A ventricular catheter clamping device

CN224762289UActive Publication Date: 2026-09-18THE AFFILIATED HOSPITAL OF SHANDONG UNIV OF TCM
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Patent Information

Application Number
CN202520992726.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2026-09-18
Estimated Expiration
2035-05-20

AI Technical Summary

Technical Problem

[0004]本实用新型提供了一种脑室引流管夹持装置,具有解决不同病人头围不一致、插管位置不一致带来的问题,结合医院实际情况进行设计,将整个夹持部件设置为卷材,根据使用需求、管道类型、固定数量进行裁剪获取,卷材可以使医生根据病人的头部情况进行长度选择以及固定位置的选择的特点

Benefits of technology

[0013] The beneficial effects of this utility model are as follows: To solve the problems caused by inconsistent head circumferences and intubation positions among different patients, the design is tailored to the actual conditions of hospitals. The entire clamping component is made of roll material, which is cut according to usage requirements, tube type, and the number of tubes to be fixed. The cut strips are then adhered and fixed to the gauze layer using the hook-and-eye closure on the bottom surface. At this time, the non-elastic adhesive tape is fixed to the gauze area by the adhesive effect of the hook-and-eye closure on the bottom surface, providing a basic cross-section for tube clamping. The elastic clamping tape is limited by the non-elastic buckle, so the elastic clamping tape located between two non-elastic buckles can fix tubes, tees, regulators, and other tube-related structures. The roll material allows doctors to select the length and fixation position according to the patient's head condition. The length determines the number of non-elastic buckles, which in turn determines the number of clamping areas. The number of clamping areas corresponds to the number of tubes, tees, regulators, and other tube-related structures.

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Abstract

The utility model belongs to drainage tube fixing technical field especially is a ventricle drainage tube clamping device, including the coiled material that is composed of adherent belt body, elastic clamping belt, the adherent belt body includes inelastic adherent belt and inelastic buckle belt, a plurality of inelastic buckle belts equidistant fixedly connected at the smooth surface of inelastic adherent belt, the bottom of inelastic adherent belt is fixedly connected with bottom surface crochet surface layer, bottom surface crochet surface layer is fixedly connected with the encirclement gauze of patient's head, solve the problem that different patient head circumference is not consistent, intubation position is not consistent, design in combination with the actual situation of hospital, the whole clamping part is set up as coiled material, according to the use demand, pipeline type, fixed number are cut and are obtained, coiled material can make the doctor according to the length selection and the selection of fixed position of patient's head condition, and inelastic buckle belt decides the number of clamping area, and the number of clamping area and pipeline, tee, regulator and other pipeline supporting structure correspond just.
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Description

Technical Field

[0001] This utility model belongs to the field of drainage tube fixing technology, specifically relating to a ventricular drainage tube clamping device. Background Technology

[0002] Currently, during ventricular drainage, to secure the tubes, a dressing that can contact the wound is first laid on the wound site. This dressing surrounds the tubes and the skin around them. After the wound dressing is secured, multiple layers of gauze are wrapped around the head to prevent head movement. The gauze covers a large area to increase the friction of the binding. During the gauze wrapping process, the tubes, tees, regulators, and other tube-related structures are secured within the gauze layers. However, since the gauze layers are a multi-layered binding structure, when it is necessary to remove the tubes, tees, regulators, and other tube-related structures, part of the gauze layer is released. In this process, it is easy for the gauze on the head to become loose and not in close contact with the head.

[0003] Furthermore, it is more difficult to wrap the head of multiple drainage tubes with gauze, and multiple drainage tubes also bring more supporting pipe structures. When wrapping according to the above content, it is difficult to fix multiple supporting pipe structures at the same time. Utility Model Content

[0004] This utility model provides a ventricular drainage tube clamping device, which solves the problems caused by different head circumferences and different insertion positions among different patients. It is designed in accordance with the actual situation of the hospital, and the entire clamping component is made into a roll material. It can be cut and obtained according to the usage requirements, tube type and fixed quantity. The roll material allows doctors to select the length and fixed position according to the patient's head condition.

[0005] This utility model provides the following technical solution: a roll material composed of an adhesive tape body and an elastic clamping tape;

[0006] The adhesive tape body includes a non-elastic adhesive tape and a non-elastic buckle. Several non-elastic buckles are fixedly connected at equal intervals to the smooth surface of the non-elastic adhesive tape. A bottom hook needle surface layer is fixedly connected to the bottom of the non-elastic adhesive tape. The bottom hook needle surface layer is fixedly connected to the gauze covering the patient's head.

[0007] The bottom surface of the non-elastic buckle is a smooth surface, and the top surface of the non-elastic buckle is fixedly connected to a top hook surface layer.

[0008] An annular layer is fixedly connected to the surface of the elastic clamping band. The annular layer contacts the bottom surface of the non-elastic buckle band, and the annular layer is slidably connected to the bottom surface of the non-elastic buckle band.

[0009] In the cut roll, the length of the adhesive tape is equal to the length of the elastic clamping tape, and the cutting line of the roll is located between two adjacent non-elastic buckles.

[0010] The adhesive tape has an easy-tear line located at the midpoint between the two non-elastic buckles.

[0011] The width of the adhesive tape is greater than the width of the elastic clamping tape.

[0012] The elastic clamping band has an adhesive surface on the side near the adhesive tape body, and the adhesive surface is sealed and protected by a sealing layer.

[0013] The beneficial effects of this utility model are as follows: To solve the problems caused by inconsistent head circumferences and intubation positions among different patients, the design is tailored to the actual conditions of hospitals. The entire clamping component is made of roll material, which is cut according to usage requirements, tube type, and the number of tubes to be fixed. The cut strips are then adhered and fixed to the gauze layer using the hook-and-eye closure on the bottom surface. At this time, the non-elastic adhesive tape is fixed to the gauze area by the adhesive effect of the hook-and-eye closure on the bottom surface, providing a basic cross-section for tube clamping. The elastic clamping tape is limited by the non-elastic buckle, so the elastic clamping tape located between two non-elastic buckles can fix tubes, tees, regulators, and other tube-related structures. The roll material allows doctors to select the length and fixation position according to the patient's head condition. The length determines the number of non-elastic buckles, which in turn determines the number of clamping areas. The number of clamping areas corresponds to the number of tubes, tees, regulators, and other tube-related structures.

[0014] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description

[0015] Figure 1 This is a partial three-dimensional schematic diagram of the present invention;

[0016] Figure 2 This is a schematic diagram of the first step used in this utility model;

[0017] Figure 3 This is a schematic diagram of the second step used in this utility model;

[0018] Figure 4 This is a schematic diagram of the third step used in this utility model.

[0019] Figure 5 This is a schematic diagram of the fourth step used in this utility model.

[0020] In the diagram: 1. Adhesive tape body; 11. Non-elastic adhesive tape; 111. Bottom hook layer; 12. Non-elastic buckle; 121. Top hook layer; 2. Elastic clamping tape; 21. Circular layer. Detailed Implementation

[0021] Please see Figures 1-5 The present invention provides the following technical solution:

[0022] In this embodiment, a roll material is included, consisting of an adhesive tape body 1 and an elastic clamping band 2. The adhesive tape body 1 includes a non-elastic adhesive tape 11 and a non-elastic buckle 12. Several non-elastic buckles 12 are fixedly connected at equal intervals to the smooth surface of the non-elastic adhesive tape 11. A bottom hook-and-eye layer 111 is fixedly connected to the bottom of the non-elastic adhesive tape 11. The bottom hook-and-eye layer 111 is fixedly connected to the gauze covering the patient's head.

[0023] The above solution addresses the issues arising from inconsistent head circumferences and catheter placement among different patients. Currently, to prevent wound infection, wound dressings and outer gauze are used for protection. Since the head cannot move easily, needle displacement can occur due to relative movement between the needle and head. Therefore, the tubing needs to be fixed to the head. This technical solution is designed based on the actual situation of the hospital, using a roll of material. The roll is cut according to usage requirements, tubing type, and the number of tubes to be fixed. The cut strip is then adhered to the gauze layer using the bottom hook-and-eye lining 111. The non-elastic adhesive tape 11 is then fixed to the gauze area using the adhesive effect of the bottom hook-and-eye lining 111, providing a base surface for tubing clamping. At this time, the non-elastic buckle 12 is fixedly connected to the non-elastic adhesive tape 11 by sew, and a channel is formed between the non-elastic buckle 12 and the non-elastic adhesive tape 11, so that the elastic clamping tape 2 can slide between the non-elastic buckle 12 and the non-elastic adhesive tape 11. The elastic clamping tape 2 is limited by the non-elastic buckle 12, so the elastic clamping tape 2 located between the two non-elastic buckles 12 can fix the pipe, tee, regulator and other pipe supporting structures. The roll material allows the doctor to select the length and fixation position according to the patient's head condition. The length determines the number of non-elastic buckles 12, and the non-elastic buckles 12 determine the number of clamping areas. The number of clamping areas corresponds to the number of pipe, tee, regulator and other pipe supporting structures.

[0024] In this embodiment, the bottom surface of the non-elastic buckle 12 is a smooth surface, the top surface hook layer 121 is fixedly connected to the top of the non-elastic buckle 12, and the surface of the elastic clamping band 2 is fixedly connected to the annular layer 21. The annular layer 21 contacts the bottom surface of the non-elastic buckle 12, and the annular layer 21 is slidably connected to the bottom surface of the non-elastic buckle 12.

[0025] In the above embodiment, since the elastic clamping band 2 slides at the non-elastic buckle 12, the bottom of the non-elastic buckle 12 needs to be a smooth surface. A smooth surface can prevent the elastic clamping band 2 from being obstructed by excessive resistance from the non-elastic buckle 12 when sliding. Furthermore, the non-elastic adhesive tape 11 is made of non-elastic material, such as nylon fabric, which has strong tensile strength. The non-elastic buckle 12 is made of the same material as the non-elastic adhesive tape 11, so there is no elastic deformation between the non-elastic buckle 12 and the non-elastic adhesive tape 11. During fixing, the elastic clamping bands 2 at both ends are stretched to both sides, so that the elastic clamping band 2 is taut and attached to the pipe, tee, regulator and other pipe matching structures. After being taut, the elastic clamping band 2 is flipped towards the middle of the roll material with the nearest non-elastic buckle 12 as the center. At this time, the annular layer 21 on the surface of the elastic clamping band 2 cooperates with the top hook layer 121 for fixing, thereby fixing both ends of the elastic clamping band 2. The annular layer 21 and the top hook-and-loop layer 121 are the negative and positive sides of the Velcro, respectively. The annular layer 21 is actually a structure of multiple plastic rope loops, while the top hook-and-loop layer 121 is a top hook structure. The top hook-and-loop layer 121 is of the same type as the bottom hook-and-loop layer 111. Since the elastic clamping band 2 is made of elastic fabric, the annular layer 21 can be fixed in multiple strips at the elastic clamping band 2 to avoid affecting the annular layer 21 when the elastic clamping band 2 is stretched. During the stretching process, the elastic clamping band 2 needs to be stretched to its elastic limit before adhesion and fixation.

[0026] In this embodiment, in the cut roll material, the length of the adhesive tape 1 is equal to the length of the elastic clamping tape 2, and the cutting line of the roll material is located between two adjacent non-elastic buckle tapes 12.

[0027] In the above embodiments, for ease of use, it is necessary to ensure that the end has a non-elastic buckle 12 during each cutting process, and to make the lengths of the adhesive tape 1 and the elastic clamping tape 2 correspond to each other for easier use, so as to avoid the problem that the length of the non-elastic buckle 12 is greater than that of the elastic clamping tape 2 in the future.

[0028] In this embodiment, the adhesive tape 1 has an easy-tear line, which is located at the midpoint between the two non-elastic buckles 12.

[0029] In this implementation plan, an easy-tear line is provided to facilitate the doctor's operation. The easy-tear line is only set at the adhesive tape body 1. The purpose is to make it easier for the doctor to tear the adhesive tape body 1. Since the elastic clamping band 2 needs to withstand the tension, the elastic clamping band 2 cannot have an easy-tear line. At the same time, the scissors can directly act on the elastic clamping band 2, reducing the thickness of a single cut and improving the convenience of cutting.

[0030] In this embodiment, the width of the adhesive tape 1 is greater than the width of the elastic clamping tape 2; increasing the width of the adhesive tape 1 can effectively improve the adhesion stability and adhesion force with the head gauze layer.

[0031] In this embodiment, the elastic clamping band 2 has an adhesive surface on the side near the adhesive tape body 1, and the adhesive surface is sealed and protected by a sealing layer. When the elastic clamping band 2 needs to fix the pipe, the sealing layer can be torn open so that the elastic clamping band 2 can be attached to the pipe for adhesion and fixation. When the elastic clamping band 2 is flipped and fixed with the non-elastic buckle 12, the adhesive layer can also be located on the outside for sticking to the sticky note.

Claims

1. A clamping device for a ventricular drainage tube, characterized in that: include: A roll material consisting of an adhesive tape (1) and an elastic clamping tape (2); The adhesive tape body (1) includes a non-elastic adhesive tape (11) and a non-elastic buckle (12). A plurality of the non-elastic buckles (12) are fixedly connected at equal intervals to the smooth surface of the non-elastic adhesive tape (11). A bottom hook layer (111) is fixedly connected to the bottom of the non-elastic adhesive tape (11). The bottom hook layer (111) is fixedly connected to the gauze covering the patient's head. The bottom surface of the non-elastic buckle (12) is a smooth surface, and the top surface of the non-elastic buckle (12) is fixedly connected to the top surface hook layer (121); An annular layer (21) is fixedly connected to the surface of the elastic clamping band (2). The annular layer (21) contacts the bottom surface of the non-elastic buckle (12), and the annular layer (21) is slidably connected to the bottom surface of the non-elastic buckle (12).

2. The ventricular drainage tube clamping device according to claim 1, characterized in that: In the cut roll, the length of the adhesive tape (1) is equal to the length of the elastic clamping tape (2), and the cutting line of the roll is located between two adjacent non-elastic buckles (12).

3. The ventricular drainage tube clamping device according to claim 1, characterized in that: The adhesive tape (1) has an easy-tear line located at the midpoint between the two non-elastic buckles (12).

4. The ventricular drainage tube clamping device according to claim 1, characterized in that: The width of the adhesive tape (1) is greater than the width of the elastic clamping tape (2).

5. The ventricular drainage tube clamping device according to claim 1, characterized in that: The elastic clamping band (2) has an adhesive surface on the side near the adhesive tape body (1), and the adhesive surface is sealed and protected by a sealing layer.