Endocrine inspection device for clinical endocrinology department

By improving the structure of the sample delivery device, the integrated use of the freezing and room temperature areas was realized, solving the problem of the single structure of the existing device and improving the convenience and versatility of sample storage and delivery.

CN121359984AInactive Publication Date: 2026-01-20CHANGZHOU TUMOR HOSPITAL (CHANGZHOU FOURTH PEOPLES HOSPITAL)
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Patent Information

Application Number
CN202511606101.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-01-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing testing equipment cannot integrate the use of frozen and ambient temperature areas, resulting in a simple equipment structure, requiring the customization of multiple spares, which leads to cumbersome processes, idle space, reduced usage intensity, and reduced multifunctionality.

Method used

A sample delivery device was designed, comprising a moving wheel, a base, a push rod, an electronic control panel, and a multi-functional storage structure. Through improvements to the refrigerator, constant temperature plate, partitions of the refrigerator plate, and clamping body, different types of samples can be stored separately and their temperature controlled. The electronic control panel is used to adjust the temperature to ensure sample stability.

Benefits of technology

It enables stable storage and delivery of different types of samples, prevents temperature effects, improves the convenience of the device and the ease of sample retrieval, and enhances the versatility of the delivery device and the strength of sample protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an endocrine inspection device for clinical endocrinology department, which structurally comprises moving wheels, a base, a pushing rod, an electric control panel and a multifunctional storage structure, the moving wheels are mounted on the lower layer of the base, and the edge of the upper layer of the base is fixedly connected with the lower end of the pushing rod; the upper end surface of the base is perpendicular to the multifunctional storage structure, and an independent power supply is further carried in an electric control panel connected with the upper end of the multifunctional storage structure. After the multifunctional storage structure is improved, the refrigeration plate I and the constant-temperature plate can be effectively and completely separated through the separation groove and the separation plate in the refrigeration box, so that a blood sample can be collected at the position of the constant-temperature plate; meanwhile, a large number of 24-hour urine samples and saliva samples can be collected through cooperation of the first refrigeration plate and the second refrigeration plate and then are stored at low temperature, so that the sample submitting device can store and submit the samples of different types as many as possible, and meanwhile the situation that the samples are damaged due to temperature influence is prevented.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of endocrine sample submission, and more particularly to an endocrine sample submission device for clinical endocrinology. BACKGROUND

[0002] Endocrine substances are hormones, also commonly known as hormones, which are a class of highly bioactive substances produced by endocrine glands or endocrine cells. However, in clinical endocrinology, the concentration of a certain endocrine substance is determined by blood sampling to determine whether it is too high, too low, or normal, thereby diagnosing diseases such as hyperthyroidism, hypothyroidism, and diabetes. After the endocrine substance is extracted (blood sampling) in the clinic, different types of blood collection tubes (such as coagulation tubes and separation gel tubes) can be selected according to the test items, and then the extracted sample is vertically loaded into the submission device, replacing the manual long-time hand-holding submission process that is too tiring or affected by external factors, resulting in blood collection tube falling, so that the cooperation of the submission device can effectively improve the safety factor and efficiency of endocrine sample submission. As mentioned above, the present inventor found that the existing submission device mainly has the following defects: due to the single structure of the current submission device, but the types of endocrine substances are more and the preservation environments of various secretions are different (blood samples (need to be placed at room temperature, prohibited to be frozen), 24-hour urine samples (need to be placed in a 4°C refrigerator for cold storage when collected and submitted), saliva samples (should be immediately placed in a 4°C refrigerator for cold storage after collection, and ice bags and insulation containers need to be used when submitted to maintain a low temperature (2-8°C) environment), so that the corresponding device needs to be selected immediately to store the sample after taking the corresponding secretion, so that the current device cannot integrate the freezing and normal temperature areas into one for use, thereby requiring a large number of submission devices to be customized for standby, resulting in the complexity of selection and a large amount of space being idle in the face of a small number of various endocrine samples, thereby reducing the use intensity and multifunctional characteristics of the existing submission device. SUMMARY

[0003] The technical solution adopted by the present application to achieve the technical purpose is: an endocrine sample submission device for clinical endocrinology, which comprises a moving wheel, a base, a push rod, an electric control panel, and a multifunctional storage structure.

[0004] As a further improvement of the present invention, the multifunctional storage structure is provided with a fixing block, which is installed at the lower end of the refrigerator box. A constant temperature plate is provided inside the refrigerator box, and a partition groove and a partition plate are provided below the constant temperature plate. Refrigeration plate one and refrigeration plate two are provided below the partition plate.

[0005] As a further improvement of the present invention, the constant temperature plate is also provided with a pull block, which is welded to the edge of the plate. The edge of the plate is provided with a balance block and the front end is connected with a protrusion. The surface of the plate is provided with a bearing plate and the bearing plate is connected with a clamping body.

[0006] As a further improvement of the present invention, the refrigerator with a multifunctional storage structure completely separates the refrigerator plate and the constant temperature plate by using a partition groove and a partition plate. Then, the constant temperature plate is pulled laterally at the partition groove position of the refrigerator by using the pull block and balance block of the flat plate, and then combined with the clamping body to vertically store the blood sample of endocrine secretions.

[0007] As a further improvement of the present invention, the moving wheels are provided in four sets on the lower layer of the base and the push rod is set in a vertical position. The electric control panel is electrically connected to the multi-functional storage structure by means of its own independent power supply and circuit, and they are parallel to each other.

[0008] As a further improvement of the present invention, three fixing blocks are provided at the lower end of the refrigerator box and set in a vertical orientation. The constant temperature plate of the refrigerator box is completely isolated from the first refrigerator plate by the partition groove and the partition plate and they are not connected to each other. The first refrigerator plate and the second refrigerator plate are consistent and the cooling temperature of the refrigerator box is adjusted by the electronic control panel.

[0009] As a further improvement of the present invention, the pull block of the plate is exposed on the outside of the refrigerator, the balance block of the plate is symmetrically arranged at the edge of the plate, the support plate is set in a parallel orientation and overlaps with the plate, and the clamping body is circular in shape and matches the shape of the blood collection tube.

[0010] As a further improvement of the present invention, the clamping body is provided with a clamping ring, the lower end of the clamping ring is connected to a vertical tube, the edge of the vertical tube is provided with an external thread layer and the central area is provided with a storage groove, and an auxiliary structure is also provided at the lower end of the vertical tube.

[0011] As a further improvement of the present invention, the lower end of the clamping ring is perpendicular to the vertical tube, and the vertical tube is threaded to the bearing plate through the external thread layer, allowing the auxiliary structure to be exposed in the partition groove, and the storage groove is opened in the vertical tube in a vertical orientation.

[0012] As a further improvement of the present invention, the auxiliary structure is also provided with a push block. The upper end of the push block is provided with a connecting end that is welded to the lower end of the straight rod. The upper end of the straight rod is provided with a rubber disc and the inside of the rubber disc has a groove that communicates with the inside of the vertical tube.

[0013] As a further improvement of the present application, the pushing block forms a "T" shape with the straight rod through the engaging end, and the upper end of the straight rod is provided with a locking bolt and a threaded groove in the lower center of the rubber disc.

[0014] As a further improvement of the present application, the first refrigeration plate and the second refrigeration plate are provided with flow-through holes, which are opened at the edge of the plate body and provided with a loading groove inside the plate body to install the bottom plate, and the surface of the bottom plate is connected with the breathable fixing body.

[0015] As a further improvement of the present application, the flow-through holes are distributed at the edge of the plate body and communicated with the inside of the refrigeration box, the loading groove of the plate body is set in a vertical orientation, and the bottom plate is set in a parallel orientation to determine the position of the plurality of breathable fixing bodies.

[0016] As a further improvement of the present application, the breathable fixing body is further provided with a bottom end fixing bolt, the upper end of the bottom end fixing bolt is connected with a flexible ring one, and the edge position of the flexible ring one is loaded with a plastic rod, a flexible ring two is provided at the upper end of the plastic rod, and the flexible ring one and the flexible ring two are both provided with a hollow slot at the same center point.

[0017] As a further improvement of the present application, the bottom end fixing bolt is set in a vertical orientation and perpendicular to the flexible ring one, the plastic rod at the edge of the surface of the flexible ring one is provided with four, which are set in a vertical orientation and connected to the lower edge of the flexible ring two at the top end, and the hollow slots at the centers of the two are communicated.

[0018] Compared with the prior art, the present application has the following beneficial effects: 1. The present application is improved by the multifunctional storage structure, the partition groove and the partition plate in the refrigeration box can effectively completely separate the first refrigeration plate and the constant temperature plate, so that the constant temperature plate position can collect blood samples, and the cooperation of the first refrigeration plate and the second refrigeration plate can collect a plurality of 24-hour urine samples and saliva samples, and then store them at low temperature, so that the present application can achieve the complete storage and inspection of different types of samples, and prevent the damage of samples caused by temperature influence.

[0019] 2. The present application is improved by the clamping body of the thermostat plate, which can be stably installed in the thermostat plate through the cooperation of the clamping ring and the vertical pipe, and then the bottom auxiliary structure is perpendicular to the partition groove, so that the situation of hindering pulling out or pushing in does not occur. When the blood sample enters the vertical pipe in parallel with the clamping ring through the storage groove, after reaching the inspection position, the push block of the auxiliary structure drives the straight rod upward, forcing the rubber disc to push the bottom of the blood collection tube to pop out from the inside of the vertical pipe, achieving the effect of easy removal, preventing the difficult removal caused by the small gap after the blood collection tube is completely parallel to the clamping ring, so as to improve the convenience of removing the internal sample of the inspection device.

[0020] 3. The present application is improved by the cold plate one and the cold plate two, through the flow hole of the plate body edge, the cold air in the cold box can be stably input into the loading groove and contact with the air permeable fixing body on the bottom plate, then the air permeable fixing body uses the flexible ring one and the flexible ring two to combine the plastic rod connection, so that the sample tube edge can directly contact with the cold air of the loading groove, thus achieving the effect of rapid cooling, avoiding the low cooling efficiency when completely covered, so as to further improve the protection strength of the inspection device for related samples. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It belongs to a structure diagram of an endocrine sample inspection device for clinical endocrinology department.

[0022] Figure 2 It belongs to a structure diagram of a multifunctional storage structure improved in three dimensions.

[0023] Figure 3 It belongs to a structure diagram of a thermostat plate improved in three dimensions.

[0024] Figure 4 It belongs to a structure diagram of a clamping body improved in three dimensions.

[0025] Figure 5 It belongs to a structure diagram of an auxiliary structure improved in three dimensions.

[0026] Figure 6 It belongs to a structure diagram of a cold plate one and a cold plate two improved in three dimensions.

[0027] Figure 7 It belongs to a structure diagram of an air permeable fixing body improved in three dimensions.

[0028] In the figure: moving wheel-1, base-2, push rod-3, electric control panel-4, multifunctional storage structure-5; fixed block-51, cold box-52, thermostat plate-53, partition groove-54, partition plate-55, cold plate one-56, cold plate two-57; Pull block-531, flat plate-532, balance block-533, convex block-534, bearing plate-535, clamping body-536; Clamp ring-5361, vertical tube-5362, storage groove-5363, external thread layer-5364, auxiliary structure-5365; Push block-3651, engaging end-3652, straight rod-3653, rubber disc-3654, clamping groove-3655; Flow-through hole-561, plate body-562, loading groove-563, bottom plate-564, air-permeable fixing body-565; Bottom end fixing bolt-5651, flexible ring one-5652, plastic rod-5653, flexible ring two-5654, hollow groove-5655. DETAILED DESCRIPTION

[0029] The application will be further described below in conjunction with the accompanying drawings: Example 1: Figures 1 to 5 As shown: The application provides an endocrine sample delivery device for a clinical endocrinology department, The structure comprises a moving wheel 1, a base 2, a push rod 3, an electric control panel 4, and a multifunctional storage structure 5. The moving wheel 1 is installed at the lower layer of the base 2, and the upper edge of the base 2 is fixedly connected with the lower end of the push rod 3. The upper end surface of the base 2 is perpendicular to the multifunctional storage structure 5, and the electric control panel 4 connected to the upper end of the multifunctional storage structure 5 also carries a separate power supply.

[0030] The multifunctional storage structure 5 is provided with a fixed block 51, which is installed at the lower end of a refrigeration box 52. The refrigeration box 52 is internally provided with a constant temperature plate 53. A partition groove 54 and a partition plate 55 are arranged at a position below the constant temperature plate 53. A refrigeration plate one 56 and a refrigeration plate two 57 are arranged at a position below the lower layer of the partition plate 55.

[0031] The constant temperature plate 53 is further provided with a pull block 531, which is welded to the edge position of a flat plate 532. The edge of the flat plate 532 is provided with a balance block 533, and the front end is connected with a convex block 534. The surface of the flat plate 532 is provided with a bearing plate 535, and the bearing plate 535 is connected with a clamping body 536.

[0032] The refrigeration box 52 of the multifunctional storage structure 5 completely separates the refrigeration plate one 56 and the constant temperature plate 53 by means of the partition groove 54 and the partition plate 55. Then the constant temperature plate 53 utilizes the pull block 531 and the balance block 533 of the flat plate 532 to horizontally pull at the partition groove 54 position of the refrigeration box 52, and further combines the clamping body 536 to vertically store the blood sample of the endocrine substance.

[0033] The mobile wheel 1 is provided with four groups under the base 2, and the push rod 3 is arranged vertically, the electric control panel 4 is electrically connected with the multifunctional storage structure 5 by the independent power supply and the line, and they are parallel to each other.

[0034] The fixed block 51 is provided with three blocks at the lower end of the refrigeration box 52 and is arranged vertically, the thermostat plate 53 of the refrigeration box 52 is completely separated from the refrigeration plate one 56 through the partition groove 54 and the partition plate 55, and the refrigeration plate one 56 and the refrigeration plate two 57 are consistent and are adjusted by the electric control panel 4.

[0035] The pull block 531 of the flat plate 532 is exposed outside the refrigeration box 52, the balance block 533 of the flat plate 532 is arranged at the edge of the flat plate 532 in a symmetrical direction, the bearing plate 535 is arranged in parallel and coincides with the flat plate 532, and the clamping body 536 is circular and matched with the blood collection tube.

[0036] The clamping body 536 is provided with a clamping ring 5361, the lower end of the clamping ring 5361 is connected with a vertical pipe 5362, the edge of the vertical pipe 5362 is provided with an external thread layer 5364, the center area is opened with a storage groove 5363, and the lower end of the vertical pipe 5362 is also provided with an auxiliary structure 5365.

[0037] The lower end of the clamping ring 5361 is perpendicular to the vertical pipe 5362, the vertical pipe 5362 is screw-connected with the bearing plate 535 through the external thread layer 5364, the auxiliary structure 5365 is exposed in the partition groove 54, and the storage groove 5363 is opened in the vertical pipe 5362.

[0038] The auxiliary structure 5365 is also provided with a push block 3651, the upper end of the push block 3651 is provided with a connecting end 3652 and a straight rod 3653, the lower end of the straight rod 3653 is welded and connected, the upper end of the straight rod 3653 is provided with a rubber disc 3654, and the inside of the rubber disc 3654 is opened with a clamping groove 3655 and communicated with the inside of the vertical pipe 5362.

[0039] The push block 3651 is formed in a "T" shape through the connecting end 3652 and the straight rod 3653, and the upper end of the straight rod 3653 is provided with a locking bolt and a threaded groove in the lower layer center of the rubber disc 3654.

[0040] The specific function and operation process of the embodiment: The endocrine sample inspection device for clinical endocrinology department can be displaced by moving the base 2 through the push rod 3, and the temperature of the multifunctional storage structure 5 can be set by using the independent power supply of the electric control panel 4, so that the multifunctional storage structure 5 can effectively place the blood sample at a constant temperature and store the urine sample and the saliva sample at a low temperature, thereby ensuring the stability of the sample during inspection. The refrigeration box 52 of the multifunctional storage structure 5 can be vertically spliced with the upper end of the base 2 through the bottom fixed block 51, and then the constant temperature plate 53 in the refrigeration box 52 can be completely separated from the refrigeration plate one 56 and the refrigeration plate two 57 through the partition groove 54 and the partition plate 55, so as to avoid mutual contact and internal cold air affecting the constant temperature plate 53. Therefore, the blood sample can be carried by the constant temperature plate 53, and the urine sample and the saliva sample can be carried by the refrigeration plate one 56 and the refrigeration plate two 57, so as to achieve the effect of classified and separate loading, improve the stability during inspection, and effectively load different types of endocrine samples by the current device, thereby replacing the original inconvenience of selecting the corresponding type of device for loading, and further, the constant temperature plate 53 can pull out the flat plate 532 from the position of the partition groove 54 through the pull block 531, and the balance block 533 of the flat plate 532 can achieve the balance restraining effect to prevent tilting and jamming. Conversely, when pushed in, the convex block 534 can be embedded in the inner wall position of the refrigeration box 52 to achieve precise positioning effect, and the blood sample can be vertically positioned by the clamping body 536 of the carrying plate 535. Finally, the stable inspection effect is achieved by the displacement of the moving wheel 1, and then the clamping ring 5361 of the clamping body 536 is stably screwed with the carrying plate 535 through the outer thread layer 5364 of the bottom vertical pipe 5362, so that the bottom auxiliary structure 5365 is placed in the partition groove 54 position, so as not to hinder the pulling out or pushing in process of the constant temperature plate 53. Then, the blood collection tube of the blood sample can be inserted and clamped at the edge after the storage groove 5363 of the vertical pipe 5362 is combined with the clamping ring 5361, so as to achieve the effect of stable vertical placement. Finally, when taking out, the auxiliary structure 5365 can be manually pushed upwards by using the push block 3651 of the auxiliary structure 5365, so that the straight rod 3653 of the joint end 3652 moves upwards from the bottom of the vertical pipe 5362, forcing the internal rubber disc 3654 to combine with the clamping groove 3655 to push the blood sample upwards, so that the blood collection tube of the blood sample can increase the distance from the clamping ring 5361, thereby achieving the effect of easy taking out. The original no-gap effect caused by the increase of clamping strength makes it difficult to take out and detect, so as to further improve the use convenience of the inspection device.

[0041] Example 2: Figures 6 to 7 as shown: The present application provides an endocrine sample inspection device for clinical endocrinology department, Its structure includes, the refrigeration plate one 56 with refrigeration plate two 57 is equipped with flow hole 561, the flow hole 561 is opened in the edge position of plate body 562 and is opened in the inside of plate body 562 with the loading groove 563 installs the bottom plate 564, the surface of bottom plate 564 is connected with the breathable fixed body 565.

[0042] Wherein, the flow hole 561 is distributed in the edge of plate body 562 and is communicated with the inside of refrigeration box 52, the loading groove 563 of plate body 562 is set in vertical orientation and lets the bottom plate 564 be set in parallel orientation to determine the position of multiple sets of breathable fixed body 565.

[0043] Wherein, the breathable fixed body 565 is also provided with bottom end fixed bolt 5651, the upper end of bottom end fixed bolt 5651 is connected with flexible ring one 5652 and the edge position of flexible ring 5652 is loaded with plastic rod 5653, the upper end of plastic rod 5653 is provided with flexible ring two 5654, the air slot 5655 is opened in flexible ring one 5652 and flexible ring two 5654 and is in the same center point.

[0044] Wherein, the bottom end fixed bolt 5651 is set in vertical orientation and is perpendicular to flexible ring one 5652, the plastic rod 5653 of the surface edge of flexible ring one 5652 is commonly provided with four and is set in vertical orientation and the top end is connected to the lower edge of flexible ring two 5654 and the air slot 5655 in the center of both is communicated.

[0045] The specific function and operation process of the embodiment are as follows: In the application, the plate body 562 of the refrigeration plate one 56 and the refrigeration plate two 57 can make the low-temperature gas in the inside of the refrigeration box 52 flow into the loading groove 563 position through the edge flow hole 561, so that the refrigeration plate 564 on the bottom plate 564 is wrapped by the refrigeration plate 564 after the refrigeration plate 564 fills the loading groove 563 area, so that the flexible ring one 5652 of the breathable fixed body 565 is vertically connected with the bottom plate 564 by the bottom end fixed bolt 5651, and the flexible ring one 5652 and the plastic rod 5653 and the flexible ring two 5654 are wrapped by the refrigeration plate 564, then the urine sample or the saliva sample is embedded through the air slot 5655, and the tube edge can be directly contacted with the refrigeration plate 564 through the spacing between the plastic rods 5653, so that the rapid cooling effect is achieved, and the low cooling efficiency and incomplete cooling caused by the positioning mode of the constant temperature plate 53 are avoided, so that the sample integrity during the inspection is improved, the sample is prevented from being damaged due to the temperature, and the accuracy during the detection is indirectly improved.

[0046] The technical scheme disclosed in the application or the technical personnel in the art inspired by the technical scheme of the application designs a similar technical scheme to achieve the above technical effects, which falls within the protection scope of the application.

Claims

1. An endocrine sample delivery device for use in a clinical endocrinology department, comprising: Mobile wheel (1), base (2), push rod (3), electric control panel (4), multifunctional storage structure (5), the mobile wheel (1) is installed in the lower layer of the base (2) and the upper edge of the base (2) is fixedly connected with the lower end of the push rod (3), the upper end surface of the base (2) is perpendicular to the multifunctional storage structure (5), and the multifunctional storage structure (5) is also provided with an independent power supply connected in the electric control panel (4), characterized by: The multifunctional storage structure (5) is provided with a fixed block (51), the fixed block (51) is installed at the lower end of the refrigerated box (52), the refrigerated box (52) is provided with a constant temperature plate (53) inside, a partition groove (54) and a partition plate (55) are arranged below the constant temperature plate (53), and a refrigerated plate one (56) and a refrigerated plate two (57) are arranged below the partition plate (55). The constant temperature plate (53) is also provided with a pull block (531), the pull block (531) is welded at the edge of the flat plate (532), the edge of the flat plate (532) is provided with a balance block (533) and the front end is connected with a protruding block (534), the surface of the flat plate (532) is provided with a bearing plate (535), and the bearing plate (535) is connected with a clamping body (536) at the position. The refrigerated box (52) of the multifunctional storage structure (5) completely separates the refrigerated plate one (56) and the constant temperature plate (53) by using the partition groove (54) and the partition plate (55), then the constant temperature plate (53) is pulled horizontally at the partition groove (54) position of the refrigerated box (52) by using the pull block (531) and the balance block (533) of the flat plate (532), and then the endocrine blood sample is vertically stored by combining the clamping body (536).

2. The endocrine sample delivery device for clinical endocrinology according to claim 1, characterized in that: The mobile wheel (1) is provided with four groups in the lower layer of the base (2), and the push rod (3) is arranged in a vertical direction, the electric control panel (4) is electrically connected with the multifunctional storage structure (5) by using the independent power supply and the circuit, and they are parallel to each other.

3. The endocrine sample delivery device for clinical endocrinology according to claim 1, characterized in that: The fixed block (51) is provided with three blocks at the lower end of the refrigerated box (52) and arranged in a vertical direction, the constant temperature plate (53) of the refrigerated box (52) is completely separated from the refrigerated plate one (56) by the partition groove (54) and the partition plate (55), and the refrigerated plate one (56) and the refrigerated plate two (57) are consistent and the cooling temperature of the refrigerated box (52) is adjusted by the electric control panel (4).

4. The endocrine sample delivery device for clinical endocrinology of claim 1, wherein: The pull block (531) of the flat plate (532) is exposed outside the refrigerated box (52), the balance block (533) of the flat plate (532) is arranged at the edge of the flat plate (532) in a symmetrical direction, the bearing plate (535) is arranged in a parallel direction and coincides with the flat plate (532), and the clamping body (536) is circular and matches the shape of the blood collection tube.

5. The endocrine sample delivery device for clinical endocrinology of claim 1, wherein: The clamping body (536) is provided with a clamping ring (5361), the lower end of the clamping ring (5361) is connected with a vertical pipe (5362), the edge of the vertical pipe (5362) is provided with an external thread layer (5364), the central area is open with a storage groove (5363), and the lower end of the vertical pipe (5362) is further provided with an auxiliary structure (5365); The lower end of the clamping ring (5361) is perpendicular to the vertical pipe (5362), the vertical pipe (5362) is threadedly connected with the bearing plate (535) through the external thread layer (5364), the auxiliary structure (5365) is exposed in the partition groove (54), and the storage groove (5363) is open in the vertical pipe (5362) in a vertical direction.

6. The endocrine sample delivery device for clinical endocrinology according to claim 5, characterized in that: The auxiliary structure (5365) is further provided with a push block (3651), the upper end of the push block (3651) is provided with a connecting end (3652) and is welded with the lower end of a straight rod (3653), the upper end of the straight rod (3653) is provided with a rubber disc (3654), the rubber disc (3654) is internally open with a clamping groove (3655) and is communicated with the inside of the vertical pipe (5362); The push block (3651) forms a "T" shape through the connecting end (3652) and the straight rod (3653), and the upper end of the straight rod (3653) is threadedly connected with the threaded groove in the lower center of the rubber disc (3654).

7. The endocrine sample delivery device for clinical endocrinology of claim 1, wherein: The refrigeration plate one (56) and the refrigeration plate two (57) are provided with flow-through holes (561), the flow-through holes (561) are open at the edge position of a plate body (562), the inside of the plate body (562) is open with a loading groove (563) to install a bottom plate (564), and the surface of the bottom plate (564) is connected with a breathable fixing body (565); The flow-through holes (561) are distributed at the edge of the plate body (562) and are communicated with the inside of the refrigeration box (52), the loading groove (563) of the plate body (562) is arranged in a vertical direction, and the bottom plate (564) is arranged in a parallel direction to determine the positions of a plurality of breathable fixing bodies (565).

8. The endocrine sample delivery device for clinical endocrinology according to claim 7, characterized in that: The breathable fixing body (565) is further provided with a bottom end fixing bolt (5651), the upper end of the bottom end fixing bolt (5651) is connected with a flexible ring one (5652), the edge position of the flexible ring (5652) is loaded with a plastic rod (5653), the upper end of the plastic rod (5653) is provided with a flexible ring two (5654), the flexible ring one (5652) and the flexible ring two (5654) are both open with air grooves (5655) and are at the same center point; The bottom end fixing bolt (5651) is arranged in a vertical direction and is perpendicular to the flexible ring one (5652), the plastic rods (5653) at the edge of the surface of the flexible ring one (5652) are four in number and are arranged in a vertical direction, the lower edge of the flexible ring two (5654) is connected with the top ends of the plastic rods (5653), and the air grooves (5655) in the centers of the two are communicated.