper, and at least one elastic component is provided on the top side of the upper. The elastic component includes a first connecting strap, a first fastener, a second fastener and a second connecting strap. The first connecting strap is connected between the first fastener and the upper, and the second connecting strap is connected between the second fastener and the upper. The first fastener and the second fastener can be fastened with each other, and the length of at least one of the first connecting strap and the second connecting strap is adjustable.

[0012] In some embodiments, at least one of the first connecting strap and the second connecting strap is an elastic strap.

[0013] In some embodiments, a convex portion is provided on the bottom side of the sole, the convex portion is arranged in a ring shape, and an anti-slip pattern is provided on the bottom side of the convex portion.

[0014] In some embodiments, the sole is penetrated with ventilation holes, and the ventilation holes are arranged in the area enclosed by the protrusions.

[0015] In some embodiments, the anti-rotation rod has a mounting hole passing through it, and the T-shoe also includes a fastening assembly, which includes a bolt and a nut. The bolt is fixed to the shoe body and passes through the mounting hole, and the nut is threadedly connected to the bolt and pressed against the side of the anti-rotation rod facing away from the shoe body.

[0016] In some embodiments, the mounting hole is an arc-shaped waist-shaped hole.

[0017] In some embodiments, the nut is a butterfly nut.

[0018] The T-shaped shoes provided by this application have the following beneficial effects:

[0019] The T-strap shoes provided in the embodiments of the present application are based on the excellent therapeutic effects of "fixing the patient's foot" and "preventing and correcting foot deformities" of the shoe body and the anti-rotation rod. In addition, the "length of the shoe body is less than the length of a standard shoe of the same shoe size" and the "toe of the shoe body is provided with an opening" are provided so that when the patient's foot is worn in the shoe body, the patient's toes can naturally extend out of the shoe body from the opening of the toe. Thus, on the one hand, the wrapping, restraint and pressure of the shoe body on the patient's toes can be reduced, and the wearing comfort of the shoe body can be improved. On the other hand, when the patient wears the T-strap shoes for a long time, the patient's toes can be allowed to exercise and move freely, thereby reducing the risk of the patient suffering from complications such as lower limb venous thrombosis and joint stiffness without affecting the therapeutic effects of "fixing the patient's foot" and "preventing and correcting foot deformities", thereby optimizing the treatment effect and promoting the rehabilitation process. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0021] Figure 1 A top view of a T-strap shoe provided in some embodiments of the present application;

[0022] Figure 2 A bottom view of a T-strap shoe provided in some embodiments of the present application.

[0023] Among them, the reference numerals in the figures are:

[0024] 10-shoe body, L-length of shoe body, a-length direction of shoe body, 11-toe cap, 111-opening, 12-heel, 13-upper, 14-sole, 141-convex part, 1411-anti-slip groove, 142-ventilation hole; 20-anti-rotation rod, b-extension direction of anti-rotation rod, 21-mounting hole; 30-first stabilizing rod, 40-second stabilizing rod, 50-elastic assembly, 51-first connecting belt, 52-first fastener, 53-second fastener, 54-second connecting belt, 60-fastening assembly, 61-bolt, 62-nut. DETAILED DESCRIPTION

[0025] In order to make the technical problems, technical solutions and beneficial effects to be solved by this application clear and understandable, the present application is 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 this application and are not intended to limit this application.

[0026] In the description of this application, it should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.

[0027] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of such features. Throughout the description of this application, "plurality" means two or more, unless otherwise specifically defined.

[0028] In this application, unless otherwise expressly specified or limited, terms such as "mounted," "connected," "connect," and "fixed" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components or interactions between two components. Those skilled in the art will understand the specific meanings of these terms in this application based on specific circumstances.

[0029] T-shoes, also known as T-corrective shoes and T-anti-rotation shoes, are widely used in orthopedic clinical practice. They are a type of shoe that applies corrective force to the foot and ankle through biomechanical means.

[0030] T-strap shoes typically consist of a shoe body and a long, anti-rotation bar located at the heel. The "T"-shaped frame formed by the shoe body and the anti-rotation bar stabilizes the patient's foot, preventing and correcting foot deformities. However, prolonged use of T-strap shoes can restrict foot movement and potentially lead to complications such as lower extremity venous thrombosis.

[0031] Therefore, the embodiment of the present application provides a T-shoe, which, based on the excellent therapeutic effects of "fixing the patient's foot" and "preventing and correcting foot deformities" of the shoe body and the anti-rotation rod, can also be based on the setting that "the length of the shoe body is less than the length of a standard shoe of the same shoe size" and the setting that "the toe of the shoe body is provided with an opening", so that when the patient's foot is worn in the shoe body, the patient's toes can naturally extend out of the shoe body from the opening of the toe. Thus, on the one hand, the wrapping, restraint and pressure of the shoe body on the patient's toes can be reduced, and the wearing comfort of the shoe body can be improved. On the other hand, when the patient wears the T-shoe for a long time, the patient's toes can be allowed to exercise and move freely, thereby reducing the risk of the patient suffering from complications such as lower limb venous thrombosis and joint stiffness without affecting the therapeutic effects of "fixing the patient's foot" and "preventing and correcting foot deformities", thereby optimizing the treatment effect and promoting the rehabilitation process.

[0032] The following describes the specific implementation of this application in detail with reference to specific embodiments:

[0033] See also Figure 1 、 Figure 2 Some embodiments of the present application provide a T-shaped shoe, comprising a shoe body 10 and an anti-rotation rod 20. The length L of the shoe body 10 is less than the length of a standard shoe of the same size. The toe box 11 of the shoe body 10 is provided with an opening 111 for allowing the patient's toes to extend outward. The anti-rotation rod 20 is disposed at the heel 12 of the shoe body 10, and the extension direction b of the anti-rotation rod 20 is perpendicular to the length direction a of the shoe body 10.

[0034] It should be noted that the shoe body 10 can be worn by the patient's foot. In some embodiments, the shoe body 10 can be made of soft and breathable materials to improve the patient's wearing comfort and reduce the discomfort caused by long-term wearing.

[0035] Along the length direction a of the shoe body 10, the shoe body 10 has opposite toe cap 11 and heel 12. When the patient's foot is wearing the shoe body 10, the toe cap 11 corresponds to the patient's toes and forefoot area, and the heel 12 corresponds to the patient's heel and ankle area.

[0036] The anti-rotation bar 20 is disposed at the heel 12 of the shoe body 10 and is fixed to the bottom side of the shoe body 10. The extension direction b of the anti-rotation bar 20 is perpendicular to the length direction a of the shoe body 10. The bottom side of the shoe body 10 corresponds to the side of the shoe body 10 used for stepping on and contacting the ground.

[0037] Based on this, the anti-rotation bar 20 can be used in conjunction with the heel 12 as a support point to enhance the stability of the shoe body 10, thereby providing stability to the patient's foot. This prevents the patient's foot from shifting or shaking while the patient is lying still, standing, or walking, thereby facilitating the recovery of the patient's foot. Furthermore, the anti-rotation bar 20 can effectively prevent the patient's foot from rotating internally and externally. Especially for patients who need to maintain the affected limb in abduction neutral position, the anti-rotation bar 20 can help the affected limb maintain the correct abduction neutral position, reducing complications caused by movement or improper posture of the affected limb, and optimizing the treatment effect.

[0038] It should also be noted that, compared to a standard shoe of the same size, the shoe body 10 of this embodiment is missing a portion at the toe box 11, resulting in a length L of the shoe body 10 of this embodiment being shorter than the length of a standard shoe of the same size. For example, assuming the shoe body 10 of this embodiment is size 40, and the standard shoe used as a reference is also size 40 (i.e., the same shoe size), the length L of the size 40 shoe body 10 is shorter than the length of the standard shoe of size 40 (the length of a standard shoe of size 40 is approximately 25 cm), i.e., the length L of the size 40 shoe body 10 is less than 25 cm.

[0039] The toe box 11 of the shoe body 10 is provided with an opening 111, which connects the inside and outside of the shoe body 10. When the patient's foot is worn in the shoe body 10, the patient's toes can extend outside the shoe body 10 through the opening 111. In other words, the toe box 11 of the shoe body 10 does not cover or restrict the patient's toes.

[0040] Based on this, the wrapping, restraint, and pressure of the shoe body 10 on the patient's toes can be reduced, thereby improving the wearing comfort of the shoe body 10. In addition, the patient's toes can be allowed to naturally extend outside the shoe body 10 through the opening 111 of the toe box 11 of the shoe body 10, allowing the patient to freely exercise and move their toes (for example, perform toe gripping exercises) while wearing T-strap shoes, thereby helping to prevent complications such as lower limb venous thrombosis and joint stiffness, and facilitating a smooth recovery process.

[0041] In summary, the T-shoe provided in the embodiment of the present application can be worn by the patient's foot through the shoe body 10. The anti-rotation rod 20 provided at the heel 12 of the shoe body 10 can be used with the heel 12 as a support point to enhance the stability of the shoe body 10, thereby providing stability for the patient's foot, thereby fixing the patient's foot, reducing the risk of the patient's foot shifting or shaking while the patient is lying still, standing, or walking, and facilitating the rehabilitation of the patient's foot. Based on the setting that "the extension direction b of the anti-rotation rod 20 is perpendicular to the length direction a of the shoe body 10", the anti-rotation rod 20 can effectively prevent the patient's foot from internal rotation and external rotation, thereby promoting the affected limb to maintain the correct neutral position of abduction, reducing complications caused by the movement or improper posture of the affected limb, preventing and correcting foot deformities, and optimizing the treatment effect.

[0042] The T-strap shoe provided in this embodiment, based on the excellent therapeutic effects of the shoe body 10 and anti-rotation bar 20 in "fixing the patient's foot" and "preventing and correcting foot deformities," can also be configured such that the length L of the shoe body 10 is less than the length of a standard shoe of the same size, and the toe 11 of the shoe body 10 is provided with an opening 111. This allows the patient's toes to naturally extend outside the shoe body 10 through the opening 111 of the toe 11 when the patient's foot is worn in the shoe body 10. Thus, on the one hand, the wrapping, restraint, and pressure exerted by the shoe body 10 on the patient's toes can be reduced, thereby improving the wearing comfort of the shoe body 10. On the other hand, the patient's toes can be allowed to exercise and move freely (for example, performing toe gripping exercises) even when the patient wears the T-strap shoe for an extended period of time. This reduces the risk of complications such as lower limb venous thrombosis and joint stiffness in the patient without affecting the therapeutic effects of "fixing the patient's foot" and "preventing and correcting foot deformities," thereby optimizing the treatment effect and promoting the rehabilitation process.

[0043] See also Figure 1 、 Figure 2 In some embodiments of the present application, under the same shoe size, the difference between the length L of the shoe body 10 and the length of a standard shoe is 3 cm to 5 cm.

[0044] It should be noted that, since the length L of the shoe body 10 is smaller than the length of a standard shoe of the same size, the length L of the shoe body 10 is 3 cm to 5 cm (eg, 3 cm, 4 cm, 5 cm, etc.) smaller than the length of a standard shoe of the same size.

[0045] For example, assuming that the shoe size of the shoe body 10 of this embodiment is size 40, the shoe size of the standard shoe used as a reference is also size 40 (i.e., the same shoe size). The length L of the shoe body 10 of size 40 is 3cm to 5cm smaller than the length of the standard shoe of size 40. The length of the standard shoe of size 40 is approximately 25cm. The length L of the shoe body 10 of size 40 can be 20cm to 22cm.

[0046] By adopting the above solution, by making the length L of the shoe body 10 3 cm to 5 cm shorter than the length of a standard shoe of the same size, the shoe body 10 can be kept sufficiently long, thereby enabling the T-strap shoe to maintain its excellent therapeutic effects of "stabilizing the patient's foot" and "preventing and correcting foot deformities." Furthermore, while the patient's foot is worn in the shoe body 10, all of the patient's toes, including the little toe, can naturally extend outside the shoe body 10 through the opening 111 of the toe box 11, allowing for free exercise and movement. This effectively reduces the risk of complications such as lower limb venous thrombosis and joint stiffness in patients wearing T-strap shoes for extended periods of time, thereby effectively optimizing the therapeutic effect.

[0047] See also Figure 1 、 Figure 2 In some embodiments of the present application, the T-shoe further includes a first stabilizing bar 30 and a second stabilizing bar 40, the first stabilizing bar 30 being connected between one end of the anti-rotation bar 20 and the middle of the shoe body 10, and the second stabilizing bar 40 being connected between the other end of the anti-rotation bar 20 and the middle of the shoe body 10.

[0048] It should be noted that one end of the first stabilizing bar 30 is connected to one end of the anti-rotation bar 20, and the other end of the first stabilizing bar 30 is connected to the middle portion of the shoe body 10 (along the length direction a of the shoe body 10). The connection between the first stabilizing bar 30 and the anti-rotation bar 20 may be, but is not limited to, welding, integral connection, bolt 61 connection, etc., and the connection between the first stabilizing bar 30 and the shoe body 10 may be, but is not limited to, welding, integral connection, bolt 61 connection, etc.

[0049] One end of the second stabilizing bar 40 is connected to the end of the anti-rotation bar 20 away from the first stabilizing bar 30, and the other end of the second stabilizing bar 40 is connected to the middle portion of the shoe body 10 (along the length direction a of the shoe body 10). The second stabilizing bar 40 and the first stabilizing bar 30 are located on opposite sides of the shoe body 10, and are respectively connected to opposite ends of the anti-rotation bar 20. The second stabilizing bar 40, the first stabilizing bar 30, and the anti-rotation bar 20 form a triangular structure. The connection between the second stabilizing bar 40 and the anti-rotation bar 20 may be, but is not limited to, welding, an integral connection, a bolt 61 connection, etc., and the connection between the second stabilizing bar 40 and the shoe body 10 may be, but is not limited to, welding, an integral connection, a bolt 61 connection, etc.

[0050] By adopting the above solution, a first stabilizing rod 30 connected between one end of the anti-rotation rod 20 and the middle portion of the shoe body 10, and a second stabilizing rod 40 connected between the other end of the anti-rotation rod 20 and the middle portion of the shoe body 10, can be combined with the anti-rotation rod 20 to form a triangular stabilizing structure. This significantly improves the overall stability of the T-shaped shoe, particularly the stability of the T-shaped shoe from the middle portion of the shoe body 10 to the heel 12. This provides reliable stability for the patient's foot, preventing the foot from shifting or shaking while the patient is lying still, standing, or walking, and optimizing the T-shaped shoe's therapeutic effects of "stabilizing the patient's foot" and "preventing and correcting foot deformities."

[0051] See also Figure 1 、 Figure 2 In some embodiments of the present application, the anti-rotation bar 20 is symmetrically arranged with respect to the shoe body 10 , and the first stabilizing bar 30 and the second stabilizing bar 40 are symmetrically distributed with respect to the shoe body 10 . Correspondingly, the first stabilizing bar 30 and the second stabilizing bar 40 are also symmetrically distributed with respect to the anti-rotation bar 20 .

[0052] By adopting the above solution, by symmetrically positioning the anti-rotation bar 20 relative to the shoe body 10 and symmetrically distributing the first stabilizing bar 30 and the second stabilizing bar 40 relative to the shoe body 10, the first stabilizing bar 30, the second stabilizing bar 40, and the anti-rotation bar 20 can form a stable structure similar to an isosceles triangle, with the "height" of the isosceles triangle centered on the shoe body 10. Based on this, on the one hand, the structural stability of the first stabilizing bar 30, the second stabilizing bar 40, and the anti-rotation bar 20 can be improved, and the overall stability of the T-shaped shoe can be improved, thereby providing reliable stability for the patient's foot. On the other hand, the forces acting on the first stabilizing bar 30, the second stabilizing bar 40, and the anti-rotation bar 20 on both sides of the shoe body 10 can be balanced, reducing the risk of deformation or damage to the first stabilizing bar 30, the second stabilizing bar 40, and the anti-rotation bar 20 due to excessive force on one side, thereby improving the reliability and service life of the T-shaped shoe. On the one hand, during the period of fixing the patient's foot, the forces exerted on the patient's foot by the first stabilizing bar 30 , the second stabilizing bar 40 and the anti-rotation bar 20 can be balanced and dispersed, thereby alleviating the patient's pain and optimizing the treatment effect.

[0053] Of course, in other embodiments, the second stabilizing bar 40 and the first stabilizing bar 30 may be asymmetrically disposed on opposite sides of the shoe body 10 , and the second stabilizing bar 40 and the first stabilizing bar 30 may be asymmetrically connected to opposite ends of the anti-rotation bar 20 .

[0054] See also Figure 1 、 Figure 2 In some embodiments of the present application, a shoe body 10 includes an upper 13 and a sole 14 disposed on the bottom side of the upper 13. At least one elastic assembly 50 is disposed on the top side of the upper 13. The elastic assembly 50 includes a first connecting strap 51, a first fastening member 52, a second fastening member 53, and a second connecting strap 54. The first connecting strap 51 is connected between the first fastening member 52 and the upper 13, and the second connecting strap 54 is connected between the second fastening member 53 and the upper 13. The first fastening member 52 and the second fastening member 53 can be fastened to each other. The length of at least one of the first connecting strap 51 and the second connecting strap 54 is adjustable.

[0055] It should be noted that the sole 14 is a portion provided on the bottom side of the upper 13 and is used for direct contact with the ground.

[0056] The upper 13, also known as the shoe upper, is the portion of the shoe that covers the foot above the sole 14. The material of the upper 13 can be set as needed, for example, it can be made of mesh fabric to improve breathability.

[0057] One or more elastic components 50 are provided on the top side of the shoe upper 13. The elastic components 50 are used to allow the patient to quickly adjust the tightness of the shoe upper 13 according to the individual foot shape.

[0058] In the elastic assembly 50, a first connecting strap 51 and a second connecting strap 54 are respectively connected to opposite sides of the upper 13. The end of the first connecting strap 51 away from the upper 13 is connected to the first fastener 52, and the end of the second connecting strap 54 away from the upper 13 is connected to the second fastener 53. The side of the first fastener 52 away from the first connecting strap 51 can be interlocked with the side of the second fastener 53 away from the second connecting strap 54. In some embodiments, one of the first fastener 52 and the second fastener 53 is a male buckle of a plug buckle, and the other is a female buckle of a plug buckle, and the first fastener 52 and the second fastener 53 can be interlocked. In other embodiments, one of the first fastener 52 and the second fastener 53 is a male buckle of a snap buckle, and the other is a female buckle of a snap buckle, and the first fastener 52 and the second fastener 53 can be snapped together.

[0059] At least one of the first connecting strap 51 and the second connecting strap 54 is adjustable in length. That is, in some embodiments, the length of the first connecting strap 51 from the upper 13 to the first fastener 52 is adjustable, while the length of the second connecting strap 54 from the upper 13 to the second fastener 53 is not adjustable. In other embodiments, the length of the first connecting strap 51 from the upper 13 to the first fastener 52 is not adjustable, while the length of the second connecting strap 54 from the upper 13 to the second fastener 53 is adjustable. In other embodiments, the length of the first connecting strap 51 from the upper 13 to the first fastener 52 is adjustable, while the length of the second connecting strap 54 from the upper 13 to the second fastener 53 is adjustable. Based on this, the length of the elastic assembly 50 can be adjusted by adjusting the length of at least one of the first connecting strap 51 and the second connecting strap 54, thereby achieving elastic adjustment.

[0060] By adopting the above solution, the elastic assembly 50 can connect one side of the vamp 13 to the first fastener 52 via the first connecting strap 51, and connect the other side of the vamp 13 to the second fastener 53 via the second connecting strap 54. The first fastener 52 and the second fastener 53 are then removably fastened to form a binding band on the top side of the vamp 13 via the first connecting strap 51, the first fastener 52, the second fastener 53, and the second connecting strap 54. This ensures that the vamp 13 fits tightly against the patient's foot, thereby improving the wearing stability of the T-shaped shoe and maintaining the foot fixation and therapeutic effects of the T-shaped shoe. Furthermore, the elastic assembly 50 can be adjusted by adjusting the length of at least one of the first connecting strap 51 and the second connecting strap 54 to adjust the overall length, thereby achieving tension adjustment. This improves the wearing comfort of the T-shaped shoe, allows the T-shaped shoe to adapt to different foot shapes and widths, and expands the applicability of the T-shaped shoe.

[0061] Moreover, compared with the existing solution of using Velcro to achieve the tightness of the shoe upper 13 (in this existing solution, the Velcro may need to be attached to the sole 14 depending on the patient's foot shape and width, resulting in the need to lift the patient's foot when taking off the T-shoe, causing pain to the patient), this embodiment adopts the solution of "the first fastener 52 and the second fastener 53 are detachably fastened to each other", which can be directly fastened and disassembled on the top side of the shoe upper 13, and the T-shoe can be quickly put on and taken off. It is unnecessary to lift the patient's foot during the process of putting on and taking off the T-shoe, thereby reducing the risk of accidentally touching the patient's painful area during putting on and taking off the T-shoe, reducing the patient's pain, and improving the wearing convenience and usability of the T-shoe.

[0062] Of course, in other embodiments, the elastic component 50 may adopt other structural designs to achieve tightness adjustment of the shoe upper 13. For example, the elastic component 50 may be an elastic band, with opposite ends of the elastic band connected to opposite sides of the shoe upper 13, respectively. When the patient's foot is worn in the shoe upper 13, the elastic band can automatically adjust its tightness.

[0063] See also Figure 1 、 Figure 2 In some embodiments of the present application, at least one of the first connecting belt 51 and the second connecting belt 54 is an elastic belt.

[0064] It should be noted that at least one of the first connecting strap 51 and the second connecting strap 54 is an elastic strap. That is, in some embodiments, the first connecting strap 51 is an elastic strap, and the second connecting strap 54 is a non-elastic flexible strap. In other embodiments, the first connecting strap 51 is a non-elastic flexible strap, and the second connecting strap 54 is an elastic strap. In still other embodiments, both the first connecting strap 51 and the second connecting strap 54 are elastic straps.

[0065] By adopting the above solution, when a patient's foot is worn within the shoe upper 13 and the first fastening member 52 and the second fastening member 53 of the elastic assembly 50 are engaged, the elastic assembly 50 can automatically and adaptively adjust its overall length via the elastic band, thereby automatically achieving tightness adjustment. This improves the ease of use and adjustment of the elastic assembly 50, enables the T-shoe to automatically adapt to different foot shapes and widths, improves the performance and comfort of the T-shoe, and expands the applicability of the T-shoe.

[0066] Of course, in other embodiments, the first connecting belt 51 or the second connecting belt 54 can be adjusted in length by other designs such as buttonholes and buckles, sliding buckles, folding and locking buckles, spiral buckles, and telescopic buckles.

[0067] See also Figure 1 、 Figure 2In some embodiments of the present application, a convex portion 141 is provided on the bottom side of the sole 14 , and the convex portion 141 is arranged in a ring shape. The bottom side of the convex portion 141 is provided with an anti-slip pattern 1411 .

[0068] It should be noted that the bottom side of the sole 14 (i.e., the side of the sole 14 facing away from the upper 13) is provided with a protrusion 141. The protrusion 141 is arranged to protrude toward the side facing away from the upper 13 and is in the shape of an open ring 111 or a closed ring. The bottom side of the protrusion 141 (i.e., the side of the protrusion 141 facing away from the upper 13) is provided with anti-slip grooves 1411. The anti-slip grooves 1411 can be, but are not limited to, convex stripes. The number, location, and layout of the anti-slip grooves 1411 can be set as needed.

[0069] By adopting the above solution, when a patient wears a T-strap shoe and contacts the ground, the patient's contact with the ground is primarily through the annular protrusion 141 on the bottom side of the sole 14 and the anti-slip grooves 1411 on the bottom side of the protrusion 141. This helps to disperse the pressure on the sole 14 and increase the friction between the protrusion 141 and the ground. This helps provide better support for the patient's foot, stabilizes the patient's gait, reduces slipping and shaking, and reduces damage to the patient's foot. This improves the wearing safety, performance, and reliability of the T-strap shoe and maintains the therapeutic effect of the T-strap shoe.

[0070] Of course, in other embodiments, the protrusion 141 may be omitted, and the anti-slip pattern 1411 may be directly provided on the bottom side of the sole 14 .

[0071] See also Figure 1 、 Figure 2 In some embodiments of the present application, the sole 14 is penetrated by ventilation holes 142 , and the ventilation holes 142 are arranged in the area enclosed by the convex portion 141 .

[0072] It should be noted that there are one or more ventilation holes 142, which are located in the area enclosed by the convex portion 141 of the sole 14 and pass through the sole 14. The ventilation holes 142 can be, but are not limited to, diamond-shaped holes, circular holes, or rectangular holes.

[0073] By adopting the above solution, by providing ventilation holes 142 within the area enclosed by the protrusions 141 of the sole 14, an air flow channel is formed between the upper 13 and the external environment through the ventilation holes 142, while maintaining the effectiveness of the protrusions 141 and the anti-slip grooves 1411. This helps to dissipate moisture and heat within the shoe body 10, contributing to a dry and comfortable environment within the shoe body 10. This helps keep the patient's feet dry and comfortable when wearing thong shoes for long periods of time, helps reduce the risk of odor, stuffiness, bacterial growth, and skin problems on the patient's feet, thereby improving the wearing comfort of the thong shoe. Furthermore, the provision of ventilation holes 142 can also reduce the weight of the sole 14, thereby improving the portability and wearing comfort of the thong shoe.

[0074] Of course, in other embodiments, the ventilation holes 142 may be omitted and the sole 14 may be made of a breathable material.

[0075] See also Figure 1 、 Figure 2 In some embodiments of the present application, the anti-rotation rod 20 has a mounting hole 21 extending therethrough, and the T-shoe further includes a fastening assembly 60, which includes a bolt 61 and a nut 62. The bolt 61 is fixed to the shoe body 10 and passes through the mounting hole 21, and the nut 62 is threadedly connected to the bolt 61 and pressed against the side of the anti-rotation rod 20 facing away from the shoe body 10.

[0076] It should be noted that the anti-rotation rod 20 is provided with a mounting hole 21, which passes through the anti-rotation rod 20 along the thickness direction of the anti-rotation rod 20. The mounting hole 21 can be, but is not limited to, a waist-shaped hole, a circular hole, etc.

[0077] The fastening assembly 60 is provided corresponding to the mounting hole 21. The matching fastening assembly 60 and mounting hole 21 are a group, and the anti-rotation rod 20 and the shoe body 10 can be connected and fixed via one or more groups of "fastening assembly 60 and mounting hole 21". Figure 1 、 Figure 2 As shown, in some embodiments, the anti-rotation rod 20 and the shoe body 10 can be connected and fixed via two symmetrical sets of “fastening components 60 and mounting holes 21 ”.

[0078] In the fastening assembly 60, one end of a bolt 61 is fixed to the shoe body 10 (the sole 14 thereof), the other end of the bolt 61 is inserted through the mounting hole 21 and extends to the side of the anti-rotation bar 20 facing away from the shoe body 10, and a nut 62 is threadedly connected to the portion of the bolt 61 extending through the mounting hole 21. The nut 62 is pressed against the side of the anti-rotation bar 20 facing away from the shoe body 10 to tighten the anti-rotation bar 20 to the shoe body 10 (the sole 14). The bolt 61 and the shoe body 10 may be fixed by, but are not limited to, welding, bonding, or integral injection molding.

[0079] By adopting the above solution, the bolt 61 fixed to the shoe body 10 is inserted into the mounting hole 21, and the nut 62 is threadedly connected to the bolt 61 and pressed against the side of the anti-rotation bar 20 facing away from the shoe body 10, so that the nut 62 can press the anti-rotation bar 20 against the shoe body 10. Based on this, the anti-rotation bar 20 can be conveniently, quickly, and reliably connected to the shoe body 10, improving the convenience, tightness, and reliability of the connection between the anti-rotation bar 20 and the shoe body 10, reducing the risk of the anti-rotation bar 20 loosening or falling off during long-term use, and improving the reliability of the T-shaped shoe. Furthermore, the anti-rotation bar 20 can be easily disassembled, maintained, and replaced.

[0080] Furthermore, the aforementioned fastening assembly 60 facilitates adjusting the tightness between the anti-rotation bar 20 and the shoe body 10 by adjusting the position of the nut 62 on the bolt 61. This allows the T-shoe to be adapted to different foot shapes and rehabilitation needs. In particular, for foot swelling, the nut 62 can be loosened appropriately to increase the gap between the anti-rotation bar 20 and the shoe body 10, thereby reducing pressure on the foot, promoting blood circulation, and reducing swelling.

[0081] Of course, in other embodiments, the anti-rotation rod 20 and the shoe body 10 may be connected and fixed in other ways, such as welding, integral injection molding, etc.

[0082] See also Figure 1 、 Figure 2 In some embodiments of the present application, the mounting hole 21 is an arc-shaped waist-shaped hole. That is, the mounting hole 21 is an arc-shaped waist-shaped hole.

[0083] By adopting the above solution, the design of the arc-shaped waist-shaped hole allows for a certain amount of adjustment space for the anti-rotation bar 20 within the mounting hole 21, thereby facilitating fine-tuning of the installation position, installation angle, and installation state of the anti-rotation bar 20. Based on this, not only can the installation between the anti-rotation bar 20 and the shoe body 10 be compatible with certain processing and assembly errors, but the installation position, installation angle, and installation state of the anti-rotation bar 20 can also be adapted to the foot shape and rehabilitation needs of different patients, thereby improving the performance and reliability of the T-shaped shoe and enhancing the therapeutic effect of the T-shaped shoe.

[0084] Of course, in other embodiments, the mounting hole 21 may be a hole of other shapes, such as a straight waist-shaped hole, a circular hole, etc.

[0085] See also Figure 1 、 Figure 2 In some embodiments of the present application, the nut 62 is a butterfly nut 62 .

[0086] By adopting the above solution, by using a butterfly nut 62, the nut 62 can be tightened or loosened by the user directly by hand without the need for additional tools. Moreover, due to the large lateral force-bearing surface of the butterfly nut 62, manual tightening is more labor-saving and efficient, thereby improving the convenience and efficiency of assembly between the anti-rotation rod 20 and the shoe body 10. Furthermore, the butterfly nut 62 can be connected more tightly with the bolt 61, thereby enabling the fastening assembly 60 to provide a stable fastening effect between the anti-rotation rod 20 and the shoe body 10, thereby improving the stability of the anti-rotation rod 20 in the T-shaped shoe, and improving the structural reliability and usability of the T-shaped shoe.

[0087] Of course, in other embodiments, the nut 62 may be other types of nut 62 , such as a common nut 62 .

[0088] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements or improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.

Claims

1. A T-shaped shoe, characterized in that: The T-shoes include: a shoe body, wherein the length of the shoe body is shorter than the length of a standard shoe of the same shoe size, and the toe of the shoe body is provided with an opening, wherein the opening is used for allowing the patient's toes to extend outward; an anti-rotation rod, provided at the heel of the shoe body, wherein the extension direction of the anti-rotation rod is perpendicular to the length direction of the shoe body; The T-shoe also includes a first stabilizing rod and a second stabilizing rod, the first stabilizing rod being connected between one end of the anti-rotation rod and the middle part of the shoe body, and the second stabilizing rod being connected between the other end of the anti-rotation rod and the middle part of the shoe body; the anti-rotation rod is symmetrically arranged about the shoe body, and the first stabilizing rod and the second stabilizing rod are symmetrically distributed about the shoe body.

2. The T-shaped shoe according to claim 1, wherein: Under the same shoe size, the difference between the length of the shoe body and the length of a standard shoe is 3cm to 5cm.

3. The T-shaped shoe according to claim 1, wherein: The shoe body includes an upper and a sole arranged on the bottom side of the upper. At least one elastic component is provided on the top side of the upper. The elastic component includes a first connecting strap, a first fastener, a second fastener, and a second connecting strap. The first connecting strap is connected between the first fastener and the upper, and the second connecting strap is connected between the second fastener and the upper. The first fastener and the second fastener can be fastened with each other, and the length of at least one of the first connecting strap and the second connecting strap is adjustable.

4. The T-shaped shoe according to claim 3, wherein: At least one of the first connecting belt and the second connecting belt is an elastic belt.

5. The T-shaped shoe according to claim 3, wherein: A convex portion is provided on the bottom side of the sole, the convex portion is arranged in a ring shape, and an anti-slip pattern is provided on the bottom side of the convex portion.

6. The T-shaped shoe according to claim 5, wherein: The sole is penetrated with ventilation holes, and the ventilation holes are arranged in the area enclosed by the convex parts.

7. The T-shaped shoe according to any one of claims 1 to 6, characterized in that: The anti-rotation rod is passed through with a mounting hole, and the T-shoe also includes a fastening assembly, which includes a bolt and a nut. The bolt is fixed to the shoe body and passes through the mounting hole, and the nut is threadedly connected to the bolt and pressed against the side of the anti-rotation rod facing away from the shoe body.

8. The T-shaped shoe according to claim 7, wherein: The mounting hole is an arc-shaped waist-shaped hole; And / or, the nut is a butterfly nut.