CN211752266U - Medical treatment is with lung function training ware - Google Patents

Medical treatment is with lung function training ware Download PDF

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Publication number
CN211752266U
CN211752266U CN201922393198.5U CN201922393198U CN211752266U CN 211752266 U CN211752266 U CN 211752266U CN 201922393198 U CN201922393198 U CN 201922393198U CN 211752266 U CN211752266 U CN 211752266U
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training
tube
valve
lung function
pipe
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CN201922393198.5U
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Chinese (zh)
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刘靓
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Individual
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Abstract

A medical lung function trainer at least comprises a training cavity, a training tube, an expiration tube and an inspiration tube, wherein the training tube comprises a first training tube, a second training tube and a third training tube, the first training tube, the second training tube and the third training tube are independently arranged in the training cavity and are integrally connected with the training cavity; the expiration pipe and the inspiration pipe are connected with the two ends of the training cavity in a threaded mode; the first training tube, the second training tube and the third training tube are respectively provided with a first folding air bag, a second folding air bag and a third folding air bag which are different in color. The lung function trainer is simple in structure, can be used for respiratory dual-function training, and can be used for selecting a corresponding training tube to train according to the condition of a patient.

Description

Medical treatment is with lung function training ware
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to a pulmonary function training ware is used in medical treatment.
Background
The lung is a very important organ of the human body. Breathing is the most important function of the human body, but is also most easily ignored by people. Exhalation is the passive process of alveolar elastic retraction and the repositioning of ribs and sternum by gravity, and inhalation movement is the active process caused by the contraction of inspiratory muscles. With the increasing environmental pollution, the lung suffers from more and more diseases. For patients with lung and airway diseases, doctors can take different treatment measures according to the specific disease conditions of the patients. Generally, doctors will recommend a combination of medication and physical therapy to accelerate the patient's recovery.
However, most drugs for treating the lung are expensive, so physical therapy is generally selected by most patients to enhance lung function. Therefore, various lung function trainers are also available on the market. For example, people originally adopt simpler methods such as "balloon blowing" and "bottle blowing" to train the lung function, but with the rapid development of science and technology, people have higher and higher requirements on the function and performance of the lung function trainer.
At present, lung function trainers gradually develop towards high compliance of patients, good matching degree and the like, but the existing lung function trainers still have a plurality of defects and are still to be improved.
For example, chinese patent (No. CN201880282U) discloses a breathe economic benefits and social benefits lung function training ware, including the base, be equipped with float pipe and air flue on the base, the bottom of air flue is equipped with blows the hole, the top is equipped with the through-hole and is linked together with the float pipe, the intraductal float that is equipped with the activity of float, its bottom is equipped with the bleeder vent, is equipped with the expiration base at the top of air flue, is equipped with positive and negative two-sided scale on the float pipe, this utility model has add double-base and positive and negative two-sided scale, has made the training ware have simultaneously breathed in and two kinds of training.
However, the lung function training machine disclosed in this patent requires the lung function training machine to be placed upside down again from an upright state when the training for inhalation is performed after the training for exhalation is performed, and is extremely inconvenient to use, and the float has a light weight and is likely to float by the action of air flow and buoyancy, resulting in poor training effect. In addition, different training tubes cannot be selected at any time according to the condition of the patient, and inconvenience is brought to the training of the patient.
Furthermore, on the one hand, due to the differences in understanding to the person skilled in the art; on the other hand, since the inventor studied a lot of documents and patents when making the present invention, but the space did not list all details and contents in detail, however, this by no means the contents of the present invention does not possess these prior art features, but on the contrary the present invention has possessed all features of the prior art, and the applicant reserves the right to increase the related prior art in the background.
SUMMERY OF THE UTILITY MODEL
In view of the above technical deficiencies, the present invention provides a medical lung function training device, at least comprising a training chamber, a training tube disposed in the training chamber, an exhalation tube and an inhalation tube disposed in an external chamber of the training chamber, wherein the training tube comprises a first training tube, a second training tube and a third training tube, wherein the first training tube, the second training tube and the third training tube are independently disposed in the training chamber and integrally connected to the training chamber; the expiration pipe and the inspiration pipe are connected with the two ends of the training cavity in a threaded mode; the first training tube, the second training tube and the third training tube are internally provided with a first air bag, a second air bag and a third air bag respectively, and the first air bag, the second air bag and the third air bag are folding air bags with different colors.
According to a preferred embodiment, a first color ball, a second color ball and a third color ball are respectively arranged inside the first training tube, the second training tube and the third training tube, wherein the first color ball, the second color ball and the third color ball are hollow spheres with different colors; the diameter ranges of the first color ball, the second color ball and the third color ball are 1/2-1/5 of the diameters of the inner cavities of the tube bodies of the first training tube, the second training tube and the third training tube respectively.
According to a preferred embodiment, the outer side wall of the training cavity is connected with an oxygen generator in a threaded manner, and an oxygen generation adjusting knob and a nasal inhalation oxygen supply pipe are arranged on the oxygen generator, wherein the oxygen generation adjusting knob is arranged on the side wall of the oxygen generator; the nasal inhalation oxygen supply tube is connected with the oxygen generator in a clamping manner, and the nasal inhalation oxygen supply tube can be detached and replaced.
According to a preferred embodiment, the first training tube, the second training tube and the third training tube are provided with through openings at two ends, wherein the through openings at one side of the first training tube, the second training tube and the third training tube are connected with an expiration tube in a threaded manner; and the through holes on the other sides of the first training pipe, the second training pipe and the third training pipe are connected with an air suction pipe in a threaded mode.
According to a preferred embodiment, the first training tube, the second training tube and the third training tube are further provided with valves at the connection part with the inhalation tube and the exhalation tube, the valves comprise a first valve, a second valve, a third valve, a fourth valve, a fifth valve and a sixth valve, wherein the first valve and the sixth valve are respectively arranged at two ends of the third training tube; the second valve and the fifth valve are respectively arranged at two ends of a second training pipe; the third valve and the fourth valve are respectively arranged at two ends of the first training pipe.
According to a preferred embodiment, a suction nozzle is arranged at one end of the inhalation tube, which is far away from the training chamber, and a blowing nozzle is arranged at one end of the exhalation tube, which is far away from the training chamber; and the suction nozzle and the blowing nozzle are respectively connected with the inhalation tube and the exhalation tube in a clamping manner.
According to a preferred embodiment, a base and a top cover are respectively arranged at two ends of the training cavity, the base and the top cover are integrally connected with the training cavity, and an adsorption disc is arranged at the bottom of the base.
According to a preferred embodiment, the side walls of the first training tube, the second training tube and the third training tube are all provided with scale marks, wherein the scale marks of the first training tube, the second training tube and the third training tube are all 0-1000 ml.
According to a preferred embodiment, the first, second and third balloons have a width equal to the diameter of the lumens of the first, second and third training tubes respectively.
According to a preferred embodiment, a hand pull is arranged on the side wall of the training cavity, and the hand pull and the training cavity are connected integrally.
The utility model provides a pulmonary function training ware is used in medical treatment's beneficial effect is following one or more at least:
firstly, the technical problem that the training effect is influenced due to the fact that a floater is too light in the prior art is solved by additionally arranging a foldable air bag;
secondly, the trouble of inverting the whole lung function trainer for performing the dual-function training of expiration and inspiration in the prior art is solved by additionally arranging the inspiration tube, so that the dual-function training of expiration and inspiration is very convenient;
thirdly, by arranging different valves, corresponding training tubes can be selected for training according to the specific conditions of patients;
fourth, by providing a detachable mouthpiece and a mouthpiece, contamination can be prevented and it is possible to allow people of different ages to use the lung function trainer.
Drawings
Fig. 1 is a drawing of a lung function training device for medical use provided by the present invention (air bag and color ball are provided in the training tube);
FIG. 2 is a drawing of a lung function training device for medical use according to the present invention (only air bag is in the training tube); and
fig. 3 is a drawing of the lung function training device for medical use according to the present invention (only color ball is in the training tube).
List of reference numerals in the description
1: base 2: the top cover 3: oxygen generator
4: first training tube 5: second training tube 6: third training tube
7: the first color ball 8: the second color ball 9: third color ball
10: first airbag 11: second airbag 12: third air bag
13: nasal inhalation oxygen supply tube 14: pulling by a hand 15: air suction pipe
16: the expiratory tube 17: the suction nozzle 18: blowing nozzle
19: oxygen generation adjusting knob 22: first valve 23: second valve
24: third valve 25: fourth valve 26: fifth valve
27: sixth valve
Detailed Description
The following describes the lung function training device for medical use in accordance with the present invention in detail with reference to the accompanying drawings.
Example 1
As shown in fig. 1, a medical lung function training device includes at least a training chamber and a training tube provided in the training chamber, and the training tube includes a first training tube 4, a second training tube 5, and a third training tube 6. Wherein the first training tube 4, the second training tube 5 and the third training tube 6 are internally provided with a first air bag 10, a second air bag 11 and a third air bag 12, respectively. The first, second and third airbags 10, 11, 12 are different colors of foldable airbags. The widths of the first air bag 10, the second air bag 11 and the third air bag 12 are respectively equal to the widths of the inner cavities of the tube bodies of the first training tube 4, the second training tube 5 and the third training tube 6.
Preferably, the first, second and third air cells 10, 11, 12 may be air cells that contact through openings at both ends of the training tube in which they are located. For example, when performing an expiratory exercise, the patient exhales into the respective tubes and the air flow blows the air bag upwards, which moves from an initial folded state to an extended state. When the patient performs inspiration training, the air bag is deflated from the expansion state during expiration to the initial folding state through the inspiration effect of the patient, so that the patient achieves the aim of dual-function training of expiration and inspiration.
Preferably, the first airbag 10, the second airbag 11, and the third airbag 12 may be three airbags having different volumes. For example, the volume of the third air cell 12 is 1000ml, the volume of the second air cell 11 is 2000ml, the volume of the first air cell 10 is 3000ml, and the volume of the training tube where the corresponding air cell is located is also adjusted adaptively.
Specifically, for example, when the patient is initially trained, the patient may open only the first valve 22 or the sixth valve 27 and perform the exhalation or inhalation training using the third bladder 12 having the smallest volume (1000ml) because the lung function is weak. After a period of patient training, the second valve 23 or the fifth valve 26 can be opened only, and the second airbag 11 with a medium volume (2000ml) can be used for exhalation or inhalation training. When the lung function of the patient is substantially improved, only the third valve 24 or the fourth valve 25 can be opened, and the first air bag 10 with the largest volume (3000ml) can be used for the exhalation training or the inhalation training. Thereby achieving the aim of gradually rehabilitating training.
Preferably, the training chamber, the first training tube 4, the second training tube 5 and the third training tube 6 are all made of a transparent hard rubber material. Wherein, the training chamber is hollow square body structure, and first training pipe 4, second training pipe 5 and third training pipe 6 set up in the inside in training chamber to the tip and the training chamber of first training pipe 4, second training pipe 5 and third training pipe 6 are connected as an organic whole.
Preferably, the first training tube 4, the second training tube 5 and the third training tube 6 are all cylindrical lumens with hollow interiors, and the shapes and volumes of the first training tube 4, the second training tube 5 and the third training tube 6 are all the same.
Specifically, utilize the utility model provides a before pulmonary function training ware trains, can also select not suction nozzle and blow gun of equidimension according to patient's age bracket to satisfy different patients' demand. And can meet the requirements of different patients or the same patient in different training stages through selectively switching on and off partial valves.
Specifically, utilize the utility model provides a during pulmonary function training ware trains, the patient can be through observing the position of various ball or gasbag removal in the training pipe, and then lets the patient observe the motion condition of oneself air current in the training pipe in-process to give certain vision encouragement to patient's training process. In addition, the oxygen generator can provide oxygen for the patient with injured lungs during training, and oxygen deficiency is prevented.
Preferably, the first airbag 10, the second airbag 11 and the third airbag 12 are green, red and purple in color, and the first airbag 10, the second airbag 11 and the third airbag 12 are respectively in close contact with the inner cavity side walls of the training tube 4, the second training tube 5 and the third training tube 6 to prevent the air flow from flowing from the contact part of the airbags and the training tubes, thereby influencing the moving effect of the first airbag 10 in the first training tube 4, the second airbag 11 in the second training tube 5 and the third airbag 12 in the third training tube 6.
According to a preferred embodiment, the first training tube 4, the second training tube 5 and the third training tube 6 are further provided with a first color ball 7, a second color ball 8 and a third color ball 9, respectively, inside. The first color ball 7, the second color ball 8 and the third color ball 9 are hollow spheres with different colors. The diameter ranges of the first colored ball 7, the second colored ball 8 and the third colored ball 9 are 1/2-1/5 of the widths of the inner cavities of the tube bodies of the first training tube 4, the second training tube 5 and the third training tube 6 respectively.
Preferably, the first color ball 7, the second color ball 8 and the third color ball 9 have the same structure, appearance and size, and only have hollow balls with different colors, specifically, the colors of the first color ball 7, the second color ball 8 and the third color ball 9 can be red, purple and green in sequence.
Specifically, the diameter ranges of the first colored ball 7, the second colored ball 8 and the third colored ball 9 are 1/2-1/5 of the widths of the inner cavities of the tube bodies of the first training tube 4, the second training tube 5 and the third training tube 6 respectively. The diameter of the color ball is set in this way for two reasons: on the one hand, to ensure that the color balls move freely in the corresponding training tubes, the diameter of the color balls should be as small as possible than the diameter of the training chambers. On the other hand, however, the diameter of the ball affects the size of the ball, while too small a shape of the ball affects the visual observation of the position of the ball moving in the corresponding training tube, so the diameter of the ball must be within a proper range. Therefore, the utility model discloses according to verifying the back many times, the better value scope of selecting, the diameter scope of first various ball 7, second various ball 8 and third various ball 9 is 1/2-1/5 of first training pipe 4, second training pipe 5 and the 6 body inner chamber widths of third training pipe respectively promptly, as for concrete value, can be decided according to actual conditions.
According to a preferred embodiment, the outer side wall of the training cavity is connected with an oxygen generator 3 in a threaded connection mode, and an oxygen generation adjusting knob 19 and a nasal inhalation oxygen supply pipe 13 are arranged on the oxygen generator 3. Wherein, the oxygen generation adjusting knob 19 is arranged on the side wall of the oxygen generator 3; the nasal inhalation oxygen supply tube 13 is a transparent rubber tube, the nasal inhalation oxygen supply tube 13 is connected with the oxygen generator 3 in a clamping manner, and the nasal inhalation oxygen supply tube 13 can be disassembled and replaced.
Preferably, the oxygen generator 3 can be a medical oxygen generator with 8F-3ZW brand, or oxygen generators with the same model and different brands. The nasal inhalation oxygen supply tube 13 is made of hard rubber materials, and one end of the nasal inhalation oxygen supply tube 13 close to the patient is provided with a nasal inhalation plug which is connected with the patient in a sticking way through stickers arranged at two sides of the nasal inhalation plug.
Specifically, the current lung function training ware is mostly pure breathing training, and the injured patient of lung is in the state of high oxygen deficiency when the training, and this can make the patient symptoms such as light-headedness appear, causes the breathing training to be difficult to maintain to it is very poor to make the training effect. The utility model discloses a set up oxygenerator 3 and can provide oxygen for the injured patient of lung when the training, prevent that it from appearing the condition of high oxygen deficiency.
According to a preferred embodiment, the first training tube 4, the second training tube 5 and the third training tube 6 are provided with through openings at both ends. Wherein, the through holes at one side of the first training tube 4, the second training tube 5 and the third training tube 6 are all connected with an expiration tube 16 in a threaded manner; the openings on the other side of the first training tube 4, the second training tube 5 and the third training tube 6 are connected to the suction tube 15 in a threaded manner.
According to a preferred embodiment, the first 4, second 5 and third 6 training tubes are also provided with valves in the connection with the inspiration duct 15 and the expiration duct 16. The valves include a first valve 22, a second valve 23, a third valve 24, a fourth valve 25, a fifth valve 26, and a sixth valve 27. Wherein, the first valve 22 and the sixth valve 27 are respectively arranged at two ends of the third training pipe 6, the second valve 23 and the fifth valve 26 are respectively arranged at two ends of the second training pipe 5, and the third valve 24 and the fourth valve 25 are respectively arranged at two ends of the first training pipe 4.
Preferably, the first valve 22, the second valve 23, the third valve 24, the fourth valve 25, the fifth valve 26 and the sixth valve 27 are manual cut-off type valves. Such as stop valves and plug valves, etc. Specifically, the plastic one-way cut-off valve can be a one-way cut-off valve with the brand of Sucai and the model of AQTCV, and can also be cut-off valves with the same model and different brands.
Specifically, when the patient is performing expiratory training, a valve may be selectively opened before the training, because the lung function is initially weak. For example, the first valve 22 is opened for the initial training, and the other valves are closed, i.e. the other valves block the gas from entering the training tubes controlled by the other valves, so that the other valves function to block the gas from entering the corresponding training tubes.
The utility model discloses set up different valves on the position of the opening contact of exhaling pipe 16 and training pipe mainly be in order to adapt to different patients' use or make same patient use in different training treatment stages.
Specifically, when the same patient initially performs an expiratory training, due to the weak expiratory capacity of the patient, it is only necessary to open the first valve 22 before the training, so that the second valve 23 and the third valve 24 are in a closed state. In this way, the gas exhaled by the patient can only enter the third training tube 6 through the exhalation tube 16, and the gas entering the third training tube 6 gradually changes the third airbag 12 from the initial folded state to the extended state, so as to drive the third colorful ball 9 to move upward in the third training tube 6.
Specifically, when the same patient has been exhaling for a while, the ability to exhale gradually improves, the first valve 22 and the second valve 23 may be opened simultaneously before the exhaling training, so that the third valve 24 is in a closed state, and therefore, the gas exhaled by the patient enters the third training tube 6 and the second training tube 5 through the exhaling tube 16. Then, the gas entering the third training tube 6 makes the third air bag 12 gradually change from the initial folded state to the extended state, and further drives the third colored ball 9 to move upward in the third training tube 6. The gas entering the second training tube 5 gradually changes the second airbag 11 from the initial folded state to the extended state, and then drives the second color ball 8 to move upward in the second training tube 5.
Specifically, after the expiratory capacity of the same patient is basically improved, before expiration, the first valve 22, the second valve 23 and the third valve 24 can be opened simultaneously, so that the through ports of the first training tube 4, the second training tube 5 and the third training tube 6 are all in an open state, so that the gas exhaled by the patient can enter the first training tube 4, the second training tube 5 and the third training tube 6 simultaneously, under the action of the airflow, the corresponding air bag is gradually changed from an initial folded state to an extended state, and then the corresponding color balls in the tube body move together.
Similarly, when the user is different patients, the number of the opened valves can be selected to perform different degrees of training before training according to the ability and the condition of the patient to exhale, the action and the principle of the training are the same as those of the same patient, and the description is omitted here.
Similarly, the inhalation training is provided with different valves at the contact part of the inhalation tube 15 and the training tube, and the purpose, action and principle are consistent with those of the above exhalation training, and the detailed description is omitted here.
According to a preferred embodiment, the end of the inspiration duct 15 remote from the training chamber is provided with a mouthpiece 17 and the end of the expiration duct 16 remote from the training chamber is provided with a mouthpiece 18. And the mouthpiece 17 and the mouthpiece 18 are connected to the inhalation duct 15 and the exhalation duct 16, respectively, in a snap-fit manner.
Preferably, the mouthpiece 17 and the mouthpiece 18 are made of elastic or flexible material, such as medical silica gel and medical rubber, and the cross section of the mouthpiece 17 and the mouthpiece 18 is closed, such as circular, so as to ensure the air tightness between the mouthpiece 17 and the mouthpiece 18 and the mouth of the patient.
Specifically, the pipe is stung to current pulmonary function training ware training in the use and is likely to breed the bacterium, uses for a long time and can influence the effect of training and patient's health.
Specifically, the utility model discloses set up suction nozzle 17 and blow gun 18 that can dismantle or change, it has two purposes mainly: firstly, make things convenient for different patients to use, prevent to pollute, but in time change. Secondly, for being applicable to different use groups, because the utility model provides a suction nozzle 17 and mouthpiece 18 need not insert the patient's oral cavity, only need press suction nozzle 17 and mouthpiece 18 around patient's mouth during the use, consequently, child and adult homoenergetic use.
According to a preferred embodiment, a base 1 and a top cover 2 are respectively arranged at two ends of the training cavity, the base 1 and the top cover 2 are integrally connected with the training cavity, and an adsorption disc is arranged at the bottom of the base 1.
Specifically, current lung function training ware is in order to reach expiration and two kinds of training purposes of breathing in for two bases of setting up of lung function training ware, after expiration training is accomplished, when needing to breathe in the training, just need invert the lung function training ware, so that breathe in the training, this process is not only troublesome but also hard. Therefore, the utility model provides a pulmonary function training ware is through setting up breathing pipe and two kinds of pipes of exhaling pipe to set up foldable gasbag and various ball cooperation and used the back, just need not invert, can reach two kinds of training modes of exhaling and breathing in.
According to a preferred embodiment, the first training tube 4, the second training tube 5 and the third training tube 6 are provided with scale marks on their side walls, and the scale marks on the first training tube 4, the second training tube 5 and the third training tube 6 are each 0-1000 ml.
Specifically, before training, when the patient only opens the first valve 22 for training, the other valves are closed, the air flow entering the third training tube 6 will make the third air bag 12 gradually change from the initial folded state to the extended state, the patient can observe the specific scale in the third training tube 6 according to the rising position of the third air bag 12 or the color ball, so as to clarify the training state of his body,
similarly, after the patient only trains with the third training tube 6 for a period of time, the other valves can be selectively opened, the rising position of the air bag or the color ball in the training tube corresponding to the valve is observed, and the scale value of the final position of the air bag or the color ball minus the scale value of the initial position is the specific numerical value of the exhalation or inhalation training. And then adding the specific values of the corresponding training tubes to obtain the total value of the expiratory training or the inspiratory training. This is the utility model provides a lung function training ware exhale or breathe in the calculation mode of the numerical value of training, but in actual training, general patient need not all accurate calculation oneself exhale or breathe in the concrete numerical value of training at every turn, only need carry out exhale many times or breathe in the training for oneself is recovered gradually can.
Specifically, when the patient trains, if only simple exhale and breathe in the training, do not have visual incentive material, can make patient's training too bland and blind unavoidably, consequently, the utility model discloses set up the various ball and the gasbag of different colours, through observing the position that various ball or gasbag removed in the training pipe, and then let the patient observe the motion condition of oneself training in-process air current in the training pipe to give certain vision encouragement to patient's training process.
According to a preferred embodiment, the side wall of the training cavity is provided with a hand pull 14, and the hand pull 14 is integrally connected with the outer side wall of the training cavity.
Specifically, the patient needs to hold the inhalation tube 15 or the exhalation tube 16 with one hand and press the corresponding suction nozzle 17 or the mouthpiece 18 against the mouth of the patient for training, and at this time, the patient can hold the hand pull 14 with the other hand to exert a better force for performing the exhalation or inhalation training.
Example 2
As shown in fig. 2, a medical lung function training machine includes at least a training chamber and a training tube provided in the training chamber, and the training tube includes a first training tube 4, a second training tube 5, and a third training tube 6. Wherein the first training tube 4, the second training tube 5 and the third training tube 6 are internally provided with a first air bag 10, a second air bag 11 and a third air bag 12, respectively. The first, second and third airbags 10, 11, 12 are different colors of foldable airbags. The widths of the first air bag 10, the second air bag 11 and the third air bag 12 are respectively equal to the widths of the inner cavities of the tube bodies of the first training tube 4, the second training tube 5 and the third training tube 6.
In this embodiment 2, only the first airbag 10, the second airbag 11 and the third airbag 12 are respectively disposed inside the first training tube 4, the second training tube 5 and the third training tube 6, and the corresponding color balls are not disposed. Other parts are the same as those in embodiment 1, and are not described in detail here.
After multiple verification, with the lung function trainer provided in this embodiment 2, during the exhalation training, the air bag in the corresponding training tube is gradually changed from the initial folded state to the extended state by the exhaled air of the patient. During inspiration training, the air bag collapses from an extended position during expiration to a folded position.
Example 3
As shown in fig. 3, a medical lung function training device includes at least a training chamber and a training tube provided in the training chamber, and the training tube includes a first training tube 4, a second training tube 5, and a third training tube 6. Wherein, the inside of first training pipe 4, second training pipe 5 and third training pipe 6 still is provided with first colored ball 7, second colored ball 8 and third colored ball 9 respectively.
In this embodiment 3, only the first colored ball 7, the second colored ball 8 and the third colored ball 9 are respectively disposed inside the first training tube 4, the second training tube 5 and the third training tube 6, and no corresponding air bags are disposed. Other parts are the same as those in embodiment 1, and are not described in detail here.
Through many times of verifications, when the lung function training device in this embodiment 3 is used for inspiration training, the effect of the airflow makes the color balls in the corresponding training tubes move normally. When the patient is in the exhalation training, the color balls in the corresponding training tubes can also move correspondingly due to the exhalation gas of the patient.
It should be noted that the above-mentioned embodiments are exemplary, and that those skilled in the art, having benefit of the present disclosure, may devise various arrangements that are within the scope of the present disclosure and that fall within the scope of the invention. It should be understood by those skilled in the art that the present specification and figures are illustrative only and are not limiting upon the claims. The scope of the invention is defined by the claims and their equivalents.

Claims (10)

1. A medical lung function training aid comprising at least a training chamber and a training tube arranged inside the training chamber, and an exhalation tube (16) and an inhalation tube (15) arranged outside the training chamber, characterized in that the training tube comprises a first training tube (4), a second training tube (5) and a third training tube (6), wherein:
the first training tube (4), the second training tube (5) and the third training tube (6) are independently arranged inside the training cavity and are integrally connected with the training cavity;
the expiration duct (16) and the inspiration duct (15) are connected in a threaded manner at the two ends of the training chamber;
the first training tube (4), the second training tube (5) and the third training tube (6) are internally provided with a first air bag (10), a second air bag (11) and a third air bag (12) respectively, and the first air bag (10), the second air bag (11) and the third air bag (12) are folding air bags with different colors.
2. The lung function training device for medical use according to claim 1, wherein the first training tube (4), the second training tube (5) and the third training tube (6) are further provided with a first color ball (7), a second color ball (8) and a third color ball (9) inside thereof, respectively, wherein:
the first color ball (7), the second color ball (8) and the third color ball (9) are hollow spheres with different colors;
the diameter ranges of the first color ball (7), the second color ball (8) and the third color ball (9) are 1/2-1/5 of the diameters of the inner cavities of the first training tube (4), the second training tube (5) and the third training tube (6) respectively.
3. The medical lung function training device according to claim 2, wherein an oxygen generator (3) is connected to the outer side wall of the training chamber in a threaded manner, and an oxygen generation adjusting knob (19) and a nasal inhalation oxygen supply tube (13) are arranged on the oxygen generator (3), wherein:
the oxygen generation adjusting knob (19) is arranged on the side wall of the oxygen generator (3);
the nasal inhalation oxygen supply tube (13) is connected with the oxygen generator (3) in a clamping manner, and the nasal inhalation oxygen supply tube (13) can be detached and replaced.
4. The medical lung function training machine according to claim 3, wherein the first training tube (4), the second training tube (5), and the third training tube (6) are provided with through openings at both ends, wherein:
the openings at one side of the first training tube (4), the second training tube (5) and the third training tube (6) are all connected with an expiration tube (16) in a threaded manner;
the through openings on the other sides of the first training pipe (4), the second training pipe (5) and the third training pipe (6) are connected with an air suction pipe (15) in a threaded mode.
5. The medical lung function trainer according to claim 4, wherein the connection points of the first training tube (4), the second training tube (5) and the third training tube (6) with the inhalation tube (15) and the exhalation tube (16) are further provided with valves including a first valve (22), a second valve (23), a third valve (24), a fourth valve (25), a fifth valve (26) and a sixth valve (27), wherein:
the first valve (22) and the sixth valve (27) are respectively arranged at two ends of a third training pipe (6);
the second valve (23) and the fifth valve (26) are respectively arranged at two ends of the second training pipe (5);
the third valve (24) and the fourth valve (25) are respectively arranged at two ends of the first training pipe (4).
6. The medical lung function training machine according to claim 5, wherein the end of the inhalation tube (15) remote from the training chamber is provided with a mouthpiece (17), and the end of the exhalation tube (16) remote from the training chamber is provided with a mouthpiece (18); and the suction nozzle (17) and the blowing nozzle (18) are respectively connected with the inhalation pipe (15) and the exhalation pipe (16) in a clamping manner.
7. The medical lung function trainer as claimed in claim 6, wherein a base (1) and a top cover (2) are respectively arranged at two ends of the training cavity, the base (1) and the top cover (2) are integrally connected with the training cavity, and an adsorption disc is arranged at the bottom of the base (1).
8. The medical lung function training machine according to claim 7, wherein the side walls of the first training tube (4), the second training tube (5) and the third training tube (6) are provided with scale marks, wherein:
the scale marks of the first training tube (4), the second training tube (5) and the third training tube (6) are all 0-1000 ml.
9. The medical lung function trainer according to claim 8, wherein the widths of the first balloon (10), the second balloon (11) and the third balloon (12) are equal to the lumen diameters of the tubular bodies of the first training tube (4), the second training tube (5) and the third training tube (6), respectively.
10. The medical lung function trainer as claimed in claim 9, wherein a hand pull (14) is arranged on the side wall of the training cavity, and the hand pull (14) is integrally connected with the training cavity.
CN201922393198.5U 2019-12-26 2019-12-26 Medical treatment is with lung function training ware Expired - Fee Related CN211752266U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112451932A (en) * 2020-10-31 2021-03-09 李振东 Thoracic surgery postoperative breathing exercise nursing device and method
CN112755475A (en) * 2021-01-04 2021-05-07 赵柏英 Breathing training device for cardiology department
CN113996030A (en) * 2021-11-08 2022-02-01 程娟 Strength controllable type pulmonary function trainer

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112451932A (en) * 2020-10-31 2021-03-09 李振东 Thoracic surgery postoperative breathing exercise nursing device and method
CN112755475A (en) * 2021-01-04 2021-05-07 赵柏英 Breathing training device for cardiology department
CN113996030A (en) * 2021-11-08 2022-02-01 程娟 Strength controllable type pulmonary function trainer

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