Digital operating room

By designing a heat dissipation system and disinfection function into the information display screen of the digital operating room, the problem of electronic component damage caused by heat concentration has been solved, achieving a long lifespan and efficient heat dissipation of the display screen, and improving the cleanliness and disinfection safety of the medical environment.

CN116343582BActive Publication Date: 2026-04-03SINODEU MEDICAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-12-18
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The heat concentration in the display screen in the digital operating room causes wear and tear on electronic components, affecting its lifespan.

Method used

The heat dissipation system, which is integrated into the information display screen, includes a cavity and heat dissipation holes within the support column. Combined with a vacuum pump and a three-way valve, it enables rapid heat conduction. Furthermore, the disinfection and drying functions within the disinfection housing enhance disinfection safety and heat dissipation performance.

Benefits of technology

It effectively extends the lifespan of the display screen, improves the cleanliness of the medical environment and the convenience of patient disinfection, and enhances the efficiency and safety of the heat dissipation system.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a digital operating room, comprising: an information acquisition module, a data processing module, a 5G network communication module, an information display screen, and an anomaly management module. The information display screen further comprises: a display screen body, a support column, and a fixing frame located between the back of the display screen body and the support column. A sterilization shell is installed at the bottom of the display screen body. A partition is vertically disposed within the sterilization shell, dividing the shell into a front chamber and a rear chamber. A vacuum pump is installed on the inner wall of the sterilization shell within the rear chamber. One end of the vacuum pump is connected to an annular hollow shell rotatably mounted within the partition, and the other end is connected to a three-way valve via an input pipe. This invention improves the safety and thoroughness of sterilization and accelerates the flow of gas within the heat dissipation system, further enhancing the overall heat dissipation performance of the display screen.
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Description

Technical Field

[0001] This invention relates to the field of hospital information equipment, and in particular to a digital operating room. Background Technology

[0002] Digital information technology is an important component of hospital modernization, a crucial measure to improve hospital efficiency and reduce medical operating costs, and a vital means to enhance medical quality, service levels, and innovate medical service models. In recent years, in particular, most hospitals have implemented billing-centric systems such as HIS, EMR, LIS, PACS, RIS, and CIS, including emergency billing systems, emergency pharmacy management systems, inpatient expense management systems, and pharmacy management systems. Hardware infrastructure based on these software systems will also be further developed, especially operating room workstations, which play a vital role in modern medical surgical management within the operating room.

[0003] As a next-generation mobile communication system, 5G will penetrate all sectors of society, providing comprehensive services as infrastructure. 5G can connect hundreds of billions of devices, offer an excellent interactive experience, and enable intelligent interconnection between people and everything. It can provide ultra-high traffic density and ultra-high mobility support, allowing users to enjoy a consistent performance experience anytime, anywhere. With the help of medical intelligent sensing and interaction technologies, and 5G network communication, highly efficient, highly secure, and ultra-large-capacity digital operating rooms are becoming a new development direction.

[0004] The display screen, an important component of the digital operating room, is used to display hospital information such as notices, announcements, and treatment progress information. In addition, interactive functions are integrated into the display screen to further enable patients to understand their own physical condition and hospital staff to understand relevant information. This further increases the heat generated by the large screen display, causing the display screen to overheat and damage its lifespan. Summary of the Invention

[0005] The main objective of this invention is to provide a digital operating room that can quickly conduct heat away from the information display screen, avoiding damage to electronic components caused by prolonged heat concentration and extending the lifespan of the display screen.

[0006] To achieve the above objectives, the technical solution adopted by the present invention is: a digital operating room, comprising:

[0007] The information acquisition module is used to collect and store environmental, equipment, and personnel information in each operating room in real time.

[0008] The data processing module is used to process and analyze the collected environmental, equipment and personnel information data, and to feed the processed data back to each operating room or control the operation of the environment, equipment and personnel in each operating room based on the analysis results;

[0009] The 5G network communication module is used to enable information exchange between various modules and between various modules and external systems;

[0010] The information display screen is used to display real-time information about the environment, equipment, and personnel in each operating room, as well as data information processed and analyzed by the data processing module. It is also used for manual input of operating room information.

[0011] The anomaly management module is used to perform statistical analysis on the abnormal data information obtained after processing and analysis by the data processing module, and to issue early warning signals.

[0012] The information display screen further includes: a display screen body, a support column located behind the display screen body and connected to the back of the display screen body, and a disinfection shell installed below the display screen body. The support column is provided with a first cavity and a second cavity for storing disinfectant. A vertical partition is provided in the disinfection shell to divide the disinfection shell into a front cavity area and a rear cavity area.

[0013] The display screen body has a first heat dissipation hole area and a second heat dissipation hole area on the left and right sides of the back, respectively. The first heat dissipation hole area and the second heat dissipation hole area are respectively covered by a first shell and a second shell. The first shell and the second shell each include a connected air inlet chamber and an air outlet chamber. The air inlet chamber of the first shell and the second shell are connected to the first cavity through a first heat dissipation air passage and a second heat dissipation air passage, respectively. The air outlet chamber of the first shell and the second shell is provided with an exhaust hole.

[0014] A vacuum pump is installed on the inner wall of the sterilization shell and in the rear cavity. One end of the vacuum pump is connected to an annular hollow shell that is rotatably installed in the partition. The other end of the vacuum pump is connected to a three-way valve through an input pipe. Any air inlet chamber and the second chamber are connected to the three-way valve through pipes. A connecting pipe extending into the front cavity is inserted into the upper part of the annular hollow shell. Several nozzles are installed on the connecting pipe at intervals.

[0015] The following are further improvements to the above technical solution:

[0016] 1. In the above scheme, the information acquisition module includes an equipment monitoring unit, an air monitoring unit, a power monitoring unit, and a personnel monitoring unit.

[0017] In the above scheme, the information display screens include operating room door sign display screens, corridor information screens, and head nurse operation screens.

[0018] In the above scheme, electric valves are installed on the pipes connecting the first cavity and the second cavity to the three-way valve.

[0019] In the above scheme, the display screen body is mounted on the support column by a fixing frame.

[0020] In the above scheme, the exhaust port is opened on the top and side wall of the first housing and the second housing, respectively.

[0021] In the above scheme, the first heat dissipation air path and the second heat dissipation air path are aluminum pipe air paths or copper pipe air paths.

[0022] Due to the application of the above technical solution, the present invention has the following advantages compared with the prior art:

[0023] This invention relates to a digital operating room that enables efficient, real-time monitoring and information display of multiple operating rooms. It also rapidly dissipates heat from the information display screen, preventing damage to electronic components caused by prolonged heat concentration and extending the screen's lifespan. Furthermore, it allows for liquid disinfection of hands or other items inserted into the sterilization housing beneath the information display screen, improving the cleanliness of the medical environment and the convenience of patient disinfection. Additionally, any air intake chamber is connected via a pipe to a three-way valve connected at one end to an annular hollow shell. A connecting pipe extending into the front chamber is inserted into the upper part of the annular hollow shell, and several nozzles are installed at intervals on this connecting pipe. After liquid disinfection, the hot gas from the air intake chamber can be drawn to dry the disinfected items, further improving the safety and thoroughness of disinfection. This also accelerates the airflow within the heat dissipation system, further enhancing the overall heat dissipation performance of the display screen. Attached Figure Description

[0024] Figure 1 This is a schematic diagram illustrating the principle of the digital operating room of this invention;

[0025] Figure 2 This is a schematic diagram of the front structure of the information display screen in the digital operating room of the present invention;

[0026] Figure 3 This is a partial structural exploded view of the information display screen in the digital operating room of the present invention;

[0027] Figure 4 This is a partial structural schematic diagram of the information display screen in the digital operating room of the present invention;

[0028] Figure 5 This is a partial structural cross-sectional view of the information display screen support column in the digital operating room of the present invention;

[0029] Figure 6 This is a partial structural cross-sectional view of the information display screen in the digital operating room of the present invention.

[0030] In the attached diagrams: 1. Display screen body; 2. Support column; 3. Fixing frame; 31. Left fixing plate; 32. Right fixing plate; 33. Mounting block; 41. First cavity; 42. Second cavity; 51. First housing; 52. Second housing; 61. Air inlet cavity; 62. Air outlet cavity; 63. Exhaust port; 71. First heat dissipation air path; 72. Second heat dissipation air path; 81. First heat dissipation hole area; 82. Second heat dissipation hole area; 9. Sterilization housing; 10. Partition plate; 11. Vacuum pump; 12. Annular hollow shell; 13. Three-way valve; 14. Input pipe; 15. Connecting pipe; 21. Information acquisition module; 22. Data processing module; 23. 5G network communication module; 24. Information display screen; 25. Anomaly management module. Detailed Implementation

[0031] In the description of this patent, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used solely for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. The terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, unless otherwise explicitly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this patent based on the specific circumstances.

[0032] Example 1: A digital operating room, comprising:

[0033] Information acquisition module 21 is used to collect and store environmental, equipment and personnel information in each operating room in real time;

[0034] The data processing module 22 is used to process and analyze the collected environmental, equipment and personnel information data, and to feed back the processed data to each operating room or control the operation of the environment, equipment and personnel in each operating room based on the analysis results;

[0035] 5G network communication module 23 is used to realize information interaction between various modules and between various modules and external systems;

[0036] The information display screen 24 is used to display the environment, equipment and personnel information in each operating room in real time, as well as the data information processed and analyzed by the data processing module 22. It is also used for manual input of operating room information.

[0037] The anomaly management module 25 is used to perform statistical analysis on the abnormal data information obtained after processing and analysis by the data processing module 22, and to issue early warning signals.

[0038] The information display screen 24 further includes: a display screen body 1, a support column 2 located behind the display screen body 1 and connected to the back of the display screen body 1, and a disinfection shell 9 installed below the display screen body 1. The support column 2 is provided with a first cavity 41 and a second cavity 42 for storing disinfectant. A partition 10 vertically arranged in the disinfection shell 9 divides the disinfection shell 9 into a front cavity area and a rear cavity area.

[0039] The display screen body 1 has a first heat dissipation hole area 81 and a second heat dissipation hole area 82 respectively on the left and right sides of the back. The first heat dissipation hole area 81 and the second heat dissipation hole area 82 are respectively covered by a first housing 51 and a second housing 52. The first housing 51 and the second housing 52 each include a connected air inlet chamber 61 and an air outlet chamber 62. The air inlet chamber 61 of the first housing 51 and the second housing 52 are connected to the first cavity 41 through a first heat dissipation air passage 71 and a second heat dissipation air passage 72 respectively. The air outlet chamber 62 of the first housing 51 and the second housing 52 is provided with an exhaust hole 63.

[0040] A vacuum pump 11 is installed on the inner wall of the disinfection housing 9 and in the rear cavity. One end of the vacuum pump 11 is connected to an annular hollow shell 12 that is rotatably installed in the partition 10. The other end of the vacuum pump 11 is connected to a three-way valve 13 through an input pipe 14. The first cavity 41 and the second cavity 42 are each connected to the three-way valve 13 through pipes. A connecting pipe 15 extending into the front cavity is inserted into the upper part of the annular hollow shell 12. Several nozzles are installed on the connecting pipe 15 at intervals.

[0041] The aforementioned display screen body 1 is mounted on the support column 2 via a fixing bracket 3; the aforementioned exhaust port 63 is opened on the top and side wall of the first housing 51 and the second housing 52 respectively; the aforementioned first heat dissipation air passage 71 and second heat dissipation air passage 72 are copper pipe air passages;

[0042] A semiconductor cooling chip is installed on one side of the inner wall of the first cavity 41, and a through hole with an air filter is opened on the other side; the first heat dissipation air passage 71 is connected to the left wall of the first cavity 41, and the second heat dissipation air passage 72 is connected to the right wall of the first cavity 41.

[0043] The aforementioned fixing frame 3 further includes a left fixing plate 31, a right fixing plate 32, and a mounting block 33 located between the left fixing plate 31 and the right fixing plate 32; the back of the aforementioned display screen body 1 is connected to the mounting block 33, and the aforementioned left fixing plate 31 and right fixing plate 32 are fixed to the support column 2.

[0044] Example 2: A digital operating room, comprising: an information display screen 24, used to display real-time information on the environment, equipment and personnel in each operating room, and also used for manual input of operating room information;

[0045] The information display screen 24 further includes: a display screen body 1, a support column 2 located behind the display screen body 1 and connected to the back of the display screen body 1, and a disinfection shell 9 installed below the display screen body 1. The support column 2 is provided with a first cavity 41 and a second cavity 42 for storing disinfectant. A partition 10 vertically arranged in the disinfection shell 9 divides the disinfection shell 9 into a front cavity area and a rear cavity area.

[0046] The display screen body 1 has a first heat dissipation hole area 81 and a second heat dissipation hole area 82 respectively on the left and right sides of the back. The first heat dissipation hole area 81 and the second heat dissipation hole area 82 are respectively covered by a first housing 51 and a second housing 52. The first housing 51 and the second housing 52 each include a connected air inlet chamber 61 and an air outlet chamber 62. The air inlet chamber 61 of the first housing 51 and the second housing 52 are connected to the first cavity 41 through a first heat dissipation air passage 71 and a second heat dissipation air passage 72 respectively. The air outlet chamber 62 of the first housing 51 and the second housing 52 is provided with an exhaust hole 63.

[0047] A vacuum pump 11 is installed on the inner wall of the disinfection housing 9 and in the rear cavity. One end of the vacuum pump 11 is connected to an annular hollow shell 12 that is rotatably installed in the partition 10. The other end of the vacuum pump 11 is connected to a three-way valve 13 through an input pipe 14. The first cavity 41 and the second cavity 42 are each connected to the three-way valve 13 through pipes. A connecting pipe 15 extending into the front cavity is inserted into the upper part of the annular hollow shell 12. Several nozzles are installed on the connecting pipe 15 at intervals.

[0048] The aforementioned information acquisition module 21 includes an equipment monitoring unit, an air monitoring unit, a power monitoring unit, and a personnel monitoring unit; the aforementioned information display screen 24 includes an operating room door sign display screen, a corridor information screen, and a head nurse operation screen; the aforementioned first heat dissipation air passage 71 and second heat dissipation air passage 72 are aluminum pipe air passages; electric valves are installed on the pipes of the aforementioned first cavity 41 and second cavity 42 that are connected to the three-way valve 13; the aforementioned first heat dissipation hole area 81 and second heat dissipation hole area 82 are located on the upper part of the display screen body 1, and correspondingly, the aforementioned first housing 51 and second housing 52 are located on the upper part of the display screen body 1.

[0049] When using the aforementioned digital operating room, the working principle is as follows:

[0050] When the patient inserts their finger into the sterilization housing, the electric valve and vacuum pump on the pipe connected to the second chamber are turned on. The sterilization water is then used to clean and disinfect the patient's finger through the outlet pipe, the annular hollow shell, and the nozzle on the connecting pipe. After that, the electric valve on the pipe connected to the air inlet chamber is turned on. The air in the air inlet chamber, which contains heated air, is blown through the nozzle on the connecting pipe to dry the finger, thus improving the safety of the patient's subsequent use.

[0051] While enabling efficient, real-time monitoring and information display of multiple operating rooms, it can quickly conduct heat away from the information display screen, avoiding damage to electronic components caused by prolonged heat concentration and extending the lifespan of the display screen. It can also perform liquid disinfection of hands or other items inserted into the disinfection shell below the information display screen, improving the cleanliness of the medical environment and the convenience of patient disinfection. Furthermore, any air intake chamber is connected to a three-way valve connected to an annular hollow shell at one end via a pipe. A connecting pipe extending into the front chamber is inserted into the upper part of the annular hollow shell. Several nozzles are installed at intervals on the connecting pipe. After liquid disinfection, the air with a certain amount of heat can be drawn from the air intake chamber to dry the disinfected items, further improving the safety and thoroughness of disinfection. It can also accelerate the air circulation in the heat dissipation system, further improving the overall heat dissipation performance of the display screen.

[0052] The above embodiments are only for illustrating the technical concept and features of the present invention, and are intended to enable those skilled in the art to understand the content of the present invention and implement it accordingly. They should not be construed as limiting the scope of protection of the present invention. All equivalent changes or modifications made in accordance with the spirit and essence of the present invention should be covered within the scope of protection of the present invention.

Claims

1. A digital operating room, characterized in that, include: The information acquisition module (21) is used to collect and store environmental, equipment and personnel information in each operating room in real time; The data processing module (22) is used to process and analyze the collected environmental, equipment and personnel information data, and to feed back the processed data to each operating room or control the operation of the environment, equipment and personnel in each operating room according to the analysis results; The 5G network communication module (23) is used to realize information interaction between various modules and between various modules and external systems; The information display screen (24) is used to display the environment, equipment and personnel information in each operating room in real time, as well as the data information processed and analyzed by the data processing module (22). It is also used for manual input of operating room information. The anomaly management module (25) is used to perform statistical analysis on the abnormal data information obtained after processing and analysis by the data processing module (22) and issue early warning signals. The information display screen (24) further includes: a display screen body (1), a support column (2) located behind the display screen body (1) and connected to the back of the display screen body (1), and a disinfection shell (9) installed below the display screen body (1). The support column (2) is provided with a first cavity (41) and a second cavity (42) for storing disinfectant. A partition (10) vertically arranged in the disinfection shell (9) divides the disinfection shell (9) into a front cavity area and a rear cavity area. The display screen body (1) has a first heat dissipation hole area (81) and a second heat dissipation hole area (82) respectively on the left and right sides of the back. The first heat dissipation hole area (81) and the second heat dissipation hole area (82) are respectively covered by a first housing (51) and a second housing (52). The first housing (51) and the second housing (52) each include a connected air inlet chamber (61) and an air outlet chamber (62). The air inlet chamber (61) of the first housing (51) and the second housing (52) are connected to the first cavity (41) through a first heat dissipation air passage (71) and a second heat dissipation air passage (72) respectively. The air outlet chamber (62) of the first housing (51) and the second housing (52) is provided with an exhaust hole (63). A vacuum pump (11) is installed on the inner wall of the disinfection housing (9) and in the rear cavity. One end of the vacuum pump (11) is connected to an annular hollow shell (12) rotatably installed in the partition (10). The other end of the vacuum pump (11) is connected to a three-way valve (13) through an input pipe (14). Any air inlet chamber (61) and the second chamber (42) are connected to the three-way valve (13) through pipes. A connecting pipe (15) extending to the front cavity is inserted into the upper part of the annular hollow shell (12). Several nozzles are installed at intervals on the connecting pipe (15).

2. The digital operating room according to claim 1, characterized in that: The information acquisition module (21) includes an equipment monitoring unit, an air monitoring unit, a power monitoring unit, and a personnel monitoring unit.

3. The digital operating room according to claim 1, characterized in that: The information display screen (24) includes the operating room door sign display screen, the corridor information screen, and the head nurse operation screen.

4. The digital operating room according to claim 1, characterized in that: Electric valves are installed on the pipes connecting the air outlet chamber (62) and the second chamber (42) to the three-way valve (13).

5. The digital operating room according to claim 1, characterized in that: The display screen body (1) is mounted on the support column (2) by a fixing frame (3).

6. The digital operating room according to claim 1, characterized in that: The vent (63) is located on the top and side wall of the first housing (51) and the second housing (52), respectively.

7. The digital operating room according to claim 1, characterized in that: The first heat dissipation air passage (71) and the second heat dissipation air passage (72) are aluminum pipe air passages or copper pipe air passages.

Citation Information

Patent Citations

  • Heat dissipation structure of automobile vehicle-mounted display screen and installation method of structure

    CN111629562A

  • Intelligent operating room and anesthesia recovery room shift change system

    CN112885446A