CN216294099U - Medical ultrasonic coupling agent container - Google Patents
Medical ultrasonic coupling agent container Download PDFInfo
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- CN216294099U CN216294099U CN202122686521.5U CN202122686521U CN216294099U CN 216294099 U CN216294099 U CN 216294099U CN 202122686521 U CN202122686521 U CN 202122686521U CN 216294099 U CN216294099 U CN 216294099U
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Abstract
A medical ultrasound couplant container comprising: the ultrasonic couplant applicator comprises an outer cylinder, an inner cylinder, an extrusion bottle bottom, a top cover, an extrusion port, an electric heating sheet, a power supply and a heating switch, wherein the ultrasonic couplant in the inner cylinder can be heated through the electric heating sheet, so that the temperature of the ultrasonic couplant is close to the body surface temperature of a human body, the emergency reaction of a patient in the application process is avoided, and the application efficiency can be improved; the extrusion port of the ultrasonic couplant ultrasonic imaging device adopts a rectangular design, can quickly extrude the ultrasonic couplant, and can quickly scrape the ultrasonic couplant through the scraper on the side surface, eliminate air between the ultrasonic couplant and the body surface and improve the ultrasonic perspective effect.
Description
Technical Field
The utility model relates to the field of clinical medical instruments, in particular to a medical ultrasonic couplant container.
Background
During ultrasonic examination, air between the probe and the skin of a patient prevents ultrasonic waves from being transmitted into the human body, and in order to obtain high-quality images, a liquid conductive medium is needed to connect the probe and the body surface of the patient, and the liquid conductive medium is an ultrasonic coupling agent. The ultrasonic couplant is a water-based polymer gel and is mainly used for eliminating air on the surface of skin. The prior clinical ultrasound coupling agent has the following problems in the using process: firstly, an ultrasonic couplant container used clinically is generally columnar, an extrusion port of the ultrasonic couplant container is generally a slender cone, so that the operation of extruding the ultrasonic couplant is relatively laborious, the extrusion port of the ultrasonic couplant container is small, the couplant is easily smeared unevenly in the smearing process, and a scraper is required to be additionally used for assisting in smearing the couplant; secondly, when the ultrasonic couplant is coated on the skin, the patient feels uncomfortable when the ultrasonic couplant is coated on a large area because the temperature difference exists between the couplant and the skin of the human body. Particularly in cold autumn and winter, the ultrasonic couplant with lower temperature can bring obvious discomfort and tension to patients, and doctors can only slowly coat the ultrasonic couplant so as to be convenient for the patients to adapt and influence the efficiency of ultrasonic diagnosis.
Disclosure of Invention
The utility model aims to provide a medical ultrasonic couplant container, which adopts the following scheme for realizing the aim:
a medical ultrasound couplant container comprising: at the bottom of urceolus, inner tube, the extrusion bottle, top cap, extrusion mouth, electric heat piece, power and heating switch, the inner tube is installed in the urceolus, and the bottom of the section of thick bamboo portion including the embedding installation at the bottom of the extrusion bottle, threaded connection is passed through with the inner tube top to the top cap, and the top cap top is equipped with extrudes the mouth, and the electric heat piece is attached in the inner tube outside, and the power is installed in the space between the inner tube outside and the urceolus inboard, and the power passes through the circuit to be connected with the electric heat piece, and heating switch is located urceolus side and power electric connection.
Furthermore, an interface for charging the power supply is arranged at the position, corresponding to the power supply, of the side surface of the outer barrel.
Furthermore, the top of the bottom of the extrusion bottle is provided with a sealing rubber sleeve, and the bottom of the extrusion bottle is provided with a push-pull rod.
Furthermore, the extrusion opening is rectangular, a scraper is arranged on one side of the extrusion opening, and the extrusion opening is plugged with a transparent rubber sleeve.
The working principle is as follows:
when the ultrasonic couplant is used, a doctor firstly presses down the heating switch, the power supply is switched on to supply power to the electric heating sheet, the electric heating sheet starts to work to heat the ultrasonic couplant in the inner barrel, the doctor touches the heating switch to be closed when the temperature is about 26-30 ℃, the transparent rubber sleeve of the extrusion opening is pulled out, the push-pull rod at the bottom of the extrusion bottle is pushed by hand to extrude the ultrasonic couplant to the body surface of a patient, and the scraper is used for scraping the ultrasonic couplant; when the ultrasonic couplant in the inner cylinder is used up, the push-pull rod at the bottom of the extrusion bottle bottom can be pinched to pull the extrusion bottle bottom back to the bottom, and the top cover is unscrewed to introduce the ultrasonic couplant into the inner cylinder.
The utility model has the advantages that:
(1) the ultrasonic couplant applicator can heat the ultrasonic couplant in the inner barrel through the electric heating piece, so that the temperature of the ultrasonic couplant is close to the body surface temperature of a human body, the emergency reaction of a patient in the application process is avoided, and the application efficiency can be improved.
(2) The extrusion port of the ultrasonic couplant ultrasonic imaging device adopts a rectangular design, can quickly extrude the ultrasonic couplant, and can quickly scrape the ultrasonic couplant through the scraper on the side surface, eliminate air between the ultrasonic couplant and the body surface and improve the ultrasonic perspective effect.
(3) The utility model adopts the design of bottom pushing, and solves the problems that the traditional side surface extrusion design is difficult to control the force and the ultrasonic couplant residue cannot be extruded.
Drawings
FIG. 1 is a schematic view of the external structure of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
the meanings are shown below:
1-outer cylinder; 2-inner cylinder; 3-extruding the bottle bottom; 4-a top cover; 5-an extrusion opening; 6-electric heating piece; 7-a power supply; 8-a heating switch; 9-interface; 301-sealing rubber sleeve; 302-a push-pull rod; 501-a scraper; 502-transparent gum cover.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
A medical ultrasound couplant container comprising: urceolus 1, inner tube 2, extrusion bottle end 3, top cap 4, extrude mouthful 5, electric heat piece 6, power 7 and heating switch 8, inner tube 2 is installed in urceolus 1, and 3 imbeds at the bottom of the extrusion bottle and installs in inner tube 2 bottom, and threaded connection is passed through at top cap 4 and the 2 tops of inner tube, and top cap 4 top is equipped with extrusion mouth 5, and electric heat piece 6 is attached in the 2 outsides of inner tube, and power 7 installs in the space between the 2 outsides of inner tube and 1 inboards of urceolus, and power 7 passes through the circuit and is connected with electric heat piece 6, and heating switch 8 is located 1 sides of urceolus and power 7 electric connection.
Preferably, an interface 9 for charging the power supply 7 is arranged on the side surface of the outer cylinder 1 corresponding to the power supply 7.
Preferably, the top of the bottom 3 of the squeeze bottle is provided with a sealing rubber sleeve 301, and the bottom is provided with a push-pull rod 302.
Preferably, the extrusion opening 5 is rectangular, a scraper 501 is arranged on one side of the extrusion opening 5, and the extrusion opening 5 is plugged with a transparent rubber sleeve 502.
Claims (4)
1. A medical ultrasonic couplant container, comprising: urceolus (1), inner tube (2), extrusion bottle end (3), top cap (4), extrude mouthful (5), electric heat piece (6), power (7) and heating switch (8), inner tube (2) are installed in urceolus (1), and the embedding of extrusion bottle end (3) is installed in inner tube (2) bottom, and threaded connection is passed through at top cap (4) and inner tube (2) top, and top cap (4) top is equipped with extrudes mouthful (5), and electric heat piece (6) are attached in inner tube (2) outside, and power (7) are installed in the space between inner tube (2) outside and urceolus (1) inboard, and power (7) are connected with electric heat piece (6) through the circuit, and heating switch (8) are located urceolus (1) side and power (7) electric connection.
2. The medical ultrasound couplant container of claim 1, wherein: and an interface (9) for charging the power supply (7) is arranged on the side surface of the outer barrel (1) corresponding to the power supply (7).
3. The medical ultrasound couplant container of claim 1, wherein: the top of the extrusion bottle bottom (3) is provided with a sealing rubber sleeve (301), and the bottom is provided with a push-pull rod (302).
4. The medical ultrasound couplant container of claim 1, wherein: the extrusion opening (5) is rectangular, a scraping plate (501) is arranged on one side of the extrusion opening (5), and a transparent rubber sleeve (502) is plugged in the extrusion opening (5).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122686521.5U CN216294099U (en) | 2021-11-04 | 2021-11-04 | Medical ultrasonic coupling agent container |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122686521.5U CN216294099U (en) | 2021-11-04 | 2021-11-04 | Medical ultrasonic coupling agent container |
Publications (1)
Publication Number | Publication Date |
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CN216294099U true CN216294099U (en) | 2022-04-15 |
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Family Applications (1)
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CN202122686521.5U Active CN216294099U (en) | 2021-11-04 | 2021-11-04 | Medical ultrasonic coupling agent container |
Country Status (1)
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CN (1) | CN216294099U (en) |
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2021
- 2021-11-04 CN CN202122686521.5U patent/CN216294099U/en active Active
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