Transfemoral arterial puncture patient bandage compression binding device

By designing a bandage pressure binding device for femoral artery puncture patients, which includes a slider, a locking block, an air bag, and a pin, the problem of infection at the puncture site caused by insecure fixation was solved, achieving more stable binding and improving patient comfort.

CN117338372BActive Publication Date: 2026-04-10JILIN UNIVERSITY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JILIN UNIVERSITY
Filing Date
2023-11-17
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing femoral artery puncture fixation devices are not secure and can easily lead to infection at the puncture site.

Method used

A bandage pressure binding device was designed, comprising a base, a support frame, a slider, a strap, a locking assembly, an airbag strap, and a pin. The strap is tightened by the coordinated movement of the slider and the locking assembly, and the airbag strap is used to fit the patient's skin. The pin is used to lock the strap in place, preventing it from loosening or falling off.

Benefits of technology

It improves the fixation effect at the puncture site, avoids the risk of infection, and increases patient comfort and the stability of the binding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of through femoral artery puncture patient bandage pressure binding device, it is related to femoral artery puncture technical field.The application provides a kind of through femoral artery puncture patient bandage pressure binding device, which can fix bandage at puncture site.A kind of through femoral artery puncture patient bandage pressure binding device, including base, supporting frame, slide rail, sliding block, bandage, pivot and detent assembly, supporting frame is rotatably connected on base by connecting rod, pivot is rotatably connected on the front side of base upper portion, slide rail is fixedly connected on the left and right sides of base upper portion, sliding block is slidably connected on slide rail, bandage is installed between sliding block, detent assembly for fixing sliding block is arranged on sliding block.The sliding block and bandage are moved downward to pressurize and bind the puncture site of patient by manually moving the clamping block backward and manually clamping the clamping block, then the sliding block is clamped by moving the clamping block forward, so as to realize the effect of fixation, and avoid infection of puncture site caused by loose bandage.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of femoral artery puncture, especially to a femoral artery puncture patient bandage pressing and binding device. BACKGROUND

[0002] Femoral artery puncture is mainly used for blood sample collection and related examination. After femoral artery puncture is performed on a patient, in order to avoid complications caused by bleeding at the puncture site, the puncture site is pressed and bound, therefore, a pressing and binding device needs to be designed.

[0003] A femoral artery puncture PCI postoperative pressing and fixing device is disclosed in a patent with application number CN219126531U. Through a waist band and a magic tape, the device cooperates with a main body side band, a leg band to bundle a fixing plate at the patient's femoral artery part. An adjusting frame and a first snap button are used to adjust the bundling height of the waist band and the leg band. An auxiliary band is used to tighten the fitting part of the fixing plate. A limiting cavity, a compression spring and a pressing plate are used for compression pressing. The pressing device bundles the puncture site through the band when in use. The magic tape is used to fix the band. After the magic tape is used for fixing for many times, the magic tape cannot be well fitted, so that the band cannot be fixed, which makes the pressing and binding effect poor and the puncture site is easily infected.

[0004] We design a femoral artery puncture patient bandage pressing and binding device which can fix the band at the puncture site, so as to overcome the poor fixing of the existing fixing device and the infection of the puncture site. SUMMARY

[0005] In view of the shortcomings of the prior art, the present application provides a femoral artery puncture patient bandage pressing and binding device which can fix the band at the puncture site, so as to overcome the poor fixing of the existing fixing device and the infection of the puncture site.

[0006] To achieve the above purpose, the present application is implemented by the following scheme: a femoral artery puncture patient bandage pressing and binding device, comprising:

[0007] The base and the supporting frame are connected by a connecting rod on the base.

[0008] The rotating shaft is rotatably connected to the front side of the upper part of the base.

[0009] The first telescopic rod is fixedly connected to the rotating shaft and rotatably connected to the supporting frame.

[0010] The slide rails are fixedly connected to the left and right sides of the upper part of the base.

[0011] The slider is connected with the slide rail in a sliding manner.

[0012] The binding belt is installed between the sliders for binding the puncture site of the patient.

[0013] The clamping assembly is arranged on the slider for fixing the slider.

[0014] As an improvement of the above scheme, the supporting frame is arc-shaped for fitting the leg of the patient.

[0015] As an improvement of the above scheme, the clamping assembly comprises:

[0016] The second telescopic rod is fixedly connected in the slider.

[0017] The clamping block is fixedly connected on the second telescopic rod for clamping the slider, and the clamping block is slidingly connected with the slider on the same side.

[0018] As an improvement of the above scheme, the front part of the clamping block is spherical for being gripped by people.

[0019] As an improvement of the above scheme, further comprising:

[0020] The first air bag belt is fixedly connected between the upper sides of the sliders for fitting the binding belt.

[0021] The first piston rod is fixedly connected on the front side of the slider.

[0022] The first air cylinder is fixedly connected on the front part of the slide rail.

[0023] The first air guide pipe is communicated between the first air cylinder and the first air bag belt.

[0024] As an improvement of the above scheme, further comprising:

[0025] The second air bag belt is fixedly connected on the left and right sides of the supporting frame for limiting the thigh of the patient.

[0026] The second air cylinder is fixedly connected on the rear part of the slide rail.

[0027] The second piston rod is fixedly connected on the rear side of the slider.

[0028] The second air guide pipe is communicated between the second air bag belt and the second air cylinder on the same side.

[0029] As an improvement of the above scheme, the second air bag belt is arc-shaped for surrounding the arm of the patient.

[0030] As an improvement of the above scheme, further comprising:

[0031] A limiting block is fixedly connected to the inner side of the upper part of the sliding block.

[0032] A mounting frame is fixedly connected to the inner side of the sliding block.

[0033] Two third telescopic rods are fixedly connected to the mounting frame.

[0034] A plug is fixedly connected between the third telescopic rods on the same mounting frame and is used for fixing the bandage, the plug is inserted into the limiting block through the bandage, and the plug is slidingly connected with the mounting frame on the same side.

[0035] As an improvement of the above scheme, the application further comprises:

[0036] A tension spring is fixedly connected between the plug and the mounting frame on the same side, and the tension spring is wound around the third telescopic rod.

[0037] As an improvement of the above scheme, the application further comprises:

[0038] A rotating rod is uniformly opened on the upper part of the base on both sides and is used for limiting the slot, and the rotating rod is rotatably connected to the lower part of the supporting frame on both sides.

[0039] A limiting frame is fixedly connected to the rotating rod and is used for clamping the supporting frame.

[0040] The application has the following advantages: 1. The clamping block is manually moved backward, and the clamping block is manually moved downward, the sliding block and the bandage are moved downward to press and bind the puncture part of the patient, then the clamping block is moved forward to clamp the sliding block, so that the fixing effect is achieved, and the infection of the puncture part caused by the relaxation of the bandage is avoided.

[0041] 2. The second piston rod is driven to move downward by the downward movement of the sliding block, after the second piston rod is inserted into the second air cylinder, the second air bag is inflated to be in close contact with the thigh of the patient, so that the limiting effect is achieved, the thigh of the patient is prevented from moving randomly on the supporting frame to affect the binding, and the comfort of the patient is improved.

[0042] 3. The plug is manually moved downward, the used bandage is detached from the sliding block, the new bandage is installed on the two sliding blocks, and the plug is fixed through the bandage, so that the clamping effect is achieved, and the bandage is prevented from falling off the sliding block. DETAILED DESCRIPTION

[0043] Figure 1 It is a schematic diagram of the three-dimensional structure of the application.

[0044] Figure 2 It is a schematic diagram of the three-dimensional structure of the sliding rail, the bandage and the sliding block of the application.

[0045] Figure 3It is the stereogram structure schematic view of the card block, the sliding block and the second telescopic rod and other components of the application;

[0046] Figure 4 It is the stereogram structure schematic view of the first air bag belt, the first air cylinder and other components of the application;

[0047] Figure 5 It is the stereogram structure schematic view of the first air bag belt, the first piston rod and other components of the application;

[0048] Figure 6 It is the stereogram structure schematic view of the second air bag belt, the second air guide pipe and other components of the application;

[0049] Figure 7 It is the stereogram structure schematic view of the limiting block, the mounting frame and the third telescopic rod and other components of the application;

[0050] Figure 8 It is the stereogram structure schematic view of the rotating rod and the limiting frame and other components of the application.

[0051] The meaning of the reference numerals in the drawing: 1: base, 101: bearing frame, 102: first telescopic rod, 103: sliding rail, 104: sliding block, 105: binding belt, 106: rotating shaft, 2: card block, 201: second telescopic rod, 3: first air bag belt, 301: first piston rod, 302: first air cylinder, 303: first air guide pipe, 4: second air bag belt, 401: second air cylinder, 402: second air guide pipe, 403: second piston rod, 5: limiting block, 501: mounting frame, 502: third telescopic rod, 503: tension spring, 504: bolt, 6: limiting groove, 601: rotating rod, 602: limiting frame. DETAILED DESCRIPTION

[0052] In the following, the application is further described in combination with the drawing and the specific embodiment:

[0053] Example 1

[0054] A kind of trans-femoral artery puncture patient bandage pressurization binding device, now referring to Figures 1-3The utility model relates to a kind of multi-angle adjustable baby carrier, including base 1, holding frame 101, first telescopic rod 102, slide rail 103, sliding block 104, bandage 105, pivot 106, clamping block 2 and second telescopic rod 201, holding frame 101 is rotatably connected on base 1 by connecting rod, holding frame 101 is arc-shaped, pivot 106 is rotatably connected on the upper front side of base 1, first telescopic rod 102 is fixedly connected on pivot 106, first telescopic rod 102 is rotatably connected with holding frame 101, slide rail 103 is welded on the upper left and right sides of base 1, sliding block 104 is slidably connected on slide rail 103, bandage 105 is installed between two sliding blocks 104, second telescopic rod 201 is fixedly connected in sliding block 104, clamping block 2 is welded on second telescopic rod 201, clamping block 2 is spherical in front, left clamping block 2 is in contact with left slide rail 103, right clamping block 2 is in contact with right slide rail 103, left clamping block 2 is slidably connected with left sliding block 104, right clamping block 2 is slidably connected with right sliding block 104.

[0055] When people need to pressurize and bind the femoral artery puncture site of a patient, people can use this femoral artery puncture patient bandage pressurization and binding device. First, people place the femoral artery puncture patient bandage pressurization and binding device on a flat surface, then pass the patient's thigh between the two slide rails 103 and place the patient's thigh on the side of the support frame 101, with the femoral artery puncture site directly below the bandage 105. The support frame 101 is adapted to rotate, the first telescopic rod 102 is adapted to shorten while rotating, thereby causing the rotating shaft 106 to rotate. When the placement is complete, people manually move the clamping block 2 backward, causing the second telescopic rod 201 to shorten. When the clamping block 2 moves backward and disengages from the slide rail 103, people manually move the clamping block 2 downward, thereby moving the sliding block 104 downward, and the bandage 105 moves downward. In the process of moving the sliding block 104 downward, the distance between the sliding blocks 104 lengthens, causing the bandage 105 to be stretched and tightened. When the tightened bandage comes into contact with the patient's femoral artery puncture site, the sliding block 104 continues to move downward, and the tightened bandage bends to bind the patient's femoral artery puncture site. When the bandage 105 tightens the patient's femoral artery puncture site, people stop moving the clamping block 2 downward and manually move the clamping block 2 forward, causing the second telescopic rod 201 to lengthen. When the clamping block 2 is engaged on the slide rail 103, people release the clamping block 2, thereby achieving the binding effect. By engaging the clamping block 2 on the slide rail 103, the bandage 105 is fixed. When binding is not needed, people move the clamping block 2 backward according to the above steps, then manually move the clamping block 2 upward, causing the sliding block 104 and the bandage 105 to move upward. In the process of moving the bandage 105 upward, it returns to a relaxed state. When the bandage 105 moves upward to the initial position, people move the clamping block 2 forward according to the above steps, then remove the patient's thigh from between the two slide rails 103 and away from the support frame 101. Then people remove the used bandage 105 and install a new bandage 105 between the two sliding blocks 104.

[0056] Embodiment 2

[0057] On the basis of embodiment 1, now referring to Figure 1 、 Figure 4 and Figure 5 , further comprising a first air bag belt 3, a first piston rod 301, a first air cylinder 302, and a first air duct 303. The first air bag belt 3 is fixedly connected between the upper sides of the sliding blocks 104. The first piston rod 301 is welded to the front side of the sliding block 104. The first air cylinder 302 is fixedly connected to the front of the slide rail 103. The left first piston rod 301 moves to contact the left first air cylinder 302. The right first piston rod 301 moves to contact the right first air cylinder 302. The first air duct 303 communicates between the first air cylinder 302 and the first air bag belt 3.

[0058] The slider 104 moves downward to drive the first piston rod 301 and the first air bag belt 3 to move downward. When the distance between the sliders 104 is lengthened, the first air bag belt 3 is taut during the downward movement. When the first piston rod 301 moves downward and is inserted into the first air cylinder 302, the first piston rod 301 pushes the airflow in the first air cylinder 302 to the first air bag belt 3 through the first air guide pipe 303, so that the first air bag belt 3 expands. The expanded first air bag belt 3 is in contact with the bandage. When the bandage is bent, the expanded first air bag belt 3 is bent and pressurizes the bandage, so that the bandage is in close contact with the femoral artery puncture site of the patient, and the binding effect is better. The slider 104 moves upward to drive the first piston rod 301 and the first air bag belt 3 to move upward. The first air bag belt 3 relaxes during the upward movement. The airflow in the first air bag belt 3 flows into the first air cylinder 302 through the first air guide pipe 303. The first air bag belt 3 contracts. Then the first piston rod 301 moves upward and is separated from the first air cylinder 302.

[0059] Referring now to Figure 1 and Figure 6 The second air bag belt 4, the second air cylinder 401, the second air guide pipe 402, and the second piston rod 403 are further included. The second air bag belt 4 is fixedly connected to the left and right sides of the bearing frame 101 and is arc-shaped. The second air cylinder 401 is welded to the rear of the slide rail 103. The second piston rod 403 is fixedly connected to the rear side of the slider 104 and is in contact with the second air cylinder 401 after moving. The second air guide pipe 402 is in communication between the left second air bag belt 4 and the left second air cylinder 401. The second air guide pipe 402 is in communication between the right second air bag belt 4 and the right second air cylinder 401.

[0060] After the patient is placed on the bearing frame 101, the thigh of the patient is in contact with the second air bag belt 4. The slider 104 moves upward to drive the second piston rod 403 to move downward. After the second piston rod 403 moves downward and is inserted into the second air cylinder 401, the airflow in the second air cylinder 401 flows into the second air bag belt 4 through the second air guide pipe 402. The second air bag belt 4 expands and is in close contact with the thigh of the patient, thereby achieving the effect of fixation and limiting the thigh of the patient to avoid movement during the binding process. The slider 104 moves upward to drive the second piston rod 403 to move upward. The airflow in the second air bag belt 4 flows into the second air cylinder 401 through the second air guide pipe 402. The second air bag belt 4 contracts. Then the second piston rod 403 moves upward and is separated from the second air cylinder 401.

[0061] Referring now to Figure 7It also includes limit block 5, mounting bracket 501, third telescopic rod 502, tension spring 503 and bolt 504, limit block 5 is welded on the upper inner side of sliding block 104, mounting bracket 501 is welded on the inner side of sliding block 104, two third telescopic rods 502 are fixedly connected on mounting bracket 501, bolt 504 is fixedly connected between the third telescopic rods 502 on the same mounting bracket 501, bolt 504 passes through bandage 105 and inserts into limit block 5, left bolt 504 is slidingly connected with left mounting bracket 501, right bolt 504 is slidingly connected with right mounting bracket 501, two tension springs 503 are fixedly connected between left bolt 504 and left mounting bracket 501, two tension springs 503 are fixedly connected between right bolt 504 and right mounting bracket 501, and tension spring 503 is wound around third telescopic rod 502.

[0062] When people need to replace the bandage 105, people manually move the bolt 504 downward, so that the third telescopic rod 502 shortens, and the tension spring 503 is compressed, when the bolt 504 moves downward away from the bandage 105, people will disassemble the used bandage 105 from the sliding block 104, and install the new bandage 105 between the two sliding blocks 104, after installation, people release the bolt 504, so that the tension spring 503 resets to drive the bolt 504 to move upward and pass through the bandage 105 and insert into the limit block 5, and the third telescopic rod 502 is elongated, so as to realize the clamping effect and avoid the bandage 105 from falling off the sliding block 104.

[0063] Now referring to Figure 1 And Figure 8 It also includes rotating rod 601 and limit bracket 602, limit groove 6 is uniformly opened on both sides of the upper part of base 1, rotating rod 601 is rotatingly connected to the lower left and right sides of bearing frame 101, limit bracket 602 is welded on both rotating rods 601, and limit bracket 602 is in contact with limit groove 6.

[0064] When the patient's thigh needs to be placed on the bearing frame 101, people first manually move the limit bracket 602 upward, so that the rotating rod 601 and the bearing frame 101 move upward, after the limit bracket 602 moves upward and leaves the limit groove 6, the patient's thigh is placed on the bearing frame 101 according to the above steps, so that the limit bracket 602 and the rotating rod 601 rotate with the bearing frame 101, when the bearing frame 101 rotates to the appropriate position, the limit bracket 602 is clamped into the corresponding limit groove 6, so that the limit bracket 602 and the rotating rod 601 adaptively rotate, thereby realizing the supporting effect and avoiding the bearing frame 101 from rotating randomly during binding.

[0065] The above merely illustrates the embodiments of the present application but should not be taken as limitation. Any equivalent replacement within the principles of the present application should be included in the protection scope of the present application. The contents not described in detail in the present application belong to the prior art known by the skilled in the art.

Claims

1. A trans-femoral arterial puncture patient bandage compression binding device, characterized by, The utility model relates to a medical puncture fixing device, including have: Base (1) and support frame (101), base (1) on the connecting rod swing type connection have for supporting people's thigh support frame (101) on; Pivot (106), the upper front side of base (1) swing type connection have pivot (106); First telescopic link (102), pivot (106) fixedly connected with first telescopic link (102), and first telescopic link (102) swing type connection with support frame (101); Slide rail (103), the upper left and right sides of base (1) are fixedly connected with slide rail (103); Sliding block (104), the sliding block (104) is slidably connected on the slide rail (103); Binding belt (105), the binding belt (105) for binding the puncture site of patient is installed between the sliding block (104); The detent assembly is arranged on the sliding block (104) and is used for fixing the sliding block (104).

2. A femoral artery puncture patient bandaging and compression device according to claim 1, wherein, The support frame (101) is arc-shaped and is used for fitting the leg of patient.

3. A femoral artery puncture patient bandaging and compression device according to claim 1, wherein, The detent assembly includes: Second telescopic link (201), the second telescopic link (201) is fixedly connected in the sliding block (104); The clamping block (2) is fixedly connected on the second telescopic link (201) and is used for clamping the sliding block (104), and the clamping block (2) is slidably connected with the sliding block (104) on the same side.

4. A femoral artery puncture patient bandaging and compression device according to claim 1, wherein, The front part of the clamping block (2) is spherical and is used for people to grasp.

5. A femoral artery puncture patient bandaging and compression device according to claim 1, wherein, Further including: First air bag belt (3), the first air bag belt (3) for fitting the binding belt (105) is fixedly connected between the upper side of the sliding block (104); First piston rod (301), the first piston rod (301) is fixedly connected on the front side of the sliding block (104); First air cylinder (302), the first air cylinder (302) is fixedly connected on the front part of the slide rail (103); First air pipe (303), the first air pipe (303) is communicated between the first air cylinder (302) and the first air bag belt (3).

6. A femoral artery puncture patient bandaging and compression device according to claim 5, wherein, Further including: Second air bag belt (4), the second air bag belt (4) for limiting the thigh of patient is fixedly connected on the left and right sides of the support frame (101); Second air cylinder (401), the second air cylinder (401) is fixedly connected on the rear part of the slide rail (103); Second piston rod (403), the second piston rod (403) is fixedly connected on the rear side of the sliding block (104); Second air pipe (402), the second air pipe (402) is communicated between the second air bag belt (4) and the second air cylinder (401) on the same side.

7. A femoral artery puncture patient bandaging and compression device according to claim 6, wherein, The second air bag belt (4) is arc-shaped and is used for surrounding the arm of patient.

8. A femoral artery puncture patient bandaging and compression device according to claim 6, wherein, Further including: Limiting block (5), the limiting block (5) is fixedly connected on the inner side of the upper part of the sliding block (104); Mounting bracket (501), the mounting bracket (501) is fixedly connected on the inner side of the sliding block (104); Third telescopic link (502), two third telescopic links (502) are fixedly connected on the mounting bracket (501); Latch (504), the latch (504) for fixing the binding belt (105) is fixedly connected between the third telescopic links (502) on the same mounting bracket (501), and the latch (504) is inserted into the limiting block (5) through the binding belt (105), and the latch (504) is slidably connected with the mounting bracket (501) on the same side.

9. The femoral artery puncture patient bandage compression binding device according to claim 8, further comprising: A tension spring (503) is fixedly connected between the bolt (504) and the same side mounting frame (501), and the tension spring (503) is wound around the third telescopic rod (502).

10. A femoral artery puncture patient bandaging and compression device according to claim 9, wherein, Further comprising: A rotating rod (601) is uniformly opened on both sides of the upper part of the base (1) and is rotatably connected with the supporting frame (101) on the left and right sides of the lower part of the supporting frame (101). A limiting frame (602) is fixedly connected on the rotating rod (601) and is used for clamping the supporting frame (101).

Citation Information

Patent Citations

  • Peripheral component interconnect (PCI) postoperative pressurizing and fixing device for transfemoral artery puncture

    CN219126531U

  • Special multifunctional bed for neurology department after interventional operation

    CN116763560A

  • Device for compression of post-catheter wounds of the femoral arteries

    RU2677605C1