CN211561752U - Comprehensive respiration training airway structure in MDT mode - Google Patents
Comprehensive respiration training airway structure in MDT mode Download PDFInfo
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- CN211561752U CN211561752U CN201921990383.6U CN201921990383U CN211561752U CN 211561752 U CN211561752 U CN 211561752U CN 201921990383 U CN201921990383 U CN 201921990383U CN 211561752 U CN211561752 U CN 211561752U
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Abstract
The utility model discloses a comprehensive breathing training air flue structure under MDT mode, which comprises an outer shell, the shell is both ends formula structure and including the breathing training section of thick bamboo that is located the top and fix the storage section of thick bamboo in breathing training section of thick bamboo below, the inside level of breathing training section of thick bamboo is provided with the person in charge and the adjustment tank has been seted up at the top, the inside activity of the person in charge is provided with piston and upper left corner and has seted up the gas vent, the left side of piston is connected with pressure spring, pressure spring's outer end is connected with the regulation pole, the upper end of adjusting the pole sets up in the adjustment tank, the person in charge right-hand member has seted up. The utility model discloses a device for patient breathes and trains, the device can adjust the training intensity of breathing according to patient's respiratory state and recovered stage, and the improvement device is to patient's recovered effect to the device simple structure, lightweight more, the cost is low, and convenient to carry.
Description
Technical Field
The utility model relates to a medical treatment rehabilitation apparatus technical field specifically is a comprehensive breathing training air flue structure under MDT mode.
Background
When a person normally inhales, the diaphragm contracts and the outer intercostal muscles contract, when the person inhales forcefully, the person also needs to inhale auxiliary muscles, such as the assistance of trapezius muscles and oblique angle muscles, the chest is widened and lifted as a result of the contraction of the muscles, the thoracic space is expanded to the limit, so the inspiratory muscles need to be exercised, the inspiratory trainer of a respirator adopts the basic principle of impedance training, and the user needs to spend effort to resist the impedance set by the trainer when inhaling through the inspiratory trainer so as to increase the inspiratory muscle strength, thereby the strength and tolerance of the respiratory muscle are increased, and the person needs to carry out the respiratory training by a special respiratory training device in the operation rehabilitation process of some patients suffering from respiratory diseases so as to achieve better rehabilitation effect.
However, the existing breathing training device for patients in some small and medium hospitals has the following problems in the use process: (1) the structure is too simple, the breathing training device cannot be correspondingly adjusted according to the breathing condition of a patient, and part of the breathing training devices with adjusting functions exist, but the price is expensive and the cost is high; (2) the hose and the mask of the breathing training device are exposed for a long time, which is easy to generate bacteria and affects the health of patients. For this reason, a corresponding technical scheme needs to be designed to solve the existing technical problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a comprehensive breathing training air flue structure under MDT mode has solved the problem that proposes in the background art, satisfies the in-service use demand.
In order to achieve the above object, the utility model provides a following technical scheme: a comprehensive respiratory training airway structure in an MDT mode comprises a shell, wherein the shell is of a two-end structure and comprises a respiratory training cylinder positioned above and a storage cylinder fixed below the respiratory training cylinder, a main pipe is horizontally arranged in the breathing training cylinder, the top of the breathing training cylinder is provided with an adjusting groove, a piston is movably arranged in the main pipe, the upper left corner of the main pipe is provided with an exhaust port, the left side of the piston is connected with a pressure spring, the outer end of the pressure spring is connected with an adjusting rod, the upper end of the adjusting rod is arranged in the adjusting groove, the right end of the main pipe is provided with an air inlet, the air inlet is externally connected with a plastic flexible hose, the outer side of the air inlet is provided with a hose storage shell, the outer end of the plastic flexible hose is connected with a disposable mask in a threaded manner, the plastic flexible hose and the disposable mask are both arranged in a hose storage shell, and the opening of the hose storage shell is also connected with a cover plate through a hinge;
the storage cylinder is internally provided with a standby storage groove, two groups of slots are symmetrically formed in the opening of the standby storage groove, sealing plates are movably arranged in the slots, and the disposable mask is arranged in the standby storage groove.
As an optimal implementation mode of the utility model, the left side of breathing a training section of thick bamboo is installed handle and inside level and is provided with the deflector, the inside guide way of having seted up of deflector, it sets up in the guide way to adjust the pole activity.
As an embodiment of the present invention, the adjusting rod is an L-shaped structure and the upper end thread is provided with an adjusting knob.
As an optimized implementation mode of the utility model, gear scale marks are evenly carved with on one side of the adjustment tank.
As a preferred embodiment of the utility model, the top of gas vent is connected with the blast pipe, the upper end of blast pipe is located the top of breathing a training section of thick bamboo.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. this scheme has designed a device that is used for patient to breathe and trains, and the device can adjust the training intensity of breathing according to patient's respiratory state and recovered stage, improves the device and to patient's recovered effect to the device simple structure, lighter-weight more, the cost is low, and convenient to carry.
2. Adopt hidden design to the mounting means of hose and gauze mask, can accomodate the storage with hose and gauze mask when the device does not use, reduce the contact with external environment, improve the cleanliness of device to the below is provided with reserve storage mechanism, conveniently stores reserve gauze mask.
Drawings
FIG. 1 is an overall structure diagram of the present invention;
FIG. 2 is a schematic view of the overall adjustment of the present invention;
fig. 3 is a top view of the breath training cartridge of the present invention;
fig. 4 is a structure diagram of the guide plate of the present invention.
In the figure, 1-a breathing training cylinder, 2-a storage cylinder, 3-a main pipe, 4-an adjusting groove, 5-a piston, 6-an exhaust port, 7-a pressure spring, 8-an adjusting rod, 9-an air inlet, 10-a plastic flexible hose, 11-a hose storage shell, 12-a disposable mask, 13-a cover plate, 14-a standby storage groove, 15-a slot, 16-a sealing plate, 17-a handle, 18-a guide plate, 19-a guide groove, 20-an adjusting knob, 21-a gear scale mark and 22-an exhaust pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a comprehensive respiratory training air passage structure under an MDT mode comprises a shell, wherein the shell is of a two-end structure and comprises a respiratory training barrel 1 positioned above and a storage barrel 2 fixed below the respiratory training barrel 1, a main pipe 3 is horizontally arranged in the respiratory training barrel 1, the top of the respiratory training barrel is provided with an adjusting groove 4, the inner part of the main pipe 3 is movably provided with a piston 5, the upper left corner of the main pipe 3 is provided with an exhaust port 6, the left side of the piston 5 is connected with a pressure spring 7, the outer end of the pressure spring 7 is connected with an adjusting rod 8, the upper end of the adjusting rod 8 is arranged in the adjusting groove 4, the right end of the main pipe 3 is provided with an air inlet 9, the air inlet 9 is externally connected with a plastic telescopic hose 10, the outer side of the plastic telescopic hose is provided with a hose storage shell 11, the plastic telescopic hose 10 is of a corrugated tubular structure, the outer end of the, the opening of the hose storage shell 11 is also connected with a cover plate 13 through a hinge;
Further improved, as shown in fig. 4: the left side of the breathing training cylinder 1 is provided with a handle 17, the guide plate 18 is horizontally arranged inside the handle 17, a guide groove 19 is formed inside the guide plate 18, the adjusting rod 8 is movably arranged in the guide groove 19, the guide plate 18 is arranged inside the breathing training cylinder 1, and the adjusting rod 8 can be conveniently adjusted in the breathing training cylinder 1 in an oriented mode.
Further improved, as shown in fig. 1: the adjusting rod 8 is of an L-shaped structure, the upper end of the adjusting rod is provided with an adjusting knob 20 in a threaded mode, the adjusting knob 20 is screwed up at the top of the adjusting rod 8 and is in contact with the bottom of the breathing training cylinder 1 below, and therefore the purpose of limiting and fixing is achieved.
In a further improvement, as shown in fig. 3: gear scale marks 21 are uniformly engraved on one side of the adjusting groove 4, and the intensity can be correspondingly adjusted according to the breathing state of a patient.
And (4) supplementary notes: five gears are arranged in total, and the breathing intensity is increased from left to right.
Specifically, the exhaust pipe is connected with above the exhaust port 6, and the upper end of the exhaust pipe 22 is located at the top of the breathing training cylinder, so that the gas exhaled by the patient inside is conveniently discharged outside through the exhaust port 6 and the exhaust pipe 22.
When in use: the utility model firstly adjusts the gear according to the breathing state of the patient, when the adjusting rod 8 is pulled to move to the right side, the adjusting rod 8 drives the pressure spring 7 below to move to the right side of the main pipe 3 together with the piston 5 at the inner side, thereby the length of the pressure spring 7 at the right side of the exhaust port 6 is increased, the resistance of the piston 5 moving to the exhaust port 6 in the main pipe 3 is improved, otherwise, the adjusting rod 8 is moved to the left side, the resistance of the piston 5 can be reduced, after the adjustment is finished, the adjusting rod 8 is fixed through the adjusting knob 20, then the cover plate 13 is opened to pull the plastic expansion hose 10 and the disposable mask 12 inside the hose storage shell 11 outwards, the disposable mask 12 is clamped at the mouth of the patient, the patient inhales gas through the nasal cavity, then the gas is inhaled into the disposable mask 12 through the mouth, the gas enters the main pipe 3 through the plastic expansion hose, thereby promote piston 5 and move to the left side under the circumstances of extrusion pressure spring 7, when piston 5 removed to gas vent 6 department, the inside gas of person in charge 3 was discharged, and the back of finishing using, accomodate plastic expansion hose 10 and disposable gauze mask 12 to hose deposit 11 in close apron 13 can to reach the respiratory purpose of resistance training.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (5)
1. A comprehensive respiration training airway structure under an MDT mode is characterized in that: comprises a shell, the shell is of a two-end structure and comprises a breathing training cylinder (1) positioned above and a storage cylinder (2) fixed below the breathing training cylinder (1), the breathing training cylinder (1) is horizontally provided with a main pipe (3) and the top of the breathing training cylinder is provided with an adjusting groove (4), the main pipe (3) is movably provided with a piston (5) and the upper left corner of the breathing training cylinder is provided with an exhaust port (6), the left side of the piston (5) is connected with a pressure spring (7), the outer end of the pressure spring (7) is connected with an adjusting rod (8), the upper end of the adjusting rod (8) is arranged in the adjusting groove (4), the right end of the main pipe (3) is provided with an air inlet (9), the air inlet (9) is externally connected with a plastic telescopic hose (10) and the outer side of the plastic telescopic hose is provided with a hose storage shell (11), and the outer end, the plastic telescopic hose (10) and the disposable mask (12) are both arranged in the hose storage shell (11), and the opening of the hose storage shell (11) is also connected with a cover plate (13) through a hinge;
reserve storage tank (14) have been seted up to storage cylinder (2) inside, two sets of slots (15) have been seted up to the opening part symmetry of reserve storage tank (14), and two sets of slot (15) internalization is provided with shrouding (16), and a plurality of groups disposable gauze mask (12) set up in reserve storage tank (14).
2. The structure of the comprehensive breath training airway in MDT mode of claim 1, wherein: handle (17) and inside level are installed in the left side of breathing exercise section of thick bamboo (1) and are provided with deflector (18), guide way (19) have been seted up to deflector (18) inside, adjust pole (8) activity and set up in guide way (19).
3. The structure of the comprehensive breath training airway in MDT mode of claim 1, wherein: the adjusting rod (8) is of an L-shaped structure, and an adjusting knob (20) is arranged at the upper end of the adjusting rod in a threaded mode.
4. The structure of the comprehensive breath training airway in MDT mode of claim 1, wherein: gear scale marks (21) are uniformly engraved on one side of the adjusting groove (4).
5. The structure of the comprehensive breath training airway in MDT mode of claim 1, wherein: the upper portion of gas vent (6) is connected with the blast pipe, the upper end of blast pipe (22) is located the top of breathing a training section of thick bamboo.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921990383.6U CN211561752U (en) | 2019-11-18 | 2019-11-18 | Comprehensive respiration training airway structure in MDT mode |
Applications Claiming Priority (1)
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CN201921990383.6U CN211561752U (en) | 2019-11-18 | 2019-11-18 | Comprehensive respiration training airway structure in MDT mode |
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CN211561752U true CN211561752U (en) | 2020-09-25 |
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CN201921990383.6U Active CN211561752U (en) | 2019-11-18 | 2019-11-18 | Comprehensive respiration training airway structure in MDT mode |
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2019
- 2019-11-18 CN CN201921990383.6U patent/CN211561752U/en active Active
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