Quick positioning device for tension-reducing scar surgery
By designing components such as the base, suction pump, and actuator, the problem of inaccurate positioning of adhesive bandage-like parts has been solved, achieving rapid and automated scar tension reduction and moisturizing effects, thus improving the practicality of the device and patient comfort.
Patent Information
- Application Number
- CN202410623705.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-20
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2044-05-20
AI Technical Summary
Existing adhesive bandage components have limitations in their ability to precisely position themselves according to the size of the patient's wound when reducing tension on scars.
A rapid positioning device was designed, comprising a base, an adsorption pump, a driver, and an atomizing component. The adsorption pump generates negative pressure for fixation, the driver adjusts the position of the base, and the atomizing component provides continuous hydration, thereby achieving precise positioning and tension reduction of scars.
It improves the assembly efficiency and practicality of the device, and can automatically adjust the tension reduction according to the size of the scar, promote scar healing, and provide patient comfort.
Smart Images

Figure CN118512225B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of scar surgery tension reduction positioning, in particular to a quick positioning device for tension reduction scar surgery. BACKGROUND
[0002] The purpose of treating scars is to make the obvious scar tissue smaller and leave as little trace as possible. Whether it is due to trauma or surgical incision, it will cause damage to the patient's skin. When the skin has a scar, it will have an outward expansion force to pull the wound, making it difficult for the wound to heal smoothly. Therefore, when treating scars, a tension reduction treatment method is generally used for auxiliary treatment. When performing tension reduction on scars, a component similar to a band-aid is usually adhered to the patient's skin, and the limiting of the band-aid is used to achieve the limiting operation of the scar. However, when performing tension reduction, the size of the band-aid cannot be easily adjusted, and it cannot accurately position the tension reduction operation according to the size of the current patient's wound, which has limitations.
[0003] Therefore, in view of the above problems, the existing structure and defects are improved, and a quick positioning device for tension reduction scar surgery is provided to achieve a more practical purpose. SUMMARY
[0004] In order to solve the above technical problems, the present application provides a quick positioning device for tension reduction scar surgery to solve the problem that the existing similar components to band-aids are adhered to the patient's skin, and the limiting of the band-aid is used to achieve the limiting operation of the scar. However, when performing tension reduction, the size of the band-aid cannot be easily adjusted, and it cannot accurately position the tension reduction operation according to the size of the current patient's wound, which has limitations.
[0005] The present application provides a quick positioning device for tension reduction scar surgery, which specifically comprises: a base, the main body of the base is a box structure with a one-way opening at the top end, and the base is provided with two places, the two bases are arranged in a straight line array, and a recess is formed on the top end face of the base, the recess is a mounting hole, and mounting holes are formed at the four corner positions on the top end face of each base. The mounting hole and the base together form a connecting structure, and the top end of the base is provided with a one-way opening groove, and the top end of the groove is provided with a cover plate, and the cover plate is used to cover the top end opening of the base.
[0006] Preferably, the inner rear end surface of the base is fixedly connected with a suction pump, the suction pump is provided in two places, and the two suction pumps are arranged in a linear array on the inner side of the two bases, and a longitudinal slot is formed in the inner side of the base, two longitudinal slots are formed in the inner side of each base, an adjusting assembly is arranged in the longitudinal slot, the adjusting assembly is provided in four places, two adjusting assemblies adjacent in the transverse direction form a group, the two groups of adjusting assemblies are arranged in the longitudinal slots formed in the two groups of bases, the front end of each group of adjusting assemblies is provided with an output shaft, and the output shaft is provided with a moving seat.
[0007] Preferably, a slot is formed in the outer side of the cover plate, the slot is a holding slot for holding the operator's hand, a silica gel layer is arranged on the bottom end surface of the base, an adsorption slot is arranged on the bottom end surface of the base, adsorption holes are formed in the adsorption slot in a linear array, the adsorption holes are connected with the adsorption pump arranged in the base, and the adsorption pump, the adsorption slot and the adsorption holes jointly form an adsorption limiting structure for the patient's skin.
[0008] Preferably, a slot is formed in the outer side of the cover plate, the slot is a holding slot for holding the operator's hand, a silica gel layer is arranged on the bottom end surface of the base, an adsorption slot is arranged on the bottom end surface of the base, adsorption holes are formed in the adsorption slot in a linear array, the adsorption holes are connected with the adsorption pump arranged in the base, and the adsorption pump, the adsorption slot and the adsorption holes jointly form an adsorption limiting structure for the patient's skin.
[0009] Preferably, the moving seat is arranged in the longitudinal slot formed in the base, the moving seat is provided in four places, two moving seats adjacent in the transverse direction form a group, the inner side of each group of moving seats is fixedly connected with an atomization assembly, a through hole is formed in the top end of the atomization assembly, the through hole is a liquid inlet assembly, the liquid inlet assembly is filled with filter cotton, and a through hole is formed in the bottom end surface of the atomization assembly, the through hole is a liquid injection hole, the liquid injection hole is arranged in a rectangular array on the bottom end surface of the atomization assembly and matches the liquid inlet assembly formed on the top end surface of the atomization assembly.
[0010] Preferably, the main body of the rack is a flexible structure, the driver and the gear jointly form a driving conveying structure for the rack, the outer side of the rack is fixedly connected with a sliding block, the main body of the sliding block is a flexible structure, the outer side of each rack is fixedly connected with two sliding blocks in opposite directions, and the rack is slidingly connected in the guide slot formed in the base through the sliding block fixedly connected to the outer side of the rack.
[0011] Preferably, the inside of the two bases is provided with a rectangular array of through holes, the through holes are air permeation holes, the air permeation holes are provided in a rectangular array on the bottom end surface of the inside of the base, and the inside of the base is provided with a through groove, the through groove is a guide groove, the inside of each base is provided with four guide grooves, wherein every two horizontally adjacent guide grooves form a group, and the two groups of guide grooves are provided in a linear array on the front and rear sides of the inside of the base, and the guide grooves are T-shaped structures.
[0012] Preferably, the outside of the base is provided with a driver, the driver is provided with four, wherein every two longitudinally adjacent drivers form a group, and the two groups of drivers are provided in opposition on the front and rear sides of the two bases, and the side close to the base of the two groups of drivers is provided with an output shaft, the output shaft penetrates the base inwardly and is located in the inside of the cavity provided in the base, and the output shaft of the driver is connected with the base through a bearing, and the inside of the guide groove provided in the base is provided with a rack.
[0013] Compared with the prior art, the present application has the following beneficial effects:
[0014] 1、In the present application, by providing a silica gel layer, an adsorption groove and an adsorption hole on the bottom end surface of the base, when the base is assembled to the outside of the patient's skin, the air in the adsorption groove provided on the bottom end surface of the base can be extracted through the adsorption hole by starting the adsorption pump installed in the base, and a negative pressure is generated, so that the base can be quickly attached to the outside of the patient's skin for positioning. Compared with the traditional positioning method of adhesive tape, the design is more practical, significantly improves the assembly efficiency of the device, and the atomization assembly can realize continuous moisturizing of the patient's skin, thereby achieving the purpose of making the patient more comfortable.
[0015] 2、In the present application, by providing a driver, a rack and a gear, when the two bases are respectively installed on the two sides of the scar, the gear can be driven to rotate by starting the driver installed on the outside of the base, and the two bases are driven to approach each other by the meshing transmission of the gear and the rack, and the scar on the patient's skin is gathered and tensioned by the mutual approach of the two bases. Compared with the traditional tension reduction method, the design can automatically adjust the tension reduction adjustment of the scar according to the size and degree of the scar, which is more beneficial to the healing of the scar on the patient's skin, and preferably improves the overall practicality of the device. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.
[0017] In the drawings:
[0018] Figure 1 Fig. 3 shows a front side view structural schematic diagram of the positioning device in a split state according to an embodiment of the present application;
[0019] Figure 2 Fig. 4 shows a top view structural schematic diagram of the positioning device in a split state according to an embodiment of the present application;
[0020] Figure 3 Fig. 5 shows a left side view structural schematic diagram of the positioning device according to an embodiment of the present application;
[0021] Figure 4 Fig. 6 shows a front view structural schematic diagram of the positioning device in a split state according to an embodiment of the present application;
[0022] Figure 5 Fig. 7 shows a base and mounting hole assembly structural schematic diagram of the positioning device according to an embodiment of the present application;
[0023] Figure 6 Fig. 8 shows a front view structural schematic diagram of the positioning device in a split state according to an embodiment of the present application;
[0024] Figure 7 Fig. 9 shows a front view structural schematic diagram of the positioning device according to an embodiment of the present application; Figure 2 Fig. 10 shows an enlarged structural schematic diagram of position A in Fig. 9;
[0025] Figure 8 Fig. 11 shows an enlarged structural schematic diagram of position B in Fig. 9. Figure 2
[0026] List of reference signs
[0027] 1, base; 2, mounting hole; 3, cover plate; 4, heat dissipation groove; 5, guide column; 6, air vent hole; 7, guide groove; 8, driver; 9, gear; 10, rack; 11, sliding block; 12, adsorption pump; 13, adjusting assembly; 14, moving seat; 15, atomization assembly; 16, liquid inlet assembly; 17, liquid injection hole; 18, adsorption groove; 19, adsorption hole; 20, holding groove. DETAILED DESCRIPTION
[0028] The embodiments of the present application will be further described below in conjunction with the drawings and examples.
[0029] Example 1
[0030] As shown in the accompanying drawings: Figure 1 to Fig. 10: Figure 8
[0031] The application provides a quick positioning device for tension-relieving scar surgery, which comprises a base 1, the main body of the base 1 is a box structure with a one-way opening at the top end, and the base 1 is provided with two parts, the two parts of the base 1 are arranged in a straight line, and a recess is formed in the top end surface of the base 1, which is a mounting hole 2, the mounting hole 2 is arranged at the four corners of the top end surface of each base 1, the mounting hole 2 and the base 1 together form a connecting structure, and a one-way opening groove is arranged at the top end of the base 1, and a cover plate 3 is arranged at the top end of the groove, the cover plate 3 is used for covering the top end opening of the base 1, a slot is formed in the outer side of the cover plate 3, which is a holding slot 20, the holding slot 20 is used for holding the operator's hand, and a silica gel layer is arranged on the bottom surface of the base 1, and an adsorption groove 18 is arranged on the bottom surface of the base 1, a plurality of adsorption holes 19 are arranged in the adsorption groove 18 in a straight line, the adsorption holes 19 are connected with an adsorption pump 12 arranged in the base 1, and the adsorption pump 12, the adsorption groove 18 and the adsorption holes 19 together form an adsorption limiting structure for the patient's skin.
[0032] The outer side of the base 1 is provided with a driver 8, and the driver 8 is provided with four parts, wherein every two longitudinally adjacent drivers 8 form a group, and the two groups of drivers 8 are oppositely arranged on the front and rear sides of the two bases 1, and the side close to the base 1 of the two groups of drivers 8 is provided with an output shaft, the output shaft penetrates the base 1 to the inside and is located in the cavity of the base 1, the output shaft of the driver 8 is connected with the base 1 through a bearing, a rack 10 is arranged in the guide groove 7 of the base 1, the main body of the rack 10 is flexible, the driver 8 and a gear 9 together form a driving conveying structure for the rack 10, and the outer side of the rack 10 is fixedly connected with a sliding block 11, the main body of the sliding block 11 is flexible, and the outer side of each rack 10 is oppositely fixedly connected with two sliding blocks 11, and the rack 10 is slidably connected with the sliding block 11 fixedly connected with the outer side of the rack 10 in the inside of the guide groove 7 of the base 1.
[0033] In use: when the scar surgery is assisted in positioning treatment, two bases 1 are placed on both sides of the scar, the base 1 is attached to the skin of the patient by the silica gel layer fixedly connected to the bottom surface of the base 1, the adsorption pump 12 arranged in the base 1 is started to draw air through the adsorption holes 19 in the adsorption groove 18, the air in the adsorption groove 18 is drawn out through the adsorption holes 19, and the negative pressure is generated to realize the quick adsorption connection positioning operation of the base 1.
[0034] Embodiment two:
[0035] Based on the first embodiment provides a kind of quick positioning device for tension-relieving scar surgery, it can realize the quick positioning installation of device, but still cannot realize the tension-relieving operation of scar, therefore still be provided with the following technical solutions.
[0036] Wherein, the inner rear end surface of base 1 is fixedly connected with suction pump 12, two suction pumps 12 are provided, and the two suction pumps 12 are installed in linear array on the inner side of the two bases 1, and the inside of base 1 is provided with longitudinal slot, the inside of each base 1 is provided with two longitudinal slots in opposite directions, the inside of the longitudinal slot is provided with adjusting assembly 13, the adjusting assembly 13 is provided with four, wherein every two transversely adjacent adjusting assemblies 13 form a group, and the two groups of adjusting assemblies 13 are respectively installed in the inside position of the longitudinal slot provided in the two groups of base 1, and the front end of the two groups of adjusting assemblies 13 is provided with output shaft, the output shaft is installed with moving seat 14, the moving seat 14 is located in the inside position of the longitudinal slot provided in the base 1, and the moving seat 14 is provided with four, wherein every two transversely adjacent moving seats 14 form a group, and the inner side of the two groups of moving seats 14 is fixedly connected with atomizing assembly 15, the top end of the atomizing assembly 15 is provided with through hole, the through hole is liquid inlet assembly 16, the inside of the liquid inlet assembly 16 is filled with filter cotton, and the bottom end surface of the atomizing assembly 15 is provided with through hole, the through hole is liquid injection hole 17, the liquid injection hole 17 is provided in rectangular array on the bottom end surface of the atomizing assembly 15, and matches with the liquid inlet assembly 16 provided on the top end surface of the atomizing assembly 15.
[0037] When using, after positioning is completed, the cover plate 3 can be covered on the top end surface of the base 1 by manually holding the holding groove 20 provided on the outer side of the cover plate 3, and the four guide columns 5 fixedly connected to the bottom end surface of the cover plate 3 are inserted into the inside position of the mounting hole 2 provided on the top end surface of the base 1 to perform assembly operation, and after the cover plate 3 is assembled, the drive 8 installed on the outer side of the base 1 can be started synchronously to rotate and drive the gear 9, and through the transmission connection between the gear 9 and the rack 10 arranged in the guide groove 7, the rack 10 moves along the guide groove 7 provided in the base 1 through the sliding block 11 fixedly connected to the outer side of the rack 10 to realize the quick pulling and limiting operation of the scar of the current patient, so that it can realize the gathering operation of the current scar, so that it can reduce the tension operation of the patient's scar when in use, and thus achieve a more practical purpose.
[0038] Embodiment three:
[0039] Based on the second embodiment provides a kind of quick positioning device for tension-relieving scar surgery, it can realize the tension-relieving operation of scar, but still cannot realize the protection operation of patient's skin, therefore still be provided with the following technical solutions.
[0040] The interior of the cover plate 3 is provided with a through slot in a linear array, which is a heat dissipation slot 4, the heat dissipation slot 4 is a bidirectional through structure on the upper and lower sides, and the heat dissipation slot 4 is provided in the interior of the base 1 in a linear array, and the bottom end face of the cover plate 3 is fixedly connected with a guide column 5, the main body of the guide column 5 is a cylindrical structure, and the guide column 5 has magnetism, the guide column 5 is matched with the mounting hole 2 provided in the base 1, and the diameter of the guide column 5 is matched with the diameter of the mounting hole 2 provided in the base 1, and the interior of the base 1 is provided with a through hole in a rectangular array, which is a ventilation hole 6, the ventilation hole 6 is provided on the interior bottom end face of the base 1 in a rectangular array, and the interior of the base 1 is provided with a through slot, which is a guide slot 7, the interior of each base 1 is provided with four guide slots 7, wherein every two horizontally adjacent guide slots 7 form a group, and the two groups of guide slots 7 are provided on the front and rear sides of the interior of the base 1 in a linear array, and the guide slot 7 is a T-shaped structure.
[0041] In use, when in use, the atomized liquid can be poured through the liquid inlet assembly 16 provided at the top end of the atomization assembly 15, and the atomization assembly 15 can be started synchronously to atomize the liquid and spray the liquid through the liquid spray hole 17 provided on the bottom end face of the atomization assembly 15, and the atomization and moisturizing operation of the patient's skin can be realized through the liquid spray of the liquid spray hole 17, and the adjusting assembly 13 installed in the longitudinal slot of the base 1 can be started synchronously to push the moving seat 14, and the moving seat 14 can move along the longitudinal slot of the base 1, so that the moving seat 14 drives the atomization assembly 15 fixedly connected in its interior to move synchronously along the base 1, so that the atomized liquid can be sprayed out through the ventilation hole 6 provided on the bottom end face of the base 1 to realize the continuous moisturizing operation of the patient's skin in the tension reduction operation.
Claims
1. A rapid positioning device for tension-reducing scar surgery, characterized in that, include: The base (1) is a box structure with a one-way opening at the top. There are two bases (1) in total. The two bases (1) are arranged in a straight line array. The top surface of the base (1) is provided with a concave hole, which is a mounting hole (2). The four corners of the top surface of each base (1) are provided with mounting holes (2). The mounting holes (2) and the base (1) together form a connection structure. The top of the base (1) is provided with a groove with a one-way opening. The top of the groove is provided with a cover plate (3). The cover plate (3) is used to cover the top opening of the base (1). An adsorption pump (12) is fixedly connected to the inner rear end face of the base (1). There are two adsorption pumps (12), and the two adsorption pumps (12) are installed in a straight array on the inner side of the two bases (1). The base (1) has a longitudinal groove. Each base (1) has two longitudinal grooves facing each other. An adjustment component (13) is installed inside the longitudinal groove. There are four adjustment components (13). Each pair of horizontally adjacent adjustment components (13) is a group. The two groups of adjustment components (13) are installed in the longitudinal grooves in the two groups of bases (1). The front end of each group of adjustment components (13) is provided with an output shaft. A movable seat (14) is installed on the output shaft. The movable seat (14) is located inside the longitudinal groove opened in the base (1), and there are four movable seats (14) in total. Each pair of movable seats (14) that are laterally adjacent form a group, and the inner side of each group of movable seats (14) is fixedly connected to an atomizing component (15). The top of the atomizing component (15) is provided with a through hole, which is a liquid inlet component (16). The liquid inlet component (16) is filled with filter cotton. The bottom surface of the atomizing component (15) is provided with a through hole, which is a spray hole (17). The spray holes (17) are arranged in a rectangular array on the bottom surface of the atomizing component (15) and match the liquid inlet component (16) on the top surface of the atomizing component (15).
2. The rapid positioning device for tension-reducing scar surgery as described in claim 1, characterized in that: The cover plate (3) has through slots arranged in a straight line inside. These through slots are heat dissipation slots (4). The heat dissipation slots (4) are bidirectional through structures on both the upper and lower sides. The heat dissipation slots (4) are arranged in a straight line inside the base (1). A guide post (5) is fixedly connected to the bottom surface of the cover plate (3). The main body of the guide post (5) is a cylindrical structure. The guide post (5) is magnetic. The guide post (5) matches the mounting hole (2) in the base (1). The diameter of the guide post (5) matches the diameter of the mounting hole (2) in the base (1).
3. The rapid positioning device for tension-reducing scar surgery as described in claim 1, characterized in that: The two bases (1) have through holes arranged in a rectangular array inside. These through holes are ventilation holes (6). The ventilation holes (6) are arranged in a rectangular array on the bottom surface inside the base (1). The base (1) also has through grooves arranged inside. These through grooves are guide grooves (7). Each base (1) has four guide grooves (7) inside. Each pair of guide grooves (7) that are laterally adjacent form a group. The two groups of guide grooves (7) are arranged in a straight array on the front and rear sides inside the base (1). The guide grooves (7) have a T-shaped structure.
4. The rapid positioning device for tension-reducing scar surgery as described in claim 1, characterized in that: The base (1) is equipped with a driver (8) on its outer side. There are four drivers (8) in total. Each pair of drivers (8) that are longitudinally adjacent form a group. The two groups of drivers (8) are installed opposite each other on the front and rear sides of the two bases (1). The side of each group of drivers (8) closest to the base (1) is provided with an output shaft. The output shaft passes through the base (1) on its inner side and is located inside the cavity opened in the base (1). The output shaft of the driver (8) is connected to the base (1) by a bearing. A rack (10) is installed inside the guide groove (7) opened in the base (1).
5. The rapid positioning device for tension-reducing scar surgery as described in claim 4, characterized in that: The main body of the rack (10) is a flexible structure, and the driver (8) and the gear (9) together form a drive and conveying structure for the rack (10). A slider (11) is fixedly connected to the outside of the rack (10). The main body of the slider (11) is a flexible structure, and two sliders (11) are fixedly connected to each rack (10) in opposite directions. The rack (10) is slidably connected to the inside of the guide groove (7) opened in the base (1) through the sliders (11) fixedly connected to its outside.
6. The rapid positioning device for tension-reducing scar surgery as described in claim 1, characterized in that: The cover plate (3) has a notch on its outer side, which is a grip groove (20) for the operator's hand to grip. The bottom surface of the base (1) is covered with a silicone layer and an adsorption groove (18) is provided on the bottom surface of the base (1). The adsorption groove (18) has adsorption holes (19) arranged in a straight line array inside. The adsorption holes (19) are connected to the adsorption pump (12) provided in the base (1). The adsorption pump (12), the adsorption groove (18) and the adsorption holes (19) together form an adsorption limiting structure for the patient's skin.
Citation Information
Patent Citations
Temporary fixing device is sewed up to skin
CN204839612U
Postoperative wound suturing tension-reducing device
CN211834552U