A smart storage cabinet for surgical specimens

By introducing ventilation, disinfection, and dust prevention mechanisms into the intelligent surgical specimen storage cabinet, the problem of organic solvent melting caused by temperature changes has been solved, achieving effective preservation of specimens and preventing bacterial and dust contamination.

CN116250687BActive Publication Date: 2026-03-06山东耘威科技有限公司
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Patent Information

Application Number
CN202310042993.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-01-28
Publication Date
2026-03-06
Estimated Expiration
2043-01-28

AI Technical Summary

Technical Problem

Existing intelligent storage cabinets for surgical specimens suffer from the melting of organic solutions due to temperature changes during storage, and lack effective ventilation, disinfection, and dust prevention measures.

Method used

A smart storage cabinet for surgical specimens was designed, equipped with an exhaust mechanism, a disinfection mechanism, and a ventilation and dust prevention mechanism. Ventilation is achieved through a fan and an air pump, disinfection is performed by a disinfection water pump and a disinfection nozzle, and a dust screen prevents dust from entering.

Benefits of technology

This technology prevents the evaporation of organic solutions caused by temperature changes during the storage of surgical specimens, prevents bacterial and dust contamination, and ensures the quality of specimen preservation.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses an intelligent storage cabinet for surgical specimens, comprising a cabinet body with a plurality of partitions inside, dividing the cabinet body into storage compartments. There are thirty-two storage compartments, each with a storage door on its outer side. Each storage door has an electronic lock installed inside. An electronic control board is installed on one side of the cabinet body near each storage door. The electronic control board includes a facial recognition unlocking module, a voice-guided door opening module, a display screen, a control module, and a timing module. The beneficial effects are: while storing surgical specimens, ventilation within the storage compartments prevents internal temperature changes that could accelerate the evaporation of organic solutions; a disinfection mechanism disinfects the interior to prevent bacterial infection; and a dustproof mechanism prevents dust contamination.
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Description

Technical Field

[0001] This invention relates to the field of medical devices, and more specifically, to an intelligent storage cabinet for surgical specimens. Background Technology

[0002] All tissues, organs, or objects and foreign bodies related to the patient's disease removed during surgery in the operating room are considered surgical specimens and should be properly preserved. Surgical specimens are of great significance for the diagnosis, treatment, and prognosis of the patient's disease. These specimens are generally stored in intelligent storage cabinets. However, over time, the internal temperature of the cabinet may change, which may accelerate the melting of the organic solutions inside. Therefore, proper ventilation is necessary.

[0003] No effective solutions have yet been proposed to address the problems in the relevant technologies. Summary of the Invention

[0004] In view of the problems in related technologies, the present invention proposes an intelligent storage cabinet for surgical specimens to overcome the above-mentioned technical problems existing in the existing related technologies.

[0005] The technical solution of this invention is implemented as follows: A surgical specimen intelligent storage cabinet includes a cabinet body. A plurality of partitions are installed inside the cabinet body, dividing the cabinet body into storage compartments. The number of storage compartments is thirty-two. Each storage compartment has a storage door installed on its outer side, and an electronic lock is installed inside each storage door. An electronic control board is installed on the side of the cabinet body located near the storage door. The electronic control board includes a face unlock module, a voice-guided door opening module, a display screen, a control module, and a timing module. A ventilation mechanism is installed on the top of the cabinet body. The ventilation mechanism includes a mounting compartment located at the top center of the cabinet body. A fan is installed inside the mounting compartment. The fan's intake end is connected to an intake pipe, and the fan's output end is connected to an exhaust pipe. An exhaust fan cabinet is installed on the side of the cabinet body away from the storage door. A lifting screw is installed in the middle of the exhaust cabinet, and a lifting motor is installed at the top of the exhaust cabinet. The output end of the lifting motor is connected to the lifting screw. A lifting plate is threaded onto the lifting screw inside the exhaust cabinet. An air pump is installed on the lifting plate. An exhaust pipe is installed at the output end of the air pump, and an air inlet pipe is installed at the suction end of the air pump. An air supply pipe is installed on the side of the other end of the air inlet pipe. The air supply pipe extends to both sides and fits against the inner wall of the exhaust cabinet. The side of the exhaust cabinet has an exhaust hole with the same number as the number of horizontal rows of storage compartments. A connecting pipe is connected to each exhaust hole. The connecting pipe is connected to each storage compartment. A through groove connected to the exhaust cabinet is opened in each storage compartment. A disinfection mechanism is installed on the side of the cabinet adjacent to the exhaust cabinet. A ventilation and dust prevention mechanism is installed inside the storage door.

[0006] Furthermore, the disinfection mechanism includes a disinfection tank, which is installed on the side of the cabinet adjacent to the exhaust cabinet.

[0007] Furthermore, a disinfection water pump is installed on the top of the disinfection tank, and the suction end of the disinfection water pump is connected to the disinfection tank through a disinfection pipe, which extends to the bottom of the disinfection tank.

[0008] Furthermore, a disinfection output pipe is installed at the output end of the disinfection water pump, and a disinfection diversion pipe is installed at the other end of the disinfection output pipe. The disinfection diversion pipe extends towards the cabinet and extends to the other end of the cabinet.

[0009] Furthermore, a disinfection spray pipe is installed on the bottom side of the disinfection diversion pipe, the disinfection spray pipe extends downward and into each of the storage compartments, and a disinfection nozzle is installed on each of the disinfection spray pipes in the storage compartments, and a disinfection electronic valve is installed on each disinfection nozzle.

[0010] Furthermore, the ventilation and dustproof mechanism includes mounting slots, all of which are located on the top side of the storage door.

[0011] Furthermore, sliding grooves are provided on both sides of the mounting groove, and a dustproof screen is slidably installed in the mounting groove through the sliding grooves. A dustproof cover is installed at the top of the mounting groove.

[0012] Furthermore, each of the storage doors is provided with a number of circulating air vents, and the top side of the disinfection tank is provided with a medicine filling port located next to the disinfection water pump. A sealing plug is detachably installed inside the medicine filling port.

[0013] Furthermore, the electronic control board is connected to the fan, the lifting motor, the air pump, the disinfection water pump, and the disinfection electronic valve.

[0014] This invention provides an intelligent storage cabinet for surgical specimens, which has the following advantages: it achieves the following benefits: while storing surgical specimens, it prevents the evaporation of organic solutions by ventilating the storage compartments and preventing internal temperature changes; it disinfects the interior by using a disinfection mechanism to prevent internal bacterial infection; and it prevents dust contamination by using a dustproof mechanism. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a front view of a surgical specimen intelligent storage cabinet according to an embodiment of the present invention;

[0017] Figure 2 This is a cross-sectional view of a surgical specimen intelligent storage cabinet according to an embodiment of the present invention;

[0018] Figure 3 This is an internal structural diagram of the exhaust fan of an intelligent surgical specimen storage cabinet according to an embodiment of the present invention;

[0019] Figure 4 This is a schematic diagram of the overall structure of the storage door of a smart storage cabinet for surgical specimens according to an embodiment of the present invention.

[0020] In the picture:

[0021] 1. Cabinet; 2. Shelf; 3. Storage compartment; 4. Storage door; 5. Electronic lock; 6. Electronic control board; 7. Exhaust mechanism; 8. Mounting compartment; 9. Fan; 10. Suction pipe; 11. Exhaust pipe; 12. Fume cabinet; 13. Lifting screw; 14. Lifting motor; 15. Lifting plate; 16. Air pump; 17. Exhaust pipe; 18. Air inlet pipe; 19. Air supply pipe; 20. Exhaust vent; 21. Through groove; 22. Disinfection tank; 23. Disinfection water pump; 24. Disinfection output pipe; 25. Disinfection diversion pipe; 26. Disinfection spray pipe; 27. Disinfection nozzle; 28. Disinfection electronic valve; 29. ​​Mounting groove; 30. Sliding groove; 31. Dustproof screen; 32. Dustproof cover; 33. Circulating air outlet; 34. Medicine filling port; 35. Sealing plug; 36. Disinfection mechanism; 37. Ventilation and dustproof mechanism. Detailed Implementation

[0022] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention are within the scope of protection of the present invention.

[0023] like Figure 1-4As shown in the figure, a surgical specimen intelligent storage cabinet according to an embodiment of the present invention includes a cabinet body 1. A plurality of partitions 2 are installed inside the cabinet body 1, dividing the cabinet body 1 into storage compartments 3. There are thirty-two storage compartments 3. Storage doors 4 are installed on the outer sides of each storage compartment 3. Electronic locks 5 are installed inside each storage door 4. An electronic control board 6 is installed on one side of the cabinet body 1 near each storage door 4. The electronic control board 6 includes a face unlock module, a voice-guided door opening module, a display screen, a control module, and a timing module. A ventilation mechanism 7 is installed on the top of the cabinet body 1. The ventilation mechanism 7 includes a mounting compartment 8 located at the top center of the cabinet body 1, and a fan is installed inside the mounting compartment 8. 9. The suction end of the fan 9 is connected to a suction pipe 10, and the output end of the fan 9 is equipped with an exhaust pipe 11. An exhaust cabinet 12 is installed on the side of the cabinet 1 away from the storage door 4. A lifting screw 13 is installed in the middle of the exhaust cabinet 12. A lifting motor 14 is installed at the top of the exhaust cabinet 12. The output end of the lifting motor 14 is connected to the lifting screw 13. A lifting plate 15 is threadedly connected to the lifting screw 13 inside the exhaust cabinet 12. An air pump 16 is installed on the lifting plate 15. An exhaust pipe 17 is installed at the output end of the air pump 16. An air inlet pipe 18 is installed at the suction end of the air pump 16. An air supply pipe 19 is installed on the other side of the air inlet pipe 18, and the air supply pipe 19 extends to both sides. The exhaust cabinet 12 is fitted to the inner wall of the exhaust cabinet 12. The exhaust cabinet 12 has an equal number of exhaust holes 20 as the number of storage compartments 3 arranged horizontally on its side. Each exhaust hole 20 is connected to a connecting pipe, which is connected to each storage compartment 3. The mounting compartment 8 has a through groove 21 connected to the exhaust cabinet 12. A disinfection mechanism 36 is installed on the side of the cabinet 1 adjacent to the exhaust cabinet 12. A ventilation and dustproof mechanism 37 is installed inside the storage door 4. During use, facial recognition is used to unlock the storage compartment 3 via the electronic control board 6, and the correct voice command is used to unlock the specified storage compartment 3. The specified storage compartment 3 can be manually selected and opened via the display screen. During ventilation, the air pump 16 is controlled by the electronic control board 6. When the blower 9 is turned on, the air pump 16 draws air into the air inlet pipe 18, and then, through the air delivery pipe 19 and the air inlet pipe 18, draws air into the connecting pipe through the exhaust port 20, thus drawing air from the storage compartment 3 to achieve the effect of exhaust. The drawn-in air is then discharged into the exhaust cabinet 12. At this time, the blower 9 will draw the air drawn into the exhaust cabinet 12 and discharge it outwards, achieving the effect of ventilation. The lifting motor 14 is controlled by the timer module to control the time interval of the lifting motor 14. At this time, the lifting motor 14 drives the lifting screw 13 to rotate, thereby driving the lifting plate 15 to rotate, so that the air delivery pipe 19 is aligned with the next connecting pipe to exhaust the next row of storage compartments 3.At this time, the storage compartment 3 is disinfected by the disinfection mechanism 36, and dust is prevented from entering the storage compartment 3 by the dustproof mechanism. This invention achieves the simultaneous storage of surgical specimens and ventilation within the storage compartment 3 to prevent internal temperature changes from accelerating the evaporation of organic solutions. The disinfection mechanism 36 disinfects the interior to prevent internal bacterial infection, and the dustproof mechanism prevents dust contamination.

[0024] In addition, such as Figure 1-3 As shown, in one embodiment, the disinfection mechanism 36 includes a disinfection tank 22, which is installed on the side of the cabinet 1 adjacent to the exhaust cabinet 12. A disinfection water pump 23 is installed on the top of the disinfection tank 22. The suction end of the disinfection water pump 23 is connected to the disinfection tank 22 through a disinfection pipe, which extends to the bottom of the disinfection tank 22. A disinfection output pipe 24 is installed at the output end of the disinfection water pump 23. A disinfection diversion pipe 25 is installed at the other end of the disinfection output pipe 24, which extends toward the cabinet 1 and to the other end of the cabinet 1. A disinfection spray pipe 26 is installed on the bottom side of the disinfection diversion pipe 25. The disinfection spray pipe 26 extends downward and into each of the storage compartments 3. Each disinfection spray pipe 26 is equipped with a disinfection nozzle 27 in each of the storage compartments 3. A disinfection electronic valve 28 is installed on the disinfection nozzle 27. The disinfection water pump 23 in the disinfection mechanism 36 draws out the disinfection solution through the disinfection pipe and outputs it through the disinfection output pipe 24 into the disinfection diversion pipe 25. Then, the solution is input into the disinfection spray pipe 26 through the disinfection diversion pipe 25. At this time, the electronic valve is controlled to open and close, and the storage compartments 3 are disinfected through the disinfection nozzles 27.

[0025] In addition, such as Figure 1-4 As shown, in one embodiment, the ventilation and dustproof mechanism 37 includes an installation groove 29, which is opened on the top side of the storage door 4. Sliding grooves 30 are provided on both sides of the installation groove 29. A dustproof screen 31 is slidably installed in the installation groove 29 through the sliding grooves 30. A dustproof cover 32 is installed at the top of the installation groove 29. A number of circulating air vents 33 are provided on the storage door 4. A medicine loading port 34 is provided on the top side of the disinfection tank 22, located next to the disinfection water pump 23. A sealing plug 35 is detachably installed in the medicine loading port 34. The electronic control board 6 is connected to the fan 9, the lifting motor 14, the air pump 16, the disinfection water pump 23, and the disinfection electronic valve 28. The dustproof cover 32 is opened, the dustproof screen 31 is inserted into the installation groove 29 through the sliding grooves 30, ventilation is provided through the circulating air vents 33, and medicine is loaded into the disinfection tank 22 through the medicine loading port 34.

[0026] Based on the above scheme, the working principle or operation process of this invention in actual application is as follows: Unlocking is performed by scanning a face using the electronic control board 6; unlocking of the designated storage compartment 3 is achieved by correctly inputting a voice command; and manual selection of the designated storage compartment 3 is performed via the display screen. During ventilation, the electronic control board 6 controls the air pump 16 and fan 9 to turn on. At this time, the air pump 16 draws air into the air inlet pipe 18, and then, through the air delivery pipe 19 and the air inlet pipe 18, draws air into the connecting pipe through the exhaust port 20, thereby drawing air from the storage compartment 3 to achieve the effect of exhaust. The drawn-in air is then discharged into the exhaust fan 12. The fan 9 then draws in the air drawn into the exhaust fan 12 and discharges it outwards, achieving the ventilation effect. The lifting motor 14 is controlled by a timing module. During the lifting interval, the lifting motor 14 drives the lifting screw 13 to rotate, thereby rotating the lifting plate 15. This causes the air supply pipe 19 to align with the next connecting pipe, venting the next row of storage compartments 3. At this time, the disinfection mechanism 36 disinfects the storage compartments 3, preventing dust from entering. The disinfection water pump 23 in the disinfection mechanism 36, in conjunction with the disinfection pipe, draws out the disinfectant and outputs it through the disinfection output pipe 24 to the disinfection diversion pipe 25. Then, through the disinfection diversion pipe 25, it is input into the disinfection spray pipe 26. At this time, the electronic valve is switched on and off, and the disinfection nozzle 27 disinfects the storage compartments 3. The dust cover 32 is opened, and the dust screen 31 is inserted into the installation slot 29 through the sliding groove 30. Ventilation is provided through the circulating air vent 33, and the disinfection tank 22 is filled with medicine through the medicine filling port 34.

[0027] By means of the above-described solution of the present invention, the present invention can achieve the following: while storing surgical specimens, ventilation is provided in the storage compartment 3 to prevent changes in internal temperature from accelerating the evaporation of organic solutions; the internal parts are disinfected by the disinfection mechanism 36 to prevent internal bacterial infection; and the internal parts are protected from dust by the dustproof mechanism to prevent dust contamination.

[0028] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A smart specimen intelligent storage cabinet for surgery, comprising a cabinet body (1), characterized in that, The cabinet (1) is provided with a plurality of partitions (2), which divide the cabinet (1) into thirty-two storage compartments (3). Each storage compartment (3) is provided with a storage door (4), and the storage door (4) is provided with an electronic lock (5). The cabinet (1) is provided with an electronic control panel (6) on one side of the storage door (4). The electronic control panel (6) includes a face unlocking module, a voice directional door opening module, a display screen, a control module, and a timing module. The top of the cabinet (1) is provided with an exhaust mechanism (7). The exhaust mechanism (7) includes a mounting groove (8) located at the top center of the cabinet (1). The mounting groove (8) is provided with a fan (9). The suction end of the fan (9) is connected with a suction pipe (10). The output end of the fan (9) is provided with an exhaust pipe (11). The side of the cabinet (1) away from the storage door (4) is provided with an exhaust cabinet (12). The exhaust cabinet (12) is provided with a lifting screw (13) at the middle. The top of the exhaust cabinet (12) is provided with a lifting motor (14). The output end of the lifting motor (14) is connected with the lifting screw (13). The exhaust cabinet (12) is provided with a lifting plate (15) connected with the lifting screw (13) by threads. The lifting plate (15) is provided with a gas pump (16). The output end of the gas pump (16) is provided with an exhaust pipe (17). The suction end of the gas pump (16) is provided with an air inlet pipe (18). The other end of the air inlet pipe (18) is provided with a gas delivery pipe (19). The gas delivery pipe (19) extends to both sides and is attached to the inner wall of the exhaust cabinet (12). The side of the exhaust cabinet (12) is provided with a plurality of exhaust holes (20) corresponding to the number of horizontal rows of the storage compartments (3). The exhaust holes (20) are connected with communication pipes. The communication pipes are connected with the storage compartments (3). The mounting groove (8) is provided with a through groove (21) connected with the exhaust cabinet (12). The cabinet (1) is provided with a disinfection mechanism (36) adjacent to the exhaust cabinet (12). The storage door (4) is provided with a ventilation and dust prevention mechanism (37). The ventilation and dust prevention mechanism (37) includes a mounting groove (29) provided on the top side of the storage door (4). The mounting groove (29) is provided with a sliding groove (30) on both sides. The mounting groove (29) is provided with a dust screen (31) connected with the sliding groove (30). The top of the mounting groove (29) is provided with a dust cover (32). The storage door (4) is provided with a plurality of circulating air openings (33). The top side of the disinfection barrel (22) is provided with a medicine loading port (34) adjacent to the disinfection water pump (23). The medicine loading port (34) is provided with a removable sealing plug (35).

2. The smart specimen intelligent storage cabinet of claim 1, wherein, The disinfection mechanism (36) comprises a disinfection barrel (22) mounted on the cabinet (1) adjacent to the exhaust cabinet (12).

3. The smart specimen intelligent storage cabinet of claim 2, wherein, The top of the disinfection barrel (22) is provided with a disinfection water pump (23), and the suction end of the disinfection water pump (23) is connected with the disinfection barrel (22) through a disinfection pipe which extends to the bottom end of the disinfection barrel (22).

4. The intelligent surgical specimen storage cabinet of claim 3, wherein, The output end of the disinfection water pump (23) is provided with a disinfection output pipe (24), and the other end of the disinfection output pipe (24) is provided with a disinfection shunt pipe (25) which extends to the other end of the cabinet (1).

5. The intelligent surgical specimen storage cabinet of claim 4, wherein, The bottom side of the disinfection shunt pipe (25) is provided with a disinfection spray pipe (26) which extends downward and into each of the storage compartments (3), and the disinfection spray pipe (26) is provided with a disinfection spray head (27) in each of the storage compartments (3), and the disinfection spray head (27) is provided with a disinfection electronic valve (28).

6. The intelligent surgical specimen storage cabinet of claim 5, wherein, The electronic control board (6) is connected with the fan (9), the lifting motor (14), the lifting motor (14), the air pump (16), the disinfection water pump (23), and the disinfection electronic valve (28).

Citation Information

Patent Citations

  • Intelligent sterile cabinet for hospitals

    CN112933272A

  • Specimen storage cabinet

    CN213362972U

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    CN217524283U