Lung training device
By adding a detection component to the main body of the breathing trainer, patients can observe and adjust training parameters in real time, which solves the problem of lack of feedback in existing breathing trainers and improves training effectiveness and patient participation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2026-03-31
AI Technical Summary
Existing breathing trainers lack an immediate feedback mechanism, making it difficult for patients to accurately judge training parameters and adjust their breathing rhythm. They also have poor interactivity, and it is difficult for medical staff to analyze the training results.
A detection component, including a timer and sensors, is added to the main body of the breathing trainer to detect the patient's breathing volume and time through the displacement of the float, providing real-time display and recording functions. With the help of adjustable valves and scale lines, it is convenient for patients and medical staff to adjust the training parameters.
It improves the interactivity and stability of training, enhances patients' continued interest in participation, facilitates the analysis and adjustment of training effects, and improves ease of use and applicability.
Smart Images

Figure CN224056587U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a lung rehabilitation auxiliary tool technical field, concretely relates to a lung training device. BACKGROUND
[0002] In the medical rehabilitation field, for the lung function recovery training of respiratory system disease patients, traditionally relies on the deep breathing exercise under the manual guidance, the breathing exercise and uses simple breathing training device. Among them, the closest to the technical scheme of the present application is the existing portable breathing training device. These devices usually assist the patient to carry out the breathing training by setting specific breathing frequency, tidal volume or inspiration / expiration time ratio, aiming at enhancing the lung function, improving the respiratory muscle strength and endurance.
[0003] However, the conventional breathing training device in the prior art mostly adopts the up-down floating process of the ball in the corresponding pipeline to carry out the breathing training, although it can meet the basic training requirements, but it is often inconvenient to observe, judge and adjust the training effect of the patient in the daily breathing training or long time breathing training, the interactivity is poor and lacks the instant feedback mechanism, the patient cannot accurately judge the training parameters and the training results in the corresponding time period during the training, it is difficult to smoothly adjust the breathing training rhythm and the breathing stability, it is difficult to stimulate the sustained participation interest and enthusiasm of the patient, and it is also inconvenient for the medical staff to analyze and adjust the training results of the patient. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a lung training device, which can display the real-time breathing effect of the patient in the breathing training process through the training device, facilitate the patient to control and adjust the rhythm of the corresponding breathing volume, further improve the stability of the patient in the training process, and improve the interactivity and training effect of the training device.
[0005] The utility model solves the above problems by adopting the following technical scheme:
[0006] A lung training device, which comprises a training device main body, the training device comprises a main pipe body provided with openings at the upper and lower ends, the openings at the upper and lower ends of the main pipe body are connected with air ducts respectively, and pipe valves are arranged on the pipe bodies of the air ducts, a floating ball with a size suitable for the main pipe body is arranged in the main pipe body, and a detection assembly is further arranged on the outer wall of the main pipe body, the detection assembly comprises a timer, a sensor for floating ball displacement detection, a controller connected with the timer and the sensor, and a power module.
[0007] Preferably, the sensor is arranged in the form of a displacement sensor structure and is provided with two groups of sensors arranged at the upper and lower ends of the main pipe body and corresponding to the positions of the internal floating ball moving to the openings.
[0008] Preferably, the pipe valve comprises an adjusting handle which is in communication with the inside of the air pipe and is rotatably arranged, and the adjusting handle is also marked with a scale line.
[0009] Preferably, the main pipe body is further marked with a scale line of adaptive length on the outer wall, and the scale line is arranged in multiple groups along the outer wall of the main pipe body.
[0010] Preferably, the connecting pipe structure formed by the air pipe connected to the opening at the upper and lower ends of the main pipe body and the pipe valve arranged on the air pipe is detachably mounted on the opening at the upper and lower ends of the main pipe body.
[0011] Preferably, the air pipe connected to the opening at the upper and lower ends of the main pipe body is connected with a pipe connecting piece, and the pipe connecting piece is provided with an air vent.
[0012] Preferably, the air vent on the pipe connecting piece is provided with two groups, and the air vent is covered with a plug of adaptive size.
[0013] Preferably, the two groups of pipe connecting pieces which are respectively arranged at the opening at the upper and lower ends of the main pipe body and connected with the air pipe are further connected with a handle.
[0014] Preferably, the handle is further detachably mounted with a handle.
[0015] Preferably, the training device body is further detachably mounted with a fixing frame, and the fixing frame comprises two groups of fixing seats for fixing the pipe connecting pieces connected to the air pipe at the opening at the upper and lower ends of the main pipe body, and multiple groups of connecting pipes between the two groups of fixing seats for fixing the fixing seats.
[0016] Compared with the prior art, the utility model has the following advantages and effects:
[0017] The utility model relates a kind of lung training device, compared with the structure of conventional respiratory training device, the addition of detection assembly on the training device main body corresponding main pipe body, the training result of real-time display can be realized by detecting the up-and-down floating time of float ball in main pipe body during the respiratory training of patient, control and rhythm adjustment of corresponding respiratory volume size are carried out while patient is observed and judged, further improve the stability of patient in training process, at the same time, patient can also carry out the viewing and record of training parameters such as training frequency and corresponding training time by the operation button provided on timer, so that the record of training parameters can be carried out by detection assembly, the analysis and adjustment of training achievement on daily training requirement and corresponding training time period are carried out, the interactivity and training effect of this training device are improved, further improve the sustained participation interest and enthusiasm of patient, and it is also convenient for medical staff to analyze the training achievement of patient and formulate and adjust corresponding training plan, in addition, the overall structure of this lung training device is simple, convenient to use and carry, improve use convenience, flexibility and efficiency, at the same time, for the convenience of observing the movement of float ball in main pipe body, the main pipe body can be made of transparent material and does not affect the normal detection process of sensor in detection assembly, meet different use demand and use environment, improve applicability and practicality. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the overall structure schematic diagram of training device main body of the utility model embodiment.
[0019] Figure 2 It is the exploded view of training device main body structure of the utility model embodiment.
[0020] Figure 3 It is the connection schematic diagram between training device main body and fixed frame of the utility model embodiment.
[0021] Figure 4 It is the enlarged view of detachable structure of fixed frame of the utility model embodiment.
[0022] Drawing number: main pipe body 1, float ball 11, scale line 12, connecting seat structure 20, air duct 2, pipe valve 21, adjusting handle 211, scale line 212, detection assembly 3, timer 31, sensor 32, power module 33, controller 34, pipe connecting piece 4, air vent 41, plug 42, grip rod 5, handle 51, snap ring structure 511, fixed frame 6, fixed seat 61, connecting rod 62. DETAILED DESCRIPTION
[0023] The utility model is explained by the following embodiment in combination with drawings, and the following embodiment is not limited to the following embodiment of the utility model.
[0024] See Figures 1-2 This embodiment relates to a lung trainer, including a trainer body. The trainer includes a main body 1 with openings at both the top and bottom. Air passages 2 are connected to the openings at the top and bottom of the main body 1, and each air passage 2 is equipped with a valve 21. A float 11 adapted to the size of the main body 1 is installed inside the main body 1, and a detection component 3 is installed on the outer wall of the main body 1. The detection component 3 includes a timer 31, a sensor 32 for detecting the displacement of the float 11, a controller 34 connected to the timer 31 and the sensor 32, and a power module 33.
[0025] Specifically in this embodiment, such as Figure 1 The overall structural design of this type of lung trainer shown can be referenced during use. Figure 2 As shown, the ventilation pipes 2 connected to the upper and lower openings of the main tube 1 are used to connect the corresponding breathing training adapters. During breathing training, gas can enter the main tube 1 through the corresponding openings. When the gas content reaches a certain level, it can push the float 11 installed inside the main tube 1 to move along the main tube 1 towards the other opening. At the same time, the airflow entering and exiting the main tube 1 and the airflow rate can be controlled and adjusted by rotating the valve 21 installed on the ventilation pipe 2. The exhalation and inhalation training processes in the corresponding directions can be performed by connecting the ventilation pipes 2 connected to the corresponding openings at the upper and lower ends of the main tube 1 or by rotating the main tube 1 to change the orientation of this training device. Meanwhile, when the patient is performing lung breathing training, the corresponding training results can be observed and judged by the detection component 3 installed on the outer wall of the main tube 1. Specifically, the detection component 3 can realize the power supply and connection control process of the timer 31 and sensor 32 through the power module 33 and controller 34 installed on it (the controller 34 can be installed on the timer 31 and sensor 32). Figure 1 or Figure 2The sensor 32 can be arranged in the form of a photoelectric sensor 32 or a displacement sensor 32 and mounted on the corresponding positions of the outer wall of the main pipe body 1 and the upper and lower movement endpoints of the inner floating ball 11 along the main pipe body 1, so as to detect the specific position of the floating ball 11 in the main pipe body 1 during the breathing training process. The timer 31 can display and record the specific time and the residence time of the floating ball 11 at the specific position during the up and down movement of the floating ball 11 in the main pipe body 1. The patient can control and adjust the specific breathing volume and breathing frequency of exhalation and inhalation in real time by observing the time displayed on the timer 31 during the breathing training process. Compared with the conventional breathing training device, the detection assembly 3 is arranged on the main pipe body 1 of the training device, which can display the training result in real time by detecting the up and down floating time of the floating ball 11 in the main pipe body 1 during the breathing training process of the patient. The patient can observe and judge the training result and control and adjust the specific breathing volume and breathing frequency. The stability of the patient during the training process is further improved. The patient can also check and record the training parameters such as the training frequency and the corresponding training time by using the operation button arranged on the timer 31. The training parameters can be recorded by the detection assembly 3. The daily training requirements and the training results in the corresponding training time period can be analyzed and adjusted. The interactivity and training effect of the training device are improved. The continuous participation interest and enthusiasm of the patient are further improved. The medical staff can also analyze the training result of the patient and make and adjust the corresponding training plan. In addition, the overall structure of the lung training device is simple, which is convenient to use and carry. The use convenience, flexibility and efficiency are improved. In order to observe the movement of the floating ball 11 in the main pipe body 1, the main pipe body 1 is made of transparent material and does not affect the normal detection process of the sensor 32 in the detection assembly 3. Different use requirements and use environments are met. The applicability and practicability are improved.
[0026] The sensor 32 is arranged in the form of a displacement sensor 32 and provided with two groups of sensors respectively arranged at the upper and lower ends of the main pipe body 1 and corresponding to the positions of the floating ball 11 moving to the opening, Figure 1 or Figure 2As can be seen, the sensor 32 with such structure and corresponding position setting, when the main pipe body 1 is oriented in the corresponding direction, the specific position of the float ball 11 at the up and down opening in the main pipe body 1 is set for the position setting of the two groups of sensors 32 respectively, so that when the float ball 11 at one side opening in the main pipe body 1 is pushed by the gas and moves to the other side opening along the main pipe body 1 during the patient's breathing training process, the displacement sensor 32 can detect the movement process of the float ball 11 in real time, and through the timer 31, the leaving time of the float ball 11 detected by the sensor 32 at the corresponding one side opening and the staying time of the float ball 11 detected by the corresponding sensor 32 at the other side can be respectively realized. The displacement detection of the float ball 11 in the main pipe body 1 is realized, and the specific time display in the corresponding displacement process is realized through the timer 31. The sensor 32 with the displacement sensor 32 structure setting can further improve the detection effect of the sensor 32, improve the authenticity, accuracy and effect of the detection data of the detection assembly 3, and at the same time, the two groups of sensors 32 arranged at the corresponding positions of the two ends of the main pipe body 1 can also realize the conversion process of the main pipe body 1 in the corresponding direction during the exhalation and training, without affecting the detection effect of the sensor 32 on the float ball 11, improving the use convenience and operation flexibility.
[0027] The pipe valve 21 comprises an adjusting handle 211 which is connected with the inside of the ventilation pipe 2 and is rotationally arranged, and the adjusting handle 211 is also marked with a scale line 212. Figure 1 Or Figure 2 As shown in the middle, the structure of such pipe valve 21 can adopt the valve body structure for adjusting the air flow on the conventional breathing training device, and the size of the air flow in the ventilation pipe 2 can be controlled and adjusted by rotating the adjusting handle 211 arranged on the ventilation pipe 2, and at the same time, the specific flow size can be judged and corresponding by the scale line 212 marked on the adjusting handle 211 during the adjusting process, improving the convenience and efficiency in the adjusting process. The patient can adjust the corresponding air flow size by rotating the adjusting handle 211 according to the specific breathing training requirements during the use process, so as to change the different training difficulties and meet the different training requirements.
[0028] The outer wall of the main pipe body 1 is also marked with a length-adapted scale line 12, which is arranged in multiple groups along the outer wall of the main pipe body 1 and is spaced apart. The scale line 12 on the outer wall of the main pipe body 1 can further improve the observation and judgment of the patient during the breathing training process of the movement of the floating ball 11 in the main pipe body 1 and its corresponding position height. At the same time, the scale line 12 can be set according to the gas content in the main pipe body 1 at a certain height during the movement of the corresponding floating ball 11 and the size of the corresponding vital capacity of the patient, and the arrangement of multiple scale lines 12 can further expand the visible range, making it easier for the patient to observe and judge, and improving the functional diversity of the training device main body.
[0029] The connecting pipe structure formed by the air pipe 2 connected to the openings at the upper and lower ends of the main pipe body 1 and the pipe valve 21 arranged thereon is detachably mounted on the openings at the upper and lower ends of the main pipe body 1. For details, see Figure 2 The connecting pipe structure formed by the air pipe 2 connected to the openings at the upper and lower ends of the main pipe body 1 and the pipe valve 21 arranged thereon is detachably mounted on the openings at the upper and lower ends of the main pipe body 1. For details, see
[0030] The air pipe 2 connected to the openings at the upper and lower ends of the main pipe body 1 is connected to the pipe connecting piece 4, and the pipe connecting piece 4 is provided with an air port 41. The pipe connecting piece 4 can be installed on the corresponding air pipe 2 in a plug-in structure, and during use, the air port 41 provided on the pipe connecting piece 4 can be plugged in for corresponding breathing training. The addition of the pipe connecting piece 4 can effectively reduce the wear and even deformation of the air pipe 2, and the pipe connecting piece 4 is arranged in Figure 1 or Figure 2 The arc-shaped structure described in the above or
[0031] The air port 41 on the pipe connecting piece 4 is provided with two groups, and the air port 41 is covered with a plug 42 of appropriate size. The pipe connecting piece 4 is provided with multiple groups of air ports 41, which are covered with appropriate plugs 42. The corresponding air ports 41 can be connected and the corresponding air ports 41 can be plugged by the plugs 42 according to different training requirements, and the flexibility can be adjusted. At the same time, it can also be used for synchronous training of two people, which is suitable for different training groups and improves the interactivity and entertainment during training.
[0032] The two groups of pipeline connecting pieces 4 are respectively arranged at the upper and lower openings of the main pipe body 1 and connected with the ventilation pipeline 2, and a handle 5 is further connected on the pipeline connecting pieces 4.
[0033] The handle 5 is further detachably provided with a handle 51. Figure 2 As can be seen, the handle 51 is correspondingly clamped on the handle 5 through the clamping ring structure 511 provided on the handle 5, which is convenient for taking and using and can also be rotated around the handle 5 to a certain angle, so as to adjust the holding angle and the training process in the corresponding direction, thereby improving the use effect.
[0034] The training device main body is further detachably provided with a fixing frame 6, which includes two groups of fixing seats 61 for fixing the pipeline connecting pieces 4 connected with the ventilation pipeline 2 at the upper and lower openings of the main pipe body 1, and a plurality of connecting pipes for fixing the fixing seats 61. Figure 3 As can be seen from the structure of the fixing frame 6 shown in Figure 4 As can be seen from the detachable connection mode of the fixing frame 6 shown in The two groups of fixing seats 61 are respectively arranged at the bottom of the pipeline connecting pieces 4 on both sides of the main pipe body 1 and are fixed through the plurality of connecting pipes provided in the plug-in structure, so that the fixing frame 6 formed by the structure can play a certain position limiting and protection role on the training device main body, which is convenient for use and direction adjustment and is convenient for placement and storage in different positions, thereby improving the use flexibility and carrying convenience.
[0035] The above description in the specification is only an example of the present application. Those skilled in the art of the present application can make various modifications or supplements or use similar ways to replace the described specific embodiments, as long as they do not deviate from the content of the specification or exceed the scope defined by the claims, which shall belong to the protection scope of the present application.
Claims
1. A pulmonary trainer comprising a trainer body, characterized in that: The training device comprises a main pipe body provided with openings at upper and lower ends, air ducts connected to the openings at the upper and lower ends of the main pipe body, and pipe valves provided on the pipe bodies of the air ducts.
2. The pulmonary trainer of claim 1, wherein: The sensor is provided in a displacement sensor structure and has two groups of sensors arranged at the upper and lower ends of the main pipe body and corresponding to the positions of the floating ball moving to the openings.
3. The pulmonary trainer of claim 1, wherein: The main pipe body is further provided with scale lines of appropriate length on the outer wall.
4. The pulmonary trainer of claim 1, wherein: The air ducts connected to the openings at the upper and lower ends of the main pipe body and the pipe valves provided thereon form a connecting pipe structure which is detachably mounted on the openings at the upper and lower ends of the main pipe body.
5. The pulmonary trainer of claim 1, wherein: The air ducts are each connected with a duct connector provided with an air vent.
6. The pulmonary trainer of claim 5, wherein: The air vents on the duct connectors are provided with two groups of plugs of appropriate size.
7. The pulmonary trainer of claim 5, wherein: The duct connectors are further connected with handle bars.
8. The pulmonary trainer of claim 7, wherein: The handle bars are detachably mounted on the training device body.
9. The pulmonary trainer of claim 1, wherein: The training device body is further detachably mounted with a fixing frame comprising two groups of fixing seats for fixing the duct connectors connected to the openings at the upper and lower ends of the main pipe body and a plurality of connecting pipes between the two groups of fixing seats for fixing the fixing seats.