An anesthetic device based on the use of a laryngoscope
The laryngoscope-based anesthetic delivery system addresses position shifts and phlegm interference by using a precise anesthetic delivery mechanism with integrated components for accurate application and phlegm removal, ensuring effective anesthetic efficacy and surgical safety.
Patent Information
- Application Number
- CN202510279495.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2045-03-11
AI Technical Summary
When using multifunctional laryngoscopy, the sputum in the throat affects the dilution and distribution of the anesthetic, resulting in poor anesthetic effect and difficulty in accurately calculating the amount of spraying, increasing the risk of surgery.
A laryngoscopy-based anesthesia device is designed, which includes a support assembly, a peeping assembly and a delivery assembly. The support assembly is used to open the oral cavity, the peeping assembly is used to observe the inside of the throat, and the delivery assembly is used to suck out sputum and accurately deliver anesthetic, ensuring that the anesthetic acts directly on the throat wall through elastic sheets and baffles.
Accurate positioning and dosage control when spraying anesthetics is achieved, ensuring that the anesthetics act directly on the throat wall, reducing the impact of sputum on the anesthetic effect, and improving the safety and efficiency of the surgery.
Smart Images

Figure CN119791577B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of anesthesia, in particular to an anesthesia device based on laryngoscope. Background Art
[0002] In the medical field, laryngoscopes play an extremely important role in oral examinations, treatments and surgeries. They can provide doctors with a clear field of vision, help them perform precise and effective operations, and improve patients' comfort to a certain extent. However, in the current practical application of multifunctional laryngoscopes, there are some problems that need to be solved.
[0003] When using a multifunctional laryngoscope, its position is prone to shifting, which undoubtedly adds difficulty and uncertainty to the operation. What is even more difficult is that during the spraying of local anesthetics, since there is often sputum in the patient's throat, this situation has many adverse effects on the anesthetic effect. When sputum is present in the throat, it will dilute the anesthetic and form a barrier between the throat wall and the anesthetic, greatly weakening the effect of the anesthetic directly acting on the throat wall. In addition, the presence of sputum also seriously interferes with the doctor's accurate calculation of the amount of anesthetic sprayed. Because when spraying anesthetics, anesthetics can easily adhere to sputum, and in the subsequent process of clearing sputum, the anesthetics that have been attached to the sputum will be removed together, making it difficult for the anesthetic to form an effective concentration distribution on the throat wall, thereby affecting the overall effect and quality of anesthesia, and increasing the risks and uncontrollable factors during surgery or examination. Summary of the invention
[0004] In view of the problems in the prior art, the present invention provides an anesthesia device based on laryngoscope.
[0005] The technical solution adopted by the present invention to solve its technical problems is: an anesthesia device based on laryngoscope, comprising a display screen, a handle assembly is arranged on the display screen, a support assembly is arranged on the handle assembly, and the support assembly is electrically connected to the display screen; the support assembly is used to open the oral cavity, a limiting assembly is arranged on the support assembly, the peeping assembly is installed on the support assembly, and the limiting assembly is used to limit the peeping assembly; the support assembly is provided with a conveying assembly, and the conveying assembly is used to convey anesthetics and sputum.
[0006] The peep assembly comprises a peep piece sleeved on the support assembly, an extension plate is arranged on the peep piece, an elastic sleeve is arranged on the peep piece, the elastic sleeve is telescopic relative to the peep piece, a telescopic rod is arranged on the inner sleeve rod, an inner sleeve rod is arranged on the elastic sleeve, the inner sleeve rod moves the elastic sleeve to telescope; a branch pipe is arranged at the end of the inner sleeve rod, and a movable sleeve is arranged on the branch pipe;
[0007] The movable sleeve is provided with a first guiding groove, and a first guiding post is arranged on the first guiding groove. A stabilizing rod is arranged on the peeping piece, and a first guiding post is arranged on the stabilizing rod. The first guiding post slides inside the first guiding groove; a first partition plate is arranged inside the branch pipe, and the first partition plate divides the branch pipe into a lumen for transporting sputum and a lumen for transporting anesthetic; a second clamping groove is arranged at the end of the first partition plate, and the second clamping groove is connected to the conveying assembly. A baffle is arranged at the end of the first partition plate, and the baffle slides inside the branch pipe. An elastic piece is arranged on the baffle, and the elastic piece is used for scraping sputum; a square groove is arranged on the inner wall of the peeping piece, and a top block is arranged on the peeping piece.
[0008] When the conveying assembly moves, the conveying assembly drives the branch pipe to move, and the movement of the branch pipe drives the movable sleeve to move. The movable sleeve slides around the first guiding post. At this time, the elastic piece rotates inside the throat to scrape sputum.
[0009] The supporting assembly includes a metal support rod arranged inside the peeping piece. A detachable pressing strip is installed inside the metal support rod. A strip groove is formed inside the metal support rod, and the pressing strip is installed inside the strip groove. A clamping assembly is arranged on the metal support rod, and the clamping assembly is used for clamping the pressing strip.
[0010] The clamping assembly includes a second guiding groove formed on the metal support rod. The strip groove communicates with the second guiding groove; a second guiding post is arranged on the pressing strip, and a blocking block is arranged on the metal support rod. The blocking block abuts against the second guiding post; a blocking groove is arranged below the second guiding groove, and a first elastic member is arranged inside the blocking groove. At least one second guiding post is arranged on the pressing strip, and the first elastic member is used for pushing the second guiding post into the blocking groove. A positioning block is arranged on the side wall of the metal support rod, and the positioning block is engaged with the square groove.
[0011] The conveying assembly includes an outer sleeve rod arranged inside the metal support rod. A conveying pipe is arranged on the outer sleeve rod. A second partition plate is arranged on the conveying pipe. The second partition plate corresponds to the first partition plate. A clamping head is arranged at the end of the second partition plate, and the clamping head is engaged with the second clamping groove; a positioning groove is arranged on the inner wall of the outer sleeve rod, and the positioning groove is matched with the telescopic rod.
[0012] The limiting assembly includes a socket arranged on the outer rod, an insertion rod is arranged inside the socket, a first blind hole, a yield groove and a second blind hole are arranged inside the clamping strip, an insertion rod is arranged inside the first blind hole, a third elastic member is arranged above the insertion rod, the third elastic member is located inside the first blind hole, and the third elastic member is used to push the insertion rod into the slot; a second elastic member is arranged inside the second blind hole, and an extrusion rod is arranged inside the second blind hole, and the extrusion rod abuts against the top block; the extrusion rod is located above the second elastic member, and the second elastic member is used to push the extrusion rod to reset, and the extrusion rod and the insertion rod are connected by an adjusting assembly; the adjusting assembly rotates inside the yield groove.
[0013] The adjustment assembly includes a support pin arranged on the give way groove, a rotating rod is rotatably arranged on the support pin, a rotating groove is arranged on the rotating rod, a connecting pin is arranged on the insertion rod, the connecting pin slides inside the rotating groove, a first inner groove is opened on the extrusion rod, a second arc groove is arranged inside the first inner groove, a limiting rod is arranged on the rotating rod, and the limiting rod slides inside the second arc groove.
[0014] The handle assembly includes a grip, the grip is provided with a clamping rod and a first arc-shaped groove, the metal support rod is provided with a first clamping groove, the clamping rod and the first clamping groove are clamped together; the metal support rod is provided with a clamping column, the clamping rod is clamped inside the first arc-shaped groove, and the clamping column slides inside the first arc-shaped groove; the grip is provided with a first joint, the top of the metal support rod is provided with a second joint, and the first joint and the second joint are electrically connected.
[0015] Beneficial effects:
[0016] The support assembly can be disassembled from the handle assembly, and a conveying assembly is arranged on the support assembly. The conveying assembly can be used to suck out sputum from the inside of the patient's throat on the one hand, and can also convey anesthetics to the inside of the throat on the other hand, so that the anesthetics can be accurately sprayed on the throat wall where the sputum is discharged; the limiting assembly can limit the conveying assembly, so that the conveying assembly installed on the support assembly is limited, which is convenient for the subsequent installation of the peeping assembly; the peeping assembly can observe the situation inside the throat, and can convey the conveying assembly to the throat wall where the anesthetic needs to be sprayed; it is convenient for the doctor to accurately position when spraying the anesthetic. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present invention is further described below in conjunction with the accompanying drawings and embodiments.
[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0019] Figure 2 is Figure 1 the enlarged structural schematic diagram of part A in
[0020] Figure 3 the cross-sectional view of the present invention;
[0021] Figure 4 is Figure 3 the enlarged structural schematic diagram of part B in
[0022] Figure 5 is Figure 3 the enlarged structural schematic diagram of part C in
[0023] Figure 6 is Figure 3 the enlarged structural schematic diagram of part D in
[0024] Figure 7 the overall structure display diagram of the present invention;
[0025] Figure 8 is the structural schematic diagram of the support assembly;
[0026] Figure 9 is the cross-sectional view of the metal strut;
[0027] Figure 10 is the structural schematic diagram of the conveying assembly;
[0028] Figure 11 is the connection schematic diagram of the telescopic rod and the positioning groove.
[0029] In the figure: 1, display screen; 2, handle assembly; 21, first joint; 22, second joint; 23, first card slot; 24, card rod; 25, first arc groove; 26, card post; 3, peeping assembly; 31, peeping piece; 32, extension plate; 34, elastic sleeve; 35, inner sleeve rod; 36, branch pipe; 37, stabilizing rod; 38, first guide groove; 39, first guide post; 310, baffle; 311, elastic piece; 312, movable sleeve; 313, first partition plate; 314, second card slot; 315, top block; 4, support assembly; 41, metal strut; 42, positioning block; 43, pressing strip; 44, second guide post; 45, strip groove; 46, second guide groove; 47, first elastic member; 48, blocking block; 49, blocking groove; 5, limiting assembly; 51, extrusion rod; 52, first inner groove; 53, second arc groove; 54, first blind hole; 55, second elastic member; 56, relief groove; 57, rotating rod; 58, support pin; 59, connecting pin; 510, rotating groove; 511, inserting rod; 512, inserting hole; 513, second blind hole; 514, third elastic member; 6, conveying assembly; 61, outer sleeve rod; 62, conveying pipe; 63, positioning groove; 64, second partition plate; 65, chuck. Detailed implementation manners
[0030] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.
[0031] In one embodiment, please refer to the accompanying drawings of the specification Figures 1-11 As shown, an anesthetic device based on the use of a laryngoscope according to the present invention includes a display screen 1, a handle assembly 2 is arranged on the display screen 1, a support assembly 4 is arranged on the handle assembly 2, and the support assembly 4 is electrically connected to the display screen 1; the support assembly 4 is used to open the oral cavity, a limiting assembly 5 is arranged on the support assembly 4, a peeping assembly 3 is installed on the support assembly 4, and the limiting assembly 5 is used to limit the peeping assembly 3; a conveying assembly 6 is arranged on the support assembly 4, and the conveying assembly 6 is used to convey anesthetic and sputum.
[0032] The support assembly 4 can be detached from the handle assembly 2, and a conveying assembly 6 is arranged on the support assembly 4. On the one hand, the conveying assembly 6 can suck out sputum from the inside of the patient's throat, and on the other hand, it can also convey anesthetic into the inside of the throat, so that the anesthetic can be accurately sprayed on the throat wall where the sputum is discharged; the limiting assembly 5 can limit the conveying assembly 6, so that the conveying assembly 6 installed on the support assembly 4 is limited, which is convenient for the subsequent installation of the peeping assembly 3; the peeping assembly 3 can observe the situation inside the throat and can convey the conveying assembly 6 to the throat wall where anesthetic needs to be sprayed; it is convenient for doctors to accurately locate when spraying anesthetic.
[0033] The peeping assembly 3 includes a peeping piece 31 sleeved on the support assembly 4, an extension plate 32 is arranged on the peeping piece 31, an elastic sleeve 34 is arranged on the peeping piece 31, the elastic sleeve 34 expands and contracts relative to the peeping piece 31, an inner sleeve rod 35 is arranged on the elastic sleeve 34, and the inner sleeve rod 35 moves to expand and contract the elastic sleeve 34; a telescopic rod is arranged on the inner sleeve rod 35, a branch pipe 36 is arranged at the end of the inner sleeve rod 35, and a movable sleeve 312 is arranged on the branch pipe 36;
[0034] A first guiding groove 38 is formed in the movable sleeve 312, a first guiding post 39 is arranged on the first guiding groove 38, a stabilizing rod 37 is arranged on the viewing piece 31, the first guiding post 39 is arranged on the stabilizing rod 37, and the first guiding post 39 slides inside the first guiding groove 38; a first partition plate 313 is arranged inside the branch pipe 36, and the first partition plate 313 divides the branch pipe 36 into a lumen for transporting sputum and a lumen for transporting anesthetic; a second clamping groove 314 is arranged at the end of the first partition plate 313, the second clamping groove 314 is connected to the conveying assembly 6, a baffle 310 is arranged at the end of the first partition plate 313, the baffle 310 slides inside the branch pipe 36, and an elastic sheet 311 is arranged on the baffle 310, and the elastic sheet 311 is used for scraping sputum; a square groove is arranged on the inner wall of the viewing piece 31, and a top block 315 is arranged on the viewing piece 31.
[0035] When the conveying assembly 6 moves, the conveying assembly 6 drives the branch pipe 36 to move, the branch pipe 36 drives the movable sleeve 312 to move, and the movable sleeve 312 slides around the first guiding post 39. At this time, the elastic sheet 311 rotates inside the throat to scrape sputum.
[0036] The provided elastic sheet 311 is used for scraping sputum on the throat wall; at the same time, the elastic sheet 311 can also separate the space for sucking out sputum and spraying anesthetic, ensuring that the anesthetic can be directly applied to the laryngeal wall during sputum suction; thus ensuring the accuracy of the drug dosage during the spraying process of the anesthetic mechanism to ensure the anesthetic effect; the provided baffle 310 can provide sufficient telescopic space when the elastic sheet 311 presses against the throat wall; to ensure that the throat wall will not be scratched by the elastic sheet 311, and the elastic sheet 311 is made of a flexible material; when the conveying assembly 6 is pulled, the conveying assembly 6 drives the inner sleeve rod 35, the inner sleeve rod 35 drives the branch pipe 36 to move, the branch pipe 36 pulls the movable sleeve 312 to move, the movable sleeve 312 drives the first guiding groove 38 to move, at this time, the movable sleeve 312 drives the baffle 310 to rotate, the baffle 310 drives the elastic sheet 311 to rotate, and the elastic sheet 311 unfolds during the rotation process. The sputum scraped by the elastic sheet 311 is adsorbed by the conveying piece while the anesthetic is transported to the throat wall; when the elastic sleeve 34 is pushed by the inner sleeve rod 35, the elastic sleeve 34 can ensure the sealing between the branch pipe 36 and the viewing piece 31 to ensure the separation effect between the viewing piece 31 and the support assembly 4 during the operation; when used next time, only the viewing assembly 3 needs to be replaced; preferably, the viewing assembly 3 is a disposable item.
[0037] The support component 4 includes a metal support rod 41 disposed inside the peeping piece 31. A detachable pressing strip 43 is installed inside the metal support rod 41. A strip groove 45 is formed inside the metal support rod 41. The pressing strip 43 is installed inside the strip groove 45. A clamping component is provided on the metal support rod 41 for clamping the pressing strip 43.
[0038] The clamping component includes a second guiding groove 46 formed on the metal support rod 41. The strip groove 45 communicates with the second guiding groove 46. A second guiding post 44 is provided on the pressing strip 43. A blocking block 48 is provided on the metal support rod 41 and abuts against the second guiding post 44. A blocking groove 49 is provided below the second guiding groove 46. A first elastic member 47 is disposed inside the blocking groove 49. At least one second guiding post 44 is provided on the pressing strip 43. The first elastic member 47 is used to push the second guiding post 44 into the blocking groove 49. A positioning block 42 is provided on the side wall of the metal support rod 41 and is engaged with the square groove.
[0039] By providing the peeping piece 31, the peeping piece 31 is clamped on the metal support rod 41. In order to enable the metal support rod 41 to be smoothly clamped with the peeping piece 31, press the peeping piece 31, and the peeping piece 31 can drive the square groove so that the square groove and the positioning block 42 are engaged with each other. After the second guiding post 44 enters the blocking groove 49, the second guiding post 44 is pressed by the first elastic member 47 inside the blocking groove 49. The peeping piece 31 is sleeved on the metal support rod 41. Through the cooperation of the peeping piece 31 and the second guiding post 44, the metal support rod 41 and the pressing strip 43 are clamped, and after being clamped, the pressing strip 43 will not detach from the inside of the metal support rod 41 when the peeping piece 31 is not removed.
[0040] The conveying component 6 includes an outer sleeve rod 61 disposed inside the metal support rod 41. A conveying pipe 62 is provided on the outer sleeve rod 61. A second partition plate 64 is provided on the conveying pipe 62 and corresponds to the first partition plate 313. A clamping head 65 is provided at the end of the second partition plate 64 and is engaged with the second clamping groove 314. A positioning groove 63 is provided on the inner wall of the outer sleeve rod 61 and is matched with the telescopic rod.
[0041] When the inner sleeve rod 35 enters the outer sleeve rod 61, the clamp head 65 enters the second clamping groove 314 and is aligned, so that when the inner sleeve rod 35 is engaged with the outer sleeve rod 61, the clamp head 65 squeezes the second clamping groove 314 to make the connection in a sealed state; the second partition plate 64 is set to separate the delivery tube 62 into an inner cavity for delivering sputum and an inner cavity for delivering anesthetics; one inner cavity generates adsorption pressure to suck the sputum out of the inner cavity, and the other inner cavity delivers anesthetics, and the anesthetics are delivered to the position of the adsorbed sputum, so that the adsorbed sputum is more accurate.
[0042] The limiting component 5 includes a socket 512 arranged on the outer rod 61, an insertion rod 511 is arranged inside the socket 512, a first blind hole 54, a clearance groove 56 and a second blind hole 513 are arranged inside the clamping strip 43, an insertion rod 511 is arranged inside the first blind hole 54, a third elastic member 514 is arranged above the insertion rod 511, the third elastic member 514 is located inside the first blind hole 54, and the third elastic member 514 is used to push the insertion rod 511 into the slot; a second elastic member 55 is arranged inside the second blind hole 513, an extrusion rod 51 is arranged inside the second blind hole 513, and the extrusion rod 51 abuts against the top block 315; the extrusion rod 51 is located above the second elastic member 55, and the second elastic member 55 is used to push the extrusion rod 51 to reset, and the extrusion rod 51 and the insertion rod 51 are connected by an adjustment component; the adjustment component rotates inside the clearance groove 56.
[0043] The adjustment assembly includes a support pin 58 arranged on the yield groove 56, a rotating rod 57 is rotatably arranged on the support pin 58, a rotating groove 510 is arranged on the rotating rod 57, a connecting pin 59 is arranged on the insertion rod 511, and the connecting pin 59 slides inside the rotating groove 510, a first inner groove 52 is opened on the extrusion rod 51, a second arc groove 53 is arranged inside the first inner groove 52, a limiting rod is arranged on the rotating rod 57, and the limiting rod slides inside the second arc groove 53.
[0044] When the peeping piece 31 is engaged, the top block 315 provided on the peeping piece 31 moves synchronously with the peeping piece 31. When the peeping piece 31 is engaged, the top block 315 presses the pressing rod 51. During the downward movement of the pressing rod 51, the pressing rod 51 presses the rotating rod 57 to rotate. When the rotating rod 57 rotates, the limiting rod slides inside the second arc-shaped groove 53. The rotating rod 57 drives the rotating groove 510 to rotate. When the rotating groove 510 rotates, it pushes the inserting rod 511 to move, and the inserting rod 511 disengages from the inside of the inserting hole 512; when the outer sleeve rod 61 is pulled, the outer sleeve rod 61 can smoothly slide inside the metal support rod 41; at the same time, since the telescopic rod slides inside the positioning groove 63 until the telescopic rod moves to the end of the positioning groove 63, when the conveying pipe 62 continues to move, the positioning groove 63 cooperates with the telescopic rod to drive the inner sleeve rod 35 to move; thus enabling the conveying pipe 62 to be used more simply and quickly during the movement process, making the entire installation process simple and the operation convenient.
[0045] The handle assembly 2 includes a grip. A clamping rod 24 and a first arc-shaped groove 25 are provided on the grip. A first clamping groove 23 is provided on the metal support rod 41, and the clamping rod 24 is engaged with the first clamping groove 23; a clamping post 26 is provided on the metal support rod 41, the clamping rod 24 is engaged inside the first arc-shaped groove 25, and the clamping post 26 slides inside the first arc-shaped groove 25; a first joint 21 is provided on the grip, and a second joint 22 is provided at the top of the metal support rod 41, and the first joint 21 and the second joint 22 are electrically connected.
[0046] By arranging the clamping post 26 to be stuck in the first arc-shaped groove 25 and the clamping rod 24 to be engaged with the first clamping groove 23, the grip and the metal support rod 41 can be firmly connected.
[0047] When the present invention is in use, first, the outer sleeve rod 61 and the delivery tube 62 are placed inside the strip groove 45, and then the pressing strip 43 is installed. During the downward pressing of the pressing strip 43, after the second guide post 44 enters the blocking groove 49, the second guide post 44 is squeezed inside the blocking groove 49 by the first elastic member 47; Subsequently, the peephole piece 31 is sleeved on the metal support rod 41. Through the cooperation of the peephole piece 31 and the second guide post 44, the metal support rod 41 and the pressing strip 43 are engaged, and when the engaged pressing strip 43 does not remove the peephole piece 31, the pressing strip 43 will not disengage from the inside of the metal support rod 41; When installing the peephole piece 31, the top block 315 on the peephole piece 31 moves synchronously with the peephole piece 31. When the peephole piece 31 is engaged, the top block 315 squeezes the extrusion rod 51. During the downward movement of the extrusion rod 51, the extrusion rod 51 squeezes the rotating rod 57 to rotate. When the rotating rod 57 rotates, the limiting rod slides inside the second arc groove 53. The rotating rod 57 drives the rotating groove 510 to rotate. When the rotating groove 510 rotates, it pushes the insertion rod 511 to move, and the insertion rod 511 disengages from the inside of the insertion hole 512; When pulling the outer sleeve rod 61, the outer sleeve rod 61 can smoothly slide inside the metal support rod 41; At the same time, since the telescopic rod slides inside the positioning groove 63 until the telescopic rod moves to the end of the positioning groove 63, when the delivery tube 62 continues to move, the positioning groove 63 cooperates with the telescopic rod to drive the inner sleeve rod 35 to move; When pulling the delivery tube 62, the delivery assembly 6 drives the inner sleeve rod 35, the movement of the inner sleeve rod 35 drives the branch tube 36 to move, the branch tube 36 pulls the movable sleeve 312 to move, and the movement of the movable sleeve 312 drives the first guide groove 38 to move. At this time, the movable sleeve 312 drives the baffle 310 to rotate, the rotation of the baffle 310 drives the elastic piece 311 to rotate, and the elastic piece 311 unfolds during the rotation. The sputum scraped by the elastic piece 311 is adsorbed by the sputum conveying member while the anesthetic is conveyed to the throat wall; When the inner sleeve rod 35 enters the outer sleeve rod 61, the clamping head 65 enters the alignment with the second clamping groove 314, facilitating when the inner sleeve rod 35 is engaged with the outer sleeve rod 61, the clamping head 65 squeezes the second clamping groove 314 to make the connection in a sealed state; The delivery tube 62 is separated into a lumen for conveying sputum and a lumen for conveying anesthetic by the provided second partition plate 64; So that a negative pressure is generated in one lumen to suck the sputum out of the lumen, and the other lumen conveys the anesthetic, and the anesthetic is conveyed to the position of the adsorbed sputum, making the adsorbed sputum more accurate.
[0048] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. An anesthetic device for use with a laryngoscope, characterized in that, The invention comprises a display screen (1), wherein the display screen (1) is provided with a handle assembly (2), wherein the handle assembly (2) is provided with a support assembly (4), wherein the support assembly (4) is electrically connected to the display screen (1); wherein the support assembly (4) is used to open the oral cavity, wherein a limit assembly (5) is provided on the support assembly (4), wherein a peep assembly (3) is mounted on the support assembly (4), wherein the limit assembly (5) is used to limit the position of the peep assembly (3); wherein a conveying assembly (6) is provided on the support assembly (4), wherein the conveying assembly (6) is used to convey an anesthetic and sputum; The peep assembly (3) comprises a peep piece (31) sleeved on a support assembly (4); the peep piece (31) is provided with an extension plate (32); the peep piece (31) is provided with an elastic sleeve (34); the elastic sleeve (34) is telescopic relative to the peep piece (31); an inner sleeve rod (35) is provided on the elastic sleeve (34); the inner sleeve rod (35) moves the elastic sleeve (34) to telescope; a telescopic rod is provided on the inner sleeve rod (35); a branch pipe (36) is provided at the end of the inner sleeve rod (35); and a movable sleeve (312) is provided on the branch pipe (36); The movable sleeve (312) is provided with a first guide groove (38), the first guide groove (38) is provided with a first guide column (39), the peep plate (31) is provided with a stabilizing rod (37), the stabilizing rod (37) is provided with a first guide column (39), the first guide column (39) slides inside the first guide groove (38); the branch tube (36) is provided with a first partition plate (313), the first partition plate (313) divides the branch tube (36) into an inner cavity for conveying sputum and an inner cavity for conveying anesthetic. inner cavity; a second slot (314) is provided on the end of the first partition plate (313), the second slot (314) is connected to the conveying assembly (6); a baffle (310) is provided on the end of the first partition plate (313), the baffle (310) slides inside the branch tube (36), an elastic sheet (311) is provided on the baffle (310), and the elastic sheet (311) is used to scrape sputum; a square groove is provided on the inner wall of the peep piece (31), and a top block (315) is provided on the peep piece (31).
2. The anesthetic device based on laryngoscope use according to claim 1, wherein, When the conveying assembly (6) moves, the conveying assembly (6) drives the branch tube (36) to move, and the movement of the branch tube (36) drives the movable sleeve (312) to move. The movable sleeve (312) slides around the first guide column (39), and at this time, the elastic sheet (311) rotates inside the throat to scrape sputum.
3. The anesthetic device based on laryngoscope use according to claim 2, characterized in that, The support assembly (4) comprises a metal support rod (41) arranged inside the peep piece (31), a detachable pressing strip (43) being installed inside the metal support rod (41), a strip groove (45) being provided inside the metal support rod (41), the pressing strip (43) being installed inside the strip groove (45), and a snap-fit assembly being provided on the metal support rod (41), the snap-fit assembly being used to snap-fit the pressing strip (43).
4. The anesthetic device based on laryngoscope use according to claim 3, characterized in that, The engaging assembly comprises a second guide groove (46) provided on the metal support rod (41), the strip groove (45) being connected to the second guide groove (46); a second guide column (44) being provided on the pressing strip (43), a blocking block (48) being provided on the metal support rod (41), the blocking block (48) being in contact with the second guide column (44); a blocking groove (49) being provided below the second guide groove (46), a first elastic member (47) being provided inside the blocking groove (49), at least one second guide column (44) being provided on the pressing strip (43), the first elastic member (47) being used to push the second guide column (44) into the inside of the blocking groove (49), a positioning block (42) being provided on the side wall of the metal support rod (41), the positioning block (42) being engaged with the square groove.
5. The anesthetic device based on laryngoscope use according to claim 4, characterized in that, The conveying assembly (6) comprises an outer rod (61) arranged inside the metal support rod (41), a conveying tube (62) being arranged on the outer rod (61), a second partition plate (64) being arranged on the conveying tube (62), the second partition plate (64) corresponding to the first partition plate (313), a clamping head (65) being arranged at the end of the second partition plate (64), the clamping head (65) being engaged with the second clamping groove (314); a positioning groove (63) being arranged on the inner wall of the outer rod (61), the positioning groove (63) being matched with the telescopic rod.
6. The anesthetic device based on laryngoscope use according to claim 5, wherein, The limiting assembly (5) comprises a plug hole (512) arranged on the outer rod (61), an insert rod (511) is arranged inside the plug hole (512), a first blind hole (54), a clearance groove (56) and a second blind hole (513) are arranged inside the pressing strip (43), an insert rod (511) is arranged inside the first blind hole (54), a third elastic member (514) is arranged above the insert rod (511), the third elastic member (514) is located inside the first blind hole (54), and the third elastic member (514) is used to push the insert rod (511) to move the first blind hole (54) toward the inner side of the pressing strip (43). The rod (511) enters the interior of the slot; a second elastic member (55) is provided inside the second blind hole (513); an extrusion rod (51) is provided inside the second blind hole (513); the extrusion rod (51) abuts against the top block (315); the extrusion rod (51) is located above the second elastic member (55); the second elastic member (55) is used to push the extrusion rod (51) to reset; the extrusion rod (51) and the insertion rod (511) are connected via an adjustment component; the adjustment component rotates inside the clearance groove (56).
7. The anesthetic device based on the use of a laryngoscope according to claim 6, wherein, The adjustment assembly comprises a support pin (58) arranged on the yield groove (56), a rotating rod (57) rotatably arranged on the support pin (58), a rotating groove (510) being arranged on the rotating rod (57), a connecting pin (59) being arranged on the insertion rod (511), the connecting pin (59) sliding inside the rotating groove (510), a first inner groove (52) being formed on the extrusion rod (51), a second arc groove (53) being arranged inside the first inner groove (52), a limiting rod being arranged on the rotating rod (57), the limiting rod sliding inside the second arc groove (53).
8. An anesthetic device based on the use of a laryngoscope according to claim 7, characterized in that, The handle assembly (2) comprises a grip, on which a clamping rod (24) and a first arc-shaped groove (25) are provided, and on which a first clamping groove (23) is provided, wherein the clamping rod (24) and the first clamping groove (23) are clamped together; on which a clamping column (26) is provided, wherein the clamping rod (24) is clamped inside the first arc-shaped groove (25), and the clamping column (26) slides inside the first arc-shaped groove (25); on which a first joint (21) is provided, and on which a second joint (22) is provided at the top of the metal strut (41), wherein the first joint (21) and the second joint (22) are electrically connected.
Citation Information
Patent Citations
Anaesthetize visual laryngoscope
CN205041359U