CN215192448U - Minimally invasive tooth bone powder filling device - Google Patents

Minimally invasive tooth bone powder filling device Download PDF

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Publication number
CN215192448U
CN215192448U CN202120940675.XU CN202120940675U CN215192448U CN 215192448 U CN215192448 U CN 215192448U CN 202120940675 U CN202120940675 U CN 202120940675U CN 215192448 U CN215192448 U CN 215192448U
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China
Prior art keywords
bone powder
dental
powder filling
filling head
tooth
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CN202120940675.XU
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Chinese (zh)
Inventor
刘勇
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Suzhou Bioreme Biology Technology Co ltd
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Suzhou Bioreme Biology Technology Co ltd
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Abstract

The minimally invasive dental bone powder filling device comprises a dental bone powder filling head, wherein the dental bone powder filling head is in a conical shape, a dental bone powder implanting hole is formed in the end part of the dental bone powder filling head, the bone powder filling head is connected to a dental bone powder buffering part, a limiting table is arranged on the dental bone powder buffering part corresponding to the dental bone powder filling head, and the limiting table and the dental bone powder filling head are matched to form an insertion limiting structure for avoiding the damage to a dental bed caused by overlarge insertion depth; spacing platform tip is provided with the spacing collar that comprises soft material, is provided with the pressure sensing piece that is used for responding to the tooth powder and spills over in the recess between spacing collar and bone meal filling head, and pressure sensing piece and bone meal filling head cooperation form induction type tooth powder filling structure.

Description

Minimally invasive tooth bone powder filling device
Technical Field
The utility model relates to an oral cavity is clean and nursing, and is specific, its show a wicresoft hinders tooth bone meal and fills knot ware.
Background
When implanting teeth, a stainless steel screw needs to be driven into a gum, and then teeth are fixed on the stainless steel screw, but the gum strength of some people is insufficient, and the stainless steel screw cannot be fixed.
The dental powder implantation at the present stage needs to cut part of the gum area, then bone powder is filled, the dental powder implantation belongs to an anesthetic operation, a patient needs to recover for a long time, and the anesthetic operation has certain risks because the oral cavity is positioned at the head.
Therefore, there is a need to provide a minimally invasive bone powder filling device for dental injuries to solve the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a knot ware is filled to wicresoft's wound tooth bone meal directly pricks into tooth bone meal filling portion through the implantation head of high-efficient locate mode, and carries out accurate response tooth bone meal filling volume of tooth bone meal filling through induction type filling structure.
The utility model discloses a following technical scheme realizes above-mentioned purpose:
a minimally invasive dental bone powder filling device comprises a dental bone powder filling head, wherein the dental bone powder filling head is in a conical shape, a dental bone powder implanting hole is formed in the end part of the dental bone powder filling head, the bone powder filling head is connected to a dental bone powder buffering part, a limiting table is arranged on the dental bone powder buffering part and corresponds to the dental bone powder filling head, and the limiting table and the dental bone powder filling head are matched to form an insertion limiting structure for avoiding damage to a dental bed due to overlarge insertion depth; spacing platform tip is provided with the spacing collar that comprises soft material, is provided with the pressure sensing piece that is used for responding to the tooth powder and spills over in the recess between spacing collar and bone meal filling head, and pressure sensing piece and bone meal filling head cooperation form induction type tooth powder filling structure.
Furthermore, the tooth bone powder buffer part comprises a tooth bone powder buffer groove.
Furthermore, the tooth bone powder buffer part is connected to the communication pipe A, and the communication pipe A is communicated with the tooth bone powder buffer part through the tapered connecting part.
Further, communication pipe A is connected to communication pipe B, and communication pipe A and communication pipe B are perpendicular and communicated through a dog-ear.
Furthermore, a handle part is arranged on the communicating pipe B, and a flexible protection pad is wrapped on the handle part.
Further, the communicating pipe B is communicated with the pulse generator.
Carrying out the implantation of the tooth bone powder, comprising the following steps:
the hand is held by a hand, the dental bone powder filling head is aligned to the dental bone powder area to be filled, and is inserted, at the moment, the limit table is matched with the dental bone powder filling head to form an insertion limit structure for avoiding the damage to the gum due to overlarge insertion depth, and the dental bone powder filling head accurately enters the dental bone powder area to be filled; the pulse generator works, the tooth bone powder reaches the tooth bone powder buffering part through the communicating pipe B and the communicating pipe A, the diameter of a tooth bone powder buffering groove of the tooth bone powder buffering part is larger than the inner diameter of the communicating pipe A, a large amount of tooth bone powder can be stored, and meanwhile, the filling pressure of the tooth bone powder is increased; the dental bone powder reaches the dental bone powder filling head through the dental bone powder buffer groove, and then the dental bone powder is filled and filled into the dental bone powder area needing to be filled through the induction type dental bone powder filling structure formed by matching the pressure sensing piece and the bone powder filling head.
Compared with the prior art, the utility model discloses a high-efficient locate mode's implantation head directly pricks into cementum powder filling portion, carries out the accurate response cementum powder filling volume of cementum powder filling through induction type filling structure afterwards.
Drawings
Fig. 1 is one of the schematic structural diagrams of the present invention.
Fig. 2 is a second schematic structural diagram of the present invention.
Detailed Description
Referring to fig. 1 and 2, the embodiment shows a minimally invasive dental bone powder filling device, which is a minimally invasive surgery, in which an insertion hole is only left in the filling device after the filling device is filled in an insertion manner, so that the device is convenient for a patient to quickly recover and reduces risks caused by the surgery.
The concrete structure is as follows:
the dental bone powder filling device comprises a dental bone powder filling head 7, wherein the dental bone powder filling head 7 is in a conical shape, a dental bone powder implanting hole (not marked) is formed in the end part of the dental bone powder filling head 7, the bone powder filling head 7 is connected to a dental bone powder buffering part 5, a limiting table 6 is arranged on the dental bone powder buffering part 5 corresponding to the dental bone powder filling head 7, and the limiting table 6 is matched with the dental bone powder filling head 7 to form an insertion limiting structure for preventing the dental bed from being damaged due to overlarge insertion depth;
spacing platform tip 6 is provided with the spacing collar 61 that comprises soft material, is provided with the pressure sensing piece 62 that is used for responding to the dentifrice and spills over in the recess between spacing collar 61 and bone meal filling head 7, and pressure sensing piece 62 and bone meal filling head cooperation form induction type dentifrice filling structure.
The tooth powder buffer part 5 includes a tooth powder buffer slot (not shown).
The dentifrice buffer unit 5 is connected to the communication pipe A3, and the communication pipe A3 communicates with the dentifrice buffer unit 5 via the tapered connection portion 4.
Communication pipe A3 is connected to communication pipe B2, and both communication pipe A3 and communication pipe B2 are perpendicular and communicate with each other through a dog-ear.
The communicating pipe B2 is provided with a handle part 1, and the handle part 1 is wrapped with a flexible protection pad (not shown).
Communication pipe B2 communicates with a pulse generator (not shown).
Carrying out the implantation of the tooth bone powder, comprising the following steps:
the hand 1 is held by a hand, the dental bone powder filling head 7 is aligned to a dental bone powder area to be filled and inserted, at the moment, the limit table 6 is matched with the dental bone powder filling head 7 to form an insertion limit structure for avoiding damage to a gum due to overlarge insertion depth, and the dental bone powder filling head 7 accurately enters the dental bone powder area to be filled; the pulse generator (not shown) works, the tooth bone powder reaches the tooth bone powder buffer part 5 through the communicating pipe B2 and the communicating pipe A3, the diameter of a tooth bone powder buffer groove (not shown) of the tooth bone powder buffer part 5 is larger than the inner diameter of the communicating pipe A3, a large amount of tooth bone powder can be stored, and the filling pressure of the tooth bone powder is increased; the dental bone powder reaches the dental bone powder filling head 7 through a dental bone powder buffer groove (not shown), and then the dental bone powder is filled and filled into the dental bone powder area needing to be filled through an induction type dental bone powder filling structure formed by matching the pressure sensing sheet 62 and the bone powder filling head 7.
Compared with the prior art, the utility model discloses a high-efficient locate mode's implantation head directly pricks into cementum powder filling portion, carries out the accurate response cementum powder filling volume of cementum powder filling through induction type filling structure afterwards.
What has been described above are only some embodiments of the invention. For those skilled in the art, without departing from the inventive concept, several modifications and improvements can be made, which are within the scope of the invention.

Claims (6)

1. The minimally invasive tooth bone powder filling device is characterized in that: the dental bone powder filling head is conical, a dental bone powder implanting hole is formed in the end of the dental bone powder filling head, the bone powder filling head is connected to a dental bone powder buffering part, a limiting table is arranged on the dental bone powder buffering part and corresponds to the dental bone powder filling head, and the limiting table and the dental bone powder filling head are matched to form an insertion limiting structure which avoids the damage to a dental bed caused by overlarge insertion depth; spacing platform tip is provided with the spacing collar that comprises soft material, is provided with the pressure sensing piece that is used for responding to the tooth powder and spills over in the recess between spacing collar and bone meal filling head, and pressure sensing piece and bone meal filling head cooperation form induction type tooth powder filling structure.
2. The minimally invasive bone powder filling device for the tooth according to claim 1, wherein: the tooth bone powder buffer part comprises a tooth bone powder buffer groove.
3. The minimally invasive bone powder filling device for the injured teeth as claimed in claim 2, wherein: the tooth bone powder buffer part is connected to the communicating pipe A, and the communicating pipe A is communicated with the tooth bone powder buffer part through the tapered connecting part.
4. The minimally invasive bone powder filling device for the injured teeth as claimed in claim 3, wherein: and the communicating pipe A is connected with the communicating pipe B, and the communicating pipe A and the communicating pipe B are vertical and communicated through a break angle.
5. The minimally invasive bone powder filling device for the tooth wounds as claimed in claim 4, wherein: the communicating pipe B is provided with a handle part, and the handle part is wrapped with a flexible protection pad.
6. The minimally invasive bone powder filling device for the injured teeth as claimed in claim 5, wherein: the communicating pipe B is communicated with the pulse generator.
CN202120940675.XU 2021-05-06 2021-05-06 Minimally invasive tooth bone powder filling device Active CN215192448U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120940675.XU CN215192448U (en) 2021-05-06 2021-05-06 Minimally invasive tooth bone powder filling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120940675.XU CN215192448U (en) 2021-05-06 2021-05-06 Minimally invasive tooth bone powder filling device

Publications (1)

Publication Number Publication Date
CN215192448U true CN215192448U (en) 2021-12-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120940675.XU Active CN215192448U (en) 2021-05-06 2021-05-06 Minimally invasive tooth bone powder filling device

Country Status (1)

Country Link
CN (1) CN215192448U (en)

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