An endoscope detection system based on intelligent mirror type recognition
By introducing a smart mirror recognition module into the endoscopic detection system, the camera chip identity information of the hose endoscopic endoscopy is solved, and the problem of not being able to identify different mirrors in the prior art is achieved, achieving lower cost and more convenient endoscopic use and management.
Patent Information
- Application Number
- CN202411474154.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2044-10-22
AI Technical Summary
The existing endoscope technology cannot identify the types of mirrors of different hose endoscopes, resulting in a single interface, high cost, and inconvenient use and management.
An endoscopic detection system based on smart mirror recognition is designed, including an endoscopic host and smart mirror recognition module, and automatically recognizes the lens information by identifying the camera chip identity information of the hose endoscope.
The recognition of the types of endoscopes of different hose are achieved, reducing the cost of endoscopes and improving the convenience of use and management.
Smart Images

Figure CN119112076B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical fields of intelligent medical systems, devices, signal transmission, recognition, etc., and particularly relates to an endoscope detection system based on intelligent endoscope type recognition. Background Art
[0002] An endoscope is a medical instrument used to examine internal organs or cavities, mainly including a rigid endoscope and a flexible endoscope. The rigid endoscope usually includes a handle and a rigid tube connected to the handle. A control board is provided inside the handle, and the rigid tube can usually be replaced. The flexible endoscope usually includes a long and flexible tube, a light source, and a camera. The light source and the camera are provided at the front end of the tube. The flexible endoscope can enter the human body through natural cavities (such as the oral cavity, nasal cavity, intestine) or small surgical incisions, and transmit the images inside the body to an external display for doctors to observe. Endoscopes are usually used for examinations and surgeries such as gastroscopy, colonoscopy, and bronchoscopy. Endoscopes can also be used for minimally invasive surgeries. Doctors can perform treatment operations such as cutting, sampling, and hemostasis through the operation channel attached to the endoscope device. Currently, endoscopes mainly have a single product structure, that is, there is only one endoscope interface on the main unit, which cannot adapt to different types of endoscopes, resulting in high costs for endoscope detection and surgeries, and it is also inconvenient for medical staff to use and manage. Moreover, when the endoscope interface is connected to a flexible endoscope, an interface for connecting a flexible endoscope can only recognize the camera of that flexible endoscope and cannot recognize the cameras of other flexible endoscopes. For example, a main unit can only be paired with one type of flexible endoscope for use. Once the flexible endoscope is replaced, that is, when the endoscope type changes, due to the change of the camera chip in the flexible endoscope, the main unit cannot recognize the flexible endoscope of the changed endoscope type.
[0003] In summary, the existing endoscope technology has technical problems such as inability to recognize the types of flexible endoscopes, single interface, high cost, and inconvenient use and management. Summary of the Invention
[0004] Aiming at the deficiencies of the above-mentioned existing technology, the present invention provides an endoscope detection system based on intelligent endoscope type recognition to recognize the types of different flexible endoscopes, reduce the cost of endoscopes, and improve the convenience of using and managing endoscopes.
[0005] The endoscope detection system based on intelligent endoscope type recognition provided by the present invention includes:
[0006] An endoscope main unit, including a flexible endoscope communication interface, and the flexible endoscope communication interface is used to connect a flexible endoscope;
[0007] The intelligent endoscope type recognition module is electrically connected to the communication interface of the flexible endoscope, and is used for obtaining the identity information of the camera chip of the connected flexible endoscope after the communication interface of the flexible endoscope accesses the flexible endoscope, and recognizing the type information of the connected flexible endoscope according to the identity information of the camera chip.
[0008] Further, the intelligent endoscope type recognition module runs on the endoscope host. When the intelligent endoscope type recognition module recognizes the endoscope type information, it matches the identity information of the camera chip of the connected flexible endoscope with the preset endoscope type information to recognize the type information of the connected flexible endoscope.
[0009] Further, the endoscope detection system based on intelligent endoscope type recognition further includes a workstation module; the workstation module runs on the endoscope host and is used for managing detection information to generate a detection report.
[0010] Further, the endoscope detection system based on intelligent endoscope type recognition further includes a print driver module; the print driver module runs on the endoscope host and is used for driving an external printer to print the detection report.
[0011] Further, the endoscope host is an integrated display and control host, which includes a host body, the communication interface of the flexible endoscope and the communication interface of the rigid endoscope. The communication interface of the flexible endoscope and the communication interface of the rigid endoscope are spaced apart on the host body; the flexible endoscope includes a flexible tube, a light source and a camera; the signal connection end of the flexible tube is connected to the communication interface of the flexible endoscope, and the detection end of the flexible tube is equipped with the light source and the camera; the communication interface of the rigid endoscope is electrically connected to the rigid endoscope, and the rigid endoscope includes a handle and a rigid tube; the signal connection end of the handle is connected to the communication interface of the rigid endoscope, and the tube diameter connection end of the handle is detachably connected to the rigid tube.
[0012] Further, the communication interface of the flexible endoscope and the communication interface of the rigid endoscope are spaced apart on the same side of the host body, or the communication interface of the flexible endoscope and the communication interface of the rigid endoscope are spaced apart on different sides of the host body.
[0013] Further, the rigid tube of the rigid endoscope is a disposable rigid tube or a reusable rigid tube that can be disinfected; after the use of the disposable rigid tube, it is detached from the tube diameter connection end of the handle and discarded; after the use of the reusable rigid tube that can be disinfected, it is detached from the tube diameter connection end of the handle for disinfection or disinfected integrally with the handle.
[0014] Further, the flexible endoscope is a disposable flexible tube or a reusable flexible tube that can be disinfected; after the use of the disposable flexible tube, it is detached from the communication interface of the flexible endoscope and discarded together with the light source and the camera; after the use of the reusable flexible tube that can be disinfected, it is detached from the communication interface of the flexible endoscope and reused after being disinfected together with the light source and the camera.
[0015] Further, the main body of the host includes a display screen, a main chassis, and an electronic control module; the electronic control module is distributed inside the main chassis; the display screen is embedded on one side of the main chassis and is displayed under the control of the electronic control module; the communication interface of the flexible endoscope and the communication interface of the rigid endoscope are electrically connected to the electronic control module.
[0016] Further, the main chassis includes a heat dissipation support part and a display installation part; the heat dissipation support part is located at the bottom end of the display installation part and extends towards the tail end of the bottom end of the display installation part to form a support tail; heat dissipation holes are distributed on the bottom surface, the rear surface, and the two side surfaces of the heat dissipation support part; the display screen is embedded and installed on the front side of the display installation part.
[0017] Further, an installation bracket and foot pads are provided on the bottom surface of the heat dissipation support part; the installation bracket includes a first bracket body and a second bracket body, and the foot pads include a first foot pad and a second foot pad; the first bracket body, the second bracket body, the first foot pad, and the second foot pad are distributed at the four top corners of the bottom surface of the heat dissipation support part.
[0018] Further, the communication interface of the flexible endoscope and the communication interface of the rigid endoscope are spaced apart and arranged on the front surface of the heat dissipation support part, and the front surface of the heat dissipation support part and the display screen are on the same side of the main body of the host.
[0019] Further, a first heat dissipation ring, a second heat dissipation ring, and a bottom groove are provided on the rear side of the display installation part; the first heat dissipation ring and the second heat dissipation ring are spaced apart and distributed at the upper end of the bottom groove; a peripheral device connection head is provided inside the bottom groove.
[0020] Further, an upper handle, a left handle, and a right handle are also spaced apart and arranged on the rear side of the display installation part; the upper handle is located above the left handle and the right handle, and the left handle and the right handle are symmetrically arranged on the rear side of the display installation part.
[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0022] The present invention provides an endoscope detection system based on intelligent endoscope type recognition, which includes an endoscope host and an intelligent endoscope type recognition module. The endoscope host includes a flexible endoscope communication interface for connecting a flexible endoscope. The intelligent endoscope type recognition module is electrically connected to the flexible endoscope communication interface and is used to obtain the identity information of the camera chip of the connected flexible endoscope after the flexible endoscope is connected to the flexible endoscope communication interface, and identify the type information of the connected flexible endoscope according to the identity information of the camera chip. The endoscope detection system based on intelligent endoscope type recognition can identify the types of different flexible endoscopes, and by replacing the flexible endoscope, it can realize the detection and surgery of different projects, thereby reducing the cost of the endoscope and improving the convenience of the use and management of the endoscope. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation to the present invention. Some specific embodiments of the present invention will be described in detail hereinafter with reference to the drawings in an exemplary rather than restrictive manner. The same reference numerals in the drawings denote the same or similar components or parts. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:
[0024] Figure 1 FIG. is a schematic structural diagram of an endoscope detection system based on intelligent endoscope type recognition according to an embodiment of the present invention;
[0025] Figure 2 FIG. is a schematic structural diagram of a display and control integrated host according to an embodiment of the present invention;
[0026] Figure 3 FIG. is another schematic structural diagram of a display and control integrated host according to an embodiment of the present invention;
[0027] Figure 4 FIG. is still another schematic structural diagram of a display and control integrated host according to an embodiment of the present invention.
[0028] DESCRIPTION OF THE REFERENCE NUMERALS
[0029] 1. Endoscope host; 10. Host body; 100. Display screen; 101. Mainframe box; 1010. Heat dissipation support part; 10100. Heat dissipation holes; 10101. Mounting bracket; 101010. First bracket body; 101011. Second bracket body; 10102. Foot pad; 101020. First foot pad; 101021. Second foot pad; 1011. Display mounting part; 10110. First heat dissipation ring; 10111. Second heat dissipation ring; 10112. Bottom groove; 10113. Peripheral connector; 10114. Upper handle; 10115. Left handle; 10116. Right handle; 11. Flexible endoscope communication interface; 12. Rigid endoscope communication interface;
[0030] 2. Flexible endoscope;
[0031] 3. Rigid endoscope. Detailed implementation manners
[0032] In order to enable those skilled in the art of the present technology to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.
[0033] Embodiment 1
[0034] See Figures 1 - 4 , the endoscope detection system based on intelligent lens type recognition provided in this embodiment includes:
[0035] An endoscope host 1, including a flexible endoscope communication interface 11, and the flexible endoscope communication interface is used to connect a flexible endoscope;
[0036] An intelligent lens type recognition module, electrically connected to the flexible endoscope communication interface, is used to obtain the identity information of the camera chip of the connected flexible endoscope after the flexible endoscope communication interface accesses the flexible endoscope, and identify the lens type information of the connected flexible endoscope according to the identity information of the camera chip. Preferably, the intelligent lens type recognition module runs on the endoscope host. When the intelligent lens type recognition module performs lens type information recognition, it matches the identity information of the camera chip of the connected flexible endoscope with the preset lens type information to identify the lens type information of the connected flexible endoscope.
[0037] It should be noted that in the prior art, an endoscope host usually has only one endoscope interface, and this interface can only be adapted to a single type of endoscope. For example, a single host can only match a specific type of flexible endoscope model. This single-interface design greatly limits the versatility and compatibility of endoscopes, not only increasing the cost of medical equipment but also restricting the flexibility of the equipment. When connecting to a flexible endoscope, the interface can only recognize a specific type of camera chip, which means that the host can only be used in conjunction with a specific flexible endoscope. Once the type of endoscope is changed (such as using a flexible endoscope of a different model or brand), due to the mismatch of its camera chip, the host cannot recognize and be compatible. This limitation requires hospitals to be equipped with multiple different endoscope hosts in actual operation, resulting in increased equipment investment costs and more complex management. To address the above problems in the prior art, in this embodiment, by setting up an intelligent endoscope type recognition module, it can automatically obtain and recognize the camera chip information of the endoscope when connecting to a flexible endoscope, thereby determining the type of the connected endoscope. This intelligent recognition mechanism can effectively solve the problems of insufficient compatibility and intelligence in the current technology. The intelligent endoscope type recognition module can automatically recognize multiple types of flexible endoscopes, ensuring that the host can be compatible with endoscopes of different brands and models. In this way, hospitals only need to be equipped with one host to support the access of multiple endoscope devices, reducing hardware investment and equipment management costs. In some further preferred embodiments, by automatically recognizing and adapting to the connected flexible endoscope, the setting parameters (such as light source brightness, resolution, etc.) are automatically adjusted according to the type information of the specific flexible endoscope, thereby improving the detection accuracy and efficiency, reducing the manual configuration steps of medical staff, and enhancing the usability of the equipment. In some further preferred embodiments, the intelligent recognition module records the type of endoscope connected each time and its usage situation, thereby facilitating the tracking and management of the usage of endoscope devices and ensuring the safety of the equipment and the timeliness of maintenance.
[0038] In some further preferred embodiments, a preset mirror type information database is provided. The mirror type information database contains detailed information on various flexible endoscopes. The detailed information of each flexible endoscope includes the mirror type name and the camera chip model uniquely corresponding to the mirror type name. When a flexible endoscope is connected to the endoscope host, the intelligent mirror type recognition module automatically reads the identity information of the camera chip. The identity information of the camera chip includes the model of the camera chip. By querying and matching the read identity information of the camera chip in the mirror type information database, the mirror type information of the connected flexible endoscope can be identified. It should be noted that in this embodiment, through the matching of the identity information of the camera chip, the system can automatically identify the mirror type information of the connected flexible endoscope, greatly improving the recognition efficiency and accuracy. In addition, since various types of flexible endoscope information can be preset and extended in the mirror type information database, the system can automatically identify and be compatible with flexible endoscopes of different brands and models as new mirror types are introduced and the database is updated, not only reducing the procurement cost of hospital equipment but also enhancing the expansion ability of the system.
[0039] In some preferred embodiments, the endoscope detection system based on intelligent endoscope type recognition further includes a workstation module; the workstation module runs on the endoscope host and is used to manage detection information to generate a detection report. It should be noted that a large amount of images and data generated during the endoscope detection process need to be effectively managed and stored. By setting up the workstation module, the system can automatically collect, classify, and store detection data, such as images, videos, and other detection parameters. The workstation module runs on the endoscope host, which can analyze and process these data and automatically generate a detection report. This automated report generation function greatly reduces the manual recording and sorting work of medical staff, improves work efficiency, and ensures the standardization and consistency of report content. It can be understood that the workstation module can integrate various analysis tools and algorithms, such as image processing, anomaly detection, and measurement analysis tools. In this way, the system can perform real-time analysis on the collected endoscope images and generate preliminary diagnosis information based on the analysis results. This centralized information processing ability enables doctors to not only obtain high-quality real-time images during endoscope operation but also immediately obtain the auxiliary analysis results of the system, thus accelerating the diagnosis speed and improving the accuracy of diagnosis. Through the workstation module, the endoscope detection system can provide an intuitive user interface for medical staff to view real-time images, analysis results, and relevant device status information during the detection process. At the same time, the system can display and update the generation status of the detection report in real time for doctors to check and confirm at any time. This interface not only improves the interactivity and user experience of the system but also enables medical staff to operate the device and manage detection data more intuitively and efficiently. In addition, the workstation module can interface the detection data and reports with the hospital information system (HIS) or other medical data systems to achieve information sharing and remote access. This data interconnection and interoperability contribute to realizing multi-department collaboration and cross-device data sharing, improving the overall management efficiency of the hospital.
[0040] In some preferred embodiments, the endoscope detection system based on intelligent endoscope type recognition further includes a print driver module; the print driver module runs on the endoscope host and is used to drive an external printer to print the detection report. It should be noted that the detection report generated during the endoscope detection process needs to be delivered to medical staff or patients in a timely manner for immediate diagnosis and treatment after the examination. By setting up the print driver module, the endoscope host can directly drive an external printer to achieve immediate printing of the detection report. This immediate report output function not only improves the diagnosis efficiency but also shortens the waiting time of medical staff during the report generation and delivery process, optimizing the medical process.
[0041] Embodiment 2
[0042] See Figures 1 - 4, in this embodiment, the endoscope host 1 is an integrated display and control host, and the integrated display and control host includes a host body 10, the flexible endoscope communication interface 11 and the rigid endoscope communication interface 12. The flexible endoscope communication interface and the rigid endoscope communication interface are spaced apart on the host body; the flexible endoscope includes a flexible tube, a light source and a camera; the signal connection end of the flexible tube is connected to the flexible endoscope communication interface, and the detection end of the flexible tube is equipped with the light source and the camera; the rigid endoscope communication interface is electrically connected to the rigid endoscope, and the rigid endoscope includes a handle and a rigid tube; the signal connection end of the handle is connected to the rigid endoscope communication interface, and the diameter connection end of the handle is detachably connected to the rigid tube.
[0043] It should be noted that in this embodiment, communication interfaces for the flexible tube and the rigid endoscope 3 are provided on the integrated display and control host. By integrating two different types of endoscopes into the same host system, the purchase and maintenance costs of redundant equipment can be reduced. The user only needs one host and can replace different types of endoscopes according to needs, significantly reducing the overall cost of the equipment. The rigid tube is signal-connected to the host interface through the handle, and the diameter connection end of the handle and the rigid tube adopt a detachable design. This detachable design facilitates the replacement of the rigid tube size or type (such as rigid tubes with different lengths or diameters) when needed, further enhancing the diversity and adaptability of the equipment, and is also beneficial for cleaning and maintenance. In addition, independent communication interfaces for the flexible tube and the rigid endoscope 3 are respectively provided on the host, which can ensure that the host system does not need to be reconfigured when replacing the endoscope. Each endoscope communicates directly with the host through a specific interface, making the replacement process simple, fast, and reducing the risk of interface confusion or connection errors.
[0044] It should also be noted that in this embodiment, the flexible endoscope 2 and the rigid endoscope 3 can respectively be connected to the communication interfaces for the flexible tube and the rigid endoscope 3 on the host to form a dual-endoscope structure. The flexible endoscope 2 has the characteristics of high flexibility and bendability, and is suitable for detecting and operating tissues in narrow or curved cavities, such as the gastrointestinal tract, bronchus, etc. The flexible tube can move freely in the curved pipeline, and transmits internal images through the light source and the camera to achieve fine diagnosis and minimally invasive surgery. The rigid endoscope 3 is relatively rigid and is suitable for linear examinations and surgeries, such as the bladder, joint cavity and other parts. The rigid structure of the rigid tube enables it to provide a more stable viewing angle at specific parts and remain stable during surgeries that require greater operating force. In this embodiment, through the interchange of the flexible and rigid endoscopes 3, the system can adapt to different diagnostic and surgical scenarios, can handle both narrow and curved complex parts, and can also meet the parts that require greater operating stability, thus significantly expanding the application range of the endoscope system.
[0045] In some preferred embodiments, the flexible endoscope communication interface 11 and the rigid endoscope communication interface 12 are spaced apart on the same side of the host body 10, or the flexible endoscope communication interface 11 and the rigid endoscope communication interface 12 are spaced apart on different sides of the host body 10. It should be noted that when the interfaces are arranged on the same side of the host body 10, the user only needs to operate at a single location when replacing the flexible or rigid endoscope 3. This design simplifies the usage process, enabling the operator to quickly and more conveniently connect or switch between different types of endoscopes, reducing time waste. Concentrating the interfaces on the same side can also reduce the wiring complexity of the host body 10, enhancing the overall aesthetics and usability of the device, and helping to keep the working area tidy. In some scenarios, if the flexible endoscope 2 and the rigid endoscope 3 are used simultaneously, arranging the interfaces on different sides of the host can effectively prevent the two endoscope pipelines from crossing or tangling in the same direction. This design helps to keep the working area tidy and reduces obstacles and interference caused by cable entanglement during operation. When the flexible and rigid endoscopes 3 are used separately, accessing the host from different directions helps to maintain the independence of each endoscope and reduce physical interference between the two. For example, the rigid endoscope 3 is usually used for relatively fixed straight operations, while the flexible endoscope 2 requires more flexible mobility. Connecting them separately can ensure that each endoscope is not restricted or affected by other devices during use, thereby improving the stability and convenience of use.
[0046] In some preferred embodiments, the rigid tube of the rigid tube endoscope 3 is a disposable rigid tube or a reusable rigid tube that can be disinfected; after the use of the disposable rigid tube, it is detached and discarded from the diameter connection end of the handle; after the use of the reusable rigid tube that can be disinfected, it is detached from the diameter connection end of the handle for disinfection or disinfected integrally with the handle. In addition, the flexible tube endoscope 2 is a disposable flexible tube or a reusable flexible tube that can be disinfected; after the use of the disposable flexible tube, it is detached from the communication interface 11 of the flexible tube endoscope and discarded together with the light source and the camera; after the use of the reusable flexible tube that can be disinfected, it is detached from the communication interface 11 of the flexible tube endoscope and reused after being disinfected together with the light source and the camera. It should be noted that the disposable rigid tube is discarded immediately after each use, eliminating the risk of cross-infection caused by incomplete disinfection. This is particularly important in some high-risk surgeries or examinations that require a sterile environment. The disposable rigid tube does not require disinfection treatment and can be directly discarded after use, reducing the cleaning and disinfection steps and improving the operation efficiency, especially in a busy medical environment. Although the reusable rigid tube requires disinfection treatment, it is more cost-effective than the disposable rigid tube in the long term and is suitable for medical scenarios with frequent use. The rigid tube can be detached from the handle for easy separate disinfection. This design simplifies the cleaning and maintenance process of the device and also facilitates medical staff to replace rigid tubes of different specifications according to different surgical requirements. In some cases, if the rigid tube and the handle are designed as an integral body, they can be disinfected integrally, which reduces the time for disassembly and reassembly and ensures the thoroughness of disinfection and the integrity of the device. In addition, since the flexible tube endoscope 2 needs to enter a relatively long internal cavity during operation, it is difficult to clean and disinfect, and there are dead corners and blind spots. Designing the flexible tube, the light source, and the camera to be discarded as a whole after one-time use can maximize the avoidance of cross-infection and bacterial residue, thereby improving the safety of patients. The one-time use design avoids the cumbersome processes of disinfecting, maintaining, and inspecting the flexible tube, the light source, and the camera. Medical staff only need to replace new disposable components before each use, significantly improving the operation efficiency and the turnover rate of the device.
[0047] In some preferred embodiments, the host body 10 includes a display screen 100, a main chassis 101, and an electronic control module; the electronic control module is distributed inside the main chassis 101; the display screen 100 is embedded on one side of the main chassis 101 and is controlled by the electronic control module to display; the flexible endoscope communication interface 11 and the rigid endoscope communication interface 12 are electrically connected to the electronic control module. Further, the main chassis 101 includes a heat dissipation and support portion 1010 and a display installation portion 1011; the heat dissipation and support portion 1010 is located at the bottom end of the display installation portion 1011 and extends towards the tail end of the bottom end of the display installation portion 1011 to form a support tail; heat dissipation holes 10100 are distributed on the bottom surface, the rear surface, and the two side surfaces of the heat dissipation and support portion 1010; the display screen 100 is embedded and installed on the front side of the display installation portion 1011. Further, an installation bracket 10101 and feet 10102 are provided on the bottom surface of the heat dissipation and support portion 1010; the installation bracket 10101 includes a first bracket body 101010 and a second bracket body 101011, and the feet 10102 include a first foot 101020 and a second foot 101021; the first bracket body 101010, the second bracket body 101011, the first foot 101020, and the second foot 101021 are distributed at the four top corners of the bottom surface of the heat dissipation and support portion 1010. Further, the flexible endoscope communication interface 11 and the rigid endoscope communication interface 12 are arranged at intervals on the front surface of the heat dissipation and support portion 1010, and the front surface of the heat dissipation and support portion 1010 and the display screen 100 are on the same side of the host body 10. Further, a first heat dissipation ring 10110, a second heat dissipation ring 10111, and a bottom groove 10112 are provided on the rear side of the display installation portion 1011; the first heat dissipation ring 10110 and the second heat dissipation ring 10111 are distributed at intervals above the upper end of the bottom groove 10112; a peripheral connection head 10113 is arranged inside the bottom groove 10112. Further, an upper handle 10114, a left handle 10115, and a right handle 10116 are also arranged at intervals on the rear side of the display installation portion 1011; the upper handle 10114 is located above the left handle 10115 and the right handle 10116, and the left handle 10115 and the right handle 10116 are symmetrically arranged on the rear side of the display installation portion 1011. It should be noted that the display screen 100 is embedded on one side of the main chassis 101. This design is compact and integrated, facilitating doctors to view the endoscope image in real time during the operation, while reducing the need for an external monitor. The electronic control module is distributed inside the main chassis 101, which can not only protect the safety of the control module, but also facilitate the integration and compact layout of the whole machine, while reducing the volume of the host and improving the portability of the device.The communication interface 12 of the flexible and rigid endoscopes is directly connected to the electronic control module, ensuring the stability and real-time performance of the device signal transmission, enabling the endoscope to respond quickly and transmit clear images during detection and surgery. The heat dissipation support part 1010 is located at the bottom end of the display installation part 1011 and extends towards the tail to form a support tail. This design serves two purposes. On the one hand, it supports the main unit, enabling the main unit to be stably placed. On the other hand, heat dissipation holes 10100 are distributed on the bottom, back, and sides of the heat dissipation support part 1010, effectively helping the device dissipate heat. Additionally, the display screen 100 is embedded in the front side of the display installation part 1011, not only enhancing the overall aesthetics of the device but also ensuring the firm installation of the display screen 100 and making it less vulnerable to external impacts. Moreover, this design facilitates clear and convenient viewing of the display content by users during use. Additionally, the mounting brackets 10101 and the feet 10102 are respectively arranged at the four top corners of the heat dissipation support part 1010. This four-corner support design can ensure the stability of the main unit during use, making it less likely to tip over or move. The combination of the brackets and the feet 10102 can effectively dampen vibrations and reduce the impact caused by vibrations during device operation, thereby enhancing the reliability and service life of the device. Additionally, the communication interface of the flexible and rigid endoscopes 3 is set on the front side of the heat dissipation support part 1010 and on the same side as the display screen 100, ensuring that doctors can have a clear view at a glance during operation and quickly access the device. This design improves the operation efficiency and convenience, avoiding wasting time searching for the interface position. At the same time, this layout helps avoid cable entanglement because all connections and operations are carried out on the same side of the main unit, reducing the possibility of cable crossing in the device and ensuring the cleanliness of the working environment. Additionally, heat dissipation rings are set on the rear side of the display installation part 1011 and are spaced and arranged at the upper end of the bottom groove 10112, which can form a convective heat dissipation effect. The multiple heat dissipation rings are spaced apart, effectively improving the heat dissipation efficiency of the device and ensuring that the internal electronic control module and the display screen 100 can maintain an appropriate temperature during long-term operation. Additionally, a peripheral connector 10113 is provided inside the bottom groove 10112, enabling the device to connect to other external devices such as data transmission lines and power cords. This design ensures that the connector is arranged at the rear side of the device, not affecting the front operation and display of the device, and also helps maintain the cleanliness and orderliness of the rear part of the device. Additionally, the upper handle 10114, the left handle 10115, and the right handle 10116 are spaced and arranged on the rear side of the display installation part 1011, making it more convenient to move and carry the device. The upper handle 10114 is located above the left and right handles, conforming to the ergonomic design, allowing the device to be lifted with one hand or both hands, providing a better sense of balance. The left and right handles are symmetrically arranged, making the device more stable and convenient when it needs to be horizontally carried or its position adjusted. At the same time, the multi-handle design also enables the device to be quickly and flexibly moved and placed in various medical environments.
[0048] It should be noted that the above embodiments are only preferred specific embodiments of the present invention, and the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed by the present invention should be covered within the protection scope of the present invention. The protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. An endoscope detection system based on intelligent endoscope type recognition, characterized in that: include: An endoscope host, comprising a hose endoscope communication interface, wherein the hose endoscope communication interface is used to connect the hose endoscope; An intelligent scope type identification module is electrically connected to the hose endoscope communication interface, and is used to obtain the identity information of the camera chip of the connected hose endoscope after the hose endoscope communication interface is connected to the hose endoscope, and identify the scope type information of the connected hose endoscope according to the identity information of the camera chip; a preset scope type information database, the scope type information database contains detailed information of various hose endoscopes, and the detailed information of each hose endoscope includes a scope type name and a camera chip model uniquely corresponding to the scope type name; when the hose endoscope is connected to the endoscope host, the intelligent scope type identification module automatically reads the camera chip identity information of the camera chip; the identity information of the camera chip includes the model of the camera chip; query and match are performed in the scope type information database through the read identity information of the camera chip to identify the scope type information of the connected hose endoscope; the setting parameters are automatically adjusted according to the scope type information of the specific hose endoscope by automatically identifying and adapting the connected hose endoscope, thereby improving the accuracy and efficiency of detection and reducing the steps of manual configuration by medical personnel; the intelligent recognition module records the type of endoscope connected each time and its usage, so as to track and manage the usage of the endoscopic equipment and ensure the safety of the equipment and the timeliness of maintenance.
2. The endoscope detection system based on intelligent endoscope type recognition according to claim 1, characterized in that: It also includes a workstation module; the workstation module runs on the endoscope host and is used to manage detection information to generate a detection report.
3. The endoscope detection system based on intelligent endoscope type recognition as claimed in claim 2, characterized in that: It also includes a printing driver module; the printing driver module runs on the endoscope host and is used to drive an external printer to print the detection report.
4. The endoscope detection system based on intelligent endoscope type recognition according to any one of claims 1 to 3, characterized in that: The endoscope host is a display and control integrated host, which includes a host body, the hose endoscope communication interface and the hard tube endoscope communication interface, and the hose endoscope communication interface and the hard tube endoscope communication interface are arranged at intervals on the host body; the hose endoscope includes a hose, a light source and a camera; the signal connection end of the hose is connected to the hose endoscope communication interface, and the detection end of the hose is installed with the light source and the camera; the hard tube endoscope communication interface is electrically connected to the hard tube endoscope, and the hard tube endoscope includes a handle and a hard tube; the signal connection end of the handle is connected to the hard tube endoscope communication interface, and the pipe diameter connection end of the handle is detachably connected to the hard tube.
5. The endoscope detection system based on intelligent endoscope type recognition according to claim 4, characterized in that: The flexible tube endoscope communication interface and the rigid tube endoscope communication interface are spaced apart on the same side of the host body, or the flexible tube endoscope communication interface and the rigid tube endoscope communication interface are spaced apart on different sides of the host body.
6. The endoscope detection system based on intelligent endoscope type recognition according to claim 4, characterized in that: The hard tube of the hard tube endoscope is a disposable hard tube or a sterilizable and reusable hard tube; the disposable hard tube is detached from the tube diameter connecting end of the handle and discarded after use; the sterilizable and reusable hard tube is detached from the tube diameter connecting end of the handle and sterilized after use or is sterilized integrally with the handle.
7. The endoscope detection system based on intelligent endoscope type recognition according to claim 4, characterized in that: The hose endoscope is a disposable hose or a sterilizable reusable hose; after use, the disposable hose is detached from the hose endoscope communication interface and discarded together with the light source and the camera; after use, the sterilizable reusable hose is detached from the hose endoscope communication interface and reused after being sterilized together with the light source and the camera.
8. The endoscope detection system based on intelligent endoscope type recognition according to claim 4, characterized in that: The host body includes a display screen, a main case and an electronic control module; the electronic control module is distributed inside the main case; the display screen is embedded in one side of the main case and displays under the control of the electronic control module; the soft tube endoscope communication interface and the hard tube endoscope communication interface are electrically connected to the electronic control module.
9. The endoscope detection system based on intelligent endoscope type recognition according to claim 8, characterized in that: The main chassis includes a heat dissipation support portion and a display mounting portion; the heat dissipation support portion is located at the bottom end of the display mounting portion, and extends toward the tail of the bottom end of the display mounting portion to form a support tail portion; heat dissipation holes are distributed on the bottom surface, back surface and two side surfaces of the heat dissipation support portion; the display screen is embedded and mounted on the front side of the display mounting portion.
Citation Information
Patent Citations
Image processing method, device and equipment, medium and endoscope system
CN112465763A