CN218823962U - Scope detection device - Google Patents

Scope detection device Download PDF

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Publication number
CN218823962U
CN218823962U CN202222014894.2U CN202222014894U CN218823962U CN 218823962 U CN218823962 U CN 218823962U CN 202222014894 U CN202222014894 U CN 202222014894U CN 218823962 U CN218823962 U CN 218823962U
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camera
data transmission
conversion cap
transmission interface
endoscope
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CN202222014894.2U
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李德稣
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Taikang Tongji Wuhan Hospital
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Taikang Tongji Wuhan Hospital
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Abstract

An embodiment of the utility model provides an scope detection device, include: the camera is connected with the data transmission interface, and the data transmission interface is also connected with the display control device; one end of the conversion cap is connected with the camera, and the camera is positioned on the inner side of the conversion cap; the other end of the conversion cap is connected with the endoscope to be detected. The embodiment of the utility model provides a after conversion cap is connected with the scope that waits to detect, shoot the camera lens image of the scope that waits to detect through the camera, show the camera lens image on the display screen that shows controlling means to make things convenient for the staff to detect, improve detection efficiency and the accuracy of testing result, can also avoid closely contacting the camera lens and take place the infection; when the defects such as dirt and the like of the lens are detected, corresponding lens images can be stored, and the positions where the defects are marked can be conveniently butted with workers in other processes.

Description

Scope detection device
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to an scope detection device.
Background
With the development of science and technology, medical endoscopes (simply referred to as endoscopes) are devices for directly observing internal cavities of human organs, and have been widely used in the medical field. The endoscope is divided into a hard type and a soft type, and after the endoscope is connected with monitoring equipment, whether the affected part has pathological changes can be clearly observed, so that diagnosis and treatment of diseases are realized by different instruments inserted into the working cavity, the purposes of diagnosis and treatment are achieved, the diagnosis and treatment level of the diseases are greatly improved, the pain of a patient is obviously reduced, and the treatment course is shortened.
The scope can be sent to disinfection supply center and wash disinfection and sterilization after using, all need detect the camera lens of scope when disinfection supply center is received and is returned, ensures the integrality of camera lens. In the prior art, the lens is detected by adopting artificial visual detection, and the artificial visual detection has the following defects: human eyes are easy to infect when contacting lenses at a close distance; because the lens is relatively small, the long-time detection of the artificial naked eye easily causes eye fatigue, influences the eyesight, has low efficiency, and also causes inaccurate detection results and the like; in the process of detecting the cleaned endoscope, when the dirt exists in the lens through manual detection, the specific condition of the dirt is difficult to clearly describe, so that the rework cannot be performed on the cleaned endoscope in a targeted manner, and the rework efficiency is low.
SUMMERY OF THE UTILITY MODEL
In view of this, detect in order to solve current scope and lack corresponding appurtenance, detect that the degree of difficulty is big, the inaccurate scheduling problem of testing result, the embodiment of the utility model provides an scope detection device.
The embodiment of the utility model discloses scope detection device, include: the device comprises a camera, a data transmission interface and a conversion cap;
the camera is connected with the data transmission interface, and the data transmission interface is also connected with a display control device;
one end of the conversion cap is connected with the camera, and a camera lens of the camera is positioned on the inner side of the conversion cap; the other end of the conversion cap is connected with the endoscope to be detected.
Optionally, the conversion cap is detachably connected with the camera.
Optionally, the device further comprises a light source, and the light source is arranged on the same side as the camera.
Optionally, the lighting system further comprises a lighting adjusting component, and the lighting adjusting component is respectively connected with the light source and the data transmission interface.
Optionally, the camera further comprises a connecting line, one end of the connecting line is connected with the camera, and the other end of the connecting line is connected with the data transmission interface.
Optionally, the data transmission interface is at least one of a USB interface, a Micro-USB interface, a Type-C interface, and a Lightning interface.
Optionally, the data transmission interface is a data transmission interface male socket or a data transmission interface female socket.
Optionally, the conversion cap is in threaded connection with the camera, or the conversion cap is in snap connection with the camera.
Optionally, the camera module further comprises a protective cover, the protective cover is detachably connected with the conversion cap, and when the protective cover is connected with the conversion cap, the camera lens is located on the inner sides of the conversion cap and the protective cover.
Optionally, a protection pad is arranged at one end of the conversion cap, which is connected with the endoscope to be detected.
The embodiment of the utility model provides a include following advantage:
in the embodiment of the utility model, the endoscope detection device comprises a camera, a data transmission interface and a conversion cap, the camera is connected with the data transmission interface, and the data transmission interface is also connected with the display control device; one end of the conversion cap is connected with the camera, and a camera lens of the camera is positioned on the inner side of the conversion cap; the other end of the conversion cap is connected with the endoscope to be detected; the embodiment of the utility model provides a be connected with waiting to detect the scope through the conversion cap to the relative position relation between camera and the camera lens of waiting to detect the scope is fixed; display control device and camera pass through the data transmission interface and realize the communication, therefore, display control device can control opening and closing of camera, and adjust the shooting mode etc. of camera, simultaneously, the camera can wait to detect the lens image transmission of scope to the display control device with the shooting, with display lens image on display control device's display screen, the staff detects the integrality and the cleanliness of corresponding camera lens through the lens image that shows on the display screen, compare with detecting through artifical naked eye direct observation camera lens, the lens image that shows on the display screen is generally bigger than camera lens size itself, therefore, can improve detection efficiency and the accuracy of testing result, can also avoid the staff closely to contact the camera lens and take place the risk of infecting, and, when detecting out that the camera lens has defects such as dirt, can also preserve the corresponding lens image, and mark the place that the defect place, conveniently dock with the staff of other flows.
Optionally, the endoscope detection device further comprises a light source, and the integrity and cleanliness of the objective lens of the hard endoscope can be detected by using the light source.
Drawings
Fig. 1 is a schematic structural view of an endoscope detection device of the present invention;
fig. 2 is a schematic structural diagram of another endoscope detection device according to the present invention;
fig. 3 is a schematic structural diagram of another endoscope detection device of the present invention.
Description of reference numerals:
1: a camera; 2: a data transmission interface; 3: a conversion cap; 4: a light adjustment component; 5. connecting wires; 6: a housing.
Detailed Description
In order to make the above objects, features and advantages of the present invention more comprehensible, the present invention is described in detail with reference to the accompanying drawings and the detailed description.
Referring to fig. 1, the embodiment of the present invention provides an endoscope detection device, which includes a camera 1, a data transmission interface 2 and a conversion cap 3. The camera 1 is connected with the data transmission interface 2, and the data transmission interface 2 is further connected with a display control device (not shown); that is, the display control apparatus and the camera 1 communicate through the data transmission interface 2. The display control device may include, but is not limited to, an electronic device such as a computer or a smart phone having a display and being connectable to the data transmission interface 2.
One end of the conversion cap 3 is connected with the camera 1, and a camera lens of the camera 1 is positioned on the inner side of the conversion cap 3; the other end of the conversion cap 3 is connected with the endoscope to be detected. Illustratively, the other end of the conversion cap 3 can be connected with the eyepiece end of the endoscope to be detected.
The camera 1 of the endoscope detection device provided by the embodiment of the utility model is connected with the data transmission interface 2, and the data transmission interface 2 is also connected with the display control device; one end of the conversion cap 3 is connected with the camera 1, and a camera lens of the camera 1 is positioned on the inner side of the conversion cap 3; the other end of the conversion cap 3 is connected with the endoscope to be detected; the conversion cap 3 is connected with the endoscope to be detected so as to fix the relative position relation between the camera 1 and the lens of the endoscope to be detected; the display control device and the camera 1 are communicated through the data transmission interface 2, therefore, the display control device can control the opening and closing of the camera 1, adjust the shooting mode of the camera 1 and the like, meanwhile, the camera 1 can send the shot image of the endoscope to be detected to the display control device, so as to display the shot image on the display screen of the display control device, a worker can detect the integrity and the cleanliness of the corresponding lens through the shot image displayed on the display screen, compared with the detection through directly observing the lens through the naked eyes, the shot image displayed on the display screen is generally larger than the size of the lens, therefore, the detection efficiency and the accuracy of the detection result can be improved, the risk that the worker is infected when the lens is in close contact with the lens can be avoided, in addition, when the defects of dirt and the like of the lens are detected, the corresponding shot image can be stored, the place where the defect is located is marked, and the butt joint with the workers in other processes is convenient.
Optionally, referring to fig. 2, the camera 1 and the data transmission interface 2 may be directly connected, or may be connected through a connection line 5. When connected through the connecting wire 5, one end of the connecting wire 5 is connected with the camera 1, and the other end of the connecting wire 5 is connected with the data transmission interface 2. The direction of the data transmission interface 2 can be rotated through the connecting wire 5, and the data transmission interface 2 can be connected with the display control device more conveniently.
Optionally, the data transmission interface 2 is at least one of a USB interface, a Micro-USB interface, a Type-C interface, and a Lightning interface. It is to be understood that the number of the data transmission interfaces 2 may be plural, and a plurality of interface types may be included so as to be connected with the display control apparatuses of different interface types. For example, there may be two data transmission interfaces 2, one is a USB interface, and the other is a Type-C interface; when the display control device is a computer, the display control device can be connected with the computer through a USB interface; when the display control device is a mobile phone, the display control device can be connected with the mobile phone through a Type-C interface. Optionally, the plurality of data transmission interfaces 2 may further include a data transmission interface male socket and a data transmission interface female socket of the same interface type.
In an example, the data transmission interface 2 may be a male data transmission interface seat, and when the display control device is a female data transmission interface seat of the same interface type, the male data transmission interface seat of the endoscope detection device may be directly connected with the female data transmission interface seat of the display control device in a matching manner. For example, when the display control device is a mobile phone, the interface on the mobile phone is generally a data transmission interface female socket, and the data transmission interface male socket of the endoscope detection device can be directly connected with the data transmission interface female socket on the mobile phone under the condition that the types of the interfaces are the same.
In another example, the data transmission interface 2 may be a female data transmission interface socket, and when the display control device is a male data transmission interface socket of the same interface type, the male data transmission interface socket of the endoscope detection device may be directly connected with the female data transmission interface socket of the display control device in a matching manner.
When the data transmission interface 2 is a data transmission interface male socket and the display control device is a data transmission interface male socket of the same interface type, the data transmission interface male socket of the endoscope detection device and the data transmission interface male socket of the display control device can be connected through an interface conversion cable; similarly, when the data transmission interface 2 is a data transmission interface female seat and the display control device is a data transmission interface female seat of the same interface type, the data transmission interface female seat of the endoscope detection device and the data transmission interface female seat of the display control device can be connected through the interface conversion cable.
Of course, when the interface type of the data transmission interface 2 is different from that of the display control apparatus, the connection may be performed by an interface conversion cable as well.
Optionally, the conversion cap 3 is hollow, and the conversion cap 3 is detachably connected to the camera 1. In the process of using the endoscope detection device for detecting the endoscope to be detected, the conversion cap 3 needs to be frequently connected with and disconnected from the endoscope to be detected, so that the conversion cap 3 is easily damaged. Through the mode of can dismantling the connection, when conversion cap 3 damages, only need change conversion cap 3 alone can, can prolong the holistic life of scope detection device.
Moreover, because the connection size and the connection mode of different endoscopes are not necessarily the same, consequently, can be connected with camera 1 according to the specific connection size and the connection mode of treating the scope and select the conversion cap 3 and the camera 1 of adaptation through the mode that conversion cap 3 and camera 1 can dismantle and be connected. That is to say, to the scope of waiting to detect of different connection sizes and connected mode, only need change conversion cap 3, can realize waiting to detect the scope to detect of different connection sizes and connected mode to enlarge scope detection device's application range.
In one example, the conversion cap 3 is screwed with the camera head 1. Specifically, the one end of conversion cap 3 can be provided with the internal thread, and camera 1 is provided with corresponding external screw thread, and conversion cap 3 passes through internal thread and external screw thread fit connection with camera 1. Or, the one end of conversion cap 3 can be provided with the external screw thread, and camera 1 is provided with corresponding internal thread, and conversion cap 3 passes through internal thread and external screw thread fit connection with camera 1.
In another example, the conversion cap 3 is snap-fit connected with the camera head 1. Specifically, the one end of conversion cap 3 can be provided with the trip, and camera 1 is provided with corresponding knot and holds the portion, and conversion cap 3 is connected through trip and knot with the cooperation of holding the portion with camera 1. Or, the one end of conversion cap 3 can be provided with the draw-in groove, and camera 1 is provided with corresponding knot and holds the portion, and conversion cap 3 is connected through trip and knot with the cooperation of holding the portion with camera 1.
In yet another example, the conversion cap 3 and the camera head 1 may be connected by means of a socket. Specifically, a pot head of conversion cap 3 is established in the periphery of camera 1, and the periphery of camera 1 supports and leans on the inboard of conversion cap 3. Or, camera 1 is provided with the draw-in groove, and the draw-in groove includes inner wall and outer wall, and the interval between inner wall and the outer wall is less than or equal to the thickness of the one end that conversion cap 3 and camera 1 are connected, and the periphery of conversion cap 3 supports and leans on between the inner wall and the outer wall of draw-in groove.
It should be noted that the manner of detachably connecting the conversion cap 3 and the camera 1 is not limited to the above-listed examples, and the detachable connection of the conversion cap 3 and the camera 1 realized by other manners should also belong to the protection scope of the embodiment of the present invention.
Optionally, a protection pad is arranged at one end of the conversion cap 3 connected with the endoscope to be detected. The protection pad is made of a material with soft hardness, so that when the conversion cap 3 is connected with the endoscope to be detected, the lens of the endoscope to be detected can be prevented from being squeezed, and the lens is protected. Illustratively, the protective pad may be made of polyethylene foam.
Further, in an optional embodiment of the present invention, the endoscope detection device may further include a light source (not shown). The light source is arranged at the same side of the camera 1. The light source can provide brightness for the camera 1, and the shooting effect of the camera 1 is improved. When the endoscope to be detected is a hard endoscope, the integrity and the cleanliness of the objective lens end of the endoscope to be detected can be detected through the light source. Specifically, the light source detection device is connected with an eyepiece end of the hard endoscope through the conversion cap 3, light emitted by the light source enters the tube from the eyepiece end of the hard endoscope, and whether the objective lens is dirty or not and whether the objective lens is complete or not are judged by observing light shadow projected by the objective lens end of the hard endoscope; meanwhile, the light source performance of the eyepiece of the hard endoscope can be detected.
Optionally, the endoscope detection device may further include a light adjustment assembly 4, and the light adjustment assembly 4 is respectively connected to the light source and the data transmission interface 2. In this embodiment, the data transmission interface 2 is connected with the display control device to provide power for the light source, and the light adjusting component 4 is respectively connected with the light source and the data transmission interface 2, so that the brightness of the light source can be adjusted, and different brightness requirements can be met.
Further, please refer to fig. 3 at the same time, in some optional embodiments of the present invention, the above-mentioned endoscope detection device may further include a housing 6, the camera 1 is connected to the conversion cap 3 through the housing 6, specifically, the housing 6 is detachably connected to the conversion cap 3, and the specific connection mode may refer to the connection mode between the camera 1 and the conversion cap 3, which is not repeated herein. The embodiment of the utility model provides a do not do specifically limit to the appearance of casing 6, for example, casing 6 can be platelike, as the base that is used for installing camera 1 to be used for being connected with conversion cap 3. For example, as shown in fig. 3, the housing 6 may have a cylindrical shape, and the camera 1 and a part of the connection line 5 may be accommodated therein; the housing 6 may also be irregular in shape, etc.
It should be noted that, in some embodiments, the conversion cap 3 may also be integrally formed with the housing 6, and may also assist the operator in detecting the endoscope to be detected. Optionally, when the conversion cap 3 and the housing 6 are integrally formed, the camera 1 can be detachably connected with the housing 6, so that the integrally formed conversion cap 3 and the housing 6 can be independently replaced, the service life of the whole endoscope detection device can be prolonged, and the aim of assisting workers in detecting endoscopes to be detected with different connection sizes and different connection modes can be achieved.
Further, in some optional embodiments of the present invention, the endoscope detection device may further include a protective cover. The protective cover is detachably connected with the conversion cap 3, and when the protective cover is connected with the conversion cap 3, the camera lens is positioned on the inner sides of the conversion cap 3 and the protective cover. In this embodiment, when scope detection device did not use, can cover the visor in the camera 1 outside, not only can prevent that camera 1 from being scratched or damaged by foreign object, can also prevent that external impurity from gluing and leading to camera 1 at the in-process of taking lens image on camera 1, because self produces the shade and leads to the erroneous judgement.
Alternatively, when the camera head 1 is connected to the conversion cap 3 through the housing 6, the protective cover may be detachably connected to the housing 6, and when the protective cover is connected to the housing 6, the camera head 1 is located inside the housing 6 and the protective cover. The camera 1 can also prevent the camera 1 from being scratched or damaged by foreign objects, and prevent foreign substances from sticking to the camera 1.
Alternatively, the protective cover may have elasticity, for example, a protective cover made of silicone material, so as to connect with different types of conversion caps 3.
It will be appreciated that in some embodiments, when the endoscope detection device includes a light source, and the protective cover is connected to the conversion cap 3 or the housing 6, the light source is located inside the protective cover together with the camera head 1, and similarly, the light source is protected and protected from dust.
In a preferred embodiment of the present invention, the endoscope detection device comprises a camera 1, a data transmission interface 2 and a conversion cap 3, the camera 1 is connected to the data transmission interface 2, and the data transmission interface 2 is further connected to the display control device; the data transmission interface 2 is provided with a plurality of interfaces, and comprises different interface types; one end of the conversion cap 3 is detachably connected with the camera 1, and a camera lens of the camera 1 is positioned on the inner side of the conversion cap 3; the other end of the conversion cap 3 is connected with the endoscope to be detected; through the conversion cap 3 that can dismantle the connection, can realize waiting to detect the scope according to the difference and select corresponding conversion cap 3 to enlarge detection range, improve scope detection device's life. Through a plurality of data transmission interfaces 2 of different interface types, the endoscope detection device can be conveniently adapted to different display control devices.
The conversion cap 3 is connected with the endoscope to be detected so as to fix the relative position relation between the camera 1 and the lens of the endoscope to be detected; the display control device and the camera 1 are communicated through the data transmission interface 2, therefore, the display control device can control the opening and closing of the camera 1, adjust the shooting mode of the camera 1 and the like, meanwhile, the camera 1 can send the shot image of the endoscope to be detected to the display control device, so as to display the shot image on the display screen of the display control device, a worker can detect the integrity and the cleanliness of the corresponding lens through the shot image displayed on the display screen, compared with the detection through directly observing the lens through the naked eyes, the shot image displayed on the display screen is generally larger than the size of the lens, therefore, the detection efficiency and the accuracy of the detection result can be improved, the risk that the worker is infected when the lens is in close contact with the lens can be avoided, in addition, when the defects of dirt and the like of the lens are detected, the corresponding shot image can be stored, the place where the defect is located is marked, and the butt joint with the workers in other processes is convenient.
In addition, through the light source that sets up with camera 1 homonymy to and be used for adjusting light regulation subassembly 4 of light source luminance, can satisfy different luminance demands, and realize the detection to the objective end of hard scope.
The embodiments in the present specification are all described in a progressive manner, and each embodiment focuses on differences from other embodiments, and portions that are the same and similar between the embodiments may be referred to each other.
While preferred embodiments of the present invention have been described, additional variations and modifications of these embodiments may occur to those skilled in the art once they learn of the basic inventive concepts. It is therefore intended that the following claims be interpreted as including the preferred embodiment and all alterations and modifications that fall within the scope of the embodiments of the invention.
Finally, it should also be noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "include", "including" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or terminal device including a series of elements includes not only those elements but also other elements not explicitly listed or inherent to such process, method, article, or terminal device. Without further limitation, an element defined by the phrases "comprising one of 8230; \8230;" 8230; "does not exclude the presence of additional like elements in a process, method, article, or terminal device that comprises the element.
The endoscope detection device provided by the utility model is introduced in detail, and the principle and the implementation mode of the utility model are explained by applying a specific example, and the explanation of the above embodiment is only used for helping to understand the method and the core idea of the utility model; meanwhile, for a person skilled in the art, according to the idea of the present invention, there may be changes in the specific embodiments and the application range, and in summary, the content of the present specification should not be construed as a limitation to the present invention.

Claims (10)

1. An endoscope inspection device, comprising: the device comprises a camera, a data transmission interface and a conversion cap;
the camera is connected with the data transmission interface, and the data transmission interface is also connected with a display control device;
one end of the conversion cap is connected with the camera, and a camera lens of the camera is positioned on the inner side of the conversion cap; the other end of the conversion cap is connected with an endoscope to be detected.
2. An endoscopy device according to claim 1, wherein the conversion cap is removably attachable to the camera head.
3. An endoscopy apparatus according to claim 1, further comprising a light source disposed on the same side as said camera.
4. An endoscope detection device according to claim 3, characterized by further comprising a light adjustment assembly, said light adjustment assembly being connected to said light source and said data transmission interface, respectively.
5. An endoscope detection device according to claim 1, characterized by further comprising a connecting wire, one end of said connecting wire is connected with said camera, and the other end of said connecting wire is connected with said data transmission interface.
6. An endoscope detection device according to claim 1, wherein said data transmission interface is at least one of a USB interface, a Micro-USB interface, a Type-C interface, and a Lightning interface.
7. An endoscopy apparatus according to claim 5, wherein the data transfer interface is a male data transfer interface receptacle or a female data transfer interface receptacle.
8. An endoscopy device according to claim 2, wherein the conversion cap is threadably connected to the camera head, or wherein the conversion cap is snap-fit to the camera head.
9. An endoscopy device according to claim 2, further comprising a protective cover, said protective cover being removably attachable to said conversion cap, said camera lens being positioned inside said conversion cap and said protective cover when said protective cover is attached to said conversion cap.
10. An endoscope detection device according to claim 1, characterized in that a protection pad is arranged at one end of said conversion cap connected to said endoscope to be detected.
CN202222014894.2U 2022-08-01 2022-08-01 Scope detection device Active CN218823962U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222014894.2U CN218823962U (en) 2022-08-01 2022-08-01 Scope detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222014894.2U CN218823962U (en) 2022-08-01 2022-08-01 Scope detection device

Publications (1)

Publication Number Publication Date
CN218823962U true CN218823962U (en) 2023-04-07

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Application Number Title Priority Date Filing Date
CN202222014894.2U Active CN218823962U (en) 2022-08-01 2022-08-01 Scope detection device

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