Storage container and tooth extraction assembly special for minimally invasive complex teeth

By designing a storage container with adjustable compartment spacing, the problem of tools being not securely fixed or deformed during transportation was solved, enabling safe transportation and efficient surgical use of the tools.

CN223746491UActive Publication Date: 2026-01-02FIRST HOSPITAL AFFILIATED TO GENERAL HOSPITAL OF PLA
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Patent Information

Application Number
CN202423314689.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-02
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing storage containers have shortcomings in adjusting the spacing between compartments, which may cause tools to be unable to be securely fixed or to be squeezed and deformed during transportation, affecting surgical efficiency and tool integrity.

Method used

A storage container has been designed, comprising a divider component, a limiting component, and a locking component, which allows for flexible adjustment of the spacing between the compartments to ensure that tools are not damaged during transportation and are easily accessible during surgery.

Benefits of technology

By flexibly adjusting the spacing between compartments, tools are prevented from colliding and being damaged during transportation, improving the ease of tool handling and surgical efficiency, and reducing the risk of fractures or injuries.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a storage device and a special tooth extraction assembly for minimally invasive complex teeth, which belong to the technical field of oral surgery and comprise a storage box, a top cover hinged to the outer surface of the storage box, a knob in rotary contact with the inner surface of the storage box, a roller fixedly sleeved on the outer surface of the knob and a plurality of arc-shaped grooves formed on the outer surface of the roller. According to the utility model, all tools in the tooth extraction assembly are matched with one another, so that the most suitable tool can be used by medical personnel in each operation stage, the sleeving for greatly reducing the risk of fracture or injury is realized, and the effect of further reducing the occurrence rate of complications is achieved; through cooperation of all parts in the storage device, medical staff can flexibly adjust the spacing of the interlayers in the storage box according to the actual situation, so that the storage box can accurately adapt to tools of different sizes, and the effect of further improving the taking and placing convenience of the tools is achieved while the tools are prevented from being collided and damaged in the transportation process.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of oral surgery, and particularly relates to a storage container and tooth extraction assembly special for minimally invasive complex teeth. BACKGROUND

[0002] The storage container and tooth extraction assembly special for minimally invasive complex teeth play a vital role in oral surgery, and doctors can complete surgery while minimizing damage to surrounding soft tissue and bone tissue by using minimally invasive tools, thereby reducing the possibility of postoperative pain, swelling and bleeding and improving the postoperative experience of patients. The storage container provides physical protection for surgical instruments to prevent the tools from being damaged by collision, scratching or other forms of damage during transportation or storage. Each tool usually has a dedicated partition to ensure that they do not come into contact with each other and avoid damage to the blade or delicate parts.

[0003] Although some storage containers in the prior art have the ability to adjust the partition spacing, they still have the defect that the partition spacing adjustment range is not good. If the partition spacing is too large, the tools may not be firmly fixed during transportation, which may cause damage to the tool blade or other delicate parts. On the contrary, if the partition spacing is too small, the tools may be squeezed, causing deformation or damage, and it may also be difficult for doctors to quickly remove the required tools during surgery, thereby affecting the efficiency of the surgery. SUMMARY

[0004] The utility model aims at providing a storage container and tooth extraction assembly special for minimally invasive complex teeth to solve the problems raised in the background.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a storage container, comprising a storage box, a top cover hingedly connected to the outer surface of the storage box, a knob in rotational contact with the inner surface of the storage box, a roller fixedly sleeved on the outer surface of the knob, a plurality of arc-shaped grooves opened on the outer surface of the roller, a partition assembly capable of flexibly adjusting the internal spacing of the storage box, a limiting assembly for positioning the partition assembly, and a locking assembly capable of locking the storage box and the top cover.

[0006] As a preferred scheme of the utility model, the partition assembly comprises an extrusion block in sliding contact with the inner wall of the arc-shaped groove, and a sliding block fixedly connected to the outer end surface of the extrusion block.

[0007] As a preferred scheme of the utility model, the partition assembly further comprises a partition plate fixedly installed on the inner surface of the sliding block, and a positioning rod fixedly connected to the inner wall of the storage box and cooperating with the sliding block.

[0008] As a preferred scheme of the utility model, the inner surface of the sliding block is in sliding contact with the outer surface of the positioning rod, and the outer surface of the positioning rod is in sliding contact with the inner wall of the storage box.

[0009] As a preferred scheme of the utility model, the limiting assembly comprises a support block fixedly connected to the surface of the storage box near the knob, a pull rod in sliding contact with the inner surface of the support block, a spring sleeved on the outer surface of the pull rod, and a fixing disc fixedly sleeved on the outer surface of the pull rod and matched with the spring.

[0010] As a preferred scheme of the utility model, the limiting assembly further comprises a first friction plate fixedly installed on the outer end surface of the pull rod, and a second friction plate fixedly sleeved on the outer surface of the knob and matched with the first friction plate.

[0011] As a preferred scheme of the utility model, the outer end surface of the spring is fixedly connected with the outer surface of the support block, and the other end of the spring is fixedly connected with the outer surface of the fixing disc.

[0012] As a preferred scheme of the utility model, the locking assembly comprises a hinged block hinged to the outer surface of the top cover, a clamping strip in rotary contact with the inner surface of the hinged block, and a clamping block fixedly connected to the outer surface of the storage box and matched with the clamping strip.

[0013] The utility model also provides a special tooth extraction assembly for minimally invasive complex teeth.

[0014] The utility model provides the following technical scheme: a special tooth extraction assembly for minimally invasive complex teeth,

[0015] The tooth extraction assembly comprises a universal tooth forceps, a minimally invasive tooth forceps, a tooth scaler, a minimally invasive tooth hook and a rotating tooth elevator.

[0016] As a preferred scheme of the utility model, the universal tooth forceps, the minimally invasive tooth forceps, the tooth scaler, the minimally invasive tooth hook and the rotating tooth elevator are located in the inner cavity of the storage box, the outer end surface of the knob is fixedly installed on the inner wall of the storage box through a bearing, and a plurality of the arc-shaped grooves are linearly arranged on the outer surface of the roller.

[0017] Compared with the prior art, the beneficial effects of the utility model are that: through the cooperation of each tool in the tooth extraction assembly, the most suitable tool can be used by medical staff in each operation stage, so that the setting is greatly reduced to reduce the risk of fracture or injury, and the effect of further reducing the incidence of complications is achieved; through the cooperation between the components in the storage container, medical staff can flexibly adjust the spacing between the partitions in the storage box according to the actual situation, so that different sizes of tools can be accurately adapted, and the effect of preventing the tools from colliding and being damaged during transportation and further improving the convenience of taking and placing the tools is achieved. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the drawings needed to be used in the embodiment description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor. Among them:

[0019] Figure 1 It is the overall structure schematic diagram of the utility model;

[0020] Figure 2 It is the internal structure schematic diagram of the storage box in the utility model;

[0021] Figure 3 It is the overall structure schematic diagram of the utility model in the segmentation assembly;

[0022] Figure 4 It is the overall structure schematic diagram of the utility model in the limiting assembly;

[0023] Figure 5 It is the overall structure schematic diagram of the utility model in the locking assembly.

[0024] In the drawing: 100, tooth extraction assembly; 101, universal tooth forceps; 102, minimally invasive tooth forceps; 103, tooth scaler; 104, minimally invasive tooth hook; 105, rotary tooth elevator; 200, storage container; 201, storage box; 202, top cover; 203, knob; 204, roller; 205, arc-shaped groove; 206, partition assembly; 206a, extrusion block; 206b, sliding block; 206c, partition plate; 206d, positioning rod; 207, limiting assembly; 207a, support block; 207b, pull rod; 207c, spring; 207d, fixed disc; 207e, first friction plate; 207f, second friction plate; 208, locking assembly; 208a, hinged block; 208b, clamping sleeve; 208c, U-shaped clamping block. DETAILED DESCRIPTION

[0025] In order to make the above objectives, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.

[0026] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the connotation of the present application, therefore the present application is not limited by the specific embodiments disclosed below.

[0027] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an embodiment that is independent of or mutually exclusive of other embodiments.

[0028] Embodiment 1

[0029] Reference Figure 2 For the first embodiment of the present application, the embodiment provides a storage container and a special tooth extraction assembly for minimally invasive complex teeth, comprising,

[0030] The tooth extraction assembly 100 comprises a universal tooth forceps 101, a minimally invasive tooth forceps 102, a tooth scaler 103, a minimally invasive tooth hook 104, and a rotating tooth elevator 105.

[0031] It should be noted that the universal tooth forceps 101 is suitable for the extraction of various teeth, especially when the specific form of the tooth is not determined, the minimally invasive tooth forceps 102 is suitable for complex minimally invasive tooth extraction surgery, the tooth scaler 103 is used to remove bone or soft tissue, help to expose the tooth or broken root, and clean the alveolar fossa, the minimally invasive tooth hook is used to pull the soft tissue or fix the tooth, help the medical staff to keep a clear surgical field, and the rotating tooth elevator 105 is used to loosen the tooth or broken root by rotating movement, which can reduce the resistance when directly extracting the tooth and reduce the risk of injury.

[0032] In use, the patient is subjected to detailed oral examination and imaging evaluation, such as X-ray or CBCT, to determine the specific position, form and surrounding structure of the tooth, and the appropriate surgical tool is selected according to the evaluation results, and the sterile instruments are prepared, the local anesthesia is performed in the surgical area, to ensure that the patient will not feel pain during the whole process, the minimally invasive tooth hook 104 is used to gently pull and fix the surrounding soft tissue, such as the cheek and the gum, to provide a clear surgical field for the medical staff. This step helps to protect the soft tissue and reduce postoperative swelling and bleeding;

[0033] If the tooth is partially impacted or covered by bone: use the scaler 103 to carefully remove the bone and soft tissue around the tooth, gradually exposing the tooth or root, helping the medical staff to accurately control the cutting depth and avoid damaging the adjacent structures;

[0034] Once the tooth or root is fully exposed: use the rotary elevator 105 to insert into the space between the tooth and the bone, apply a rotating force to loosen the tooth, through the principle of leverage and rotational motion, the rotary elevator 105 can effectively reduce the resistance when directly extracted, reduce the risk of fracture or damage;

[0035] When the tooth or root has been loosened: use the minimally invasive dental forceps 102 for initial grasping, the minimally invasive dental forceps 102 can better fit the tooth surface, provide accurate grasping force, while reducing damage to the surrounding tissue, for more complex teeth, such as impacted teeth or embedded teeth, the minimally invasive dental forceps 102 is particularly suitable;

[0036] If the minimally invasive dental forceps 102 cannot effectively grasp or the tooth position is special: switch to the universal dental forceps 101, the universal dental forceps 101 has an adjustable beak that can adjust the angle according to the specific shape of the tooth, providing better grasping force, using the universal dental forceps 101 for the final extraction action, ensuring that the tooth or root is successfully removed from the alveolar socket;

[0037] After the extraction is completed: use the scaler 103 again to clean the residual tissue in the alveolar socket, ensuring the cleanliness after extraction, if necessary, the medical staff needs to suture to promote healing, and take measures to stop bleeding.

[0038] Postoperative treatment: postoperative guidance is given to the patient, including diet, oral hygiene and possible medication, such as antibiotics or painkillers.

[0039] In summary, through the cooperation of each tool in the dental extraction assembly 100, the medical staff can use the most suitable tool at each stage of the operation to achieve a set of greatly reduced fracture or damage risk, further reducing the incidence of complications.

[0040] Embodiment 2

[0041] Reference Figures 1-5 , the second embodiment of the utility model, different from the last embodiment, this embodiment provides a storage container 200 that can flexibly adjust the distance between the layers according to the actual use, ensuring that the dental extraction assembly 100 can be used normally, this storage container 200 includes,

[0042] The storage container 200 comprises a storage box 201, a top cover 202 hinged to the outer surface of the storage box 201, a knob 203 in rotational contact with the inner surface of the storage box 201, a roller 204 fixedly sleeved on the outer surface of the knob 203, a plurality of arc-shaped grooves 205 opened on the outer surface of the roller 204, a partition assembly 206 capable of flexibly adjusting the internal spacing of the storage box 201, a limiting assembly 207 for positioning the partition assembly 206, and a locking assembly 208 capable of locking the storage box 201 and the top cover 202.

[0043] It should be noted that the storage box 201 is used for storing various tools in the tooth extraction assembly 100, the top cover 202 is used for protecting the inside of the storage box 201, the top of the top cover 202 is fixedly installed with a handle, which can facilitate medical staff to carry the storage box 201 to a suitable position, and rotating the knob 203 can drive the roller 204 and the plurality of arc-shaped grooves 205 to rotate synchronously.

[0044] Specifically, the universal tooth forceps 101, the minimally invasive tooth forceps 102, the tooth scaler 103, the minimally invasive tooth hook 104 and the rotary tooth elevator 105 are all located in the inner cavity of the storage box 201, the outer end surface of the knob 203 is fixedly installed on the inner wall of the storage box 201 through a bearing, and the plurality of arc-shaped grooves 205 are linearly arrayed on the outer surface of the roller 204.

[0045] Further, the partition assembly 206 comprises an extrusion block 206a in sliding contact with the inner wall of the arc-shaped groove 205, and a sliding block 206b fixedly connected to the outer end surface of the extrusion block 206a.

[0046] It should be further noted that the arc-shaped groove 205 can extrude the extrusion block 206a when rotating, and the limiting of the sliding block 206b and the extrusion block 206a by the positioning rod 206d enables the extrusion block 206a to drive the sliding block 206b and the partition plate 206c to move linearly.

[0047] Preferably, the partition assembly 206 further comprises a partition plate 206c fixedly installed on the inner surface of the sliding block 206b, and a positioning rod 206d fixedly connected to the inner wall of the storage box 201 and cooperating with the sliding block 206b.

[0048] It should be noted that the inner surface of the sliding block 206b is in sliding contact with the outer surface of the positioning rod 206d, and the outer surface of the positioning rod 206d is in sliding contact with the inner wall of the storage box 201.

[0049] Further, the limiting assembly 207 comprises a supporting block 207a fixedly connected to the surface of the storage box 201 near the knob 203, a pull rod 207b in sliding contact with the inner surface of the supporting block 207a, a spring 207c sleeved on the outer surface of the pull rod 207b, and a fixing disc 207d fixedly sleeved on the outer surface of the pull rod 207b and matched with the spring 207c.

[0050] Specifically, the limiting assembly 207 further comprises a first friction plate 207e fixedly installed on the outer end surface of the pull rod 207b, and a second friction plate 207f fixedly sleeved on the outer surface of the knob 203 and matched with the first friction plate 207e.

[0051] It should be explained that the supporting block 207a is used to support the pull rod 207b, when the first friction plate 207e is in contact with the second friction plate 207f, a strong friction force can be generated, and pulling the pull rod 207b can drive the first friction plate 207e to move to a position away from the second friction plate 207f, and at the same time, drive the fixing disc 207d to press the spring 207c.

[0052] Preferably, the outer end surface of the spring 207c is fixedly connected with the outer surface of the supporting block 207a, and the other end of the spring 207c is fixedly connected with the outer surface of the fixing disc 207d.

[0053] Further, the locking assembly 208 comprises a hinged block 208a hinged to the outer surface of the top cover 202, a clamping strip 208b in rotating contact with the inner surface of the hinged block 208a, and a U-shaped clamping block 208c fixedly connected to the outer surface of the storage box 201 and matched with the clamping strip 208b.

[0054] It should be noted that rotating the hinged block 208a can drive the clamping strip 208b to move, so that the clamping strip 208b moves to a position away from the inner wall of the U-shaped clamping block 208c, so as to release the limiting of the storage box 201 and the top cover 202.

[0055] In use, pulling the pull rod 207b drives the first friction plate 207e to move to a position away from the second friction plate 207f, and at the same time, drives the fixing disc 207d to press the spring 207c, so as to release the limiting of the knob 203, rotating the knob 203 drives the roller 204 and the plurality of arc-shaped grooves 205 to rotate synchronously, the arc-shaped grooves 205 press the pressing block 206a, and the positioning rod 206d limits the sliding block 206b and the pressing block 206a, so that the pressing block 206a drives the sliding block 206b and the partition plate 206c to move linearly, so that the plurality of partition plates 206c respectively clamp and fix the components in the tooth extraction assembly 100, so as to achieve the effect of flexibly adjusting the spacing between the partitions according to the actual use condition.

[0056] Loosen the pull rod 207b to release the compression of the spring 207c, so that the spring 207c drives the fixed disc 207d, the pull rod 207b and the first friction plate 207e to reset, so that the first friction plate 207e moves to the position in contact with the second friction plate 207f, and the knob 203 is limited to ensure that the spacing between the layers in the storage box 201 remains stable and fixed;

[0057] When it is necessary to lock the storage box 201 and the top cover 202: close the top cover 202, rotate the hinge block 208a to drive the clamping strip 208b to move, so that the clamping strip 208b moves to the position in contact with the inner wall of the U-shaped clamping block 208c, and then reversely rotate the hinge block 208a to drive the clamping strip 208b to reversely move, so that the clamping strip 208b is tightly attached to the inner wall of the U-shaped clamping block 208c, to achieve the effect of firmly locking the storage box 201 and the top cover 202.

[0058] In summary, through the cooperation between the various components in the storage container 200, medical personnel can flexibly adjust the spacing between the layers in the storage box 201 according to the actual situation, so as to accurately adapt to tools of different sizes, thereby preventing the tools from colliding and being damaged during transportation, and further improving the convenience of taking and placing the tools.

[0059] Importantly, it should be noted that the configurations and arrangements of the present application shown in the various exemplary embodiments are merely illustrative. Although only a few embodiments have been described in detail herein, persons of ordinary skill in the art, having the benefit of the present disclosure, will readily appreciate that many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters (e.g., temperatures, pressures, etc.), mounting arrangements, use of materials, colors, orientations, etc.) without materially departing from the novel teachings and advantages described herein. For example, elements shown as integrally formed can be constructed of multiple parts or elements, the position of elements can be reversed or otherwise varied, and the nature or number of elements or positions can be altered or varied. Accordingly, all such modifications are intended to be included within the scope of the present application. The order or sequence of any process or method steps can be changed or re-sequenced without departing from the generality of the application. In the claims, any means-plus-function clause is intended to cover the structures described herein as performing the recited function and not only structural equivalents but also equivalent structures. Other substitutions, modifications, changes, and omissions can be made in the design, operating conditions, and arrangement of the exemplary embodiments without departing from the scope of the present application. Accordingly, the present application is not limited to particular embodiments, but extends to various modifications that nevertheless fall within the scope of the appended claims.

[0060] Furthermore, in the interest of providing a concise description of illustrative embodiments, not all features of an actual implementation can be described (i.e., those pertaining to the

[0061] It will be appreciated that in the development of any actual embodiment, as in any engineering or design project, numerous implementation-specific decisions can be made. Such development efforts might be complex and time-consuming, but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure.

[0062] It should be noted that the above-mentioned embodiments are only used to illustrate the technical solutions of the present application, not limit the present application. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or equivalently replaced without departing from the spirit and scope of the present application, and they should be covered in the scope of the claims of the present application.

Claims

1. A storage container characterized in that: The storage container (200) comprises a storage box (201), a top cover (202) hinged to the outer surface of the storage box (201), a knob (203) in rotational contact with the inner surface of the storage box (201), a roller (204) fixedly sleeved on the outer surface of the knob (203), a plurality of arc-shaped grooves (205) opened on the outer surface of the roller (204), a partition assembly (206) capable of flexibly adjusting the internal spacing of the storage box (201), a limiting assembly (207) for positioning the partition assembly (206), and a locking assembly (208) capable of locking the storage box (201) and the top cover (202).

2. The storage container of claim 1, wherein: The partition assembly (206) comprises an extrusion block (206a) in sliding contact with the inner wall of the arc-shaped groove (205), and a sliding block (206b) fixedly connected to the outer end surface of the extrusion block (206a).

3. The storage container of claim 2, wherein: The partition assembly (206) further comprises a partition plate (206c) fixedly installed on the inner surface of the sliding block (206b), and a positioning rod (206d) fixedly connected to the inner wall of the storage box (201) and cooperating with the sliding block (206b).

4. The storage container of claim 3, wherein: The inner surface of the sliding block (206b) is in sliding contact with the outer surface of the positioning rod (206d), and the outer surface of the positioning rod (206d) is in sliding contact with the inner wall of the storage box (201).

5. The storage container of claim 4, wherein: The limiting assembly (207) comprises a support block (207a) fixedly connected to the side surface of the storage box (201) near the knob (203), a pull rod (207b) in sliding contact with the inner surface of the support block (207a), a spring (207c) sleeved on the outer surface of the pull rod (207b), and a fixed disc (207d) fixedly sleeved on the outer surface of the pull rod (207b) and cooperating with the spring (207c).

6. The storage container of claim 5, wherein: The limiting assembly (207) further comprises a first friction plate (207e) fixedly installed on the outer end surface of the pull rod (207b), and a second friction plate (207f) fixedly sleeved on the outer surface of the knob (203) and cooperating with the first friction plate (207e).

7. The storage container of claim 6, wherein: The outer end surface of the spring (207c) is fixedly connected to the outer surface of the support block (207a), and the other end of the spring (207c) is fixedly connected to the outer surface of the fixed disc (207d).

8. The storage container of claim 7, wherein: The locking assembly (208) comprises a hinge block (208a) hinged to the outer surface of the top cover (202), a clamping strip (208b) in rotational contact with the inner surface of the hinge block (208a), and a U-shaped clamping block (208c) fixedly connected to the outer surface of the storage box (201) and cooperating with the clamping strip (208b).

9. A minimally invasive complex tooth specific tooth extraction assembly comprising: The storage container of claim 8, and The tooth extraction assembly (100) comprises a universal tooth forceps (101), a minimally invasive tooth forceps (102), a tooth scaler (103), a minimally invasive tooth hook (104), and a rotating tooth elevator (105).

10. The minimally invasive complex tooth specific extraction assembly of claim 9, wherein: The universal tooth forceps (101), the minimally invasive tooth forceps (102), the tooth scaler (103), the minimally invasive tooth hook (104) and the rotary tooth elevator (105) are located in the inner cavity of the storage box (201), the outer end surface of the knob (203) is fixedly installed on the inner wall of the storage box (201) through a bearing, and a plurality of arc-shaped grooves (205) are arranged in a linear array on the outer surface of the roller (204).