Multifunctional transesophageal cardiac ultrasonic diagnosis and treatment instrument easy to use
Through the multi-functional transesophageal cardiac ultrasound diagnosis and treatment instrument integrating ultrasound diagnosis, respiratory therapy, cardiac pacing and defibrillation functions, traditional equipment covers a large area and is difficult to deploy, realizes flexible layout and efficient use of the equipment, and improves the quality of medical services.
Patent Information
- Application Number
- CN202510664102.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional heart disease diagnosis and treatment equipment covers a large area and is chaotic, making it difficult to deploy quickly in first aid transport or community medical care, which affects the timing of treatment.
A multifunctional transesophageal cardiac ultrasound diagnosis and treatment instrument is designed to integrate ultrasound diagnosis, respiratory therapy, cardiac pacing and defibrillation functions, and adopt structures such as movable base, retractable extension plate, movable machine and inner box group to achieve flexible layout and rapid deployment of the equipment.
It reduces the equipment footprint, improves the efficiency of medical resource utilization, is convenient for emergency departments, reduces the risk of cross-infection, and provides a more convenient operating experience and efficient medical services.
Smart Images

Figure CN120284322A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ultrasonic diagnosis and treatment equipment, and particularly to an easy-to-use multifunctional transesophageal cardiac ultrasound diagnosis and treatment instrument. Background Art
[0002] In the modern medical field, the diagnosis and treatment of heart diseases are crucial links. For patients with heart diseases, especially emergency patients, multiple medical means are often required to cooperate in diagnosis and treatment, such as ultrasonic diagnosis, respiratory treatment, cardiac pacing, and defibrillation.
[0003] Under the traditional medical model, for these different treatment needs, multiple independent devices are usually used. For example, ultrasonic diagnosis requires a dedicated ultrasonic diagnostic instrument, which mainly consists of an ultrasonic main unit, a probe, etc., and generates images of the heart through the principle of ultrasonic reflection to assist doctors in observing the structure and function of the heart. Respiratory treatment relies on devices such as ventilators, sputum suction machines, and nebulizers. Cardiac pacing requires the use of a pacemaker to maintain a normal heart rhythm by sending electrical pulses to the heart. Defibrillation relies on a defibrillator, which restores a normal heart rhythm by shocking the heart when the patient has severe arrhythmia.
[0004] However, this way of using multiple independent devices not only takes up a large floor area of the devices. The placement of multiple devices not only occupies a large amount of space but also makes the medical environment appear crowded and messy, which is not conducive to the operation of medical staff and the transfer of patients. Secondly, when going out for treatment, such as for emergency transfer or providing medical services in the community, it is extremely inconvenient to carry multiple devices, and it is difficult to complete the handling and deployment of the devices in a short time, which may delay the treatment time of patients. Summary of the Invention
[0005] In order to achieve flexible comprehensive use of various diagnoses and treatments and improve the diagnosis and treatment effect, the present application provides an easy-to-use multifunctional transesophageal cardiac ultrasound diagnosis and treatment instrument.
[0006] The present invention is implemented as follows: An easy-to-use multifunctional transesophageal cardiac ultrasound diagnosis and treatment instrument, including a base, an ultrasonic main unit box is fixedly installed on the upper end surface of the base, an operation keyboard and a display device are arranged above the ultrasonic main unit box, and a multifunctional outer box is fixedly installed on the outer side surface of the ultrasonic main unit box. A movable machine platform that can be pulled out, flipped, and opened is installed on the side of the multifunctional outer box. A respiratory treatment component is fixedly installed on the movable machine platform. A retractable inner box group is installed on the multifunctional outer box, and an electric cylinder for driving the movement of the inner box group is also installed in the multifunctional outer box. A cardiac treatment component is placed in the inner box group.
[0007] By adopting the above technical solutions, the ultrasound main cabinet is fixedly installed on the base, and corresponding moving wheels are arranged on the base, which facilitates the flexible pushing of the device and makes it easy to use at different positions. The operation keyboard and display device are provided to facilitate better operation and display of corresponding images during ultrasound diagnosis and treatment. Transesophageal echocardiography probes connected to the ultrasound main cabinet are arranged on both sides of the operation keyboard, which facilitates the removal of the probes for diagnosis when the heart needs to be diagnosed and treated. The multifunctional outer box is provided to facilitate the easy storage and quick use of the movable machine platform and the inner box group. In this way, when the respiratory treatment component is installed on the movable machine platform and the heart treatment component is placed in the inner box group, it can be quickly retrieved according to different needs. This diagnostic instrument integrates multiple functions and is convenient to use in comprehensive departments such as the emergency room.
[0008] Further, the ultrasound main cabinet includes a main cabinet shell and a top cover. Four corners of the lower end surface of the top cover are installed with guide slide rods slidably connected to the main cabinet shell, and an electric cylinder for driving the lifting of the top cover is also installed in the main cabinet shell. A group of front extension plates are installed on the lower end surface of the top cover. Two groups of side extension plates are symmetrically arranged below the front extension plates. A guide frame for slidably installing the front extension plates and the side extension plates is fixedly installed on the lower end surface of the top cover, and a driving member for driving the front extension plates and the two groups of side extension plates to move synchronously outward or inward is also installed on the lower end surface of the top cover.
[0009] By adopting the above technical solutions, the top cover of the ultrasound main cabinet can be driven to lift by the electric cylinder, which facilitates the automatic opening of the top of the main cabinet. When the top cover of the main cabinet is opened, the front extension plates and the side extension plates can move outward under the action of the driving member. In this way, corresponding placement platforms can be extended around the device, which is convenient for better placing items during treatment or diagnosis. When not in use, the front extension plates and the side extension plates can move inward under the action of the driving member, thereby realizing the storage of the front extension plates and the side extension plates on the lower end surface of the top cover. At the same time, the extended length can also be adjusted according to actual use requirements, so as to make better use of the use space and improve the use flexibility of the device.
[0010] Further, the driving member includes a driving motor, a central screw for driving the movement of the front extension plate, and a double-headed screw for driving the movement of the two groups of side extension plates. The driving motor is fixedly installed on the lower end surface of the top cover. One end of the central screw is connected to the output end of the driving motor. A first threaded tube matched with the central screw is fixedly installed on the lower end surface of the front extension plate. A worm gear is sleeved and fixed in the middle of the double-headed screw. A worm meshed with the worm gear is sleeved and fixed on the central screw. A second threaded tube matched with the double-headed screw is fixedly installed on the lower end surface of the side extension plate.
[0011] By adopting the above technical solutions, the driving member adopts the transmission mode of motor, screw and worm gear, with high transmission precision and good stability, which can ensure the synchronous movement of the front extension plates and the side extension plates.
[0012] Furthermore, the multifunctional outer box includes a bottom box, a horizontal support frame, and a top box. A side groove for accommodating the respiratory therapy component is formed on the side of the bottom box. On the inner side of the bottom surface of the side groove, a support plate platform and a limit post for slidably installing the movable machine table are provided. Both the support plate platform and the limit post are fixedly connected to the bottom box. Moreover, a round head nail for further limiting the movable machine table is provided on the upper end surface of the support plate platform. The round head nail is fixedly connected to the support plate platform. The horizontal support frame is installed on both sides of the main box shell, and one end of the horizontal support frame is fixedly connected to the bottom box. The top box is fixedly installed on the upper end surface of the bottom box.
[0013] By adopting the above technical solution, a side groove is formed on the side of the bottom box of the multifunctional outer box for accommodating the respiratory therapy component, which can be flexibly accommodated when not in use, making the overall layout of the device more compact. The movable machine table can be pulled out, flipped, and opened, facilitating the quick use of the respiratory therapy component when needed and improving the timeliness of treatment. By fixedly installing the support plate platform and the limit post on the inner side of the bottom surface of the side groove, the movable machine table is more stable after being installed in the side groove, facilitating the flexible pulling, flipping, and adjustment of the movable machine table. The round head nail is provided to ensure better limiting when the movable machine table is flipped, further enhancing the safety of using the movable machine table.
[0014] Furthermore, the horizontal support frame includes a bent bottom frame and an auxiliary back plate. The auxiliary back plate is fixedly installed on the rear end surface of the bent bottom frame, and a magnetic block for adsorbing the movable machine table is fixedly embedded in the auxiliary back plate. A disinfection box is also detachably installed on the top box. A spray pump is fixedly installed in the disinfection box, and a shunt pipe for spraying disinfectant liquid to the bottom box and the top box is provided at the output end of the spray pump.
[0015] By adopting the above technical solution, by designing the horizontal support frame into a structure with a bent bottom frame and an auxiliary back plate in cooperation, it is ensured that the bent bottom frame can support the movable machine table flipped to the outside during use, ensuring more stable use of the movable machine table. The magnetic block on the horizontal support frame can adsorb the movable machine table, ensuring that the movable machine table can be stably attached to the auxiliary back plate for use. The setting of the disinfection box can disinfect the bottom box and the top box regularly, effectively preventing the growth of bacteria and ensuring the hygienic safety of the device.
[0016] Furthermore, the top box includes a middle shell and side baffles. The middle shell is fixedly installed on the upper end surface of the bottom box. The side baffles are integrally formed on both sides of the middle shell, and the side baffles are fixedly attached to the outer side surface of the main box shell. A support cover holder is slidably installed on the upper end surface of the middle shell. Two locking blocks for locking the support cover holder are provided in the middle shell, and a support spring for supporting the locking blocks is also fixedly installed in the middle shell. A pressing frame that can slide up and down is provided in the middle shell. Inclined surface pressing blocks are fixedly installed at both ends of the pressing frame, and a mating inclined surface is provided on the locking block to cooperate with the inclined surface pressing block.
[0017] By adopting the above technical solution, the top box is designed as a structure in which the middle shell and the side baffles cooperate. During actual use, the inner box group is stored through the middle shell, ensuring that the inner box group can be flexibly stored in the middle shell when the heart treatment component is not in use. The two side baffles on both sides can protect the two sides of the inner box group, and at the same time can be clamped on both sides of the main box shell to ensure that the connection between the top box and the main box shell is more stable, ensuring that the top box, the bottom box and the main box shell form an interconnected overall structure, which is easy to place different components on each part for use. A support cover is slidably installed on the upper end surface of the middle shell to provide stable support, and the support cover can be adjusted in height to meet different support needs. Through the setting of the locking block and the support spring, it is ensured that the support cover can be fixed by the locking block when not affected by external forces. When the height of the support cover needs to be adjusted, the pressing frame is pressed down to drive the inclined surface blocks at both ends to cooperate with the inclined surfaces on the locking block, realizing the pushing of the locking block away from the support cover, and then unlocking the support cover, which is very convenient to use.
[0018] Further, the movable machine table includes a table board, a sliding board and a bracket for installing the respiratory treatment component. The table board is installed on the upper end surface of the support board platform, and one side of the table board is set as an arc surface. A positioning groove for cooperating with the round head nail is opened on the table board. The sliding board is fixedly installed on the lower end surface of the table board, and a cooperating middle groove for cooperating with the limit post is opened on the lower end surface of the sliding board.
[0019] By adopting the above technical solution, one side of the table board of the movable machine table is set as an arc surface, which is more convenient for the table board to be flipped. By fixedly installing the sliding board at the lower end of the table board, when the movable machine table is installed in the side groove of the bottom box, the sliding board is clamped between the inner wall of the bottom box and the support board platform. At this time, the movable machine table can only slide back and forth in the side groove. When it is pulled to the front end, it slides to one end of the cooperating middle groove through the limit post and cannot be pulled out further. Since the limit post is cylindrical and the sliding board is also separated from the clamping of the support board platform, the movable table board can be flipped at this time. The positioning groove is divided into two sections of structures. One end is a straight groove for cooperating with the front and back sliding, and the other end is an arc groove for cooperating with the flipping. The arc groove is communicated with the straight groove, which is convenient for the sliding and flipping to be switched flexibly, making the sliding and adjustment of the movable machine table more accurate and stable, and avoiding shaking and deviation.
[0020] Further, the respiratory treatment component includes a treatment host. A micro-compressor is arranged in the treatment host, and a sputum suction box is vertically installed on the upper end surface of the treatment host. A sputum collection shell is detachably installed in the sputum suction box vertically installed on the upper end surface. An air suction cover group connected to the air suction port of the micro-compressor is installed on the top of the sputum suction box. A fogging box is also fixedly installed on the side of the treatment host, and a fogging component connected to the exhaust port of the micro-compressor is installed in the fogging box.
[0021] By adopting the above technical solutions, the respiratory therapy component integrates the functions of sputum suction and atomization, and can meet the different respiratory therapy needs of patients. The micro-compressor provides power for sputum suction and atomization. An oil-free piston compressor can be selected, such as the ZW series oil-free piston compressor, which has the advantages of low noise and long service life. The sputum collection shell in the sputum suction box is detachable, which is convenient for cleaning and replacement. The ultrasonic generator in the atomization component can atomize the liquid medicine into tiny particles, improving the absorption effect of the medicine.
[0022] Furthermore, the atomization box includes a bottom shell and a top shell that can be flipped open. The bottom shell is fixedly installed on one side of the treatment host, and the top shell is installed above the bottom shell. The atomization component includes a coiled tube group, an atomization tube shell, and a face mask. The lower end of the coiled tube group is connected to the exhaust port of the micro-compressor. The atomization tube shell is installed at the head of the coiled tube group, and an ultrasonic generator is fixedly installed in the atomization tube shell. The face mask is detachably installed at the outlet of the atomization tube shell.
[0023] By adopting the above technical solutions, by designing the atomization box into a structure with a bottom shell and a top shell in cooperation, it is ensured that the coiled tube group can be received and installed through the bottom shell during use, and the atomization tube shell and the face mask can be protected by the top shell. At the same time, it is convenient to directly flip open the top shell to take the atomization component during use. By designing the atomization component into a structure with a coiled tube group, an atomization tube shell, and a face mask in cooperation, it is ensured that the coiled tube group can be connected to the micro-compressor during use. In actual use, the atomization medicine is put into the atomization tube shell, and then atomized into small particles by the ultrasonic generator and blown out to the face mask by the micro-compressor, facilitating the user to directly breathe and use through the face mask.
[0024] Furthermore, the inner box group includes a connecting middle plate, a bending frame, and an inner shell for placing the cardiac therapy component. There are two groups of bending frames, and the two groups of bending frames are fixedly installed on both sides of the connecting middle plate. The inner shell is fixedly installed between the two groups of bending frames, and a cover that can be flipped open is also installed between the two groups of bending frames. A number of hooks and placement boxes are fixedly installed on the inner side surface of the cover. The cardiac therapy component includes an external pacemaker and a defibrillator. The external pacemaker and the defibrillator are both placed on the inner shell, and a cable tube shell is also fixedly installed in the inner shell.
[0025] By adopting the above technical solution, the inner box group can be driven by an electric cylinder to move, which is convenient for quickly taking out the heart treatment component when needed. Moreover, the inclined ejection method can ensure that the operator can better take and observe. When the cover is flipped up, it can be flexibly supported by the support cover bracket, and by adjusting the support height of the support cover bracket, it is convenient for the cover to be used at a suitable angle. The hook on the cover is convenient for hanging when using an external pacemaker, and the placement box on the cover can be used to fixedly place the electrode plate of the defibrillator, which not only improves the storage capacity of the device, but also facilitates the quick use in cooperation with the external pacemaker and defibrillator. The external pacemaker and defibrillator are placed on the inner shell, which is convenient for timely use in case of emergency and provides guarantee for the patient's life safety. The cable cylinder shell can organize and store the cables, avoiding the cables being in a mess and affecting the normal use of the device.
[0026] Compared with the prior art, the beneficial effects of the present invention are as follows: The transesophageal cardiac ultrasound diagnostic and treatment instrument with pacing function of the present application integrates multiple functions, integrates functions such as ultrasonic diagnosis, respiratory treatment, cardiac pacing, and defibrillation on one device, reduces the floor area of the device, and improves the utilization efficiency of medical resources. And it is convenient for comprehensive departments such as emergency departments to use flexibly, especially when going out for treatment, it is more convenient to carry centrally. Each component of the device is reasonably designed and has good storage and deployment functions, which is convenient for quick adjustment and use in different usage scenarios. The setting of the disinfection box ensures the hygienic safety of the device and reduces the risk of cross-infection. Furthermore, it can provide a more convenient operation experience for medical staff and provide more comprehensive and efficient medical services for patients. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other related drawings can also be obtained based on these drawings.
[0028] Figure 1 is a schematic structural diagram of the overall structure in the embodiment of the present invention; Figure 2 is Figure 1 a perspective view of the device shown when the respiratory treatment component is not installed; Figure 3 is Figure 2 a perspective view of the device shown when the movable machine table is flipped out; Figure 4 is Figure 3 a front view of the device shown; Figure 5It is a three-dimensional view of the base, ultrasonic main chassis, bottom box and horizontal support frame in the embodiment of the present invention; Figure 6 It is Figure 5 The front view of the device shown; Figure 7 It is a three-dimensional view of the top cover, front extension plate, side extension plate and driving member in the embodiment of the present invention; Figure 8 It is Figure 7 The partial enlarged view of the device at position A shown; Figure 9 It is Figure 7 The bottom view of the device shown; Figure 10 It is a three-dimensional view of the top box in the embodiment of the present invention; Figure 11 It is Figure 10 The left view of the device shown; Figure 12 It is a three-dimensional view of the inner box group in the embodiment of the present invention; Figure 13 It is Figure 12 The front view of the device shown; Figure 14 It is an exploded structural schematic diagram of the movable machine table and the respiratory therapy component in the embodiment of the present invention; Figure 15 It is a three-dimensional view of the movable machine table in the embodiment of the present invention; Figure 16 It is a three-dimensional view of the respiratory therapy component in the embodiment of the present invention.
[0029] In the figure: 1. Base; 2. Ultrasonic main chassis; 21. Main chassis shell; 22. Top cover; 221. Guide slide bar; 222. Guide frame; 23. Front extension plate; 231. First threaded pipe; 24. Side extension plate; 241. Second threaded pipe; 25. Driving member; 251. Driving motor; 252. Central screw rod; 253. Double-headed screw rod; 254. Worm gear; 255. Worm; 3. Multifunctional outer box; 31. Bottom box; 310. Side groove; 311. Support plate platform; 312. Limit post; 313. Round head nail; 32. Horizontal support frame; 321. Bent bottom frame; 322. Auxiliary back plate; 323. Magnetic attraction block; 33. Top box; 331. Middle shell; 332. Side baffle; 333. Support cover bracket; 334. Locking block; 335. Pressing frame; 336. Inclined surface pressing block; 337. Matching inclined surface; 34. Disinfection box; 341. Shunt pipe; 4. Movable machine table; 41. Table board; 411. Positioning groove; 42. Slide plate; 421. Matching middle groove; 43. Bracket; 5. Respiratory therapy component; 51. Therapy main machine; 510. Micro compressor; 52. Suction sputum box; 520. Sputum collection shell; 53. Inspiratory cover group; 54. Atomization box; 541. Bottom shell; 542. Top shell; 55. Atomization component; 551. Coiled pipe group; 552. Atomization pipe shell; 553. Face mask; 554. Ultrasonic generator; 6. Inner box group; 61. Connecting middle plate; 62. Bent frame; 63. Inner shell; 631. Cable barrel shell; 64. Sealing cover; 641. Hook; 642. Placing box; 7. Heart therapy component; 71. External pacemaker; 72. Defibrillator. Detailed implementation mode
[0030] To make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the present invention claimed, but merely represents the selected embodiments of the present invention.
[0031] Embodiment 1 Refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown in the figure, an easy-to-use multifunctional transesophageal cardiac ultrasound diagnostic and treatment instrument includes a base 1. An ultrasound main box 2 is fixedly installed on the upper end surface of the base 1. An operation keyboard and a display device are arranged above the ultrasound main box 2. A multifunctional outer box 3 is fixedly installed on the outer side surface of the ultrasound main box 2. A movable machine table 4 that can be pulled, flipped and opened is installed on the side of the multifunctional outer box 3. A respiratory treatment component 5 is fixedly installed on the movable machine table 4. A retractable inner box group 6 is installed on the multifunctional outer box 3. An electric cylinder for driving the movement of the inner box group 6 is also installed in the multifunctional outer box 3. A cardiac treatment component 7 is placed in the inner box group 6. By fixedly installing the ultrasound main box 2 on the base 1 and providing corresponding moving wheels on the base 1, it is convenient to flexibly push the device and easy to use at different positions. The setting of the operation keyboard and the display device facilitates better operation and display of corresponding images during ultrasound diagnosis and treatment. Transesophageal cardiac ultrasound probes connected to the ultrasound main box 2 are arranged on both sides of the operation keyboard, which is convenient for taking off the diagnosis when the heart needs to be diagnosed and treated. The setting of the multifunctional outer box 3 facilitates the easy storage and quick use of the movable machine table 4 and the inner box group 6. In this way, when the respiratory treatment component 5 is installed on the movable machine table 4 and the cardiac treatment component 7 is placed in the inner box group 6, it can be quickly taken for use according to different needs. This diagnostic and treatment instrument integrates multiple functions and is convenient for use in comprehensive departments such as the emergency room.
[0032] Refer to Figure 4 、 Figure 5 and Figure 7 As shown in the figure, the ultrasound main box 2 includes a main box shell 21 and a top cover 22. Guide slide bars 221 slidably connected to the main box shell 21 are installed at the four corners of the lower end surface of the top cover 22. An electric cylinder for driving the lifting of the top cover 22 is also installed in the main box shell 21. A group of front extension plates 23 are installed on the lower end surface of the top cover 22. Two groups of side extension plates 24 are symmetrically arranged below the front extension plates 23. A guide frame 222 for slidably installing the front extension plates 23 and the side extension plates 24 is fixedly installed on the lower end surface of the top cover 22. A driving member 25 for driving the front extension plates 23 and the two groups of side extension plates 24 to move synchronously outward or inward is also installed on the lower end surface of the top cover 22. The top cover 22 of the ultrasound main box 2 can be driven to lift by the electric cylinder, which is convenient for automatically opening the top of the main box. When the top cover 22 on the main box is opened, the front extension plates 23 and the side extension plates 24 can move outward under the action of the driving member 25. In this way, a corresponding placement platform can be extended around the device, which is convenient for better placing items during treatment or diagnosis. When not in use, the front extension plates 23 and the side extension plates 24 can move inward under the action of the driving member 25, so as to realize the storage of the front extension plates 23 and the side extension plates 24 under the lower end surface of the top cover 22. At the same time, the extended length can also be adjusted according to actual use requirements, so as to make better use of the use space and improve the use flexibility of the device.
[0033] Refer to Figure 7, Figure 8 and Figure 9 As shown in Figure 8 and Figure 9 , the driving member 25 includes a driving motor 251, a central screw 252 for driving the front extension plate 23 to move, and a double-headed screw 253 for driving two groups of side extension plates 24 to move. The driving motor 251 is fixedly installed on the lower end surface of the top cover 22. One end of the central screw 252 is connected to the output end of the driving motor 251. A first threaded tube 231 that mates with the central screw 252 is fixedly installed on the lower end surface of the front extension plate 23. A worm gear 254 is sleeved and fixed in the middle of the double-headed screw 253. A worm 255 that mates with the worm gear 254 is sleeved and fixed on the central screw 252. A second threaded tube 241 that mates with the double-headed screw 253 is fixedly installed on the lower end surface of the side extension plate 24. The driving member 25 adopts a transmission method of a motor, screws, and a worm gear 254 and a worm 255, with high transmission accuracy and good stability, and can ensure the synchronous movement of the front extension plate 23 and the side extension plates 24. Among them, the driving motor 251 can be selected as a stepper motor, such as a 57-series stepper motor, which has the advantages of high control accuracy and large torque. The central screw 252 and the double-headed screw 253 can be made of stainless steel and are precision machined on the surface to ensure smooth transmission. The specific transmission process is that the driving motor 251 drives the central screw 252 to rotate. Then, the transmission between the central screw 252 and the double-headed screw 253 is achieved through a set of worm gear 254 and worm 255 matching structures. Thus, when the central screw 252 rotates, it can drive the double-headed screw 253 to rotate synchronously. The central screw 252 is connected to the front extension plate 23 through the first threaded tube 231, and the double-headed screw 253 is connected to the side extension plates 24 through the second threaded tube 241. In this way, when the central screw 252 and the double-headed screw 253 rotate synchronously, they can drive the front extension plate 23 and the side extension plates 24 to move outward and inward synchronously, and the moving distance can be achieved by using screws with different pitches, so as to achieve proportional telescopic adjustment of the front extension plate 23 and the side extension plates 24, ensuring safer and more convenient use.
[0034] Referring to Figure 4 , Figure 5 and Figure 6As shown, the multi-functional outer box 3 includes a bottom box 31, a horizontal support frame 32, and a top box 33. A side groove 310 for accommodating the respiratory therapy component 5 is formed on the side of the bottom box 31. Inside the bottom surface of the side groove 310, a support plate platform 311 and a limit post 312 for slidably mounting the movable machine table 4 are provided. Both the support plate platform 311 and the limit post 312 are fixedly connected to the bottom box 31. Moreover, a round head nail 313 for further limiting the movable machine table 4 is provided on the upper end surface of the support plate platform 311, and the round head nail 313 is fixedly connected to the support plate platform 311. The horizontal support frame 32 is installed on both sides of the main box shell 21, and one end of the horizontal support frame 32 is fixedly connected to the bottom box 31. The top box 33 is fixedly installed on the upper end surface of the bottom box 31. A side groove 310 is formed on the side of the bottom box 31 of the multi-functional outer box 3 for accommodating the respiratory therapy component 5, which can be flexibly accommodated when not in use, making the overall layout of the device more compact. The movable machine table 4 can be pulled out, flipped, and opened, facilitating the quick use of the respiratory therapy component 5 when needed and improving the timeliness of treatment. By fixedly installing the support plate platform 311 and the limit post 312 inside the bottom surface of the side groove 310, the movable machine table 4 is more stable after being installed in the side groove 310, facilitating the flexible pulling, flipping, and adjustment of the movable machine table 4. The round head nail 313 is provided to ensure better limiting when the movable machine table 4 is flipped, further increasing the safety of using the movable machine table 4. The horizontal support frame 32 includes a bent bottom frame 321 and an auxiliary back plate 322. The auxiliary back plate 322 is fixedly installed on the rear end surface of the bent bottom frame 321, and a magnetic block 323 for adsorbing the movable machine table 4 is fixedly embedded in the auxiliary back plate 322. A disinfection box 34 is also detachably installed on the top box 33. A spray pump is fixedly installed in the disinfection box 34, and a shunt pipe 341 for spraying disinfectant liquid on the bottom box 31 and the top box 33 is provided at the output end of the spray pump. By designing the horizontal support frame 32 into a structure where the bent bottom frame 321 and the auxiliary back plate 322 cooperate, it is ensured that the flipped-out movable machine table 4 can be supported by the bent bottom frame 321 during use, ensuring more stable use of the movable machine table 4. The magnetic block 323 on the horizontal support frame 32 can adsorb the movable machine table 4, ensuring that the movable machine table 4 can be stably attached to the auxiliary back plate 322 for use. The setting of the disinfection box 34 can disinfect the bottom box 31 and the top box 33 regularly, effectively preventing bacteria from breeding and ensuring the hygienic safety of the device. The spray pump can be a small diaphragm pump, such as the QBY series diaphragm pump, which has characteristics such as stable flow and corrosion resistance.
[0035] Refer to Figure 10 and Figure 11As shown, the top box 33 includes a middle shell 331 and side baffles 332. The middle shell 331 is fixedly installed on the upper end surface of the bottom box 31. The side baffles 332 are integrally formed on both sides of the middle shell 331, and the side baffles 332 are fitted and fixed on the outer side surface of the main box shell 21. A support cover holder 333 is slidably installed on the upper end surface of the middle shell 331. Two locking blocks 334 for locking the support cover holder 333 are arranged in the middle shell 331, and a support spring for supporting the locking blocks 334 is also fixedly installed in the middle shell 331. A press frame 335 that can slide up and down is arranged in the middle shell 331. Inclined surface pressing blocks 336 are fixedly installed at both ends of the press frame 335. A mating inclined surface 337 that cooperates with the inclined surface pressing block 336 is arranged on the locking block 334. By designing the top box 33 into a structure in which the middle shell 331 and the side baffles 332 cooperate, when actually in use, the inner box group 6 is stored through the middle shell 331, ensuring that the inner box group 6 can be flexibly stored in the middle shell 331 when the heart treatment component 7 is not in use. And through the side baffles 332 on both sides, the two sides of the inner box group 6 can be protected, and at the same time, it can be clamped on both sides of the main box shell 21, ensuring that the connection between the top box 33 and the main box shell 21 is more stable, ensuring that the top box 33, the bottom box 31 and the main box shell 21 form an interconnected overall structure, which is easy to place different components in each part for use. A support cover holder 333 is slidably installed on the upper end surface of the middle shell 331, providing stable support through the support cover holder 333, and the height of the support cover holder 333 can be adjusted to meet different support needs. Through the setting of the locking blocks 334 and the support spring, it is ensured that the support cover holder 333 can be fixed by the locking blocks when not subject to external forces. And when the height of the support cover holder 333 needs to be adjusted, the press frame 335 is pressed down to drive the inclined surface pressing blocks 336 at both ends to cooperate with the inclined surfaces on the locking blocks 334, realizing pushing the locking blocks 334 away from the support cover holder 333, and then unlocking the support cover holder 333, which is very convenient to use.
[0036] Refer to Figure 14 and Figure 15As shown, the movable platform 4 includes a table top 41, a slide plate 42 and a bracket 43 for installing the respiratory therapy component 5. The table top 41 is installed on the upper end surface of the support plate 311, and one side of the table top 41 is set as an arc surface. A positioning groove 411 that cooperates with the round cap nail 313 is opened on the table top 41. The slide plate 42 is fixedly installed on the lower end surface of the table top 41, and the lower end surface of the slide plate 42 is opened with a matching middle groove 421 that cooperates with the limiting column 312. The support plate 311 of the embodiment of the present invention is a kind of plate 41 of the invention, and the ... present invention is a kind of plate 41 of the invention, and the support plate 311 of the present invention is a kind of plate 41 of the invention, and the support plate 311 of the present invention is a kind of plate 41 of the present invention, and the support plate 311 of the present invention is a kind of plate 41 of the present invention, and the support plate 311 of
[0037] Reference Figure 12 and Figure 13As shown in the figure, the inner box group 6 includes a connecting middle plate 61, a bending frame 62, and an inner shell 63 for placing the heart treatment component 7. There are two groups of bending frames 62, and the two groups of bending frames 62 are fixedly installed on both sides of the connecting middle plate 61. The inner shell 63 is fixedly installed between the two groups of bending frames 62, and a flip-open cover 64 is also installed between the two groups of bending frames 62. A number of hooks 641 and placement boxes 642 are fixedly installed on the inner side surface of the cover 64. The heart treatment component 7 includes an external pacemaker 71 and a defibrillator 72. Both the external pacemaker 71 and the defibrillator 72 are placed on the inner shell 63, and a cable cylinder shell 631 is also fixedly installed in the inner shell 63. The inner box group 6 can be driven and moved by an electric cylinder, which is convenient for quickly taking out the heart treatment component 7 when needed. Moreover, the diagonal ejection method can ensure that the operator can better take and observe. When the cover 64 is flipped up, it can be flexibly supported by the support cover bracket 333, and by adjusting the support height of the support cover bracket 333, it is convenient for the cover 64 to be used at a suitable angle. The hooks 641 on the cover 64 are convenient for hanging when using the external pacemaker 71, and the placement box 642 on the cover 64 can be used to fixedly place the electrode plate of the defibrillator 72, which not only improves the storage capacity of the device but also facilitates the quick use in cooperation with the external pacemaker 71 and the defibrillator 72. The external pacemaker 71 and the defibrillator 72 are placed on the inner shell 63, which is convenient for timely use in case of emergency and provides guarantee for the patient's life safety. The cable cylinder shell 631 can organize and store the cables to avoid the cables being in a mess and affecting the normal use of the device.
[0038] Embodiment 2 Refer to Figure 14 and Figure 16 As shown in the figure, the respiratory treatment component 5 includes a treatment main unit 51. A micro-compressor 510 is arranged in the treatment main unit 51, and a sputum suction box 52 is vertically installed on the upper end surface of the treatment main unit 51. A sputum collection shell 520 is detachably installed in the sputum suction box 52 which is vertically installed on the upper end surface. An air suction cover group 53 connected to the air suction port of the micro-compressor 510 is installed on the top of the sputum suction box 52. A fogging box 54 is also fixedly installed on the side surface of the treatment main unit 51, and a fogging component 55 connected to the exhaust port of the micro-compressor 510 is installed in the fogging box 54. The respiratory treatment component 5 integrates the functions of sputum suction and fogging, and can meet different respiratory treatment needs of patients. The micro-compressor 510 provides power for sputum suction and fogging. An oil-free piston compressor can be selected, such as the ZW series oil-free piston compressor, which has the advantages of low noise and long service life. The sputum collection shell 520 in the sputum suction box 52 is detachable, which is convenient for cleaning and replacement. The ultrasonic generator 554 in the fogging component 55 can atomize the liquid medicine into tiny particles, improving the absorption effect of the medicine.
[0039] Refer to Figure 14 and Figure 16As shown in the figure, the atomization box 54 includes a bottom shell 541 and a top shell 542 that can be flipped open. The bottom shell 541 is fixedly installed on one side of the treatment main unit 51, and the top shell 542 is installed above the bottom shell 541. The atomization assembly 55 includes a coiled tube group 551, an atomization tube shell 552, and a face mask 553. The lower end of the coiled tube group 551 is connected to the exhaust port of the micro-compressor 510. The atomization tube shell 552 is installed at the head of the coiled tube group 551, and an ultrasonic generator 554 is fixedly installed in the atomization tube shell 552. The face mask 553 is detachably installed at the outlet of the atomization tube shell 552. By designing the atomization box 54 into a structure where the bottom shell 541 and the top shell 542 cooperate, it is ensured that during use, the coiled tube group 551 can be received and installed through the bottom shell 541, and the atomization tube shell 552 and the face mask 553 can be protected by the top shell 542. At the same time, it is convenient to directly flip open the top shell 542 during use to take out the atomization assembly 55. By designing the atomization assembly 55 into a structure where the coiled tube group 551, the atomization tube shell 552, and the face mask 553 cooperate, it is ensured that during use, the coiled tube group 551 can be connected to the micro-compressor 510. During actual use, the atomization agent is placed in the atomization tube shell 552, and then atomized into small particles by the ultrasonic generator 554 and blown out into the face mask 553 by the micro-compressor 510, facilitating the user to directly breathe and use through the face mask 553.
[0040] Working principle: When maintenance or repair is required inside the ultrasonic main box 2, start the electric cylinder in the main box shell 21 to drive the top cover 22 to slide upward through the guide slide rod 221 to open the main box. If appropriate placement space is needed, start the drive motor 251. The drive motor 251 drives the central screw rod 252 to rotate. The central screw rod 252 drives the front extension plate 23 to move through the first threaded tube 231. At the same time, the worm 255 on the central screw rod 252 drives the worm gear 254 to rotate, and then the double-headed screw rod 253 rotates. The double-headed screw rod 253 drives the two side extension plates 24 to move synchronously through the second threaded tube 241 to achieve the adjustment of the operation space.
[0041] When the respiratory therapy component 5 is needed, the movable platform 4 is pulled out from the side groove 310 of the bottom box 31 and flipped open. The slide plate 42 of the movable platform 4 slides on the support plate 311 and the limit column 312, and the round cap nail 313 is embedded in the positioning groove 411 of the plate 41 to ensure the stability of the movable platform 4. After flipping open, the magnetic block 323 absorbs the movable platform 4 to fix it, and then the respiratory therapy component 5 can be operated. When performing the sputum suction operation, the micro compressor 510 in the treatment host 51 is started, and the sputum is sucked into the sputum collecting shell 520 of the sputum suction box 52 through the suction cover group 53. When the sputum collecting shell 520 needs to be cleaned, it is taken out of the sputum suction box 52 for cleaning or replacement. During atomization treatment, the liquid medicine is placed in the bottom shell 541 of the atomization box 54, the ultrasonic generator 554 is started, and the micro compressor 510 delivers gas to the atomization tube shell 552 through the spiral tube group 551. The liquid medicine is atomized into tiny particles under the action of the ultrasonic generator 554 and is inhaled by the patient through the mask 553. After use, the movable machine 4 is pushed back to the side groove 310, and the spray pump in the disinfection box 34 is started regularly to spray disinfectant to the bottom box 31 and the top box 33 through the shunt pipe 341 for disinfection.
[0042] When the cardiac treatment assembly 7 is needed, the electric cylinder in the multifunctional outer box 3 is started to drive the inner box group 6 to move to a suitable position, the cover 64 is opened, and the external pacemaker 71 and the defibrillator 72 are taken out for use. When the pacemaker is used, it can be hung on the hook 641 of the cover 64, and then the pacemaker wiring is connected to the wiring pre-buried in the heart to achieve auxiliary pacing of the heart, and the defibrillator 72 is a device used in emergency treatment. After the defibrillator 72 is adjusted, the electrode plate in the placement box 642 can be taken out and emergency treatment can be performed. After use, the device is put back into the inner shell 63, the cover 64 is closed, and the inner box group 6 is stored back into the multifunctional outer box 3 under the drive of the electric cylinder.
[0043] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A multi-functional transesophageal echocardiography diagnostic and treatment instrument that is easy to use, comprising a base (1), characterized in that: The upper end surface of the base (1) is fixedly installed with an ultrasonic main box (2). An operation keyboard and a display device are arranged above the ultrasonic main box (2). A multifunctional outer box (3) is fixedly installed on the outer side surface of the ultrasonic main box (2). A movable machine table (4) that can be pulled, flipped, and opened is installed on the side of the multifunctional outer box (3). A respiratory therapy component (5) is fixedly installed on the movable machine table (4). A retractable inner box group (6) is installed on the multifunctional outer box (3), and an electric cylinder for driving the movement of the inner box group (6) is also installed in the multifunctional outer box (3). A cardiac therapy component (7) is placed in the inner box group (6).
2. The multifunctional transesophageal cardiac ultrasound diagnostic and therapeutic instrument according to claim 1, wherein The ultrasonic main box (2) includes a main box shell (21) and a top cover (22). Guide slide rods (221) that are slidably connected to the main box shell (21) are installed at the four corners of the lower end surface of the top cover (22). An electric cylinder for driving the lifting of the top cover (22) is also installed in the main box shell (21). A group of front extension plates (23) are installed on the lower end surface of the top cover (22). Two groups of side extension plates (24) are symmetrically arranged below the front extension plates (23). A guide frame (222) for slidably installing the front extension plates (23) and the side extension plates (24) is fixedly installed on the lower end surface of the top cover (22). A driving member (25) for driving the front extension plates (23) and the two groups of side extension plates (24) to move synchronously outward or inward is also installed on the lower end surface of the top cover (22).
3. The multifunctional transesophageal cardiac ultrasound diagnostic and therapeutic instrument that is easy to use according to claim 2, characterized in that, The driving member (25) includes a driving motor (251), a central screw rod (252) for driving the movement of the front extension plate (23), and a double-headed screw rod (253) for driving the movement of the two groups of side extension plates (24). The driving motor (251) is fixedly installed on the lower end surface of the top cover (22). One end of the central screw rod (252) is connected to the output end of the driving motor (251). A first threaded tube (231) that cooperates with the central screw rod (252) is fixedly installed on the lower end surface of the front extension plate (23). A worm gear (254) is sleeved and fixed in the middle of the double-headed screw rod (253). A worm (255) that cooperates with the worm gear (254) is sleeved and fixed on the central screw rod (252). A second threaded tube (241) that cooperates with the double-headed screw rod (253) is fixedly installed on the lower end surface of the side extension plate (24).
4. A multifunctional transesophageal echocardiography diagnostic and therapeutic instrument that is easy to use according to claim 2, characterized in that, The multifunctional outer box (3) includes a bottom box (31), a horizontal support frame (32), and a top box (33). A side groove (310) for accommodating the respiratory therapy component (5) is provided on the side of the bottom box (31). On the inner side of the bottom surface of the side groove (310), a support plate platform (311) and a limit post (312) for slidably mounting the movable machine table (4) are provided. The support plate platform (311) and the limit post (312) are both fixedly connected to the bottom box (31). Moreover, a round head nail (313) for further limiting the movable machine table (4) is provided on the upper end surface of the support plate platform (311). The round head nail (313) is fixedly connected to the support plate platform (311). The horizontal support frame (32) is installed on both sides of the main box shell (21), and one end of the horizontal support frame (32) is fixedly connected to the bottom box (31). The top box (33) is fixedly installed on the upper end surface of the bottom box (31).
5. A multifunctional transesophageal echocardiography diagnostic and therapeutic instrument that is easy to use according to claim 4, characterized in that, The horizontal support frame (32) includes a bent bottom frame (321) and an auxiliary back plate (322). The auxiliary back plate (322) is fixedly installed on the rear end surface of the bent bottom frame (321). Moreover, a magnetic block (323) for adsorbing the movable machine table (4) is fixedly embedded in the auxiliary back plate (322). A disinfection box (34) is also detachably installed on the top box (33). A spray pump is fixedly installed in the disinfection box (34). A shunt pipe (341) for spraying disinfectant liquid on the bottom box (31) and the top box (33) is provided at the output end of the spray pump.
6. The multifunctional transesophageal cardiac ultrasound diagnostic and therapeutic instrument according to claim 5, wherein The top box (33) includes a middle shell (331) and side baffles (332). The middle shell (331) is fixedly installed on the upper end surface of the bottom box (31). The side baffles (332) are integrally formed on both sides of the middle shell (331), and the side baffles (332) are fitted and fixed on the outer side surface of the main box shell (21). A support cover bracket (333) is slidably installed on the upper end surface of the middle shell (331). Two locking blocks (334) for locking the support cover bracket (333) are provided in the middle shell (331). Moreover, a support spring for supporting the locking blocks (334) is fixedly installed in the middle shell (331). A pressing frame (335) that can slide up and down is provided in the middle shell (331). Inclined surface pressing blocks (336) are fixedly installed at both ends of the pressing frame (335). A matching inclined surface (337) that cooperates with the inclined surface pressing block (336) is provided on the locking block (334).
7. An easy-to-use multifunctional transesophageal cardiac ultrasound diagnostic and therapeutic instrument according to claim 6, characterized in that, The movable machine table (4) includes a table board (41), a sliding board (42), and a bracket (43) for installing the respiratory therapy component (5). The table board (41) is installed on the upper end surface of the support plate platform (311), and one side of the table board (41) is an arc surface. A positioning groove (411) that cooperates with the round head nail (313) is provided on the table board (41). The sliding board (42) is fixedly installed on the lower end surface of the table board (41), and a matching middle groove (421) that cooperates with the limit post (312) is provided on the lower end surface of the sliding board (42).
8. A multifunctional transesophageal echocardiography diagnostic and therapeutic instrument that is easy to use according to any one of claims 2-7, characterized in that The described respiratory therapy component (5) includes a therapy main unit (51). A micro-compressor (510) is provided in the therapy main unit (51). A sputum suction box (52) is vertically installed on the upper end surface of the therapy main unit (51). A sputum collection shell (520) is detachably installed in the vertically installed sputum suction box (52) on the upper end surface. An air suction cover group (53) connected to the air suction port of the micro-compressor (510) is installed on the top of the sputum suction box (52). A atomization box (54) is also fixedly installed on the side of the therapy main unit (51). An atomization component (55) connected to the exhaust port of the micro-compressor (510) is installed in the atomization box (54).
9. A multifunctional transesophageal echocardiography diagnostic and therapeutic instrument that is easy to use according to claim 8, characterized in that, The atomization box (54) includes a bottom shell (541) and a top shell (542) that can be flipped open. The bottom shell (541) is fixedly installed on one side of the therapy main unit (51). The top shell (542) is installed above the bottom shell (541). The atomization component (55) includes a coiled tube group (551), an atomization tube shell (552), and a face mask (553). The lower end of the coiled tube group (551) is connected to the exhaust port of the micro-compressor (510). The atomization tube shell (552) is installed at the head of the coiled tube group (551). An ultrasonic generator (554) is fixedly installed in the atomization tube shell (552). The face mask (553) is detachably installed at the outlet of the atomization tube shell (552).
10. A multifunctional transesophageal cardiac ultrasound diagnostic and therapeutic instrument that is easy to use according to claim 9, characterized in that, The inner box group (6) includes a connecting middle plate (61), a bending frame (62), and an inner shell (63) for placing the heart therapy component (7). There are two groups of bending frames (62), and the two groups of bending frames (62) are fixedly installed on both sides of the connecting middle plate (61). The inner shell (63) is fixedly installed between the two groups of bending frames (62). A cover (64) that can be flipped open is also installed between the two groups of bending frames (62). A number of hooks (641) and a placement box (642) are fixedly installed on the inner side surface of the cover (64). The heart therapy component (7) includes an external pacemaker (71) and a defibrillator (72). The external pacemaker (71) and the defibrillator (72) are both placed on the inner shell (63). A cable drum shell (631) is also fixedly installed in the inner shell (63).