Super-rib nose supporting system
By using the combined structure of expanded polytetrafluoroethylene nose bridge arm and high-density porous polyethylene nasal septum clip, the problems of unstable support and increased hardness of rib cartilage silicone rhinoplasty are solved, and the enhancement of the nose bridge and nose tip and aesthetic improvement are achieved, reducing the risk of surgery.
Patent Information
- Application Number
- CN202422034321.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing rib cartilage silicone rhinoplasty surgery has the risk of separation and disconnection between silicone and rib cartilage, spreading and dislocation of rib cartilage, increasing nasal hardness, decreased flexibility and secondary repair surgery, and cannot effectively increase the height of the nose bridge and nose head, resulting in poor aesthetics.
The nose bridge arm is made of expanded polytetrafluoroethylene material, and the nasal septum clip is made of high-density porous polyethylene material. It is formed by tightly connecting the nose wing dome combination molding body to increase the height of the nose bridge and nose head and solve the problem of nostril collapse.
Effective lifting of the bridge of the nose and head of the nose is achieved, nostril morphology is improved, trauma risk is reduced, support performance, flexibility and safety is improved, and secondary surgery is avoided.
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Figure CN223232854U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of super-rib nose medical implant equipment, in particular to a super-rib nose support system. Background Art
[0002] The nose is one of the five senses of the human body. Besides its physiological functions such as ventilation and smell, it is also the largest organ on the face, located in the center of the face, and dominates the five senses. It holds significant aesthetic value, citing the saying, "A beautiful face depends entirely on the nose." When the nose is underdeveloped, poor aesthetics can result, such as a low, sunken nasal bridge, an enlarged and blunt nose tip, wide and drooping nostrils, deformed and scattered nostrils, and a short, retracted columella, seriously affecting facial appearance. Plastic surgery commonly uses both non-surgical and surgical methods to correct nasal hypoplasia. Non-surgical methods primarily involve injections of materials such as hyaluronic acid, collagen, hydroxyapatite, and poly-L-lactic acid, while surgical methods primarily involve implants such as ear cartilage, rib cartilage, and prostheses. Among surgical methods, rib cartilage and silicone prosthesis implants are the most representative and currently the most widely used. The advantages of rib cartilage silicone rhinoplasty include: the rib cartilage support is firm and solid, the rib cartilage pieces can be cut and processed at will, the probability of late deformation and displacement of the rib cartilage is low, the height and appearance of the new nose are greatly changed compared to the original nose, the physical and chemical properties of silicone are stable, silicone is tough and not easy to deform, and silicone is easy to carve and process. Rib cartilage silicone rhinoplasty currently uses silicone material, which is prone to separation and dislocation of silicone and rib cartilage, as well as dispersion and displacement of rib cartilage, leading to crooked nose and decreased nose height, thus requiring secondary nose revision surgery; the rib cartilage silicone support is relatively hard, resulting in increased nose hardness and decreased flexibility, resulting in the so-called "stone nose" after surgery, that is, the nose feels hard to the touch, flexibility is greatly reduced, the normal left and right movement of the nose tip is greatly reduced, and the nose is stiff. Therefore, there is an urgent need for a new super-rib nose support structure to solve the above technical problems. Utility Model Content
[0003] The purpose of the present utility model is to solve the technical problems pointed out by the background technology, and to provide a rib nose support system, in which two nasal septum clips are tightly installed at the bottom of the nose bridge arm, and the two nasal septum clips are combined at the nose alar dome shaping section to form a nose alar dome combined molding, which effectively raises the height of the nose bridge and the nose tip and solves the problem of nostril collapse.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A super-rib nose support system includes a nose bridge arm and two nasal septum clips, the nose bridge arm is made of expanded polytetrafluoroethylene material, and the nasal septum clip is made of high-density porous polyethylene material. One end of the nose bridge arm is the alar dome supporting end, and two tight-fitting connecting grooves are opened at the bottom of the nose bridge arm, and the tight-fitting connecting grooves extend from the bottom to the alar dome supporting end. The nasal septum clip has an alar dome shaping section. The two nasal septum clips are tightly connected in the two tight-fitting connecting grooves of the nose bridge arm one by one, and the alar dome shaping section exposes a part of the top end of the alar dome supporting end.
[0006] In order to better implement the present invention, the end of the nose bridge arm away from the alar dome supporting end is the nasal bone matching end, and the tight-fitting connection groove is continuously opened on the bottom side of the nose bridge arm from the alar dome supporting end to the nasal bone matching end.
[0007] Preferably, the alar dome supporting end is inclined toward the bottom side of the nose bridge arm, and the top side of the alar dome supporting end is longer than the bottom side.
[0008] Preferably, the two tight-fitting connecting grooves of the nose bridge arm are respectively the first tight-fitting connecting groove and the second tight-fitting connecting groove, the first tight-fitting connecting groove is composed of two parts: the nose wing tight-fitting connecting groove A and the nasal septum tight-fitting connecting groove A, the nose wing tight-fitting connecting groove A is located correspondingly on the side of the nose wing dome supporting end, and the nasal septum tight-fitting connecting groove A is located correspondingly on the bottom side of the nose bridge arm; the second tight-fitting connecting groove is composed of two parts: the nose wing tight-fitting connecting groove B and the nasal septum tight-fitting connecting groove B, the nose wing tight-fitting connecting groove B is located correspondingly on the side of the nose wing dome supporting end, and the nasal septum tight-fitting connecting groove B is located correspondingly on the bottom side of the nose bridge arm.
[0009] Preferably, the nasal septum clip has a nasal septum fitting section, and the nasal septum fitting section and the alar dome shaping section are integrally formed.
[0010] Preferably, the nasal septum fitting section has a nasal septum plug-in edge that is tightly connected to the nasal septum tight-fitting connection groove A or the nasal septum tight-fitting connection groove B; the nasal alar dome shaping section has a nasal alar plug-in edge that is tightly connected to the nasal alar tight-fitting connection groove A or the nasal alar tight-fitting connection groove B.
[0011] Preferably, the nasal bone fitting end is inclined toward the bottom side of the nose bridge arm, and the top side of the nasal bone fitting end is longer than the bottom side.
[0012] Preferably, the alar dome shaping section is tightly inserted from the side of the alar tight-fitting connecting groove A or the alar tight-fitting connecting groove B, and the top of the alar dome shaping section is higher than the top of the alar tight-fitting connecting groove A or the top of the alar tight-fitting connecting groove B.
[0013] Preferably, the alar dome shaping sections of the two nasal septum clips are combined to form a alar dome combined molding.
[0014] Preferably, the cross-section of the nose bridge arm increases sequentially from the top side to the bottom side.
[0015] Compared with the prior art, the present invention has the following advantages and beneficial effects:
[0016] (1) The two nasal septum clips of the utility model are tightly mounted on the bottom of the nose bridge arm. The two nasal septum clips and the nose bridge arm are matched with the human nose structure. At the same time, the two nasal septum clips are combined at the nose wing dome shaping section to form a nose wing dome combined molding, which effectively raises the height of the nose bridge and the nose tip and solves the problem of nostril collapse.
[0017] (2) The present invention provides a super-rib nose medical implant with a new supporting structure. The nose bridge arm is made of expanded polytetrafluoroethylene material, and the nasal septum clip is made of high-density porous polyethylene material. It can guide the body's fibrous tissue to grow in and wrap and fix it into an integrated whole, and has advantages in comprehensive support performance, flexibility, reliability and safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the structure of the nose bridge arm of the utility model in cooperation with one of the nasal septum clips;
[0019] Figure 2 This is a schematic diagram of the nose bridge arm looking down;
[0020] Figure 3 This is a schematic diagram of the structure of the super-rib nose support system after plugging and assembly of the utility model;
[0021] Figure 4 for Figure 3 Middle AA section view.
[0022] The names corresponding to the reference numerals in the accompanying drawings are:
[0023] 1-nose bridge arm, 2-ala dome supporting end, 21-ala tight-fitting connecting groove A, 22-ala tight-fitting connecting groove B, 3-nasal bone fitting end, 31-nasal septum tight-fitting connecting groove A, 32-nasal septum tight-fitting connecting groove B, 4-nasal septum clip, 41-nasal septum fitting section, 411-nasal septum plug-in edge, 42-nasal ala dome shaping section, 421-nasal ala plug-in edge, 5-nasal ala dome combined molding body. DETAILED DESCRIPTION
[0024] The present invention is further described in detail below in conjunction with the embodiments:
[0025] Example
[0026] like Figures 1 to 4As shown, a super-rib nose support system includes a nose bridge arm 1 and two nasal septum clips 4. The nose bridge arm 1 is made of expanded polytetrafluoroethylene material, and the nasal septum clips 4 are made of high-density porous polyethylene material. One end of the nose bridge arm 1 is the nose alar dome support end 2 (the end of the nose bridge arm 1 away from the nose alar dome support end 2 is the nasal bone matching end 3). Two tight-fitting connection grooves are opened at the bottom of the nose bridge arm 1 and extend from the bottom to the nose alar dome support end 2. Figure 1 The two tight-fitting connecting grooves also extend to the side of the nose alar dome support end 2. The nasal septum clip 4 has a nose alar dome shaping section 42 (see Figure 1 As shown, the nasal septum clip 4 is in an "L" shape as a whole, that is, the nasal septum clip 4 is formed by the transverse section and the nose alar dome shaping section 42 in an "L" shape. The transverse section of the nasal septum clip 4 is tightly fitted in the transverse section of the tight-fitting connecting groove, and the nose alar dome shaping section 42 of the nasal septum clip 4 is tightly fitted in the oblique section of the tight-fitting connecting groove; preferably, the transverse section of the nasal septum clip 4 is the nasal septum fitting section 41, and the nasal septum clip 4 has the nasal septum fitting section 41, and the nasal septum fitting section 41 and the nose alar dome shaping section 42 are integrally formed. ), the two nasal septum clips 4 are tightly fitted and connected to the two tight-fitting connecting grooves of the nose bridge arm 1 in a one-to-one manner, and the nose alar dome shaping section 42 is exposed from a part of the top end of the nose alar dome supporting end 2 (see Figure 3 The majority of the nasal septum clip 4 is tightly fitted in the tight-fitting connection groove, wherein the alar dome shaping section 42 at the top of the nasal septum clip 4 is exposed from a portion of the top of the alar dome supporting end 2). Preferably, the alar dome shaping section 42 is tightly inserted from the side of the alar tight-fitting connection groove A21 or the alar tight-fitting connection groove B22, and the top of the alar dome shaping section 42 is higher than the top of the alar tight-fitting connection groove A21 or the top of the alar tight-fitting connection groove B22.
[0027] like Figure 1 、 Figure 2 As shown, the end of the nose bridge arm 1 away from the alar dome supporting end 2 is the nasal bone engaging end 3, and a tight-fitting connecting groove is continuously provided on the bottom side of the nose bridge arm 1 from the alar dome supporting end 2 to the nasal bone engaging end 3. Preferably, a nasal bone engaging groove can be provided at the bottom of the nasal bone engaging end 3 (the nasal bone engaging groove tightly fits the human nasal bone).
[0028] like Figure 1 As shown, the nose alar dome support end 2 is inclined toward the bottom side of the nose bridge arm 1, and the top side of the nose alar dome support end 2 is longer than the bottom side. In this way, the nose alar dome support end 2 is an inclined structure with a long top side and a short bottom side. The nose alar plug-in edge 421 of the nose alar dome shaping section 42 is also an inclined structure, and the two are tightly connected to each other, as shown in FIG. Figure 2As shown, the two tight-fitting connecting grooves (including the nose alar tight-fitting connecting groove A21 and the nose alar tight-fitting connecting groove B22) both extend to the top side of the nose alar dome support end 2 and have a connecting groove portion on the top side of the nose alar dome support end 2, so as to facilitate the nose alar plug-in edge 421 of the nose alar dome shaping section 42 to be tightly fitted and locked and expose a portion of the top side of the nose alar dome support end 2.
[0029] like Figures 1 to 3 As shown, the two tight-fitting connecting grooves of the nose bridge arm 1 are respectively the first tight-fitting connecting groove and the second tight-fitting connecting groove. The first tight-fitting connecting groove is composed of the nose wing tight-fitting connecting groove A21 and the nasal septum tight-fitting connecting groove A31. The nose wing tight-fitting connecting groove A21 is located on the side of the nose wing dome support end 2 (as shown in FIG. Figure 2 As shown, the nose wing tight fitting connection groove A21 extends to the top side of the nose wing dome support end 2 and has a notch), and the nasal septum tight fitting connection groove A31 is located at the bottom side of the nose bridge arm 1. The second tight fitting connection groove is composed of the nose wing tight fitting connection groove B22 and the nasal septum tight fitting connection groove B32. The nose wing tight fitting connection groove B22 is located at the side of the nose wing dome support end 2 (as shown in FIG. Figure 2 As shown, the nose wing tight-fitting connection groove B22 extends to the top side of the nose wing dome support end 2 and has a notch), and the nasal septum tight-fitting connection groove B22 is located on the bottom side of the nose bridge arm 1.
[0030] like Figure 1 As shown, for ease of insertion, the nasal septum fitting section 41 has a nasal septum plugging edge 411 that is tightly connected to the nasal septum tight-fitting connection groove A31 or the nasal septum tight-fitting connection groove B32 (i.e., the nasal septum plugging edge 411 of one nasal septum clip 4 is tightly connected to the nasal septum tight-fitting connection groove A31, and the nasal septum plugging edge 411 of the other nasal septum clip 4 is tightly connected to the nasal septum tight-fitting connection groove B32. The tight-fitting connection can be achieved by tight-fitting plugging, snap locking, or snap-fit locking). The alar dome shaping section 42 has a nasal ala plugging edge 421 that is tightly connected to the nasal ala tight-fitting connection groove A21 or the nasal ala tight-fitting connection groove B22 (i.e., the nasal ala plugging edge 421 of one nasal septum clip 4 is tightly connected to the nasal ala tight-fitting connection groove A21, and the nasal ala plugging edge 421 of the other nasal septum clip 4 is tightly connected to the nasal ala tight-fitting connection groove B22).
[0031] In some embodiments, the nasal bone engaging end 3 is inclined toward the bottom side of the nose bridge arm 1, and the top side of the nasal bone engaging end 3 is longer than the bottom side, so that the nasal bone engaging end 3 is inclined with the top side being longer and the bottom side being shorter; see Figure 1 The nose bridge arm 1 is in a boat shape or an inverted trapezoidal shape, with the top side of the nose bridge arm 1 being larger and the bottom side being smaller. Since the human nasal bone is larger than the nose bridge, in order to better fit, the nose bridge arm 1 is in a gradually decreasing shape from the nasal bone fitting end 3 to the nose alar dome supporting end 2. Figure 2 Preferably, the cross-section of the nose bridge arm 1 increases from the top side to the bottom side.
[0032] like Figure 3 As shown, the alar dome shaping sections 42 of the two nasal septum clips 4 are combined to form a nasal dome combination molding body 5. The nasal dome combination molding body 5 is located at the alar dome of the human body. The utility model raises the alar dome to make the nose straight, and makes the nostrils vertical to solve the problem of nose collapse. Through the comparison before and after the application of the utility model, the utility model can achieve good technical effects as a super-rib nose medical implant.
[0033] During use, the super-rib nose support system is manufactured based on the patient's nose. (The alar dome assembly formed by the two alar dome shaping segments 42 matches the anatomical shape of the bilateral lateral angles and bilateral domes of the alar cartilages, and the nose bridge arm 1 matches the anatomical curvature of the nasal bones and lateral nasal cartilage tops. The present super-rib nose support system can be well matched with the human nasal structure, improving operation efficiency.) First, the skin on the side of the human nose top is evenly separated surgically. Then, the super-rib nose support system is implanted on the nose to form a solid and non-detachable integrated support system. Fiber ingrowth connections are formed with surrounding anatomical structures, such as the nasal septum cartilage, lateral nasal cartilage, alar cartilage, and nasal bones, thereby generating mechanical transmission and producing aesthetic effects such as raising the height of the nose bridge and nose tip, extending the length of the columella, improving nostril ptosis, and narrowing the nose. The body and tail of the nose bridge arm 1 made of expanded polytetrafluoroethylene are fabricated into a ventral groove and dorsal willow leaf shape, matching the anatomical curvature of the nasal bones and lateral nasal cartilages and forming fiber connections. The alar dome support end 2 of the nose bridge arm 1 is tightly connected to the alar dome shaping section 42 of the nasal septum clip 4, matching the anatomical shape of the posterior triangular space at the lateral angle of the alar cartilage. A fibrous connection is later formed, thereby elevating the nose bridge and matching the height and curvature of the nose tip, while also providing additional support for the nose bridge arm 1. This utility model utilizes multiple components and cleverly leverages the biological properties and material characteristics of its own materials, with a rational layout and combination. This guides the body's fibrous tissue to grow in, wrap around, and secure it into an integrated whole, tightly connecting to surrounding related nasal anatomical units to produce a coordinated support effect. It also offsets the weaknesses of each component, thereby comprehensively overcoming support deficiencies and reducing physical trauma and medical risks. It offers advantages in comprehensive support performance, flexibility, reliability, and safety.
[0034] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An ultra-rib nose support system, characterized by: The invention comprises a nose bridge arm (1) and two nasal septum clips (4), wherein the nose bridge arm (1) is made of expanded polytetrafluoroethylene material, and the nasal septum clips (4) are made of high-density porous polyethylene material. One end of the nose bridge arm (1) is a nose alar dome supporting end (2), and two tight-fitting connecting grooves are opened at the bottom of the nose bridge arm (1), and the tight-fitting connecting grooves extend from the bottom to the nose alar dome supporting end (2). The nasal septum clips (4) have a nose alar dome shaping section (42), and the two nasal septum clips (4) are tightly connected to the two tight-fitting connecting grooves of the nose bridge arm (1) in a one-to-one manner, and the nose alar dome shaping section (42) is exposed from a part of the top of the nose alar dome supporting end (2).
2. The super-rib nose support system according to claim 1, characterized in that: The end of the nose bridge arm (1) away from the nose alar dome supporting end (2) is a nasal bone matching end (3), and the tight-fitting connection groove is continuously provided on the bottom side of the nose bridge arm (1) from the nose alar dome supporting end (2) to the nasal bone matching end (3).
3. The super-rib nose support system according to claim 1, characterized in that: The nose alar dome support end (2) is in an oblique structure toward the bottom side of the nose bridge arm (1), and the top side of the nose alar dome support end (2) is longer than the bottom side.
4. The super-rib nose support system according to claim 1, characterized in that: The two tight-fitting connection grooves of the nose bridge arm (1) are respectively a first tight-fitting connection groove and a second tight-fitting connection groove, wherein the first tight-fitting connection groove is composed of a nose wing tight-fitting connection groove A (21) and a nasal septum tight-fitting connection groove A (31), wherein the nose wing tight-fitting connection groove A (21) is located at the side of the nose wing dome support end (2), and the nasal septum tight-fitting connection groove A (31) is located at the bottom of the nose bridge arm (1); the second tight-fitting connection groove is composed of a nose wing tight-fitting connection groove B (22) and a nasal septum tight-fitting connection groove B (32), wherein the nose wing tight-fitting connection groove B (22) is located at the side of the nose wing dome support end (2), and the nasal septum tight-fitting connection groove B (32) is located at the bottom of the nose bridge arm (1).
5. The super rib nose support system according to claim 4, characterized in that: The nasal septum clip (4) comprises a nasal septum fitting section (41), and the nasal septum fitting section (41) and the nose alar dome shaping section (42) are integrally formed.
6. The super rib nose support system according to claim 5, characterized in that: The nasal septum fitting section (41) has a nasal septum plug-in edge (411) that is tightly connected to the nasal septum tight-fitting connection groove A (31) or the nasal septum tight-fitting connection groove B (32); the nasal alar dome shaping section (42) has a nasal alar plug-in edge (421) that is tightly connected to the nasal alar tight-fitting connection groove A (21) or the nasal alar tight-fitting connection groove B (22).
7. The super rib nose support system according to claim 2, characterized in that: The nasal bone fitting end (3) is in an oblique structure toward the bottom side of the nose bridge arm (1), and the top side of the nasal bone fitting end (3) is longer than the bottom side.
8. The super-rib nose support system according to claim 6, characterized in that: The nose alar dome shaping section (42) is tightly inserted from the side of the nose alar tight fitting connection groove A (21) or the nose alar tight fitting connection groove B (22), and the top of the nose alar dome shaping section (42) is higher than the top of the nose alar tight fitting connection groove A (21) or the top of the nose alar tight fitting connection groove B (22).
9. The super-rib nose support system according to claim 5, characterized in that: The nose alar dome shaping sections (42) of the two nasal septum clips (4) are combined to form a nose alar dome combined molding (5).
10. The super rib nose support system according to claim 1, characterized in that: The cross section of the nose bridge arm (1) increases sequentially from the top side to the bottom side.