Double-lower-limb restraining structure facilitating blood supply observation

By combining a transparent boot-shaped fixation device with a four-claw strap, a detection window, and a tension strap, the problem of unstable fixation of the lower limb restraint structure and foot suspension is solved, achieving the effect of stable observation of blood circulation and prevention of foot and ankle injuries, and supporting patients' rehabilitation training.

CN223569482UActive Publication Date: 2025-11-21GUANGDONG JIANGMEN VOCATIONAL COLLEGE OF TRADITIONAL CHINESE MEDICINE
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Patent Information

Application Number
CN202422820255.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-11-21
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

In existing technologies, the lower limb restraint structure is unstable due to the knotting method, which makes the fixation points of the lower leg and thigh prone to slipping, making it difficult to observe blood circulation, increasing the workload of medical staff, and causing foot and ankle injuries due to the patient's feet being suspended in the air.

Method used

It adopts a transparent boot-style fastener, equipped with a four-claw strap, detection window, tension strap and hook, to ensure that the fastener is stable during wearing. Blood circulation can be observed through the detection window, the tension strap supports the foot to prevent it from hanging in the air, and the hook and traction strap work with the traction hammer for traction.

Benefits of technology

It enables the secure wearing of transparent boot-style fixation devices, facilitates blood circulation observation, reduces the workload of medical staff, prevents foot and ankle injuries, improves the effectiveness of use, and supports patient rehabilitation training.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a double-lower-limb restraining structure convenient for observing blood supply, and aims to solve the problems that the lower limbs of a patient are wrapped, the blood supply of the patient is inconvenient to observe, a shank fixing part and a thigh fixing part are easy to slide down, are not easy to fix, need to be continuously adjusted, and are inconvenient to observe due to the fact that a knotting mode is used for restraining the lower limbs in the prior art. The technical problems that the workload of medical staff is increased, the feet of the patient are suspended, the feet of the patient droop for a long time under the action of gravity, large pressure is exerted on the ankles of the patient, the ankles are prone to being damaged, and the using effect is affected are solved. The double-lower-limb restraining structure comprises a transparent boot-type fixing piece, a four-claw binding belt is arranged outside the transparent boot-type fixing piece, and a detection window is formed in the outer surface of the transparent boot-type fixing piece. Through the design, the stability of the transparent boot-type fixing piece during wearing is guaranteed, sliding is prevented, the warm keeping effect on the lower limbs of a patient is guaranteed, and the patient can feel comfortable. Medical staff can conveniently detect the blood supply of the patient, and the patient can conveniently observe the blood supply of the acra of the patient through the transparent boot-type fixing piece.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the medical auxiliary tool technical field, concretely relates to a double lower limbs traction structure convenient for observing blood supply. BACKGROUND

[0002] Lower limbs traction is the active and effective traction belt of treating various lower limbs fractures and to the person who cannot tolerate operation, the lower limbs traction of prior art uses the knot method, and the patient's lower limbs are wrapped, and it is inconvenient to observe the blood supply of the patient, and due to the continuous traction of the traction hammer, the calf fixing part and the thigh fixing part are prone to slide down, and it is not easy to fix, and it is necessary to continuously adjust, and the workload of medical staff is increased, and the patient's foot is suspended, and the patient's foot is long time down under the action of gravity, and it has great pressure on the patient's foot and ankle, and it is easy to cause the injury of foot and ankle, and the use effect is influenced, therefore, a novel double lower limbs traction structure convenient for observing blood supply is designed to change the above technical defects. CONTENT OF UTILITY MODEL

[0003] (1) technical problem to be solved

[0004] In view of the defects of the prior art, the utility model aims at providing a double lower limbs traction structure convenient for observing blood supply, which aims at solving the technical problems that the lower limbs traction of prior art uses the knot method, and the patient's lower limbs are wrapped, and it is inconvenient to observe the blood supply of the patient, and the calf fixing part and the thigh fixing part are prone to slide down, and it is not easy to fix, and it is necessary to continuously adjust, and the workload of medical staff is increased, and the patient's foot is suspended, and the patient's foot is long time down under the action of gravity, and it has great pressure on the patient's foot and ankle, and it is easy to cause the injury of foot and ankle, and the use effect is influenced.

[0005] (2) technical scheme

[0006] In order to solve the above technical problems, the utility model provides a double lower limbs traction structure convenient for observing blood supply, which comprises a transparent boot type fixing piece, four claw belts are arranged on the outside of the transparent boot type fixing piece, detection windows are formed on the outer surface of the transparent boot type fixing piece, a flap is sewn and installed on the outer surface of the transparent boot type fixing piece through a zipper strip, two traction belts are fixedly connected to the outer surface of the transparent boot type fixing piece, limit holes are formed on the outer surface of the traction belts, a stretch belt is fixedly connected to the outer surface of the foot of the transparent boot type fixing piece, magic tapes are sewn and installed on the outer surface of the stretch belt, detection openings are formed on the instep of the transparent boot type fixing piece, hooks are arranged in the limit holes, and pull belts are installed in the top end of the hooks, a rope bag is installed at the right end of the transparent boot type fixing piece, a binding belt is slidably installed in the rope bag, and stop blocks are installed at both ends of the binding belt.

[0007] When using the lower limb restraint structure of this technical solution, the dorsalis pedis artery is exposed for detection through the setting of the detection port. When the patient is continuously pulled by the traction hammer in the lower limb, the transparent boot-type fixation piece is first put on the patient's lower limb. Then, the two ends of the strap are pulled and tightened to fix the transparent boot-type fixation piece at the patient's thigh. Then, the four-claw strap is placed above the ankle of the transparent boot-type fixation piece. Two fixing straps of the four-claw strap are tied to the patient's sole and the other two fixing straps are tied to the patient's heel to ensure that the transparent boot-type fixation piece is stable and does not slip during wearing. The transparent boot-shaped fixation device is worn on the patient's lower limbs to ensure warmth. The hook is then inserted into the limiting hole, and the traction strap is pulled, lifting the top of the traction strap. The end of the strap furthest from the hook is then secured with a traction hammer, placing the strap on the fixation frame. The weight of the traction hammer applies force to the strap, hook, and traction strap, tractioning the transparent boot-shaped fixation device and the lower limbs inside. The buckle holes allow the flap to be opened, facilitating blood flow monitoring by medical staff. The transparent boot-shaped fixation device also allows the patient to easily observe blood flow to the extremities. A tension strap is attached to the bed rail and secured with Velcro. The tension strap provides support to the patient's feet, preventing prolonged dangling and pressure on the ankles, thus ensuring the effectiveness of the lower limb restraint structure. The patient can also use the tension strap to assist in dorsiflexion exercises, facilitating rehabilitation training.

[0008] Preferably, a pull ring is fixedly connected to the outer surface of the end of the stretch band away from the transparent boot-shaped fastener. The pull ring facilitates the patient's pulling of the stretch band and prevents the patient's hand from slipping when pulling the stretch band.

[0009] Preferably, a hook and loop fastener is fixedly attached to the outer surface of the end of the stretch band away from the transparent boot-shaped fastener. With the hook and loop fastener, when the stretch band is fixed using Velcro folding and pasting, the hook and loop fastener is wrapped around the stretch band to secure it, preventing loosening during fixation and increasing the stability of the stretch band fixation.

[0010] Furthermore, a zipper is installed throughout the outer surface of the transparent boot-like fastener. The zipper allows for easy opening and wearing of the transparent boot-like fastener.

[0011] Furthermore, the outer surface of the four-claw strap has buckle holes, and the outer surface of the transparent boot-shaped fastener has buttons installed inside the buckle holes. The buttons and buckle holes allow the four-claw strap to be secured by inserting the buttons into the buckle holes, increasing its stability during use.

[0012] (3) Beneficial effects

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] The utility model discloses a patient uses the traction hammer to carry out the continuous pull when using the lower limbs, through the setting of detection mouth, the detection of dorsalis pedis artery leakage is carried out, through the transparent boot type fixing piece is worn to the lower limbs of patient, then the two ends of the bandage are pulled and are bound tightly, the one end of transparent boot type fixing piece is fixed in the position of the thigh of patient, then four claw belts are put above the ankle of transparent boot type fixing piece, and the two fixed bands of four claw belts are fixed to the sole of patient, and the other two fixed bands are fixed to the heel of patient, ensure that transparent boot type fixing piece is stable and does not slip in the process of wearing, keep good stability, and transparent boot type fixing piece is worn to the lower limbs of patient, guarantee the warming effect to the lower limbs of patient, then the hook is inserted in the limiting hole, and the traction band is pulled and is taken with the hook and is taken to the top end of traction band, and then the end of traction band is bound traction hammer and makes traction band put on the fixed frame, and the gravity of traction hammer is used to the traction band, the hook and the traction band, realize the traction to transparent boot type fixing piece and the lower limbs in it, can open the flap through the setting of buckle hole, and the medical staff detects the blood supply of patient, and transparent boot type fixing piece is convenient for patient to observe the blood supply of patient, through the setting of stretch belt, the stretch belt is bound to the bed bar and is pasted and fixed with magic tape, and the stretch belt is pulled and is used to support the foot of patient, prevent the foot of patient from hanging and falling for a long time and have great pressure to the ankle of patient and cause damage, guarantee the use effect of double lower limbs traction structure, and patient can use stretch belt to pull the foot of patient and assist to carry out dorsiflexion movement, make patient convenient for rehabilitation training. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is the three-dimensional structure schematic diagram of double lower limbs traction structure of the utility model;

[0016] Figure 2 It is double lower limbs traction structure of the utility model Figure 1 It is the enlarged structure schematic diagram of A place in double lower limbs traction structure of the utility model;

[0017] Figure 3 It is double lower limbs traction structure of the utility model Figure 1 It is the enlarged structure schematic diagram of B place in double lower limbs traction structure of the utility model;

[0018] Figure 4 It is double lower limbs traction structure of the utility model Figure 1 It is the enlarged structure schematic diagram of C place in double lower limbs traction structure of the utility model;

[0019] Figure 5 It is the three-dimensional structure schematic diagram of rope bag, bandage and stop block of double lower limbs traction structure of the utility model;

[0020] Figure 6 It is the three-dimensional structure schematic diagram of hook of double lower limbs traction structure of the utility model;

[0021] Figure 7The utility model discloses a double lower limbs traction structure transparent boot type fixing spare side view structure schematic diagram.

[0022] Figure 8 The utility model discloses a double lower limbs traction structure four claw harness three-dimensional structure schematic diagram.

[0023] Figure 9 The utility model discloses a double lower limbs traction structure transparent boot type fixing spare three-dimensional structure schematic diagram.

[0024] The marks in the drawing are: 1, pull ring;2, velcro;3, magic tape;4, stretch belt;5, detection window;6, traction belt;7, transparent boot type fixing spare;8, pull belt;9, four claw harness;10, zipper;11, rope bag;12, bandage;13, stop block;14, limiting hole;15, hook;16, button;17, buckle hole;18, flap;19, detection port. Specific implementation

[0025] The specific embodiment is a double lower limbs traction structure convenient for observing blood supply, and a structure schematic diagram is as shown in the figure. Figures 1-9 The double lower limbs traction structure includes a transparent boot type fixing spare 7, the outside of the transparent boot type fixing spare 7 is provided with a four claw harness 9, the outer surface of the transparent boot type fixing spare 7 is provided with a detection window 5, the outer surface of the transparent boot type fixing spare 7 is sewn and installed with a flap 18 through a zipper 17, the outer surface of the transparent boot type fixing spare 7 is fixedly connected with two traction belts 6, the outer surface of the traction belt 6 is provided with a limiting hole 14, the outer surface of the transparent boot type fixing spare 7 is fixedly connected with a stretch belt 4, the outer surface of the stretch belt 4 is sewn and installed with a magic tape 3, the instep of the transparent boot type fixing spare 7 is provided with a detection port 19, the inside of the limiting hole 14 is provided with a hook 15, the inside of the top end of the hook 15 is installed with a pull belt 8, the right end of the transparent boot type fixing spare 7 is installed with a rope bag 11, the inside of the rope bag 11 is slidably installed with a bandage 12, and the both ends of the bandage 12 are installed with stop blocks 13.

[0026] The outer surface of the one end of the stretch belt 4 away from the transparent boot type fixing spare 7 is fixedly connected with a pull ring 1, the stretch belt 4 is conveniently pulled by the patient through the arrangement of the pull ring 1, the hand of the patient is prevented from slipping when pulling the stretch belt 4, the outer surface of the one end of the stretch belt 4 away from the transparent boot type fixing spare 7 is fixedly connected with a velcro 2, the stretch belt 4 is fixedly pasted by using the magic tape 3, the stretch belt 4 is fixedly pasted by using the velcro 2 around the stretch belt 4, the stretch belt 4 is prevented from loosening when being fixed, the stability of the stretch belt 4 is increased, and the zipper 10 is installed through the outer surface of the transparent boot type fixing spare 7.

[0027] In addition, the outer surface of the four-claw strap 9 is provided with a buckle hole 17, and the outer surface of the transparent boot-type fastener 7 is fitted with a button 16, which is installed inside the buckle hole 17. By setting the button 16 and the buckle hole 17, the four-claw strap 9 is fixed by inserting the button 16 into the buckle hole 17, thereby increasing the stability of the four-claw strap 9 during use.

[0028] Working principle: When using the double lower limb traction structure of this technical solution, the dorsalis pedis artery is exposed for detection through the detection port 19. When the patient's lower limbs are continuously pulled by the traction hammer, the transparent boot-type fixation piece 7 is put on the patient's lower limb. Then, the two ends of the strap 12 are pulled and tightened to fix the transparent boot-type fixation piece 7 at the patient's thigh. Then, the four-claw strap 9 is placed above the ankle of the transparent boot-type fixation piece 7. Two fixing straps of the four-claw strap 9 are tied to the patient's sole and the other two fixing straps are tied to the patient's heel to ensure the stability of the transparent boot-type fixation piece 7 when worn and prevent slippage. The transparent boot-type fixation piece 7 is worn on the patient's lower limb to ensure the warmth of the patient's lower limb. Then, the hook 15 is inserted into the limiting hole 14. The traction strap 8 is pulled to pull the top of the traction strap 6 along with the hook 15. Lift the strap 8 upwards, then attach the end of the strap 8 away from the hook 15 to the traction hammer, placing the strap 8 on the fixing frame. The weight of the traction hammer applies force to the strap 8, hook 15, and traction belt 6, tractioning the transparent boot-shaped fixation piece 7 and the lower limbs inside. The flap 18 can be opened through the buckle hole 17, facilitating blood flow monitoring by medical staff. The transparent boot-shaped fixation piece 7 also allows patients to easily observe blood flow to their extremities. The tension strap 4 is secured to the bed rail using Velcro 3. The tension strap 4 provides tensile support to the patient's foot, preventing prolonged dangling and pressure on the ankle, thus ensuring the effectiveness of the lower limb restraint structure. The patient can also use the tension strap 4 to assist in dorsiflexion exercises, facilitating rehabilitation training. The dorsum of the foot at the detection port 19 serves as an arterial pulsation observation area, allowing medical staff to palpate and observe the dorsalis pedis artery pulsation.

[0029] All technical features in this embodiment can be freely combined according to actual needs.

[0030] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this technical solution are within the protection scope of this utility model.

Claims

1. A double lower limbs traction structure for facilitating the observation of blood circulation, comprising a transparent boot-type fixing member (7), characterized in that: The outer part of the transparent boot fixing part (7) is provided with four claw buckles (9), the outer surface of the transparent boot fixing part (7) is provided with a detection window (5), the outer surface of the transparent boot fixing part (7) is provided with a flip (18) which is installed through zipper sewing, the outer surface of the transparent boot fixing part (7) is fixedly connected with two traction belts (6), the outer surface of the traction belt (6) is provided with a limiting hole (14), the outer surface of the foot of the transparent boot fixing part (7) is fixedly connected with a stretch belt (4), the outer surface of the stretch belt (4) is sewn with a magic tape (3), and the instep of the transparent boot fixing part (7) is provided with a detection port (19).

2. The double lower limb traction structure for facilitating blood supply observation according to claim 1, characterized in that: The limiting hole (14) is internally provided with a hook (15), and the top end of the hook (15) is internally provided with a pull belt (8).

3. The double lower limb traction structure for facilitating blood supply observation according to claim 2, characterized in that: The outer surface of the stretch belt (4) is fixedly connected with a pull ring (1) away from one end of the transparent boot fixing part (7).

4. The double lower limb traction structure for facilitating blood supply observation according to claim 3, characterized in that: The outer surface of the stretch belt (4) is fixedly connected with a touch fastener (2) away from one end of the transparent boot fixing part (7).

5. The double lower limb traction structure for facilitating blood supply observation according to claim 4, characterized in that: The right end of the transparent boot fixing part (7) is provided with a rope bag (11), and the rope bag (11) is internally provided with a bandage (12) which is slidably installed, and the both ends of the bandage (12) are provided with a stop block (13).

6. The double lower limb traction structure for facilitating blood supply observation according to claim 5, characterized in that: The outer surface of the transparent boot fixing part (7) is provided with a zipper (10).

7. The double lower limb traction structure for facilitating blood supply observation according to claim 6, characterized in that: The outer surface of the four claw buckles (9) is provided with a buckle hole (17), the outer surface of the transparent boot fixing part (7) is provided with a button (16), and the button (16) is installed in the buckle hole (17).