Organophosphorus poisoning practical training system and practical training method thereof
By designing an organophosphorus poisoning training system, using human silicone model to simulate the symptoms of organophosphorus poisoning, combined with drug simulation operations, the problem of medical staff not being able to directly contact the patients is solved, and the ability to identify and deal with symptoms of organophosphorus poisoning is improved.
Patent Information
- Application Number
- CN202510540310.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2025-07-11
AI Technical Summary
In the existing medical training, medical staff cannot directly contact patients with organophosphorus poisoning, making it difficult to accurately identify and treat acute organophosphorus pesticide poisoning, especially in primary medical institutions, the problem is even more serious.
Design a training system for organophosphate poisoning, including human silicone model, perspiration component, garlic odor emission component, electronic eyes, multiple small vibrators and red luminescent plates. The symptoms of organophosphate poisoning are simulated through the control module, and the drug selection module is used to simulate the injection of atropine or phosphorus dephosphorylation operation to observe the changes in symptoms.
It has improved the intuitive understanding and learning effect of medical staff on the symptoms of organophosphorus poisoning, enhanced the reliability and learning effect of practical training, and helped medical staff accurately identify and deal with organophosphorus poisoning.
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Figure CN120299328A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of organophosphorus poisoning, and in particular to an organophosphorus poisoning training system and a training method thereof. Background Art
[0002] Organophosphorus pesticides (OPS) are the most widely used and largest volume pesticides in China. They mainly include dichlorvos, parathion (1605), phorate (3911), demeton (1059), dimethoate, trichlorfon, malathion (4049), etc. Accidental ingestion or contact with such pesticides by humans can easily cause acute organophosphorus pesticide poisoning (AOPP); acute organophosphorus pesticide poisoning (AOPP) refers to a series of injuries mainly caused by the damage of the nervous system after a large amount of organophosphorus pesticides enter the human body in a short time.
[0003] Clinically, the main manifestations of AOPP are vomiting, abdominal pain, diarrhea, miosis, local sweating droplets on the head and face, salivation, increased tracheal secretions, garlic odor released from the mouth, tremors of the whole body skeletal muscles, bradycardia, muscle tremors, spasms and a sense of constriction, dyspnea, etc., which can endanger life in severe cases. Organophosphorus pesticide poisoning is sudden, with strong drug toxicity, rapid absorption by the human body, and rapid disease development. If rescue and treatment are not carried out promptly and effectively, irreversible damage to important vital organs will be induced, thus endangering life and even causing death.
[0004] Some of the above AOPP symptoms overlap with those of other diseases, making it difficult to accurately identify. In case of poisoning caused by a large amount of oral organophosphorus, the esophagus of the poisoned person is burned, unable to open the mouth, or has entered the neurological poisoning symptoms and cannot express normally. If medical staff cannot accurately identify various symptoms, the diagnosis and treatment of this disease will be delayed, leading to the aggravation of the patient's poisoning and even death. This problem is more serious especially in some primary medical institutions.
[0005] However, when existing medical staff are trained, medical-related trainees cannot directly contact patients. They mainly learn through videos, lacking intuitive feelings and affecting the students' accurate understanding of this disease.
[0006] The information disclosed in the background art section is only intended to increase the overall understanding of the present invention and should not be regarded as an admission or any form of implication that this information constitutes the prior art already known to those of ordinary skill in the art. Summary of the Invention
[0007] This application provides an organophosphorus poisoning training system and a training method thereof for the above technical problems, which are used to train medical staff, intuitively learn and understand the various symptoms of organophosphorus poisoning patients, improve the intuitiveness of training, and improve learning efficiency.
[0008] The present application provides an organophosphorus poisoning training system, including: a human silicone model, a sweating component, a garlic smell emitting component, an electronic eye, a plurality of small vibrators, a red light emitting panel, and a power supply component;
[0009] The inner cavity of the head of the human silicone model houses the sweating component and the garlic smell emitting component; the electronic eye is housed in the eye pit of the human silicone model;
[0010] A plurality of small vibrators are respectively buried at the positions of the skeletal muscle groups of the human silicone model;
[0011] The red light emitting panel is buried in the cheek area of the human silicone model;
[0012] The power supply component is respectively connected to the sweating component, the garlic smell emitting component, the electronic eye, the plurality of small vibrators, and the red light emitting panel for power supply;
[0013] It further includes: a control module and a drug selection module; the control module is respectively electrically connected to the sweating component, the garlic smell emitting component, the electronic eye, the plurality of small vibrators, the red light emitting panel, and the drug selection module;
[0014] The drug selection module is used to select the operation of atropine or pralidoxime iodide. When the training personnel select the atropine operation, after the training personnel inject atropine on the human silicone model, the red light emitting panel is turned on, and the characteristic of flushing of the face appears, and then in sequence: the sweating component, the garlic smell emitting component, the electronic eye, and the plurality of small vibrations are turned off, and each organophosphorus poisoning symptom on the human silicone model disappears one by one;
[0015] When the training personnel select pralidoxime iodide, after the training personnel inject pralidoxime iodide on the human silicone model, the small vibrators at the skeletal muscle groups are turned off; then in sequence: the sweating component, the garlic smell emitting component, and the electronic eye are turned off, and each organophosphorus poisoning symptom on the human silicone model disappears one by one.
[0016] Preferably, a cavity is provided inside the human silicone model, and the sweating component is arranged in the cavity.
[0017] Preferably, the sweating component includes: a plurality of invisible small holes, an inflatable cavity, an inflation valve, a gas generator, and a telescopic rubber membrane layer;
[0018] The invisible small holes are arranged on the human silicone model on the outer wall of the cavity;
[0019] The telescopic rubber membrane layer is housed in the cavity; the telescopic rubber membrane layer encloses to form an inflatable cavity; the inflatable cavity is communicated with the gas generator through a pipeline; an inflation valve is arranged on the pipeline communicating the inflatable cavity with the gas generator.
[0020] Preferably, clear water is housed in the cavity.
[0021] Preferably, the garlic smell emitting component includes: a garlic smell gas storage bottle, a delivery pump, and a solenoid valve; one end of a pipeline is communicated with the air outlet of the garlic smell gas storage bottle, and the other end is communicated with the mouth opening of the human silicone model;
[0022] The delivery pump and the solenoid valve are arranged at intervals on the pipeline.
[0023] Preferably, the delivery pump and the solenoid valve are respectively electrically connected to the control module.
[0024] Preferably, it includes: a control switch; the control switch is respectively electrically connected to the sweating component, the garlic smell emitting component, the electronic eye, a plurality of small vibrators, and a red light emitting board.
[0025] Another aspect of the present application also provides a method for training organic phosphorus poisoning, which uses the device as described above to perform the following operations:
[0026] Step S1: Turn on the power supply component according to the training needs, and then turn on the control switch or the control module, and various symptoms of organic phosphorus poisoning appear on the human silicone model;
[0027] Step S2: After the training personnel select the operation of injecting atropine or pralidoxime iodide through the drug selection module, turn off the sweating component, the garlic smell emitting component, the electronic eye, and a plurality of small vibrators one by one in sequence.
[0028] Preferably, when the training personnel select the atropine operation, after the training personnel inject atropine on the human silicone model, turn on the red light emitting board, and the characteristic of flushing of the face appears, and turn off in sequence: the sweating component, the garlic smell emitting component, the electronic eye, and a plurality of small vibrations, and various symptoms of organic phosphorus poisoning on the human silicone model disappear one by one;
[0029] When the training personnel select pralidoxime iodide, after the training personnel perform the operation of injecting pralidoxime iodide on the human silicone model, turn off each small vibrator at the skeletal muscle group; then turn off in sequence: the sweating component, the garlic smell emitting component, the electronic eye, and various symptoms of organic phosphorus poisoning on the human silicone model disappear one by one.
[0030] The beneficial effects that the present application can produce include:
[0031] 1) The organic phosphorus poisoning training system provided by the present application. The device can release the smell of garlic in the oral cavity of the human silicone model according to the training needs, make the whole body skeletal muscles of the human silicone model tremble according to the training needs, and local sweat droplets ooze on the head and face, and use the electronic eye to simulate the symptom of pupil dilation, which is beneficial for the training personnel to directly observe and contact the typical symptoms of organic phosphorus poisoning patients on the human silicone model. Improve the reliability of the training effect. Improve the training effect.
[0032] 2) The organophosphorus poisoning training system provided by this application. After selecting an injection drug on the drug selection module, the control module controls each module to close, so that each symptom of organophosphorus poisoning can be shown to disappear one by one on the human silicone model, facilitating trainees to intuitively learn the corresponding symptom changes of each drug on the human body and improving the learning effect.
[0033] 3) The organophosphorus poisoning training system provided by this application. After selecting an injection drug on the drug selection module, the control module shows the symptoms after the corresponding drug injection on the human silicone model, facilitating trainees to intuitively learn the corresponding symptom changes of each drug on the human body and improving the learning effect. Description of the Drawings
[0034] Figure 1 It is a top view schematic diagram of the organophosphorus poisoning training system in at least one embodiment provided by this application;
[0035] Figure 2 It is a schematic diagram of the sweating component in at least one embodiment provided by this application;
[0036] Figure 3 It is a schematic diagram of the garlic smell emitting component in at least one embodiment provided by this application;
[0037] Figure 4 It is a schematic diagram of the module connection structure in at least one embodiment provided by this application;
[0038] Legend Explanation:
[0039] Operating table 1, human silicone model 11, electronic eye 111, mouth opening 112, skeletal muscle group 113, red light emitting panel 114, solenoid valve 21, telescopic rubber film layer 122, inflatable cavity 123, inflation valve 124, gas generator 125, power supply component 31, control switch 32, control module 33, drug selection module 34. Detailed Embodiments
[0040] To make the purposes, 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 in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Usually, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations.
[0041] Accordingly, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely represents selected embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.
[0042] The controller used in this embodiment is of an existing structure, and the control circuit can be realized by simple programming by those skilled in the art, which belongs to the common general knowledge in the art. Only its use is carried out without modification, so the control method and circuit connection will not be described in detail.
[0043] Technical means not detailed in this application and not used to solve the technical problems of this application are set according to the common general knowledge in the art, and multiple ways of setting common general knowledge can be realized.
[0044] See Figures 1 to 4 , the organophosphorus poisoning training system provided by this application includes: a human silicone model 11, a sweating component, a garlic smell emitting component, an electronic eye 111, a plurality of small vibrators, a red light emitting panel 114, a power supply component 31, and a control switch 32;
[0045] The sweating component is arranged in the inner cavity of the head of the human silicone model 11, and the inner cavity of the head is not connected to the cavity of the body part of the human silicone model 11. The sweating component includes: a plurality of invisible small holes 121 are arranged on the human silicone model 11 in the head and face area, a telescopic rubber membrane layer 122 is arranged inside the human silicone model 11 in the head and face area, and clear water is filled in the area between the telescopic rubber membrane layer 122 and the inner wall of the human silicone model 11. An inflation cavity 123 is arranged inside the telescopic rubber membrane layer 122; the inflation cavity 123 and the gas generator 125 are connected by a pipeline, and an inflation valve 124 is arranged on the connected pipeline. When simulating organophosphorus poisoning is started, the inflation valve 124 is opened, and the gas generator 125 is started to continuously inflate the inflation cavity 123; the outer wall of the inflation cavity 123 is the telescopic rubber membrane layer 122, and the telescopic rubber membrane layer 122 is squeezed by the inflated gas. The volume of the inflation cavity 123 increases, while the inner cavity volume of the head of the human silicone model 11 is limited by the thick silicone layer and cannot expand. The telescopic rubber membrane layer 122 uniformly pushes the clear water between the telescopic rubber membrane layer 122 and the human silicone model 11 to be extruded outward, and the liquid oozes out from the plurality of invisible small holes 121 opened on the human silicone model 11 in the head and face area to form sweat, so that the trainees can intuitively feel and recognize the typical symptom of garlic smell emitted from the mouth of organophosphorus poisoning.
[0046] Since the silicone material used for the human silicone model 11 has a high density and a large resilience, the invisible small holes are closed and the internal clear water can be sealed without pressurizing the inflation cavity 123.
[0047] The garlic smell emitting component is arranged on the head of the human body silicone model 11; the garlic smell emitting component includes: a pipeline buried in the internal cavity of the human body silicone model 11, the pipeline is arranged in the cavity of the head of the human body silicone model 11 and penetrates out of the inflation cavity 123, and a sealant layer is arranged at the connection of the pipeline and the inflation cavity 123 for sealing. One end of the pipeline is communicated with the garlic smell gas storage bottle 212, and the other end is communicated with the mouth opening 112 of the human body silicone model; an electromagnetic valve 21 and a delivery pump 211 are arranged on the garlic smell pipeline; after the device is powered on, when the operator turns on the simulation switch, after turning on the delivery pump 211 and the electromagnetic valve 21, the gas in the garlic smell gas storage bottle 212 is released and discharged through the mouth opening 112, so as to facilitate the trainees to intuitively feel and identify the typical symptom of garlic smell emitted from the mouth in organophosphorus poisoning. The delivery pump 211 and the electromagnetic valve 21 are electrically connected to the control switch 32.
[0048] The electronic eye 111 is installed at the eye position of the human body silicone model 11; a plurality of small vibrators are respectively arranged at the skeletal muscle groups 113 of the human body silicone model 11. Only one of the skeletal muscle groups 113 in the figure is shown schematically, and the positions of the remaining skeletal muscle groups 113 are set according to the positions disclosed in the existing human anatomy knowledge and will not be elaborated here. By arranging small vibrators at the positions of the skeletal muscle groups 113 of the human body silicone model 11, after the power is turned on, the small vibrators vibrate, which is convenient for the trainees to intuitively feel the symptoms of organophosphorus poisoning.
[0049] The red light emitting plate 114 is buried in the cheek part of the human body silicone model 11, and the area of the human body silicone model 11 where the red light emitting plate 114 is arranged is not provided with the invisible small holes 121. After the power is turned on, red light is displayed. Since it is buried in the human body silicone model 11, the characteristic of facial flushing can be simulated on the surface of the human body silicone model 11, which is convenient for the trainees to intuitively feel the symptoms of organophosphorus poisoning.
[0050] The power supply component 31 is respectively connected to the sweating component, the garlic smell emitting component, the electronic eye 111, a plurality of small vibrators, and the red light emitting plate 114 for power supply; the connection is realized through a cable; the control switch 32 is respectively electrically connected to the sweating component, the garlic smell emitting component, the electronic eye 111, and a plurality of small vibrators, and each component is turned on according to the training needs for training operations.
[0051] The usage process is as follows: after turning on the power supply component 31, after turning on the control switch 32 according to the training requirements, the electronic eye 111 at the eye of the human body silicone model 11 on the operation table 1 shows the symptom of mydriasis; later, a strong garlic smell diffuses from the mouth opening 112; at the same time, the skeletal muscle groups 113 vibrate regularly; at the same time, with the inflation of the inflation cavity 123, the telescopic rubber membrane layer 122 expands outward to push the clear water to seep out to the surface of the head of the human body silicone model 11, forming a sweating effect.
[0052] In a specific embodiment, it includes: a control module 33; the control module 33 is electrically connected to a perspiration component, a garlic smell emitting component, an electronic eye 111, a plurality of small vibrators, a red light emitting panel 114, and a power supply component 31 respectively, for supplying power to and controlling the activation of each component.
[0053] In a specific embodiment, it includes: a drug selection module 34; the drug selection module 34 is used for selecting the operation of atropine or pralidoxime iodide; the drug selection module 34 is electrically connected to the control module 33; when the training personnel select the atropine operation, after injecting atropine on the human silicone model 11, the red light emitting panel 114 on the human silicone model 11 is turned on, showing the feature of flushing of the face, and in sequence: the perspiration component, the garlic smell emitting component, the electronic eye 111, and a plurality of small vibrations, the perspiration component, the garlic smell emitting component, the electronic eye 111, and a plurality of small vibrators are turned off in sequence, so that each organophosphorus poisoning symptom on the human silicone model 11 disappears one by one; it is convenient for the training personnel to understand the actual clinical effect of the patient injected with atropine after the occurrence of organophosphorus poisoning symptoms, and increases the intuitiveness of the simulation effect.
[0054] In a specific embodiment, when the training personnel select the pralidoxime iodide operation, after injecting pralidoxime iodide on the human silicone model 11, first, the control module 33 turns off the vibration of each small vibrator at the skeletal muscle group. And in sequence: the perspiration component, the garlic smell emitting component, the electronic eye 111, the perspiration component, the garlic smell emitting component, and the electronic eye 111 are turned off in sequence, so that each organophosphorus poisoning symptom on the human silicone model 11 disappears one by one; it is convenient for the training personnel to understand the actual clinical effect of the patient injected with atropine after the occurrence of organophosphorus poisoning symptoms, and increases the intuitiveness of the simulation effect.
[0055] Usage process: When various organophosphorus poisoning symptoms have appeared on the human silicone model 11, the training personnel first select the operation of injecting atropine or pralidoxime iodide on the drug selection module 34, and then inject the corresponding drug on the human silicone model 11. When the selected drug is atropine and atropine is injected, the control module 33 controls the red light emitting panel 114 on the human silicone model 11 to be turned on, making it show the feature of flushing of the face, and in sequence: the perspiration component, the garlic smell emitting component, the electronic eye 111, and a plurality of small vibrations, the perspiration component, the garlic smell emitting component, the electronic eye 111, and a plurality of small vibrators are turned off in sequence, so that each organophosphorus poisoning symptom on the human silicone model 11 disappears one by one; it is convenient for the training personnel to understand the actual clinical effect of the patient injected with atropine after the occurrence of organophosphorus poisoning symptoms, and increases the intuitiveness of the simulation effect.
[0056] When the selected drug is pralidoxime iodide and an injection of pralidoxime iodide is administered, first, the control module 33 turns off each small vibrator at the skeletal muscle group to stop vibrating. And in sequence: the sweating component, the garlic smell emitting component, and the electronic eye 111. The sweating component, the garlic smell emitting component, and the electronic eye 111 are turned off in sequence, so that the various symptoms of organophosphorus poisoning on the human silicone model 11 disappear one by one; it is convenient for the training personnel to understand the actual clinical effect of the patient injected with atropine after the occurrence of organophosphorus poisoning symptoms, and to increase the intuitiveness of the simulation effect.
[0057] Another aspect of the present application also provides a training method for organophosphorus poisoning, which uses the above-mentioned device to perform the following operations:
[0058] Step S1: Turn on the power supply component 31 according to the training needs, and then turn on the control switch 32 or the control module 33, and various organophosphorus poisoning symptoms appear on the human silicone model 11;
[0059] Step S2: After the training personnel select the operation of injecting atropine or pralidoxime iodide through the drug selection module 34, turn off the sweating component, the garlic smell emitting component, the electronic eye 111, and multiple small vibrators one by one in sequence.
[0060] Preferably, when the training personnel select the atropine operation, after the training personnel inject atropine on the human silicone model 11, turn on the red light emitting panel 114, and the characteristic of flushing of the face appears, and turn off in sequence: the sweating component, the garlic smell emitting component, the electronic eye 111, and multiple small vibrations. The various organophosphorus poisoning symptoms on the human silicone model 11 disappear one by one;
[0061] When the training personnel select pralidoxime iodide, after the training personnel perform the operation of injecting pralidoxime iodide on the human silicone model 11, turn off each small vibrator at the skeletal muscle group; then turn off in sequence: the sweating component, the garlic smell emitting component, the electronic eye 111. The various organophosphorus poisoning symptoms on the human silicone model 11 disappear one by one.
[0062] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An organic phosphorus poisoning training system, characterized in that, Including: A human silicone model (11), a sweating component, a garlic smell emitting component, an electronic eye (111), a plurality of small vibrators, a red light emitting panel (114), a power supply component (31); The inner cavity of the head of the human silicone model (11) accommodates and sets the sweating component and the garlic smell emitting component; the electronic eye (111) is accommodated and set in the eye pit of the human silicone model (11); A plurality of small vibrators are respectively buried at the positions of the skeletal muscle groups of the human silicone model (11); The red light emitting panel (114) is buried in the cheek area of the human silicone model (11); The power supply component (31) is respectively connected to the sweating component, the garlic smell emitting component, the electronic eye (111), the plurality of small vibrators, and the red light emitting panel (114) for power supply; It further includes: a control module (33), a drug selection module (34); the control module (33) is respectively electrically connected to the sweating component, the garlic smell emitting component, the electronic eye (111), the plurality of small vibrators, the red light emitting panel (114), and the drug selection module (34); The drug selection module (34) is used to select the operation of atropine or pralidoxime iodide. After the training personnel select the atropine operation and inject atropine on the human silicone model (11), the red light emitting panel (114) is turned on, showing the characteristic of facial flushing, and then in sequence: the sweating component, the garlic smell emitting component, the electronic eye (111), and the plurality of small vibrations are turned off, and each organophosphorus poisoning symptom on the human silicone model (11) disappears one by one; When the training personnel select pralidoxime iodide, after the training personnel inject pralidoxime iodide on the human silicone model (11), the small vibrators at the skeletal muscle groups are turned off; then in sequence: the sweating component, the garlic smell emitting component, and the electronic eye (111) are turned off, and each organophosphorus poisoning symptom on the human silicone model (11) disappears one by one.
2. The organophosphorus poisoning training system according to claim 1, wherein, A cavity is arranged inside the human silicone model (11), and the sweating component is arranged in the cavity.
3. The organophosphorus poisoning training system according to claim 1, wherein, The sweating component includes: a plurality of invisible small holes (121), an inflation cavity (123), an inflation valve (124), a gas generator (125), and a telescopic rubber membrane layer (122); The invisible small holes (121) are arranged on the human silicone model (11) on the outer wall of the cavity; The telescopic rubber membrane layer (122) is accommodated and set in the cavity; the telescopic rubber membrane layer (122) encloses to form an inflation cavity (123); the inflation cavity (123) is communicated with the gas generator (125) through a pipeline; an inflation valve (124) is arranged on the pipeline communicating the inflation cavity (123) with the gas generator (125).
4. The organophosphorus poisoning training system according to claim 3, wherein, Clear water is accommodated and set in the cavity.
5. The organophosphorus poisoning training system according to claim 1, characterized in that The garlic smell emitting component includes: a garlic smell gas storage bottle (212), a delivery pump (211), and a solenoid valve (21); one end of the pipeline is communicated with the air outlet of the garlic smell gas storage bottle (212), and the other end is communicated with the mouth opening (112) of the human silicone model (11); The delivery pump (211) and the solenoid valve (21) are arranged at intervals on the pipeline.
6. The organophosphorus poisoning training system according to claim 5, characterized in that, The delivery pump (211) and the solenoid valve (21) are respectively electrically connected to the control module (33).
7. The organophosphorus poisoning training system according to claim 1, characterized in that Including: Control switch (32); the control switch (32) is electrically connected to the sweating component, the garlic smell emitting component, the electronic eye (111), multiple small vibrators, and the red light emitting panel (114) respectively.
8. A training method for organophosphorus poisoning, characterized in that, The device described in any one of claims 1 to 7 is used for the following operations: Step S1: Turn on the power supply component (31) according to the training needs, and then turn on the control switch (32) or the control module (33), and various symptoms of organophosphorus poisoning appear on the human silicone model (11); Step S2: After the trainee selects the operation of injecting atropine or pralidoxime iodide through the drug selection module (34), turn off the sweating component, the garlic smell emitting component, the electronic eye (111), and multiple small vibrators one by one in sequence.
9. The training method according to claim 8, wherein When the trainee selects the atropine operation, after the trainee injects atropine on the human silicone model (11), turn on the red light emitting panel (114), and the characteristic of flushing of the face appears, and turn off in sequence: the sweating component, the garlic smell emitting component, the electronic eye (111), and the multiple small vibrations, and various symptoms of organophosphorus poisoning on the human silicone model (11) disappear one by one; When the trainee selects pralidoxime iodide, after the trainee injects pralidoxime iodide on the human silicone model (11), turn off each small vibrator at the skeletal muscle group; then turn off in sequence: the sweating component, the garlic smell emitting component, the electronic eye (111), and various symptoms of organophosphorus poisoning on the human silicone model (11) disappear one by one.