CN215274130U - Nasopharyngeal swab collection window for respiratory tract transmitted diseases - Google Patents
Nasopharyngeal swab collection window for respiratory tract transmitted diseases Download PDFInfo
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- CN215274130U CN215274130U CN202121567646.XU CN202121567646U CN215274130U CN 215274130 U CN215274130 U CN 215274130U CN 202121567646 U CN202121567646 U CN 202121567646U CN 215274130 U CN215274130 U CN 215274130U
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- disinfection
- glass window
- window
- window body
- door
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Abstract
A nasopharynx swab collecting window for respiratory tract transmitted diseases comprises a glass window body, wherein an interphone is installed at the upper part of the glass window body, a through hole is installed at the lower part of the glass window body, a sealing plug is inserted from the inner side surface of the glass window body through the through hole, and two mounting holes are formed in the middle of the glass window body; to sum up, the utility model discloses can avoid gathering medical staff and being gathered the person contact as far as possible, the new technology is through the disinfection to glass window form and long barrel glove, kills to exist and is plucked gauze mask respiratory track transmission pathogen and then disseminate the collection environment on every side when gathering the person, and cross infection's the possibility that reduces as far as possible, greatly reduced virus propagation is probably.
Description
Technical Field
The utility model belongs to the technical field of the medical treatment, concretely relates to respiratory tract is spread disease and is collected window with nasopharynx swab.
Background
Respiratory infectious diseases are infectious diseases caused by invasion of pathogens from respiratory infections such as nasal cavities, throats, tracheas, and bronchi of the human body. Common diseases include influenza, measles, chickenpox, rubella, epidemic encephalitis, mumps, tuberculosis, atypical pneumonia, and novel coronary virus pneumonia. Pathogens (bacteria, fungi, viruses and the like) of respiratory tract transmitted diseases usually colonize the nasopharynx, so that corresponding pathogens can be cultured or antibodies of the corresponding pathogens can be detected after the secretion of the nasopharynx is collected by a nasopharynx swab, and the nucleic acid collection widely applied to novel coronavirus pneumonia is carried out by the nasopharynx swab.
At present, medical staff hold a nasopharynx swab when a sample is collected through the nasopharynx swab and insert a collection cotton swab into the nasopharynx of a patient, dip certain secretion of the nasopharynx and seal a nasopharynx swab tube, and then send for inspection. Some respiratory tract transmitted diseases are very highly contagious, when nasopharynx swabs are collected in a large scale, if a collector is usually positioned in a closed room and wears protective clothing, a protective mask, a mask and gloves to collect the novel coronavirus pneumonia, an unsealing and closing window is opened during collection, the mask is taken off by the collector, when the collector takes off the mask, respiratory tract transmitted pathogens are spread to the surrounding collection environment, then the next collector takes off the mask again, the next collector can be transmitted by surrounding pathogens, meanwhile, medical staff collecting the nasopharynx swabs are generally positioned in a closed space, and respiratory tract transmitted viruses can enter the space of the medical staff through the opened closed window to cause infection during collection; therefore, the existing collection mode can cause cross infection between medical staff and a collected person during collection, and disease transmission is accelerated, so that the invention of a new collection window has great significance in preventing the dangerous situation.
SUMMERY OF THE UTILITY MODEL
The utility model provides a respiratory tract spreading disease nasopharynx swab collecting device which can reduce cross infection and virus spreading for solving the defects in the prior art.
In order to solve the technical problem, the utility model adopts the following technical scheme: a nasopharynx swab collecting window for respiratory tract transmitted diseases comprises a glass window body, wherein an interphone is installed at the upper portion of the glass window body, a through hole is installed at the lower portion of the glass window body, a sealing plug is inserted into the through hole from the inner side face of the glass window body, two mounting holes are formed in the middle of the glass window body, each mounting hole is connected with a long-tube glove, and the long-tube gloves are located on the outer side of the glass window body;
one side of the glass window body is hinged with a disinfection window door, the disinfection window door can be covered and buckled on the outer side surface of the glass window body, a disinfectant containing cavity is formed in the disinfection window door, disinfectant is contained in the disinfectant containing cavity, a disinfectant injection port is formed in the top of the disinfection window door, a cock is arranged at the disinfectant injection port, two circular grooves are formed in the inner side surface of the disinfection window door, the positions of the two circular grooves correspond to the positions of the two long gloves, and when the disinfection window door cover is buckled on the outer side surface of the glass window body, the two long gloves can be correspondingly placed in the two circular grooves; a plurality of round holes are formed in the inner side surface of the disinfection window and the two round grooves, and a spray head is arranged in each round hole; the disinfection liquid pump is arranged in the disinfection liquid accommodating cavity and is connected with all the spray heads through a plurality of hoses, and the disinfection control switch is arranged on the inner side surface of the glass window body and is used for controlling the operation of the disinfection liquid pump.
The installation rings are fixed in the two installation holes and provided with internal threads, the opening of the long-tube glove is fixed with the ring body, the ring body is provided with external threads, and the long-tube glove is connected to the installation rings through the threads of the ring body.
A waste liquid collecting drawer is arranged at the lower part of the disinfection window door and is positioned below the disinfectant containing cavity;
the strip hole is formed below the inner side face of the disinfection window door, the filter screen is installed at the position of the strip hole, the lower edge of the strip hole is fixedly provided with an inclined guide plate, and disinfected liquid flows downwards along the outer side face of the glass window body and the inner side face of the disinfection window door and flows into the waste liquid collection drawer through the strip hole after being collected by the guide plate.
One side of glass window body is fixed with two installation pieces, rotates between two installation pieces and installs the pivot, and disinfection window door is fixed in the pivot, installs the motor on the wall of the same face of glass window body installation, installs the drive bevel gear on the motor spindle, and driven bevel gear is installed to the tip of pivot, and drive bevel gear meshes with driven bevel gear mutually, and the control switch with motor electric connection is foot switch.
Adopt above-mentioned technical scheme, the utility model discloses following beneficial effect has: the utility model discloses can avoid as far as possible to gather medical staff and by the contact of gathering the person, the new technology is through the disinfection to glass window form and long barrel glove, kills to exist and is plucked the gauze mask respiratory track and spread the pathogen thereupon and spread the collection environment on every side when gathering the person, the possibility of cross infection of minimizing, greatly reduced virus propagation is probably.
Drawings
Fig. 1 is a schematic structural diagram of a first embodiment of the present invention;
FIG. 2 is an enlarged view at A in FIG. 1;
FIG. 3 is a schematic view of the fitting of the mounting ring to the mitt
Fig. 4 is a schematic view of the installation of the disinfection window and door according to the second embodiment of the present invention.
Detailed Description
As shown in fig. 1-3, the nasopharyngeal swab collecting window for respiratory tract transmitted diseases of the first embodiment of the present invention comprises a glass window body 1, wherein an interphone 2 is installed on the upper portion of the glass window body 1, a through hole 3 is installed on the lower portion of the glass window body 1, a sealing plug is inserted into the through hole 3 from the inner side surface of the glass window body 1, two mounting holes are opened in the middle of the glass window body 1, each mounting hole is connected with a long-tube glove 4, and the long-tube glove 4 is located outside the glass window body 1;
one side of the glass window body 1 is hinged with a disinfection window door 5, the disinfection window door 5 can be covered and buckled on the outer side surface of the glass window body 1, a disinfectant containing cavity is formed in the disinfection window door 5, disinfectant is contained in the disinfectant containing cavity, a disinfectant injection port is formed in the top of the disinfection window door 5, a cock 6 is arranged at the disinfectant injection port, two circular grooves 7 are formed in the inner side surface of the disinfection window door 5, the positions of the two circular grooves 7 correspond to the positions of the two long gloves 4, and when the disinfection window door 5 is covered and buckled on the outer side surface of the glass window body 1, the two long gloves 4 can be correspondingly placed in the two circular grooves 7; a plurality of round holes are formed in the inner side surface of the disinfection window and door 5 and the two round grooves 7, and a spray head 8 is arranged in each round hole; the disinfection liquid pump is arranged in the disinfection liquid accommodating cavity and is connected with all the spray heads 8 through a plurality of hoses, and the disinfection control switch is arranged on the inner side surface of the glass window body and is used for controlling the operation of the disinfection liquid pump.
When the medical glass window is used, the glass window 1 is installed on the wall of a closed room, medical staff are located in the closed space, the collected medical staff are located in the open space, the collected medical staff and the collected medical staff are collected and communicated through the glass window 1, and the interphone 2 is used for the conversation between the medical staff and the collected staff; medical staff pass the nasopharynx swab collecting pipe out of the glass window body 1 through the through hole 3, the through hole 3 is sealed by using a sealing plug, nasopharynx swab collection is carried out through the long-tube gloves 4, the nasopharynx swab pipe is sealed after collection, after collection is completed, the disinfection window door 5 is covered and buckled on the outer side face of the glass window body 1, the two long-tube gloves 4 are inserted into the two circular grooves 7, the disinfection control switch is opened, the disinfection liquid pump is started, disinfectant is sprayed out of the outer side face of the glass window body 1 and the two long-tube gloves 4 through the plurality of spray heads 8 to disinfect the glass window body 1, the long-tube gloves 4 and the nasopharynx swab pipe, the disinfection window door 5 is opened after disinfection, the nasopharynx swab pipe on the outer side is retracted through the through hole 3, and then the next person is collected in the same mode;
preferably, the two mounting holes are respectively fixed with a mounting ring 9, the mounting ring 9 is provided with an internal thread, the opening of the long-tube glove 4 is fixed with a ring body 10, the ring body 10 is provided with an external thread, and the long-tube glove 4 is connected to the mounting ring 9 through the ring body 10 in a threaded manner; because the long-tube gloves 4 need to be replaced after one or several days of collection, the detachable connection mode is designed, and the long-tube gloves 4 are convenient to replace.
Preferably, a waste liquid collecting drawer 11 is arranged at the lower part of the disinfection window and door 5, and the waste liquid collecting drawer 11 is positioned below the disinfection liquid accommodating cavity;
a strip hole 12 is arranged below the inner side surface of the disinfection window door 5, a filter screen 13 is arranged at the strip hole 12, the filter screen 13 can filter large object impurities, an inclined guide plate 14 is fixed at the lower edge of the strip hole 12, and the disinfected liquid flows downwards along the outer side surface of the glass window body 1 and the inner side surface of the disinfection window door 5 and flows into a waste liquid collecting drawer 11 through the strip hole 12 after being collected by the guide plate 14; the waste liquid collecting drawer 11 can further collect the sterilized waste liquid, so as to avoid polluting the glass window 1 or the wall of the room.
As shown in fig. 4, a schematic view of an installation of a disinfection window and door 5 in the second embodiment of the present invention is shown, and the difference between this embodiment and the first embodiment is: the disinfection window and door 5 is arranged on the glass window body 1 through a rotating shaft 15, and the opening and the closing of the disinfection window and door 5 are controlled through a motor and a foot switch 16; two mounting blocks 17 are fixed on one side of the glass window body 1, a rotating shaft 15 is rotatably mounted between the two mounting blocks 17, the disinfection window door 5 is fixed on the rotating shaft 15, a motor is mounted on the same-surface wall where the glass window body 1 is mounted, a driving bevel gear is mounted on a motor spindle, a driven bevel gear 18 is mounted at the end part of the rotating shaft 15, the driving bevel gear is meshed with the driven bevel gear 18, a control switch electrically connected with the motor is a foot switch 16, the foot switch 16 controls the motor to work, the motor drives the rotating shaft 15 to rotate through the driving bevel gear and the driven bevel gear 18, so that the disinfection window door 5 rotates along with the rotating shaft 15, and the disinfection window door 5 is opened or closed in a non-contact manner;
through the mode, medical staff can control foot switch 16 with the foot to open disinfection window and door 5 or close disinfection window and door 5, reduce the people for contacting disinfection window and door 5, avoid cross infection, the practicality is strong.
The present embodiment is not intended to limit the shape, material, structure, etc. of the present invention in any form, and all of the technical matters of the present invention belong to the protection scope of the present invention to any simple modification, equivalent change and modification made by the above embodiments.
Claims (4)
1. The utility model provides a respiratory tract spreads disease with nasopharynx swab collection window which characterized in that: the novel glass window comprises a glass window body, wherein an interphone is installed at the upper part of the glass window body, a through hole is installed at the lower part of the glass window body, a sealing plug is inserted from the inner side surface of the glass window body through the through hole, two mounting holes are formed in the middle of the glass window body, a long-tube glove is connected to each mounting hole, and the long-tube gloves are located on the outer side of the glass window body;
one side of the glass window body is hinged with a disinfection window door, the disinfection window door can be covered and buckled on the outer side surface of the glass window body, a disinfectant containing cavity is formed in the disinfection window door, disinfectant is contained in the disinfectant containing cavity, a disinfectant injection port is formed in the top of the disinfection window door, a cock is arranged at the disinfectant injection port, two circular grooves are formed in the inner side surface of the disinfection window door, the positions of the two circular grooves correspond to the positions of the two long gloves, and when the disinfection window door cover is buckled on the outer side surface of the glass window body, the two long gloves can be correspondingly placed in the two circular grooves; a plurality of round holes are formed in the inner side surface of the disinfection window and the two round grooves, and a spray head is arranged in each round hole; the disinfection liquid pump is arranged in the disinfection liquid accommodating cavity and is connected with all the spray heads through a plurality of hoses, and the disinfection control switch is arranged on the inner side surface of the glass window body and is used for controlling the operation of the disinfection liquid pump.
2. The nasopharyngeal swab collection window for a respiratory tract transmitted disease of claim 1, wherein: the installation rings are fixed in the two installation holes and provided with internal threads, the opening of the long-tube glove is fixed with the ring body, the ring body is provided with external threads, and the long-tube glove is connected to the installation rings through the threads of the ring body.
3. The nasopharyngeal swab collection window for a respiratory tract transmitted disease of claim 1, wherein: a waste liquid collecting drawer is arranged at the lower part of the disinfection window door and is positioned below the disinfectant containing cavity;
the strip hole is formed below the inner side face of the disinfection window door, the filter screen is installed at the position of the strip hole, the lower edge of the strip hole is fixedly provided with an inclined guide plate, and disinfected liquid flows downwards along the outer side face of the glass window body and the inner side face of the disinfection window door and flows into the waste liquid collection drawer through the strip hole after being collected by the guide plate.
4. The nasopharyngeal swab collection window for a respiratory tract transmitted disease of claim 1, wherein: one side of glass window body is fixed with two installation pieces, rotates between two installation pieces and installs the pivot, and disinfection window door is fixed in the pivot, installs the motor on the wall of the same face of glass window body installation, installs the drive bevel gear on the motor spindle, and driven bevel gear is installed to the tip of pivot, and drive bevel gear meshes with driven bevel gear mutually, and the control switch with motor electric connection is foot switch.
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CN202121567646.XU CN215274130U (en) | 2021-07-12 | 2021-07-12 | Nasopharyngeal swab collection window for respiratory tract transmitted diseases |
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CN202121567646.XU CN215274130U (en) | 2021-07-12 | 2021-07-12 | Nasopharyngeal swab collection window for respiratory tract transmitted diseases |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114767439A (en) * | 2022-06-20 | 2022-07-22 | 深圳市华晨阳科技有限公司 | Pathological gene detects collects with sampling swab protector |
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2021
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114767439A (en) * | 2022-06-20 | 2022-07-22 | 深圳市华晨阳科技有限公司 | Pathological gene detects collects with sampling swab protector |
CN114767439B (en) * | 2022-06-20 | 2022-09-02 | 深圳市华晨阳科技有限公司 | Pathological gene detects collects with sampling swab protector |
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