Microorganism detection operation table and method thereof

By integrating detection sensors, spraying components, control components and adsorption components on the microbial detection operation table, the problems of low microbial detection efficiency and difficulty in pollution control in the prior art are solved, and efficient pollution treatment and rapid recovery of contaminated areas are achieved.

CN120168683AInactive Publication Date: 2025-06-20WUXI CENT FOR DISEASE CONTROL & PREVENTION
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202510277326.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing microbial detection operating tables are inefficient when dealing with different microbial detections, and there are problems of pollution spread and control difficulties.

Method used

A microbial detection operating table is designed, equipped with detection sensors, controllers, spraying components, control components and adsorption components. The spraying assembly is used to spray disinfection and cleaning liquid for preliminary disinfection and dilution. The control assembly limits the contaminated area through the baffle, and the adsorption assembly quickly adsorbs pollutants and disinfection and cleaning liquid through the adsorption plate.

Benefits of technology

It improves the pollution treatment efficiency of the microbial detection operation table, reduces the risk of pollution spread, and ensures rapid recovery of contaminated areas and smooth microbial detection.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120168683A_ABST
    Figure CN120168683A_ABST
Patent Text Reader

Abstract

The invention relates to the field of microbiological detection, and discloses a microbiological detection operation table and a method thereof.The microbiological detection operation table comprises an operation table body, a detection sensor and a controller, a detection device is arranged on the operation table body, and a detection probe is arranged on the detection device; a pollution treatment mechanism is further arranged on the operation table, and the pollution treatment mechanism is used for treating the pollution situation on the operation table; wherein the pollution treatment mechanism comprises a spraying assembly, and the spraying assembly is arranged above the operation table; the spraying assembly comprises a truss, one end of the truss is fixedly arranged on one side of the operation table, the other end of the truss is movably connected with a cantilever, the cantilever is in transmission connection with a first motor, the first motor is installed on the truss, and a plurality of evenly-distributed spraying heads are further arranged on the cantilever. The spray head is connected with a liquid storage tank through a connecting pipe, and a water pump used for pumping out liquid is arranged in the liquid storage tank.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of microbial detection, and particularly to a microbial detection operation table and a method thereof. Background Art

[0002] A microbial detection operation table is a special device used for conducting microbial experiments and detections, mainly for aseptic operations to prevent sample contamination and operator infection.

[0003] In the prior art, the Chinese patent with the application number 202320865043.0 discloses a microbial detection device. This technical solution has significant advantages in preventing contamination and maintaining temperature, but there are still some deficiencies in actual use.

[0004] First of all, the involvement of staff is eliminated, which reduces the probability of contamination during the detection process. However, when it is necessary to frequently replace samples for the detection of different microorganisms, the above technical solution has obvious efficiency problems. In actual situations, when the staff operates freely on the operation table throughout the process, there is a situation where pathogenic bacteria spill out due to accidentally breaking the vessels containing the cultures, contaminating the operation table, the clothes, and the body of the operator. Once not handled properly, the contaminated area will expand. Among them, small - area contamination can be handled by oneself, and when the area is large, assistance is needed. Summary of the Invention

[0005] The purpose of the present invention is to provide a microbial detection operation table and a method thereof to solve at least one of the above - mentioned technical problems.

[0006] The purpose of the present invention can be achieved through the following technical solutions:

[0007] A microbial detection operation table includes: an operation table, a detection sensor, and a controller. A detection device is arranged on the operation table, and a detection probe is arranged on the detection device.

[0008] A pollution treatment mechanism is also arranged on the operation table, and the pollution treatment mechanism is used to handle the pollution situation occurring on the operation table.

[0009] Among them, the pollution treatment mechanism includes: a spraying assembly, and the spraying assembly is arranged above the operation table.

[0010] The spraying assembly includes:

[0011] Truss, one end of the truss is fixedly arranged on one side of the operating table, and the other end is movably connected with a cantilever. The cantilever is in transmission connection with a first motor. The first motor is installed on the truss. A plurality of evenly distributed nozzles are further arranged on the cantilever. The nozzles are connected to a liquid storage tank through connecting pipes. A water pump for pumping out liquid is arranged in the liquid storage tank, and a disinfection and cleaning liquid is filled in the liquid storage tank. When pollution appears on the operating table, the controller turns on the nozzles to evenly spray the disinfection and cleaning liquid in the liquid storage tank on the polluted area to disinfect and dilute the pollutants.

[0012] Furthermore, a control component is also arranged on the operating table. The control component is used to limit the polluted area. The control component includes:

[0013] Baffles. The baffles are arranged in a telescopic structure. There are multiple baffles, and the area enclosed by the multiple baffles is larger than the polluted area. An automatic telescopic rod is fixedly arranged at the top of each baffle. A plurality of electric slide rails are arranged around the frame. The other ends of the automatic telescopic rods are respectively installed in the corresponding electric slide rails.

[0014] By the reciprocating movement of the automatic telescopic rods and the corresponding baffles, the size of the area enclosed by the multiple baffles is changed.

[0015] Furthermore, an adsorption component is arranged on the other side of the operating table. The adsorption component includes a frame, a plurality of adsorption plates and a base bin. The adsorption plates are used to adsorb the sprayed disinfection and cleaning liquid and pollutants. The frame is fixed on the operating table through a bracket. The frame is arranged horizontally. There are two base bins, which are symmetrically distributed on the frame through a rotating shaft. The base bins are in a vertical state in the initial state. When adsorption operation is required, the two base bins are rotated into a horizontal state under the drive of a driving component. A plurality of receiving grooves are arranged in an array in the base bin. The receiving grooves correspond to the adsorption plates one by one. The adsorption plates and the receiving grooves are connected through electric telescopic columns, and the adsorption plates are fixedly connected to the telescopic ends of the electric telescopic columns but are detachable.

[0016] Furthermore, the driving component includes a gear set. The gear set includes two meshing gears. Both of the two gears are rotatably installed on the outer side of the frame. One of the gears is in transmission connection with a second motor. The second motor is also installed on the outer side of the frame. A first belt pulley is sleeved and fixed on the gear shafts of both of the two gears. The rotating shafts of the base bins penetrate through the frame and then are sleeved and fixed with second belt pulleys. The first belt pulley and the second belt pulley are in belt transmission.

[0017] Further, the baffle includes a middle gear and two movable plates. An activity groove is penetratingly provided at the bottom of the middle gear. One end of the movable plate is slidably connected in the activity groove, and a double-headed telescopic rod is connected between the two movable plates. The double-headed telescopic rod is installed in the activity groove, and the plurality of electric slide rails are arranged in a cross shape.

[0018] Further, the pollution treatment mechanism further includes: an air purification unit, which is installed above the operation table through a vertical frame. The air purification unit includes a filter and an ultraviolet disinfection lamp. The filter is used to filter the air above the operation table, and the ultraviolet disinfection lamp is used to sterilize the air.

[0019] Further, the pollution treatment mechanism further includes:

[0020] A drying component, which is composed of a plurality of hot air outlets, and is arranged above or on the side of the operation table; when the pollution treatment is completed, the drying component is turned on to dry the surface of the operation table by blowing hot air.

[0021] Further, the pollution treatment mechanism further includes a linkage module, and the linkage module includes:

[0022] A distance sensor is installed at the top of each automatic telescopic rod. The distance sensor is used to detect the distance from the top of the automatic telescopic rod to the edge of the corresponding electric slide rail. A pressure sensor is arranged at the bottom of the baffle, and a magnetic strip is arranged on the side of the baffle. A magnet ring is fixedly arranged on the outer periphery of the top end of the adsorption plate. The magnetic strip and the magnet ring are magnetically attracted to each other. The distance sensor, the pressure sensor and the controller are electrically connected;

[0023] When the distance value detected by each distance sensor changes and then remains fixed again, at this time the distance sensor sends the detection data to the controller, and the controller controls the operation of the first motor to drive the cantilever to rotate to realize the preparation work of the spraying component. When the bottom of the baffle contacts the operation table, the pressure sensor is pressed and sent to the controller. At this time, the controller controls the spraying component to work and spray.

[0024] Further, the adsorption plate is divided into upper and lower parts, and the upper and lower parts are connected by a soft connecting piece. The soft connecting piece includes a connecting airbag. A rectangular through groove is opened at the top of the lower adsorption plate. The bottom of the connecting airbag penetrates through the rectangular through groove and is fixedly connected to the bottom of the lower adsorption plate. The top end of the connecting airbag is fixedly connected to the bottom of the upper adsorption plate. A plurality of elastic bands are circumferentially and fixedly arranged on the outer ring of the connecting airbag, and the other ends of the elastic bands are fixed around the rectangular through groove.

[0025] A using method of a microbial detection operation table, and the method includes the following steps:

[0026] S1. Place the microbial sample to be detected on the operating table and use the detection probe for detection. Pay attention to the operation specifications during the detection to prevent sample contamination;

[0027] S2. When the detection sensor detects contamination, activate the spraying component to spray the disinfection and cleaning liquid on the contaminated area for preliminary disinfection and dilution; the adsorption plate of the adsorption device adsorbs the disinfection and cleaning liquid and contaminants, and replace it in time after saturation; the collection tank collects the dripping liquid and residual contaminants and discharges them through the sewage pipe; at the same time, the air purification unit starts to filter the air, and the ultraviolet disinfection lamp disinfects, and it can also be turned on regularly for daily purification;

[0028] S3. After the contamination treatment is completed, activate the drying component to dry the surface of the operating table, and check the surface of the operating table and each component of the contamination treatment mechanism again after drying.

[0029] Advantages of the present invention:

[0030] (1) By setting the control component in the present invention, once the detection sensor detects contamination, and then determines the area where the contamination occurs through the monitoring camera, the control component runs. First, the electric slide rail drives the corresponding automatic telescopic rod to displace, so that the area enclosed by the baffles below the automatic telescopic rod is larger than the contaminated area, and then the automatic telescopic rod extends to push the baffle into contact with the surface of the operating table. The area enclosed by the four baffles just includes the contaminated area. On the one hand, it can reduce the wanton flow of pollutants before treatment, resulting in the expansion of the contaminated area; on the other hand, it can reduce the situation that the excess solution after spraying the disinfection and cleaning liquid flows on the operating table, resulting in the weakening of the control effect of the contaminated area;

[0031] (2) In order to quickly remove the sprayed and diluted disinfection and cleaning liquid in the present invention, an adsorption component is added. The adsorption component adsorbs the contaminated area after being diluted by the disinfection and cleaning liquid to achieve a rapid recovery of the contaminated area, thereby reducing the time consumption of microorganisms caused by this accidental contamination. Specifically, after determining the contaminated area, use the electric telescopic column to push the adsorption plate out of the base bin until it contacts the contaminated area, and adsorb the pollutants through the adsorption plate. Then, adaptively adjust the state of the base bin through the driving part. When the spraying component is working and the adsorption component is not working, the base bin is in a vertical state to avoid hindering spraying and normal operations. After the spraying component works, it changes from vertical to horizontal and then performs the action of adsorbing pollutants, ultimately achieving multiple benefits and the purpose of free switching. Description of the drawings

[0032] The present invention will be further described below with reference to the drawings.

[0033] Figure 1 is the overall three-dimensional schematic diagram of the present invention;

[0034] Figure 2 is Figure 1 A three-dimensional schematic diagram from another angle;

[0035] Figure 3 is Figure 2 A three-dimensional schematic diagram of the driving part in

[0036] Figure 4 A three-dimensional schematic diagram of the control component in the present invention;

[0037] Figure 5 A structural schematic diagram of the adsorption plate in the present invention;

[0038] Figure 6 A method step diagram of the present invention.

[0039] Description of the drawings: 1. Operating table; 2. Magnetic strip; 3. Magnet ring; 4. Pollution treatment mechanism; 41. Spraying assembly; 411. Truss; 412. Cantilever; 413. First motor; 414. Nozzle; 415. Liquid storage tank; 42. Control component; 421. Baffle; 4211. Medium gear; 4212. Movable plate; 4213. Double-headed telescopic rod; 422. Automatic telescopic rod; 423. Electric slide rail; 43. Adsorption assembly; 431. Frame; 432. Adsorption plate; 433. Base bin; 434. Electric telescopic column; 435. Gear set; 436. First pulley; 437. Second pulley; 438. Second motor; 44. Air purification unit; 45. Drying assembly; 46. Distance sensor; 47. Pressure sensor; 5. Connecting airbag; 6. Rectangular through groove; 7. Elastic band. Detailed implementation manners

[0040] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a 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.

[0041] Please refer to Figures 1-6 As shown, the present invention is a microbial detection operating table, including: an operating table 1, a detection sensor and a controller. A detection device is provided on the operating table 1, and a detection probe is provided on the detection device;

[0042] A pollution treatment mechanism 4 is further provided on the operating table 1, and the pollution treatment mechanism 4 is used to handle the pollution situation occurring on the operating table 1;

[0043] Among them, the pollution treatment mechanism 4 includes: a spraying assembly 41, and the spraying assembly 41 is arranged above the operation table 1;

[0044] The spraying assembly 41 includes:

[0045] A truss 411, one end of the truss 411 is fixedly arranged on one side of the operation table 1, the other end is movably connected with a cantilever 412, the cantilever 412 is in transmission connection with a first motor 413, the first motor 413 is installed on the truss 411, and a plurality of uniformly distributed nozzles 414 are further arranged on the cantilever 412. The nozzles 414 are connected to a liquid storage tank 415 through a connecting pipe. A water pump for pumping out liquid is arranged in the liquid storage tank 415, and a disinfection and cleaning liquid is filled in the liquid storage tank 415; when pollution appears on the operation table 1, the controller turns on the nozzles 414, and evenly sprays the disinfection and cleaning liquid in the liquid storage tank 415 on the polluted area to disinfect and dilute the pollutants.

[0046] In the present invention, by arranging the spraying assembly 41 on the operation table 1, the pollution caused by the accidental breakage or overflow of the culture dish can be timely processed. The processing process is that the pneumatic water pump pressurizes and pumps out the disinfection and cleaning liquid in the liquid storage tank 415. After confirming the polluted area on the operation table 1 through the monitoring camera pre-installed on the operation table 1, the corresponding multiple nozzles 414 in the polluted area are opened, and the remaining nozzles 414 are in a normally closed state under the action of the control valve. A control valve is correspondingly arranged at each nozzle 414, and the control valve is electrically connected to the controller. Subsequently, the pumped disinfection and cleaning liquid is evenly sprayed from the nozzles 414 on the polluted area to realize the timely and rapid disinfection of the polluted area and achieve the purpose of reducing the spread of pollution.

[0047] Furthermore, a control assembly 42 is further arranged on the operation table 1, and the control assembly 42 is used to limit the polluted area; the control assembly 42 includes:

[0048] A baffle 421, the baffle 421 is arranged in a telescopic structure, there are a plurality of baffles 421, and the area surrounded by the plurality of baffles 421 is larger than the polluted area. An automatic telescopic rod 422 is fixedly arranged at the top of each baffle 421, and a plurality of electric slide rails 423 are arranged around the frame 431. The other ends of the automatic telescopic rods 422 are respectively installed in the corresponding electric slide rails 423;

[0049] By the reciprocating movement of the automatic telescopic rod 422 and the corresponding baffle 421, the size of the area surrounded by the plurality of baffles 421 is changed. It should be noted that: both the automatic telescopic rod 422 and the double-headed telescopic rod 4213 adopt one of hydraulic, pneumatic or electric.

[0050] In the present invention, in order to reduce the spread of pollution caused by the flowing of the disinfection and cleaning liquid everywhere after spraying, and also to reduce the expansion of the polluted area caused by the random flowing of pollutants before spraying the disinfection and cleaning liquid, a control component 42 is provided. Once the detection sensor detects pollution and the monitoring camera determines the area where the pollution occurs, the control component 42 operates. First, the electric slide rail 423 drives the corresponding automatic telescopic rod 422 to displace, so that the area surrounded by the baffle 421 below the automatic telescopic rod 422 is larger than the polluted area, and then the automatic telescopic rod 422 extends to push the baffle 421 into contact with the surface of the operating table 1. The area surrounded by the four baffles 421 just includes the polluted area. On the one hand, it can reduce the random flowing of pollutants before treatment, resulting in the expansion of the polluted area; on the other hand, it can reduce the situation that the excess solution after spraying the disinfection and cleaning liquid flows on the operating table 1, resulting in the weakening of the control effect of the polluted area.

[0051] Further, an adsorption component 43 is provided on the other side of the operating table 1. The adsorption component 43 includes a frame 431, a plurality of adsorption plates 432 and a base bin 433. The adsorption plates 432 are used to adsorb the disinfection and cleaning liquid and pollutants after spraying. The frame 431 is fixed on the operating table 1 through a bracket. The frame 431 is arranged horizontally. There are two base bins 433, which are symmetrically distributed on the frame 431 through a rotating shaft. The base bins 433 are in a vertical state in the initial state. When adsorption operation is required, the two base bins 433 are rotated into a horizontal state under the drive of a driving member. A plurality of receiving grooves are arranged in an array in the base bin 433. The receiving grooves correspond to the adsorption plates 432 one by one. The adsorption plates 432 and the receiving grooves are connected by electric telescopic columns 434, and the adsorption plates 432 are fixedly connected to the telescopic ends of the electric telescopic columns 434 but are detachable.

[0052] In the present invention, in order to quickly remove the sprayed and diluted disinfection and cleaning liquid, an adsorption component 43 is additionally provided. The adsorption component 43 performs an adsorption action on the polluted area diluted by the disinfection and cleaning liquid to quickly restore the polluted area, thereby reducing the microbial time consumption caused by this accidental pollution situation. Specifically, after determining the polluted area, the electric telescopic column 434 is used to push the adsorption plate 432 out of the base bin 433 until it contacts the polluted area position, and the pollutants are adsorbed by the adsorption plate 432. Then, the state of the base bin 433 is adaptively adjusted by the driving member. When the spraying component 41 is working and the adsorption component 43 is in a non-working state, the base bin 433 is in a vertical state, so as to avoid hindering spraying and normal operations. After the spraying component 41 works, it changes from vertical to horizontal and then performs the action of adsorbing pollutants, ultimately achieving multiple benefits and the purpose of free switching.

[0053] Further, the driving member includes a gear set 435. The gear set 435 includes two meshing gears. Both of the two gears are rotatably mounted on the outer side of the frame 431. One of the gears is in transmission connection with a second motor 438, and the second motor 438 is also mounted on the outer side of the frame 431. One-way belt pulleys 436 are sleeved and fixed on the gear shafts of both of the two gears. The rotating shafts of the base bins 433 penetrate through the frame 431 and then one-way belt pulleys 437 are sleeved and fixed thereon. A belt drive is provided between the one-way belt pulley 436 and the one-way belt pulley 437. The specific structure of the driving member is provided to achieve the purpose of synchronously converting the two base bins 433 between horizontal and vertical states.

[0054] Further, the baffle 421 includes a middle file 4211 and two movable plates 4212. An activity slot is formed through the bottom of the middle file 4211. One end of the movable plate 4212 is slidably connected in the activity slot, and a double-headed telescopic rod 4213 is connected between the two movable plates 4212. The double-headed telescopic rod 4213 is installed in the activity slot, and a plurality of the electric slide rails 423 are arranged in a cross shape.

[0055] Further, the pollution treatment mechanism 4 further includes: an air purification unit 44. The air purification unit 44 is installed above the operating table 1 through a vertical frame. The air purification unit 44 includes a filter and an ultraviolet disinfection lamp. The filter is used for filtering the air above the operating table 1, and the ultraviolet disinfection lamp is used for sterilizing and disinfecting the air.

[0056] Further, the pollution treatment mechanism 4 further includes:

[0057] A drying assembly 45. The drying assembly 45 is composed of a plurality of hot air outlets. The drying assembly 45 is arranged above or on the side of the operating table 1. After the pollution treatment is completed, the drying assembly 45 can be turned on to dry the surface of the operating table 1 by blowing out hot air, so that it can quickly return to a dry state, facilitating subsequent detection operations. The hot air of the hot air outlets is provided by a hot air blower, and the connection manner therebetween is the prior art and will not be elaborated herein.

[0058] Further, the pollution treatment mechanism 4 further includes: a linkage module, and the linkage module includes: a distance sensor 46. A distance sensor 46 is installed on the top of each of the automatic telescopic rods 422. The distance sensor 46 is used to detect the distance from the top of the automatic telescopic rod 422 to the edge of the corresponding electric slide rail 423. A pressure sensor 47 is provided at the bottom of the baffle 421. When the distance value detected by each distance sensor 46 changes and then remains fixed again, at this time, the distance sensor 46 sends the detection data to the controller, and the controller controls the operation of the first motor 413 to drive the cantilever 412 to rotate to achieve the preparation work of the spraying assembly 41. When the bottom of the baffle 421 contacts the operation table 1, the pressure sensor 47 is pressed and sent to the controller. At this time, the controller controls the spraying assembly 41 to work and spray. Thus, by the action of the linkage module, during the process of the control component 42 operating to control the pollution area, the preparation work of the spraying assembly 41 is synchronized. Once the control component 42 includes the pollution area, the spraying assembly 41 is immediately controlled to spray, so as to achieve an orderly and efficient control of the pollution area, ensure the prevention of pollutant diffusion while taking into account the overall treatment efficiency, and have multiple benefits at the same time. A magnetic strip 2 is provided on the side of the baffle 421. A magnet ring 3 is fixedly provided on the outer periphery of the top end of the adsorption plate 432. The magnetic strip 2 and the magnet ring 3 are magnetically attracted to each other. The distance sensor 46 and the pressure sensor 47 are electrically connected to the controller. When the adsorption assembly 43 starts to work, the base bin 433 rotates to the horizontal state under the action of the driving member, and the electric telescopic column 434 pushes the adsorption plate 432 to extend out of the base bin 433. At this time, due to the magnetic strip 2 provided on the side of the baffle 421 and the magnet ring 3 fixedly provided on the outer periphery of the top end of the adsorption plate 432, when the adsorption plate 432 approaches the baffle 421, the magnetic attraction generated between the magnetic strip 2 and the magnet ring 3 will guide the adsorption plate 432 to accurately reach the predetermined position, as much as possible to avoid the situation that the adsorption plate 432 cannot completely cover the pollution area due to shaking or deviation during the extension process, ensure that the adsorption plate 432 can closely fit the edge of the pollution area surrounded by the baffle 421, and achieve a full coverage of the pollution area, thereby improving the accuracy of adsorption.

[0059] Further, the adsorption plate 432 is divided into upper and lower parts, and the upper and lower parts are connected by a soft connection member. The soft connection member includes a connection airbag 5. A rectangular through groove 6 is formed at the top of the lower adsorption plate 432. The bottom of the connection airbag 5 penetrates through the rectangular through groove 6 and is fixedly connected to the bottom of the lower adsorption plate 432. The top end of the connection airbag 5 is fixedly connected to the bottom of the upper adsorption plate 432. A plurality of elastic bands 7 are circumferentially and fixedly provided on the outer circumference of the connection airbag 5, and the other ends of the elastic bands 7 are fixed around the rectangular through groove 6.

[0060] The adsorption plate 432 of the present invention is designed to be divided into two parts, the top of the lower adsorption plate 432 is provided with a rectangular through groove 6, which provides a spatial basis for the installation of the connecting airbag 5. The bottom of the connecting airbag 5 passes through the rectangular through groove 6 and is fixedly connected to the bottom of the lower adsorption plate 432, ensuring the stability of the connection. The top of the connecting airbag 5 is fixedly connected to the bottom of the upper adsorption plate 432, so that the upper and lower adsorption plates 432 are flexibly connected through the connecting airbag 5; when the adsorption assembly 43 is working, the electric telescopic column 434 pushes the adsorption plate 432 out of the base bin 433 and contacts the contaminated area. Since the upper and lower parts of the adsorption plate 432 are connected by a soft connector, when encountering an uneven surface of the contaminated area or an irregularly shaped contaminated area, the connecting airbag 5 can be elastically deformed, and the upper adsorption plate 432 can be displaced and adjusted in angle to a certain extent relative to the lower adsorption plate 432, so that the adsorption plate 432 can better fit the surface of the contaminated area and improve the adsorption effect.

[0061] Through the above technical scheme, on the one hand, it can cooperate with the baffle 421 of the control component 42. When the baffle 421 encloses the contaminated area, the adsorption plate 432 starts to work, and the connecting airbag 5 compresses and expands the lower adsorption plate 432 to expand its surface area, so that the lower adsorption plate 432 can fit more closely to the boundary and internal surface of the contaminated area enclosed by the baffle 421; it effectively reduces the possibility of leakage of disinfection cleaning liquid and contaminants in the contaminated area from the gap between the adsorption plate 432 and the surface of the contaminated area, just like forming a tighter adsorption barrier on the contaminated area, further enhancing the sealing and adsorption effect on the contaminated area, preventing the spread of contaminants, and improving the control of the entire pollution treatment mechanism 4 on pollution. On the other hand, for contaminated areas with irregular shapes or uneven surfaces, the action of connecting the airbag 5 to compress and expand the lower adsorption plate 432 can enable the adsorption plate 432 to better adapt to its complex surface morphology; even if there are depressions or protrusions in the contaminated area, the adsorption plate 432 can fit tightly by deforming and expanding the surface area, thereby achieving effective adsorption of these special areas; thus, in response to the spray component 41, after the spray component 41 sprays the contaminated area with a disinfectant cleaning liquid, the adsorption plate 432 can more comprehensively clean the residual substances after the spraying, thereby ensuring the integrity and effectiveness of the contamination treatment, and improving the ability of the microbial detection operating table to cope with various complex contamination situations.

[0062] A method for using a microbial detection operating table, the method comprising the following steps:

[0063] S1. Place the microbial sample to be tested on the operating table 1 and use the detection probe to perform the test. During the test, pay attention to the operating specifications to prevent sample contamination;

[0064] S2. When the detection sensor detects contamination, activate the spraying assembly 41 to spray the disinfection and cleaning liquid on the contaminated area for preliminary disinfection and dilution; the adsorption plate 432 of the adsorption device adsorbs the disinfection and cleaning liquid and contaminants, and replace it in time after saturation; the collection tank collects the dripping liquid and residual contaminants and discharges them through the sewage pipe; at the same time, the air purification unit 44 starts to filter the air, and the ultraviolet disinfection lamp sterilizes, and it can also be turned on regularly for daily purification;

[0065] S3. After the contamination treatment is completed, activate the drying assembly 45 to dry the surface of the operating table 1, and check the surface of the operating table 1 and each component of the contamination treatment mechanism 4 again after drying.

[0066] The working process of the present invention is as follows:

[0067] A controller and a detection sensor, a spraying assembly 41, a control assembly 42, an adsorption assembly 43, an air purification unit 44, and a drying assembly 45 that are electrically connected to the controller.

[0068] When the detection sensor detects contamination on the operating table 1, immediately transmit the signal to the controller;

[0069] After receiving the contamination signal, the controller first activates the spraying assembly 41: control the operation of the first motor 413 to drive the cantilever 412 to rotate, so that the nozzle 414 on the cantilever 412 is aligned with the contaminated area, and at the same time turn on the water pump to transport the disinfection and cleaning liquid in the liquid storage tank 415 to the nozzle 414 through the connecting pipe, and the nozzle 414 evenly sprays the disinfection and cleaning liquid on the contaminated area to disinfect and dilute the contaminants;

[0070] While the spraying assembly 41 is working, the controller activates the control assembly 42: control the automatic telescopic rod 422 to extend, drive the baffle 421 to move, so that the area enclosed by the multiple baffles 421 gradually shrinks and surrounds the contaminated area, restricting the spread range of the contamination. At the same time, if the contaminated area is large, the two movable plates 4212 can be driven by the double-headed telescopic rod 4213 to slide in the movable slots of the middle gear 4211 to further adjust the size of the area enclosed by the baffle 421 to more accurately enclose the contaminated area;

[0071] After the spraying is completed, the controller activates the adsorption assembly 43: control the operation of the second motor 438, and through the cooperation of the gear set 435, the first belt pulley 436, the second belt pulley 437 and the belt drive, rotate the two base bins 433 from the initial vertical state to the horizontal state. Then, control the electric telescopic column 434 to extend, drive the adsorption plate 432 to extend out of the base bin 433, and adsorb the sprayed disinfection and cleaning liquid and contaminants;

[0072] During the operation of the adsorption component 43, the controller activates the air purification unit 44: turns on the filter to filter the air above the operating table 1, and at the same time turns on the ultraviolet disinfection lamp to disinfect the air, further purifying the operating environment;

[0073] After the adsorption component 43 completes the adsorption work, the controller activates the drying component 45: turns on the hot air outlet to blow out hot air to dry the surface of the operating table 1, enabling it to quickly return to a dry state for subsequent detection operations;

[0074] Through the linkage of the above mechanisms, the components on the microbial detection operating table can work orderly and collaboratively during the pollution treatment process, improving the efficiency and effect of pollution treatment and ensuring the smooth progress of microbial detection work.

[0075] The above has described a specific embodiment of the present invention in detail, but the described content is only a preferred embodiment of the present invention and cannot be considered as limiting the scope of implementation of the present invention. Any equivalent changes and improvements made within the scope of the application of the present invention shall still fall within the scope covered by the patent of the present invention.

Claims

1. A microbiological detection operating table, comprising: An operating table (1), a detection sensor and a controller, wherein the operating table (1) is provided with a detection device, and the detection device is provided with a detection probe; The invention is characterized in that a pollution treatment mechanism (4) is also provided on the operating table (1), and the pollution treatment mechanism (4) is used to treat the pollution occurring on the operating table (1); The pollution treatment mechanism (4) comprises: a spraying assembly (41), wherein the spraying assembly (41) is arranged above the operating table (1); The spray assembly (41) comprises: A truss (411), one end of the truss (411) is fixedly arranged on one side of the operating table (1), and the other end is movably connected to a cantilever (412), the cantilever (412) is transmission-connected to a first motor (413), the first motor (413) is mounted on the truss (411), and the cantilever (412) is also provided with a plurality of uniformly distributed spray heads (414), the spray heads (414) are connected to a liquid storage tank (415) through a connecting pipe, a water pump for pumping out liquid is provided in the liquid storage tank (415), and a disinfectant cleaning liquid is contained in the liquid storage tank (415); when contamination is detected on the operating table (1), the controller turns on the spray heads (414) to uniformly spray the disinfectant cleaning liquid in the liquid storage tank (415) on the contaminated area, thereby disinfecting and diluting the contaminants.

2. The microbial detection operating table according to claim 1, characterized in that: An adsorption assembly (43) is arranged on the other side of the operating table (1), and the adsorption assembly (43) comprises a frame (431), a plurality of adsorption plates (432) and a base bin (433), wherein the adsorption plates (432) are used to adsorb the disinfectant cleaning liquid and pollutants after spraying, and the frame (431) is fixed to the operating table (1) by a bracket, and the frame (431) is arranged horizontally, and the base bins (433) are arranged with two and are symmetrically distributed on the frame (431) through a rotating shaft, and the base bins (433) are arranged on the other side of the operating table (1). The bin (433) is in a vertical state in the initial state. When adsorption operation is required, the two base bins (433) are rotated into a horizontal state under the drive of the driving member; a plurality of receiving grooves are arranged in an array in the base bin (433), and the receiving grooves correspond to the adsorption plates (432) one by one. The adsorption plates (432) are connected to the receiving grooves through electric telescopic columns (434), and the adsorption plates (432) are fixedly connected to the telescopic ends of the electric telescopic columns (434) but are detachable.

3. The microbial detection operating table according to claim 1 or 2, characterized in that: The operating table (1) is also provided with a control component (42), and the control component (42) is used to limit the contaminated area; the control component (42) comprises: A baffle (421), wherein the baffle (421) is configured as a telescopic structure, a plurality of baffles (421) are provided, and an area enclosed by the plurality of baffles (421) is larger than the contaminated area, an automatic telescopic rod (422) is fixedly provided on the top of each baffle (421), a plurality of electric slide rails (423) are provided around the frame (431), and the other ends of the automatic telescopic rods (422) are respectively installed in corresponding electric slide rails (423); The size of the area enclosed by the plurality of baffles (421) is changed by the reciprocating movement of the automatic telescopic rod (422) and the corresponding baffle (421).

4. The microbial detection operating table according to claim 3, characterized in that: The driving member comprises a gear set (435), wherein the gear set (435) comprises two meshing gears, and the two gears are rotatably mounted on the outside of the frame (431), wherein one of the gears is transmission-connected to a No. 2 motor (438), and the No. 2 motor (438) is also mounted on the outside of the frame (431), and a No. 1 pulley (436) is sleeved and fixed on the gear shafts of the two gears, and a No. 2 pulley (437) is sleeved and fixed on the rotating shaft of the base bin (433) after passing through the frame (431), and a belt transmission is used between the No. 1 pulley (436) and the No. 2 pulley (437).

5. The microbial detection operating table according to claim 4, characterized in that: The baffle (421) comprises a middle stage (4211) and two movable plates (4212); a movable groove is provided through the bottom of the middle stage (4211); one end of the movable plate (4212) is slidably connected in the movable groove; a double-headed telescopic rod (4213) is connected between the two movable plates (4212); the double-headed telescopic rod (4213) is installed in the movable groove; and a plurality of electric slide rails (423) are arranged in a cross shape.

6. The microbiological detection operating table according to claim 1 or 5, characterized in that: The pollution treatment mechanism (4) further comprises: an air purification unit (44), the air purification unit (44) being installed above the operating table (1) via a stand, the air purification unit (44) comprising a filter and an ultraviolet disinfection lamp, the filter being used to filter the air above the operating table (1), and the ultraviolet disinfection lamp being used to sterilize and disinfect the air; The pollution treatment mechanism (4) further comprises: A drying component (45), the drying component (45) is composed of a plurality of hot air outlets, and the drying component (45) is arranged above or on the side of the operating table (1); when the pollution treatment is completed, the drying component (45) is turned on to dry the surface of the operating table (1) by blowing out hot air.

7. The microbiological detection operating table according to claim 4, characterized in that: The pollution treatment mechanism (4) further comprises a linkage module, wherein the linkage module comprises: A distance sensor (46) is installed on the top of each automatic telescopic rod (422), and the distance sensor (46) is used to detect the distance from the top of the automatic telescopic rod (422) to the edge of the corresponding electric slide rail (423). A pressure sensor (47) is arranged at the bottom of the baffle (421), and a magnetic strip (2) is arranged on the side of the baffle (421). A magnet ring (3) is fixedly arranged on the outer periphery of the top of the adsorption plate (432), and the magnetic strip (2) and the magnet ring (3) are magnetically attracted to each other. The distance sensor (46) and the pressure sensor (47) are electrically connected to the controller.

8. The microbiological detection operating table according to claim 4, characterized in that: The adsorption plate (432) is divided into two parts, and the upper and lower parts are connected by a soft connector. The soft connector includes a connecting airbag (5). A rectangular through groove (6) is provided on the top of the lower adsorption plate (432). The bottom of the connecting airbag (5) passes through the rectangular through groove (6) and is fixedly connected to the bottom of the lower adsorption plate (432). The top of the connecting airbag (5) is fixedly connected to the bottom of the upper adsorption plate (432). A plurality of elastic bands (7) are fixedly arranged circumferentially on the outer ring of the connecting airbag (5), and the other end of the elastic band (7) is fixed around the rectangular through groove (6). The adsorption plate is divided into two parts, an upper part and an lower part, and the upper and lower parts are connected by a soft connector, the soft connector includes a connecting airbag, a rectangular through groove is opened on the top of the lower adsorption plate, the bottom of the connecting airbag passes through the rectangular through groove and is fixedly connected to the bottom of the lower adsorption plate, the top of the connecting airbag is fixedly connected to the bottom of the upper adsorption plate, a plurality of elastic bands are circumferentially fixedly arranged on the outer circle of the connecting airbag, and the other end of the elastic band is fixed around the rectangular through groove.

9. A method for using a microbiological detection operating table, characterized in that: The method is applicable to the microbial detection operation table according to any one of claims 1 to 8, comprising the following steps: S1. Place the microbial sample to be tested on the operating table (1), and use the detection probe to perform the test. During the test, pay attention to the operating specifications to prevent sample contamination; S2. When the detection sensor detects contamination, the spraying assembly (41) is turned on to spray the disinfectant cleaning liquid on the contaminated area for preliminary disinfection and dilution; the adsorption plate (432) of the adsorption device adsorbs the disinfectant cleaning liquid and the contaminants, and is replaced in time after saturation; the collection tank collects the dripping liquid and the residual contaminants and discharges them through the sewage pipe; at the same time, the air purification unit (44) is turned on to filter the air, and the ultraviolet disinfection lamp is sterilized and disinfected, and can also be turned on regularly for daily purification; S3. After the pollution treatment is completed, the drying assembly (45) is turned on to dry the surface of the operating table (1). After drying, the surface of the operating table (1) and the components of the pollution treatment mechanism (4) are checked again.

Citation Information

Patent Citations

  • Microorganism detection device

    CN219861347U