Medical specimen transfer device
By designing a medical specimen transport device, utilizing cooling components and a hollowed-out box structure, the issues of specimen preservation time and safety during transport were resolved. This achieved efficient cooling and isolation of the specimens, ensuring their preservation conditions and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING JISHUITAN HOSPITAL
- Filing Date
- 2025-07-31
- Publication Date
- 2026-05-19
AI Technical Summary
In existing technologies, medical specimens suffer from safety and insufficient preservation time during transportation, especially due to specimen contamination and unstable preservation conditions caused by the diversity of personnel and environment.
A medical specimen transport device was designed, including a box, a specimen storage unit, and a cooling unit. The box provides a closed space, the specimen storage unit is used to fix the specimen, the cooling unit is used to maintain a low temperature environment, the specimen preservation time is extended by dry ice or a compressor refrigeration mechanism, and the isolation and positioning of the specimen are ensured by a hollow structure and indicators.
This method achieves efficient cooling and isolation of specimens during transport, extends preservation time, ensures specimen activity and integrity, prevents contamination, and improves the reliability and safety of transportation.
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Figure CN224257289U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical device technology, and more specifically, to medical specimen transport devices.
[0002] This application claims priority based on application number 2025215366531 filed in China on July 22, 2025, the contents of which are incorporated herein by reference. Background Technology
[0003] Frozen tissue pathology is used in cancer patients during surgery to rapidly diagnose the benign or malignant nature of tumors. After partial or complete tumor resection, the tissue sample is sent to the pathology department for rapid case diagnosis. This tissue needs to be transported from the operating room to the pathology department, and there are certain requirements for specimen transport during this process. The requirements are: safety, speed, and accuracy. Currently, commonly used surgical gauze, cotton cloth, sterile gloves, and plastic bags are used for transport. Because the personnel transporting the specimen are often junior doctors, standardized training doctors, visiting doctors, nurses, nursing assistants, and medical support staff, and the journey involves passing through the surgical area, sterile area, sterile area, changing area, patient waiting area, elevators, hospital corridors, and the pathology department, there are often some risks involved in the process. Utility Model Content
[0004] The purpose of this application is to provide a medical specimen transport device that is capable of cryogenic cooling to extend the specimen preservation time.
[0005] To achieve the above objectives, this utility model provides a medical specimen transport device, comprising:
[0006] The enclosure is used to provide an enclosed space;
[0007] A specimen storage unit, which is disposed in the housing for storing and securing specimens;
[0008] A cooling element is provided on the specimen storage container for cooling the specimen. Two cooling elements are provided on the housing, and the specimen storage container is located between the two cooling elements.
[0009] In an optional embodiment, a mounting plate is fixedly provided on the inner wall of the box to provide an installation base for the specimen storage component;
[0010] The specimen storage device includes a frame and an elastic cord. The frame is detachably mounted on the mounting plate, and the elastic cord is mounted on the frame and used to secure the specimen to the frame.
[0011] In an optional embodiment, the mounting plate is provided with a mounting slot;
[0012] The mounting bracket includes a mounting plate and a support leg fixedly mounted on the mounting plate. The end of the support leg is detachably mounted in the mounting groove of the mounting plate, and the support leg maintains a distance between the mounting plate and the mounting plate.
[0013] Multiple mounting slots are provided, and correspondingly multiple support legs are provided.
[0014] In an optional embodiment, the fixing plate is configured as a perforated plate.
[0015] In an optional embodiment, a liquid adsorption element is provided on the end face of the mounting plate.
[0016] In an optional embodiment, the mounting plate is configured as a perforated plate.
[0017] In an optional embodiment, the fixing plate is provided with at least one grip handle.
[0018] In an optional embodiment, the box body is provided with an opening, and the opening of the box body is provided with a folding plate for closing or opening the opening.
[0019] In an optional embodiment, the box wall is provided with an installation opening, and the inner wall of the box is provided with a guide rail;
[0020] The cooling component includes a dry ice storage box, which is installed at the mounting port and slides with the guide rail.
[0021] In an optional embodiment, an indicator is also included, which is slidably mounted on the outer wall of the housing to mark the location of specimens on the specimen storage unit inside the housing.
[0022] In this application, the specimen storage unit is located between two cooling units, which facilitates uniform and efficient cooling of the specimen on the storage unit. This better maintains the required low-temperature environment for the specimen, extends its preservation time, ensures its activity and integrity, and meets the stringent requirements for medical specimen preservation conditions. Furthermore, the enclosure isolates the specimen from the external environment, preventing contamination (from external pollutants such as sewage and dust) and environmental contamination (from tissues, secretions, excrement, or blood in the specimen, including HIV, hepatitis B, gonorrhea, syphilis, etc., entering the hospital living area).
[0023] Other features and advantages of this application will be described in detail in the following detailed description section. Attached Figure Description
[0024] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0025] Figure 1 A schematic diagram of the structure from one perspective of one embodiment of the medical specimen transport device provided in this application;
[0026] Figure 2 A schematic diagram of the usage state from one perspective of one embodiment of the medical specimen transport device provided in this application;
[0027] Figure 3 A schematic diagram of the assembly from one perspective of one embodiment of the medical specimen transport device provided in this application;
[0028] Figure 4 A partial cross-sectional view from one perspective of one embodiment of the medical specimen transport device provided in this application.
[0029] icon:
[0030] 100 - Enclosure; 110 - Mounting plate; 111 - Mounting slot; 120 - Opening; 130 - Mounting port; 140 - Folding plate;
[0031] 200 - Specimen storage component; 210 - Fixing plate; 220 - Support leg; 230 - Grip handle; 240 - Elastic cord;
[0032] 300 - Cooling component; 310 - Dry ice storage box; 320 - Guide rail;
[0033] 400 - Indicator. Detailed Implementation
[0034] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0035] In the description of this application, it should be noted that the terms "inner" and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product is in use. They are used only for the convenience of describing this application 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 this application. Furthermore, the terms "first," "second," etc., are used only to distinguish descriptions and should not be construed as indicating or implying relative importance.
[0036] In the description of this application, it should also be noted that, unless otherwise expressly specified and limited, the terms "setup" and "connection" 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 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 application based on the specific circumstances.
[0037] Embodiments of this application provide a medical specimen transport device, including a housing 100, a specimen storage unit 200, and a cooling unit 300.
[0038] The enclosure 100 is used to provide a closed space, isolating the interior from the outside world, creating a relatively independent and stable environment for the specimen, reducing the interference and impact of external factors (such as dust, bacteria, temperature fluctuations, etc.) on the specimen, and ensuring the quality and safety of the specimen.
[0039] The specimen storage unit 200 is installed in the box 100 to store and fix the specimen, so as to ensure that the specimen will remain stable during transportation and avoid damage, deterioration or impact on the test results caused by shaking or collision, thereby improving the reliability and safety of transportation.
[0040] The cooling element 300 is used to cool the specimens on the specimen storage unit 200. Two cooling elements 300 are provided in the housing 100, with the specimen storage unit 200 located between the two cooling elements 300. This facilitates uniform and efficient cooling of the specimens on the specimen storage unit 200, better maintaining the required low-temperature environment for the specimens, extending the preservation time of the specimens, ensuring the activity and integrity of the specimens, and meeting the stringent requirements for preservation conditions of medical specimens. Furthermore, the housing isolates the specimens from the external environment to prevent contamination (external pollutants such as sewage and dust entering the specimens) and environmental contamination (tissues, secretions, excrement, or blood from the specimens, including HIV, hepatitis B, gonorrhea, syphilis, etc., entering the hospital living area).
[0041] For example, during use, the box 100 can be placed on a push-pull trolley and transported to a designated location by the push-pull trolley. In other embodiments, the bottom outer wall of the box 100 can be provided with multiple casters, and the box 100 can be moved to a designated location by the casters.
[0042] For example, the cooling unit 300 may include a compressor refrigeration mechanism, which is fixedly installed inside the housing 100. Two compressor refrigeration mechanisms are provided, and the specimen storage unit 200 is located between the two compressor refrigeration mechanisms to improve the refrigeration effect on the specimen in the specimen storage unit 200 and extend the preservation time of the specimen.
[0043] For example, the air inlet of the compressor refrigeration mechanism may also be provided with a filter for filtering impurities and microorganisms in the air, and the air outlet of the compressor refrigeration mechanism may also be provided with an airflow deceleration bend, the bend being distributed in a U-shape.
[0044] For example, the cooling unit 300 is further provided with an energy storage module for supplying power to the compressor's refrigeration mechanism. The energy storage module is configured by arranging multiple energy storage stacks, where energy storage units are arranged in a predetermined direction. The energy storage units are, for example, secondary batteries such as nickel-metal hydride batteries or lithium-ion batteries. The energy storage units can use either a liquid or a solid electrolyte. Alternatively, the energy storage unit can also be configured as a unit capacitor capable of storing electricity.
[0045] For example, the specimen storage unit 200 may include a mounting frame with a specimen storage slot. The mounting frame is detachably mounted on the inner wall of the housing 100 by means of snap-fit or bolt connection, and the inner wall of the storage slot is used to restrict the position of the specimen. However, in another embodiment, the mounting frame is also provided with fixing clips by means of welding, snap-fit or bolt connection, and the fixing clips are used to clamp the specimen to fix the specimen inside the housing 100.
[0046] Unlike the above embodiments, such as Figure 1 and Figure 4 As shown, in another embodiment, a mounting plate 110 is fixedly provided on the inner wall of the housing 100 to provide an installation base for the specimen storage unit 200.
[0047] The specimen storage unit 200 includes a mounting frame and an elastic cord 240, the mounting frame being detachably mounted on the mounting plate 110.
[0048] like Figure 4As shown, one end of the elastic cord 240 is detachably mounted on one side of the mounting frame, and the other end of the elastic cord 240 is detachably mounted on the other end of the mounting frame. The detachable connection method can be, for example, a bolt connection, a snap-fit connection, or a hook connection. The elastic cord 240 is used to secure the specimen to the mounting frame to ensure the specimen remains stable during transportation, preventing damage, deterioration, or impact on test results due to shaking or collisions, thus improving the reliability and safety of transportation.
[0049] For example, at least one elastic cord 240 is provided. Figure 3 and Figure 4 As shown, two elastic ropes 240 are provided, with the two elastic ropes 240 spaced apart. Of course, in other embodiments, other numbers of elastic ropes 240 can be provided, such as three, four, or five spaced apart.
[0050] To enable the fixture to be detachably mounted onto the mounting plate 110, in one embodiment, the mounting plate 110 is provided with a first magnetic attractor, and the fixture is provided with a second magnetic attractor. The first magnetic attractor and the second magnetic attractor are magnetically connected to each other, so that the fixture can be detachably mounted onto the mounting plate 110. Exemplarily, the first magnetic attractor and the second magnetic attractor are magnets, or the first magnetic attractor is a magnet and the second magnetic attractor is, for example, an alloy composed of iron, cobalt, nickel, or a combination thereof, or the second magnetic attractor is a magnet and the first magnetic attractor is, for example, an alloy composed of iron, cobalt, nickel, or a combination thereof.
[0051] Unlike the technical solutions in the above embodiments that include a first magnetic attractor and a second magnetic attractor, such as... Figure 3 As shown, in one embodiment, the mounting plate 110 is provided with a mounting groove 111.
[0052] The mounting bracket includes a mounting plate 210 and legs 220 fixedly mounted on the mounting plate 210. Figure 3 The arrow on the middle support leg 220 indicates the assembly direction of the support leg 220 into the mounting slot 111.
[0053] like Figure 3 and Figure 4 As shown, the end of the support leg 220 near the fixed frame is fixedly mounted on the fixed plate 210, and the fixing method is, for example, welding, snap-fitting, bolting or gluing; the end of the support leg 220 away from the fixed frame is detachably mounted in the mounting groove 111 of the mounting plate 110. The support leg 220 maintains a distance between the mounting plate 110 and the fixed plate 210. When it is necessary to disassemble the fixed frame, there is no need to overcome the large resistance generated by atmospheric pressure. The support leg 220 can be easily pulled out from the mounting groove 111, which greatly improves the convenience of disassembly.
[0054] Furthermore, the increased spacing between the mounting plate 110 and the fixing plate 210 enhances airflow, facilitating the circulation of cold air within the device. In medical specimen transport devices, good airflow allows the cold air generated by the cooling element 300 to be more evenly distributed around the specimen, improving the cooling effect, better maintaining the required low-temperature environment for the specimen, extending the specimen's preservation time, and ensuring the specimen's quality and viability.
[0055] The support leg 220 is detachably connected to the mounting groove 111 on the mounting plate 110 by means such as plug-in connection, and the support leg 220 and the mounting groove 111 are clearance fit or transition fit.
[0056] Multiple mounting slots 111 are provided, and correspondingly multiple support legs 220 are provided. For example, six mounting slots 111 are provided, and the six mounting slots 111 are divided into two groups. Each group includes three mounting slots 111 arranged at intervals. The first group of mounting slots 111 is located on one side of the mounting plate 110, and the second group of mounting slots 111 is located on the other side of the mounting plate 110. Correspondingly, six support legs 220 are provided, and the six support legs 220 are divided into two groups. Each group includes three support legs 220 arranged at intervals. The first group of support legs 220 is installed in the first group of mounting slots 111, and the second group of support legs 220 is installed in the second group of mounting slots 111. Of course, the mounting slots 111 and the support legs 220 can also be provided in other quantities, such as four. For example, four mounting slots 111 are provided, and the four mounting slots 111 are divided into two groups. Each group includes two mounting slots 111 that are spaced apart. The first group of mounting slots 111 is provided on one side of the mounting plate 110, and the second group of mounting slots 111 is provided on the other side of the mounting plate 110. The support legs 220 are provided accordingly, and the four support legs 220 are divided into two groups. Each group includes two support legs 220 that are spaced apart. The first group of support legs 220 is installed in the first group of mounting slots 111, and the second group of support legs 220 is installed in the second group of mounting slots 111.
[0057] Specimens may condense due to low temperatures or become contaminated with droplets during sterilization or other treatments. These liquids can pool together and easily contaminate the specimen. To facilitate the drainage of these liquids, such as... Figure 3 and Figure 4 As shown, in one embodiment, the fixing plate 210 is configured as a perforated plate, which avoids the accumulation of liquid on the surface of the fixing plate 210, effectively prevents the liquid from accumulating and contaminating the specimen, ensures the dryness and cleanliness of the specimen, and helps maintain the quality and stability of the specimen.
[0058] The perforated structure allows air to circulate freely above and below the fixed plate 210, creating a good ventilation environment. In medical specimen transport devices, this helps the cold air generated by the cooling element 300 to be distributed more evenly around the specimen, improving the cooling effect and better maintaining the required low-temperature environment for the specimen. At the same time, good ventilation also accelerates the evaporation of moisture from the specimen surface, reducing liquid residue.
[0059] The hollow structure that makes the fixing plate 210 form a hollow plate body is a circular through hole, an elliptical through hole, a polygonal through hole or a combination thereof. For example, a polygonal through hole is a triangular through hole, a quadrilateral through hole or a pentagonal through hole. The combination of hollow structures is, for example, a keyway-like through hole formed by combining a circular through hole and a quadrilateral through hole, or a fan-shaped through hole formed by combining a circular through hole and a triangular through hole.
[0060] In one embodiment, a liquid adsorption element is provided on the end face of the mounting plate 110 near the fixing plate 210. The liquid adsorption element is, for example, paper, sponge, or porous silicone. However, in another embodiment, the liquid adsorption element includes a suction pump and a suction tube. The inlet end of the suction tube is provided on the mounting plate 110 and / or the fixing plate 210 for suctioning liquid, and the outlet end of the suction tube is connected to the suction pump, which provides negative pressure to the suction tube.
[0061] To ensure the cooling effect of the two 300 cooling components, such as Figure 3 and Figure 4 As shown, in one embodiment, the mounting plate 110 is configured as a hollow plate body. The hollow structure of the mounting plate 110 forming the hollow plate body is a circular through hole, an elliptical through hole, a polygonal through hole, or a combination thereof. The polygonal through hole is, for example, a triangular through hole, a quadrilateral through hole, or a pentagonal through hole. The combination is, for example, a keyway-like through hole formed by combining circular through holes and quadrilateral through holes, or a fan-shaped through hole formed by combining circular through holes and triangular through holes. Multiple hollow structures are provided.
[0062] like Figure 1 and Figure 2 As shown, two cooling elements 300 are provided, one cooling element 300 is located above the specimen storage element 200, and the other cooling element 300 is located below the specimen storage element 200; the mounting plate 110 is set as a hollow plate body to promote air circulation between the cooling element 300 located below and the fixing plate 210, thereby improving the cooling effect; and if liquid accumulates on the fixing plate 210, it can be discharged through the hollow structure on the mounting plate 110.
[0063] When the cooling unit 300 located below the specimen storage unit 200 is in operation, cold air can flow more smoothly upwards through these perforated structures, forming a convection circulation with the cold air generated by the cooling unit 300 located above. This enhanced air convection can distribute the cold air more evenly around the specimen, avoiding localized excessively high or low temperatures, thereby improving the overall cooling effect and better maintaining the low-temperature environment required for the specimen.
[0064] The multiple perforated structures allow cold air to penetrate the specimen storage area from different directions and angles, expanding the effective cooling range of the cooling unit 300. Whether it's the top, bottom, or sides of the specimen, it can be more fully exposed to cold air, ensuring the entire specimen remains under suitable low-temperature conditions during transportation and reducing the risk of specimen quality damage due to uneven temperature.
[0065] During specimen transport, specimens may become contaminated with condensation due to low temperatures or droplets from disinfection processes. If these liquids accumulate on the mounting plate 210, they can easily contaminate the specimens. The perforated structure of the mounting plate 110 provides a drainage channel for the liquids. When liquids accumulate on the mounting plate 210, they can flow downwards through the perforated structure under gravity, preventing liquid accumulation on the surface of the mounting plate 210 and keeping the specimen storage area dry and clean.
[0066] like Figure 3 and Figure 4 As shown, in one embodiment, at least one grip handle 230 is provided on the fixing plate 210. Exemplarily, two grip handles 230 are provided, one on one side of the fixing plate 210 and the other on the other side. Exemplarily, the grip handles 230 are fixed to the end face of the fixing plate 210 away from the support leg 220 by means of welding, gluing, snap-fitting, or bolting. The grip handles 230 facilitate the operator's handling of the fixing plate 210 and the specimen.
[0067] like Figure 2 As shown, in one embodiment, the top of the box 100 is provided with an opening 120, through which specimens can be placed into the specimen storage unit 200 inside the box 100.
[0068] A folding plate 140 for closing or opening the opening 120 is provided at the opening 120 of the housing 100. For example, the folding plate 140 is hinged to the opening 120 of the housing 100 or fixedly provided at the opening 120 of the housing 100 by means of snap-fit or bolt connection.
[0069] For example, the folding plate 140 can be configured as two plates that can open and close in opposite directions, or it can be configured as a plate that separately closes the opening 120.
[0070] Unlike the technical solution in the above embodiments where the cooling component 300 includes a compressor refrigeration mechanism, such as... Figure 2 As shown, in another embodiment, the housing 100 has an installation opening 130 on its wall; as Figure 3 and Figure 4 As shown, a guide rail 320 is provided on the inner wall of the housing 100.
[0071] like Figure 1 and Figure 2 As shown, the cooling component 300 includes a dry ice storage box 310, which is installed at the mounting port 130 and slidably engages with the guide rail 320. Exemplarily, the dry ice storage box 310 can store dry ice for cryogenic cooling of specimens.
[0072] Dry ice maintains a relatively stable temperature during sublimation, and as long as it is present, it can continuously provide a relatively constant low temperature. Compared with some refrigeration methods that are greatly affected by external environmental factors, this refrigeration method based on dry ice sublimation can maintain a relatively stable temperature within the chamber for a certain period of time, reducing the impact of temperature fluctuations on specimen quality.
[0073] Frozen pathology specimens are key tissues, either all or part, removed from the tumor during surgery. Since these are not transported by the surgeon, pathologists cannot accurately determine the precise location requiring frozen pathology. Therefore, the transport device needs to be equipped with indicators and marking functions. For example... Figure 1 and Figure 2 As shown, in one embodiment, the medical specimen transport device also includes an indicator 400 that indicates the sites that the pathologist needs to focus on and collect samples from.
[0074] For example, the indicator 400 is slidably mounted on the outer wall of the housing 100 to mark the position of the specimen on the specimen storage unit 200 inside the housing 100.
[0075] For example, the number of indicators 400 is at least two.
[0076] For example, a groove is provided on the outer wall of the housing 100, and the indicator 400 is slidably installed in the groove. The indicator 400 is slidable to adjust the position of the indicator 400 so that the indicator 400 indicates the position of the specimen.
[0077] For example, a groove is provided on the folding plate 140 of the housing 100, and the indicator 400 is slidably installed in the groove.
[0078] For example, indicator 400 includes a mounting post that mates with a groove and an indicator arrow mounted on the mounting post.
[0079] The surgeon uses directional arrows to accurately indicate the areas that require frozen section pathology examination (the removed specimen is a large piece with many contents and layers, and the pathologist may misunderstand the surgeon's intentions; the directional arrows guide the surgeon to identify and request the exact areas that require frozen section pathology examination).
[0080] The location of the frozen specimen is crucial for subsequent testing. After being surgically removed, the specimen unfolds into a sheet, block, or irregular shape. Once fixed, the surgeon uses indicator arrows to point to the lesion site, which is the area requiring frozen section pathology testing. These indicator arrows are positioned along the length, width, and height of the chamber, allowing for precise three-dimensional location of the specimen.
[0081] In one embodiment, an information barcode is installed on the outer wall of the container to record information such as the patient's name, hospital number, and destination (pathology department) to prevent access by unauthorized personnel. The container is also yellow, a hospital-specific color for warning about medical waste, and its surface displays medical waste and hazard warning signs.
[0082] In one embodiment, a thermometer is provided on the fixing plate 210 for measuring the temperature of the specimen; exemplarily, the thermometer is, for example, a mercury thermometer or an electronic thermometer.
[0083] It should be noted that, where there is no conflict, the features in the embodiments of this application can be combined with each other.
[0084] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A medical specimen transport device, characterized in that, include: A housing (100) for providing an enclosed space; A specimen storage unit (200) is disposed in the housing (100) for storing and securing specimens; Cooling element (300) is used to cool the specimen on the specimen storage unit (200). Two cooling elements (300) are provided on the housing (100), and the specimen storage unit (200) is located between the two cooling elements (300).
2. The medical specimen transport device according to claim 1, characterized in that, An installation plate (110) is fixedly provided on the inner wall of the box (100) to provide an installation base for the specimen storage component (200); The specimen storage unit (200) includes a frame and an elastic cord (240), the frame being detachably mounted on the mounting plate (110), and the elastic cord (240) being mounted on the frame for securing the specimen to the frame.
3. The medical specimen transport device according to claim 2, characterized in that, The mounting plate (110) is provided with a mounting groove (111); The fixing frame includes a fixing plate (210) and a support leg (220) fixedly mounted on the fixing plate (210). The end of the support leg (220) is detachably mounted in the mounting groove (111) of the mounting plate (110). The support leg (220) maintains a distance between the mounting plate (110) and the fixing plate (210). Multiple mounting slots (111) are provided, and multiple support legs (220) are provided accordingly.
4. The medical specimen transport device according to claim 3, characterized in that, The fixing plate (210) is configured as a hollow plate.
5. The medical specimen transport device according to claim 4, characterized in that, The mounting plate (110) is provided with a liquid adsorption component.
6. The medical specimen transport device according to claim 2, characterized in that, The mounting plate (110) is configured as a hollow plate.
7. The medical specimen transport device according to claim 3, characterized in that, At least one grip handle (230) is provided on the fixing plate (210).
8. The medical specimen transport device according to claim 1, characterized in that, The box (100) is provided with an opening (120), and a folding plate (140) for closing or opening the opening (120) is provided at the opening (120) of the box (100).
9. The medical specimen transport device according to claim 1, characterized in that, The box (100) has an installation port (130) on its wall and a guide rail (320) on its inner wall. The cooling component (300) includes a dry ice storage box (310), which is installed at the mounting port (130) and slides in cooperation with the guide rail (320).
10. The medical specimen transport device according to claim 1, characterized in that, It also includes an indicator (400) that is slidably mounted on the outer wall of the housing (100) for marking the specimen position on the specimen storage unit (200) inside the housing (100).