Auxiliary device for breast enlargement surgery
By adopting damping articulated connection method in the auxiliary device for breast augmentation surgery, the problem of inconvenient operation during endoscopic adjustment in the prior art is solved, convenient adjustment and movement of the endoscopic body is achieved, and the efficiency of breast augmentation surgery is improved.
Patent Information
- Application Number
- CN202421714945.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-19
AI Technical Summary
The existing visual minimally invasive breast augmentation endoscope requires multiple loosening and tightening of bolts during the adjustment process, which has problems with inconvenience.
The damping hinged connection method is adopted, and the damping hinged connection between the fixed seat and the rotating disc, the rotating disc and the primary support plate, the primary support plate and the secondary support plate are achieved conveniently moving and adjusting the endoscope body.
The operator can easily move and adjust the height, angle and position of the endoscopic body, simplify operation, and improve the efficiency and convenience of breast augmentation surgery.
Smart Images

Figure CN222917623U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of breast augmentation auxiliary devices, and particularly relates to an auxiliary device for breast augmentation surgery. Background Technique
[0002] Silicone breast augmentation is a breast augmentation method with the longest development time. Currently, the axillary incision method is mainly used to implant high-quality silicone gel prostheses under the pectoralis major muscle and breast gland to achieve the purpose of breast augmentation. In this process, it is necessary to use a visible minimally invasive endoscope to perform surgical examinations on the human subcutaneous tissue. However, the operator is prone to numbness and soreness in the hand when holding the endoscope for a long time, which affects the progress of breast augmentation surgery.
[0003] The existing patent CN215017003U discloses a visible minimally invasive breast augmentation endoscope, including a main body, a clamping and fixing member, a multi-directional adjustment mechanism, and an auxiliary support connecting member. The top of the auxiliary support connecting member is fixed with a bottom bracket, the top of the bottom bracket is rotatably connected to a column, and the side wall of the bottom bracket is provided with a screw hole adapted to a connecting bolt. The end of the connecting bolt abuts against the column. A slider is provided on the column. The side wall of the slider is provided with a screw hole adapted to an adjustment bolt, and several adjustment holes adapted to the adjustment bolt are provided on the side wall of the column. The side wall of the slider is fixed with a multi-directional adjustment mechanism, and the multi-directional adjustment mechanism is connected to the clamping and fixing member. One end of the main body away from the flexible tube penetrates through the clamping and fixing member. The visible minimally invasive breast augmentation endoscope disclosed in this patent can realize the adjustment of the height, position, and angle of the main body by setting multiple components such as a clamping and fixing member and a multi-directional adjustment mechanism, which is beneficial to the use of the main body, saves manpower, and is convenient for adjustment and use.
[0004] It is undeniable that the visible minimally invasive breast augmentation endoscope disclosed in this patent can indeed achieve the above effects, but it still has certain deficiencies. Medical staff need to adjust the components in the multi-directional adjustment mechanism multiple times to make the endoscope main body reach the ideal position, and it is necessary to loosen and tighten the bolts multiple times during the adjustment process, which is somewhat inconvenient.
[0005] A damping rotating shaft is a device used to control rotational motion, which can damp the motion speed of a rotating object. In a damping rotating shaft, damping effects can be achieved by using methods such as friction or liquid viscosity. There are two common types of damping rotating shafts. One is a damping rotating shaft designed based on the friction damping principle. In this design, the surface of the rotating shaft has a friction material or coating. When the rotating object contacts the rotating shaft, friction force will generate a damping effect to control rotation. The other is a damping rotating shaft designed based on the liquid damping principle. In this design, the inside of the rotating shaft is usually filled with a liquid with a relatively high viscosity. The rotating object generates a damping effect through the friction between the liquid and the rotating shaft. It can provide a more uniform damping force and can maintain a stable damping effect for a long time.
[0006] The information disclosed in this background art section is only intended to enhance the overall understanding of the background of the present utility model and should not be regarded as an admission or any form of implication that this information constitutes prior art already known to those of ordinary skill in the art. Summary of the Utility Model
[0007] The purpose of the present utility model is to provide an auxiliary device for breast augmentation surgery to solve the problems existing in the visible minimally invasive breast augmentation endoscope in the background art.
[0008] To achieve the above object, the present utility model provides the following technical solutions:
[0009] An auxiliary device for breast augmentation surgery, comprising:
[0010] A fixed seat, at the central position of the top of which there is a rotating disk damped and hinged;
[0011] A primary support plate, the first end of which is damped and hinged to the side wall of the rotating disk;
[0012] A secondary support plate, the first end of which is damped and hinged to the side wall of the second end of the primary support plate;
[0013] A final support plate, the first end of which is damped and hinged to the side wall of the second end of the secondary support plate;
[0014] An auxiliary support plate, the first end of which is damped and hinged to the top of the second end of the final support plate;
[0015] A connecting seat, which is damped and hinged to the outer wall of the second end of the auxiliary support plate; the connecting seat includes a fixed cylinder, a fixing bolt with an inner end passing through the fixed cylinder and threadedly engaged with the fixed cylinder, an arc-shaped clamping plate located inside the fixed cylinder and rotatably connecting to the inner end of the fixing bolt, and an adjusting cap fixed to the outer end of the fixing bolt.
[0016] More specifically, the fixed seat includes a letter "C"-shaped fixing plate, an adjusting bolt with an inner end vertically passing through the bottom plate of the fixing plate and threadedly engaged therewith, a butting plate located inside the fixing plate and rotatably connecting to the inner end of the adjusting bolt, and an adjusting disk fixed to the outer end of the adjusting bolt.
[0017] More specifically, a vertically upward first damping rotating shaft is fixed at the central position of the top of the fixed seat; the rotating disk is connected to the first damping rotating shaft.
[0018] More specifically, two second damping rotating shafts extending radially along it are symmetrically fixed on the side wall of the rotating disk; the first end of the primary support plate is symmetrically fixed with primary support arms, and the primary support arms are connected to the second damping rotating shafts.
[0019] More specifically, two third damping rotating shafts extending along the width direction thereof are symmetrically fixed at the second end of the primary support plate; secondary support arms are symmetrically fixed at the first end of the secondary support plate, and the secondary support arms are connected to the third damping rotating shafts.
[0020] More specifically, the secondary support plate is composed of a plurality of support plate bodies that are sequentially damped and joined; two fourth damping rotating shafts extending along the width direction thereof are symmetrically fixed at the second end of the (N - 1)th support plate body; support connecting arms are symmetrically fixed at the first end of the Nth support plate body, and the support connecting arms of the Nth support plate body are connected to the fourth damping rotating shafts of the (N - 1)th support plate body.
[0021] More specifically, two fifth damping rotating shafts extending along the width direction thereof are symmetrically fixed at the second end of the secondary support plate; end - stage support arms are symmetrically fixed at the first end of the end - stage support plate, and the end - stage support arms are connected to the fifth damping rotating shafts.
[0022] More specifically, a vertically upward sixth damping rotating shaft is fixed at the top of the second end of the end - stage support plate; the first end of the auxiliary support plate is connected to the sixth damping rotating shaft.
[0023] More specifically, a seventh damping rotating shaft extending along the radial direction thereof is fixed on the outer wall of the fixed cylinder; the auxiliary support plate is connected to the seventh damping rotating shaft.
[0024] Compared with the prior art, the utility model has the following beneficial effects:
[0025] (1) In the utility model, damping hinges are used for connecting between the fixed seat and the rotating disk, between the rotating disk and the primary support plate, between the primary support plate and the secondary support plate, between two adjacent support plate bodies of the secondary support plate, between the secondary support plate and the end - stage support plate, and between the end - stage support plate and the connecting seat. The operator can move the endoscope body fixed on the connecting seat more conveniently according to actual needs, and can also adjust the height, angle and position of the endoscope body more conveniently. The operation is simple and easy to implement, which can assist the operator in performing breast augmentation surgery and facilitate the smooth progress of breast augmentation surgery work.
[0026] (2) The primary support plate, secondary support plate, end - stage support plate and auxiliary support plate of the utility model can be folded and stored, occupying a small space. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is a schematic diagram of the overall structure of the utility model;
[0028] Figure 2 is Figure 1 an exploded view of
[0029] Figure 3 Structural schematic diagram of the fixing seat of the present utility model;
[0030] Figure 4 Structural schematic diagram of the connecting seat of the present utility model.
[0031] Main reference numeral description:
[0032] 1. Fixing seat; 11. Fixing plate; 12. Adjusting bolt; 13. Abutting plate; 14. Adjusting disk; 15. First damping rotating shaft;
[0033] 2. Rotating disk; 21. Second damping rotating shaft;
[0034] 3. Primary support plate; 31. Primary support arm; 32. Third damping rotating shaft;
[0035] 4. Secondary support plate; 41. Secondary support arm; 42. Support plate body; 421. Fourth damping rotating shaft; 422. Support connecting arm; 43. Fifth damping rotating shaft;
[0036] 5. Final-stage support plate; 51. Final-stage support arm; 52. Sixth damping rotating shaft;
[0037] 6. Auxiliary support plate;
[0038] 7. Connecting seat; 71. Fixed cylinder; 72. Fixed bolt; 73. Clamping plate; 74. Adjusting cap; 75. Seventh damping rotating shaft. Specific implementation manner
[0039] The technical solutions of the patent of the present utility model will be clearly and completely described below. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0040] Embodiment
[0041] Refer to the attached Figures 1-4 , an auxiliary device for breast augmentation surgery, comprising:
[0042] Fixing base 1, at the center position of its top, there is a rotating disk 2 damping-hinged; in this embodiment, the fixing base 1 includes a letter "C"-shaped fixing plate 11, an adjusting bolt 12 with its inner end vertically penetrating the bottom plate of the fixing plate 11 and threadedly cooperating with it, a butting plate 13 located inside the fixing plate 11 and rotatably connected to the inner end of the adjusting bolt 12, and an adjusting disk 14 fixed to the outer end of the adjusting bolt 12; the specific way to achieve damping hinge is: at the center position of the top of the fixing base 1, there is a vertically upward first damping rotating shaft 15 fixed; the rotating disk 2 is connected to the first damping rotating shaft 15 and thus damping-hinged to the top of the fixing base 1;
[0043] Primary support plate 3, the first end of the primary support plate 3 is damping-hinged to the side wall of the rotating disk 2; specifically: on the side wall of the rotating disk 2, there are symmetrically fixed 2 second damping rotating shafts 21 extending along its radial direction; at the first end of the primary support plate 3, there are symmetrically fixed primary support arms 31, and the primary support arms 31 are connected to the second damping rotating shafts 21 and thus damping-hinged to the side wall of the rotating disk 2;
[0044] Secondary support plate 4, the first end of the secondary support plate 4 is damping-hinged to the side wall of the second end of the primary support plate 3; specifically: at the second end of the primary support plate 3, there are symmetrically fixed 2 third damping rotating shafts 32 extending along its width direction; at the first end of the secondary support plate 4, there are symmetrically fixed secondary support arms 41, and the secondary support arms 41 are connected to the third damping rotating shafts 32 and thus damping-hinged to the side wall of the second end of the primary support plate 3; in addition, in this embodiment, the secondary support plate 4 is composed of a plurality of support plate bodies 42 that are successively damping-connected; at the second end of the (N - 1)th support plate body 42, there are symmetrically fixed 2 fourth damping rotating shafts 421 extending along its width direction; at the first end of the Nth support plate body 42, there are symmetrically fixed support connection arms 422, and the support connection arms 422 of the Nth support plate body 42 are connected to the fourth damping rotating shafts 421 of the (N - 1)th support plate body 42 to achieve its damping hinge with the (N - 1)th support plate body 42; it should be supplemented and explained here that between two adjacent support plate bodies 42, the (N - 1)th support plate body 42 is the previous support plate body 42, and the Nth support plate body 42 is the next support plate body 42;
[0045] Final support plate 5, the first end of the final support plate 5 is damping-hinged to the side wall of the second end of the secondary support plate 4; specifically: at the second end of the secondary support plate 4, there are symmetrically fixed 2 fifth damping rotating shafts 43 extending along its width direction; at the first end of the final support plate 5, there are symmetrically fixed final support arms 51, and the final support arms 51 are connected to the fifth damping rotating shafts 43 and thus damping-hinged to the side wall of the second end of the secondary support plate 4;
[0046] Auxiliary support plate 6, the first end of the auxiliary support plate 6 is damping-hinged to the top of the second end of the final support plate 5; specifically: a vertically upward sixth damping rotating shaft 52 is fixed to the top of the second end of the final support plate 5; the first end of the auxiliary support plate 6 is connected to the sixth damping rotating shaft 52 and thus damping-hinged to the top of the final support plate 5.
[0047] Connecting seat 7, the connecting seat 7 is damping-hinged to the outer wall of the second end of the auxiliary support plate 6; the connecting seat 7 includes a fixed cylinder 71, a fixing bolt 72 with an inner end passing through the fixed cylinder 71 and threadedly mating with the fixed cylinder 71, an arc-shaped clamping plate 73 located inside the fixed cylinder 71 and rotatably connecting to the inner end of the fixing bolt 72, and an adjusting cap 74 fixed to the outer end of the fixing bolt 72; specifically, a seventh damping rotating shaft 75 extending radially along the outer wall of the fixed cylinder 71 is fixed to the outer wall of the fixed cylinder 71; the second end of the auxiliary support plate 6 is connected to the seventh damping rotating shaft 75 and thus damping-hinged to the outer wall of the second end of the auxiliary support plate 6.
[0048] During use, place the fixing plate 11 on the operating table or medical device, tighten the adjusting bolt 12 by means of the adjusting disc 14, the adjusting bolt 12 moves upward and drives the abutting plate 13 to move upward, so that the abutting plate 13 tightly abuts against the operating table or medical device, and then the fixing seat 1 is fixed on the operating table or medical device. Then insert the main body of the endoscope into the fixed cylinder 71, and then tighten the fixing bolt 72. The inner end of the fixing bolt 72 pushes the clamping plate 73 to move towards the side wall of the endoscope main body and tightly abuts against the side wall of the endoscope main body, and then the endoscope main body is fixed on the connecting seat 7.
[0049] Since the fixing seat 1 and the rotating disc 2, the rotating disc 2 and the primary support plate 3, the primary support plate 3 and the secondary support plate 4, between the respective support plate bodies 42 of the secondary support plate 4, between the secondary support plate 4 and the final support plate 5, and between the final support plate 5 and the connecting seat 7 are all connected in a damping-hinged manner, the operator can move the endoscope main body fixed on the connecting seat 7 more conveniently according to actual needs, and can also more conveniently adjust the height, angle and position of the endoscope main body. The operation is simple and easy to implement, which can assist the operator in performing breast augmentation surgery and facilitate the smooth progress of breast augmentation surgery work.
[0050] The foregoing description of the specific exemplary embodiments of the present invention is for the purposes of illustration and exemplification. These descriptions are not intended to limit the present invention to the precise forms disclosed, and it is obvious that many changes and variations are possible in light of the above teachings. The purpose of selecting and describing the exemplary embodiments is to explain the specific principles of the present invention and its practical applications, so that those skilled in the art can implement and utilize various different exemplary embodiments of the present invention as well as various different selections and changes. The scope of the present invention is intended to be defined by the claims and their equivalents.
Claims
1. An auxiliary device for breast augmentation surgery, characterized in that: include: A fixed seat, a rotating disk is hingedly connected to the top center of the fixed seat; A primary support plate, a first end of which is damping-hingedly connected to a side wall of the rotating disk; A secondary support plate, wherein a first end of the secondary support plate is damping-hingedly connected to a side wall of a second end of the primary support plate; A final support plate, wherein a first end of the final support plate is damping-hingedly connected to a side wall of a second end of the secondary support plate; An auxiliary support plate, wherein the first end of the auxiliary support plate is damping-hingedly connected to the top of the second end of the final support plate; A connecting seat, the connecting seat is damped and hinged to the outer wall of the second end of the auxiliary support plate; the connecting seat includes a fixing tube, a fixing bolt whose inner end passes through the fixing tube and is threadedly matched with the fixing tube, an arc-shaped clamping plate located in the fixing tube and rotatably connected to the inner end of the fixing bolt, and an adjusting cap fixed on the outer end of the fixing bolt.
2. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: The fixing seat includes a letter "C"-shaped fixing plate, an adjusting bolt whose inner end vertically penetrates the bottom plate of the fixing plate and is threadedly engaged with the bottom plate, an abutment plate located inside the fixing plate and rotatably connected to the inner end of the adjusting bolt, and an adjusting disk fixed on the outer end of the adjusting bolt.
3. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: A first damping shaft pointing vertically upward is fixed at the center of the top of the fixing seat; and the rotating disk is connected to the first damping shaft.
4. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: Two second damping shafts extending in the radial direction are symmetrically fixed on the side wall of the rotating disk; a primary support arm is symmetrically fixed on the first end of the primary support plate, and the primary support arm is connected to the second damping shaft.
5. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: Two third damping shafts extending along the width direction are symmetrically fixed to the second end of the primary support plate; secondary support arms are symmetrically fixed to the first end of the secondary support plate, and the secondary support arms are connected to the third damping shafts.
6. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: The secondary support plate is composed of a plurality of support plate bodies which are connected in sequence with damping; two fourth damping rotation axes extending along the width direction are symmetrically fixed to the second end of the N-1 support plate body; a support connecting arm is symmetrically fixed to the first end of the N support plate body, and the support connecting arm of the N support plate body is connected to the fourth damping rotation axis of the N-1 support plate body.
7. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: Two fifth damping shafts extending along the width direction are symmetrically fixed to the second end of the secondary support plate; a final support arm is symmetrically fixed to the first end of the final support plate, and the final support arm is connected to the fifth damping shaft.
8. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: A sixth damping shaft is fixed vertically upward on the top of the second end of the final support plate; and the first end of the auxiliary support plate is connected to the sixth damping shaft.
9. The auxiliary device for breast augmentation surgery according to claim 1, characterized in that: A seventh damping shaft extending radially thereof is fixed on the outer wall of the fixing cylinder; and the auxiliary supporting plate is connected to the seventh damping shaft.