CN212346584U - Safe infectious disease sampling device - Google Patents

Safe infectious disease sampling device Download PDF

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Publication number
CN212346584U
CN212346584U CN202020428329.9U CN202020428329U CN212346584U CN 212346584 U CN212346584 U CN 212346584U CN 202020428329 U CN202020428329 U CN 202020428329U CN 212346584 U CN212346584 U CN 212346584U
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CN
China
Prior art keywords
sampling
space body
isolation space
safe
sample
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Expired - Fee Related
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CN202020428329.9U
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Chinese (zh)
Inventor
邱结华
张永梅
周为民
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Second Affiliated Hospital to Nanchang University
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Second Affiliated Hospital to Nanchang University
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Priority to CN202020428329.9U priority Critical patent/CN212346584U/en
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Abstract

The utility model relates to the field of medical equipment, concretely relates to safe infectious disease sampling device, including the isolation space body, the isolation space body be provided with the passageway that supplies personnel to pass in and out, this isolation space body is provided with transparent and confined sample observation face the sample observation face or near sample observation face is provided with the thief hole, thief hole seamless connection has sample gloves. The utility model discloses in, through the cooperation of isolation space body, personnel access way, sample gloves etc. when medical personnel to suspected disease of infection carry out sampling operation, suspected disease and medical personnel are kept apart in the middle of the space of difference, can keep apart the virus source on the one hand, realize contactless sampling, and on the other hand, medical personnel can wear various protective device to play the duplicate protection effect, realize the security sampling.

Description

Safe infectious disease sampling device
Technical Field
The utility model relates to the field of medical equipment, concretely relates to safe infectious disease sampling device who plays the convenient sampling detection of isolation protection effect to medical personnel.
Background
In medical work, medical staff can meet various patients, and when patients with infectious diseases are met, isolation and protection measures are needed to be taken by medical workers during various medical operations such as examination, sampling and the like. The existing isolation protection measure is that medical personnel wear protective clothing and wear a mask at the same time; this kind of mode is still better to keep apart the protection effect. Moreover, the patient may cough and vomit, which causes environmental pollution around the patient and still has a certain risk of infection in reality.
SUMMERY OF THE UTILITY MODEL
To the defect among the prior art, the utility model provides a safe infectious disease sampling device who plays isolation protection effect and make things convenient for the sampling to detect to medical personnel.
The utility model provides a scheme that above-mentioned problem was taken is: safe infectious disease sampling device, including the isolation space body, the isolation space body be provided with the passageway that supplies personnel to pass in and out, this isolation space body is provided with transparent and confined sample observation face or near sample observation face be provided with the thief hole, thief hole seamless connection has sample gloves.
Further, the sampling hole include the left sampling hole of corresponding left hand and the right sampling hole of corresponding right hand, correspondingly, the sampling gloves include left sampling gloves and right sampling gloves.
Furthermore, the sampling gloves are flexible gloves capable of isolating bacteria and viruses.
Further, the sampling glove is a double-sided usable glove, the sampling glove being capable of passing from the inside to the outside of the insulation space body through the sampling hole; and, the sampling glove can be penetrated from the outside to the inside of the insulation space body through the sampling hole.
Further, the insulation space body is provided with a sampling facility inlet for a clean sampling facility to enter and a sample outlet for a sample to be taken out, the sampling facility inlet and the sample outlet are symmetrically arranged on two sides of the insulation space body, and the insulation space body is further provided with a sampling inlet sealing plate corresponding to the sampling facility inlet and a sample outlet sealing plate corresponding to the sample outlet.
Furthermore, a bearing device for placing sampling related articles is arranged inside or outside the isolation space body, and the bearing device is positioned near the lower part of the sampling glove.
Furthermore, the bearing device comprises a horizontal sliding rail arranged on the inner side of the sampling observation surface and a bearing platform in sliding fit with the horizontal sliding rail; the bearing platform is located below the sampling gloves, a plurality of storage grooves are formed in the bearing platform, and the bearing platform can slide out of the sampling facility inlet and the sample outlet.
Furthermore, one side of the isolation space body is provided with a standby wire pipe through hole matched with a corresponding sealing plug.
Furthermore, the passageway for personnel to pass in and out is a door and a screen door curtain which are arranged on one side surface of the isolation space body, and the periphery of the screen door curtain is closed and is provided with a corresponding sealing zipper.
Further, the isolated space body is provided with a sampling standing area or a sampling seat type device.
Furthermore, the bottom edge of the isolation space body is provided with a wavy elastic silica gel pad.
In the utility model, through the cooperation of the isolation space body, the personnel access passage, the sampling gloves and the like, when the suspected patient of the infectious disease is sampled by the medical personnel, the suspected patient and the medical personnel are isolated in different spaces, on one hand, the virus source can be isolated, the non-contact sampling is realized, on the other hand,
medical personnel can wear various protective facilities to play the duplicate protection effect, realize the security sampling.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below. Throughout the drawings, like elements or portions are generally identified by like reference numerals. In the drawings, elements or portions are not necessarily drawn to scale.
FIG. 1 is a schematic view of a safe infectious disease sampling device according to the present invention;
FIG. 2 is another schematic view of the safety infectious disease sampling device of the present invention;
in the attached figure, 1-an isolation space body, 2-a sampling hole, 3-a sampling glove, 4-a horizontal sliding rail, 5-a bearing platform, 6-a storage groove, 8-a sample outlet, 9-a sample outlet sealing plate, 11-a standby wire tube through hole, 12-an elastic silica gel pad, 13-a screen curtain and 14-a sealing zipper.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only examples, and the protection scope of the present invention is not limited thereby.
The inventor of the present invention finds that the existing method for preventing the medical staff from being infected with the virus mainly comprises wearing various protective facilities (such as a mask, goggles, protective clothing, gloves, etc.) on the medical staff as the doctors working in the first-line hospitals in Wuhan, and the medical staff are still infected at times although the protective functions are certain. The inventors have found that the protective measures do not take into account how to isolate the source of the virus completely, how to sample it contactlessly. If suspected patients and medical personnel can be isolated, the spread of virus sources can be isolated. In addition, the medical staff can play a role in double protection by self protection facilities.
As shown in fig. 1 and 2, the following embodiments will specifically describe a safe infectious disease sampling device:
example 1
The embodiment of the utility model provides a safe infectious diseases sampling device, including isolation space body 1, isolation space body 1 be provided with the passageway that supplies personnel to pass in and out, this isolation space body 1 is provided with transparent and confined sample observation face the sample observation face or near sample observation face is provided with thief hole 2, thief hole 2 seamless connection has sample gloves 3.
In the embodiment of the present invention, the sampling method is: medical personnel themselves can wear protective clothing and protective gloves, enter the isolation space body 1 through the passageway that supplies personnel to pass in and out to the handle stretches into sampling gloves 3 and prepares for the sampling. The sampling glove 3 passes out of the insulation space 1 from the inside of the insulation space 1.
Suspected patients to be sampled are positioned outside the isolation space body 1 and are close to the gloves, and sampling facilities (tongue depressors and cotton swabs) can be delivered to medical staff (on the hands corresponding to the sampling gloves). Medical personnel observe through transparent and confined sample observation face, sample, and the back that finishes is sampled, and medical personnel pass back suspected disease with the sample. Suspected patients place the sample into the designated sample receiving site.
Medical personnel have the first layer protection of wearing protective clothing, protective gloves, in addition the utility model discloses an keep apart and seal the protection, kept apart the virus source, played duplicate protection's effect, furthest's protection has reduced the infection risk. Medical personnel are located inside the insulated space body 1 and can regularly control the disinfection of the inside of the insulated space body, suspected patients are located outside the insulated space body 1, and external ventilation can reduce the accumulation of viruses.
As an embodiment of the present invention, the isolation space body 1 may be in the shape of a rectangular parallelepiped, a cylinder, or the like.
As an embodiment of the present invention, the insulation space body 1 may be a movable structure. For example, the isolation space body 1 is a detachable plate body, which is convenient to install and remove.
Or, the isolation space body 1 is a movable light structure, and the isolation space body 1 is an integrated structure, but can be lifted by human body carrying and installation or a light lifting machine due to the light structure.
Example 2
The main difference between this embodiment and embodiment 1 is that the sampling glove 3 can be passed out of the insulation space 1 into the insulation space 1.
The sampling mode is as follows: suspected patient that needs sampling gets into isolation space body 1 through the passageway that supplies personnel to pass in and out, and medical personnel themselves can wear protective clothing and protective gloves, is located isolation space body 1's outside to the handle stretches into sampling gloves 3 and prepares the sampling. The sampling glove 3 passes out of the insulation space 1 into the insulation space 1.
Suspected patients to be sampled are positioned inside the isolation space body 1 and are close to the gloves, and sampling facilities (tongue depressors, cotton swabs and the like which are obtained from the sampling facilities) can be delivered to medical staff (on the hands corresponding to the sampling gloves). Medical personnel observe through transparent and confined sample observation face, carry out the sampling operation, and the back is accomplished in the sampling, and medical personnel pass back suspected disease with the sample. Suspected patients place the sample into the designated sample receiving site. Medical personnel are located the outside of isolation space body 1, and the gathering of virus can be reduced in outside ventilation, and doctor's security is better, and suspected patient is located the inside of space body 1, controls through often killing virus in the isolation space body, ensures suspected patient's safety.
With reference to the embodiment 1 and the embodiment 2, as another embodiment of the present invention, the sampling glove is a double-sided usable glove, and the sampling glove can be penetrated from the inside to the outside of the insulation space body through the sampling hole; and, the sampling glove can be penetrated from the outside to the inside of the insulation space body through the sampling hole.
The sampling gloves 3 are flexible gloves capable of isolating bacteria and viruses.
Example 3:
the present embodiment is further optimized on the basis of the above embodiments, the sampling hole 2 includes a left sampling hole corresponding to the left hand and a right sampling hole corresponding to the right hand, and accordingly, the sampling glove 3 includes a left sampling glove and a right sampling glove.
The utility model discloses in, the thief hole 2 also can be the haplopore, a haplopore connection gloves, and medical personnel singlehanded stretches into gloves, takes a sample.
Through left sampling gloves, right sampling gloves, two hands stretch into, more make things convenient for the sampling operation.
Example 4
This embodiment differs from the previous embodiments mainly in that the insulation space body 1 is provided with a sampling facility inlet for the entry of a clean sampling facility and a sample outlet 8 for the exit of a sample, said sampling facility inlet being arranged symmetrically to said sample outlet 8 on both sides (i.e. on opposite sides) of said insulation space body 1. The insulation space body 1 is further provided with a sampling inlet sealing plate corresponding to the inlet of the sampling facility and a sample outlet sealing plate 9 corresponding to the sample outlet 8.
Example 5:
the present embodiment is further optimized on the basis of the above embodiments, and a carrying device for placing sampling related articles is disposed inside and/or outside the isolation space body 1, and the carrying device is located near the lower part of the sampling glove 3. That is, the insulation space body 1 may be provided with an inner carrier inside or an outer carrier outside as needed. Of course, both the inner and the outer bearing means can also be provided.
The bearing device comprises a horizontal sliding rail arranged on the sampling observation surface and a bearing platform 5 in sliding fit with the horizontal sliding rail. The bearing platform 5 is positioned below the sampling gloves, and a plurality of storage grooves 6 are arranged on the bearing platform 5.
When the carrier is mounted inside the insulation space body 1 (inner carrier), the carrier platform 5 can slide out of the sampling facility inlet and the sample outlet 8.
The storage tanks 6 on the bearing platform 5 are respectively used for placing various tools, such as disinfectant, tongue depressor, cotton swabs and the like.
Corresponding to embodiment 1, bearing device can install the lateral surface at isolation space body 1 (sample observation outside face, be located the scope of getting of sample gloves), and medical personnel wear sample gloves 3 from isolation space body 1's inside, wear out the outside from inside, follow the storage tank 6 of load-bearing platform 5 takes the sampling instrument (cotton swab, tongue depressor, disinfection liquid medicine etc.) of needs, samples. After sampling, the sample can be put into the storage tank 6 (the storage tank 6 is provided with a plurality of, for example, a cotton swab tank, a tongue depressor tank, a disinfectant tank, a sample sampling tank, a sampling facility tank, etc.). The sample may be stored in a test tube, and before the sample is prepared, a test tube corresponding to a suspected patient may be prepared (the test tube is labeled). After the whole sampling is finished, a sampling sample can be taken out. Therefore, direct contact with suspected patients is avoided, and the isolation effect is achieved.
Corresponding to embodiment 2, the carrying device can be installed on the inner side surface (sampling observation surface inner side surface, located in the sampling glove taking range) of the isolation space body 1, the medical staff wear the sampling glove 3 from the outside of the isolation space body 1 and penetrate the inside from the outside, and the sampling tool (cotton swab, tongue depressor, disinfectant liquid medicine and the like) required by taking is taken from the storage groove 6 of the carrying platform 5 for sampling. After sampling, the sampled sample can be placed into the storage tank 6.
As the carrier platform 5 can slide out of the sampling facility inlet and the sample outlet. Thus, when needed (for example, the sampling of the batch of samples is finished), the sample outlet sealing plate 9 can be opened, and the bearing platform 5 can slide out of the sample outlet 8, so that the effect of directly conveying the samples to the outside is achieved.
When needed (for example, the sampling facility is used up), the sampling inlet sealing plate is opened, and the bearing platform 5 is slid out of the inlet of the sampling facility, so that the sampling facility (for example, a sampling test tube) is directly conveyed to the inside.
Of course, the sampling inlet sealing plate at the inlet of the sampling facility can be used independently, i.e. it can be transported from the outside into the sampling facility without the carrying platform 5. The sample outlet sealing plate 9 of the sample outlet 8 can also be used independently, i.e. without the support platform 5, the sample can also be transported from the interior. But the carrier device can also be used only for placing articles.
In order to realize the transportation of sampling facility and sample more conveniently, as the utility model discloses another embodiment, it can adopt slewing device to bear the device, and slewing device includes the slewing belt and arranges the storing device on the belt in. To transport items (sampling facilities, samples) from the outside to the inside of the insulated space body 1, corresponding windows (sampling facility inlets, sample outlets can be used) need to be opened in the insulated space body 1. Thus, the sampling speed can be greatly increased (the sampling implementation and the samples can be prevented from running inside and outside), and the virus can be isolated.
Example 6:
the embodiment is further optimized on the basis of the above embodiment, and a spare conduit opening 11 is arranged on one side surface of the isolation space body 1 and is matched with a corresponding sealing plug. After the design, when medical equipment, such as oxygen equipment, needs to be installed, the corresponding pipeline can be led through the spare pipe port 11, and when non-medical equipment (such as internal and external communication equipment) needs to be installed, the pipeline can also be led through the spare pipe port 11.
Therefore, the suspected patient safety can be guaranteed to a certain extent by conveniently sampling while isolating and protecting.
Example 7
As the utility model discloses further optimization on the basis of the above-mentioned embodiment, the passageway that supplies personnel to pass in and out is for setting up door and the screen door curtain 13 in 1 side of isolation space body, the screen door curtain seals and is provided with corresponding sealed zip fastener 14 all around.
The sampling hole 2 is arranged on the side opposite to the side (channel). In this way, when the air ventilation performance in the isolated space body 1 is not enough or the sampling is not performed, the screen door curtain 13 can be kept by opening the door, so that a good ventilation effect is achieved, the screen door curtain 13 can be sterilized frequently, and the safety of the screen door curtain 13 can be ensured.
Example 8:
the embodiment is further optimized on the basis of the above embodiment, and the isolated space body 1 is provided with a sampling standing area or a sampling seat type device.
When the standing sampling mode is adopted, the medical staff/suspected patient stands in the sampling standing area for sampling, and the corresponding suspected patient/medical staff stands at the corresponding position outside the isolation space body 1.
When adopting sampling seat formula device, sampling medical personnel/suspected disease sit at sampling seat formula device and sample, and corresponding suspected disease/medical personnel sit in the outside of isolation space body 1 and correspond the position. The sampling seat-type device can be a chair placed in the isolation space body 1.
Example 9:
the present embodiment is further optimized on the basis of the above embodiments, and a wavy elastic silica gel pad 12 is disposed at the bottom edge of the isolation space body 1. After the elastic silica gel pad 12 is arranged, instability caused by uneven ground can be reduced, the elastic silica gel pad can be quickly installed on various grounds, and the adaptability is strong. At the same time, the floor sealing of the insulation space body 1 is also well effected.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the scope of the embodiments of the present invention, and are intended to be covered by the claims and the specification.

Claims (10)

1. Safe infectious disease sampling device, its characterized in that: including the isolation space body, the isolation space body be provided with the passageway that supplies personnel to pass in and out, this isolation space body is provided with transparent and confined sample observation face or near sample observation face is provided with the thief hole, thief hole seamless connection has sample gloves.
2. The safe infectious disease sampling device of claim 1, wherein: the thief hatch include the left thief hatch of corresponding left hand and the right thief hatch of corresponding right hand, correspondingly, the sampling gloves include left sampling gloves and right sampling gloves.
3. The safe infectious disease sampling device of claim 1, wherein: the sampling gloves are flexible gloves capable of isolating bacteria and viruses.
4. The safe infectious disease sampling device of claim 1 or 3, wherein: the sampling glove is a double-sided usable glove, and the sampling glove can be penetrated from the inside to the outside of the isolation space body through the sampling hole; and, the sampling glove can be penetrated from the outside to the inside of the insulation space body through the sampling hole.
5. The safe infectious disease sampling device of claim 1, wherein: the isolation space body is provided with a sampling facility inlet for a clean sampling facility to enter and a sample outlet for a sample to be taken out, the sampling facility inlet and the sample outlet are symmetrically arranged on two side surfaces of the isolation space body, and the isolation space body is further provided with a sampling inlet sealing plate corresponding to the sampling facility inlet and a sample outlet sealing plate corresponding to the sample outlet.
6. The safe infectious disease sampling device of claim 5, wherein: and a bearing device for placing related sampling articles is arranged inside or outside the isolation space body, and the bearing device is positioned near the lower part of the sampling glove.
7. The safe infectious disease sampling device of claim 6, wherein: the bearing device comprises a horizontal sliding rail arranged on the inner side of the sampling observation surface and a bearing platform in sliding fit with the horizontal sliding rail; the bearing platform is located below the sampling gloves, a plurality of storage grooves are formed in the bearing platform, and the bearing platform can slide out of the sampling facility inlet and the sample outlet.
8. The safe infectious disease sampling device of claim 1, wherein: one side of the isolation space body is provided with a standby wire pipe through hole matched with a corresponding sealing plug.
9. The safe infectious disease sampling device of claim 1, wherein: the passage for personnel to enter and exit is a door and a screen door curtain arranged on one side surface of the isolation space body, and the periphery of the screen door curtain is closed and provided with corresponding sealing zippers.
10. The safe infectious disease sampling device of claim 1, wherein: the isolated space body is provided with a sampling standing area or a sampling seat type device.
CN202020428329.9U 2020-03-30 2020-03-30 Safe infectious disease sampling device Expired - Fee Related CN212346584U (en)

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CN202020428329.9U CN212346584U (en) 2020-03-30 2020-03-30 Safe infectious disease sampling device

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Application Number Priority Date Filing Date Title
CN202020428329.9U CN212346584U (en) 2020-03-30 2020-03-30 Safe infectious disease sampling device

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Publication Number Publication Date
CN212346584U true CN212346584U (en) 2021-01-15

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111248950A (en) * 2020-03-30 2020-06-09 南昌大学第二附属医院 Safe infectious disease sampling device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111248950A (en) * 2020-03-30 2020-06-09 南昌大学第二附属医院 Safe infectious disease sampling device

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Granted publication date: 20210115